Strengthening of Agbani clay with granite and characterization of their properties and toxicity for applications as construction materials in building services

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Abstract Developing countries with high growth of young population are often faced with the burden of housing deficit. Manufacture and utilization of locally abundant natural materials in building services remain the most viable option in mitigating such challenges. However, environmental safety and public health concerns due to toxic pollutants in such construction materials should be given priority attention. Heavy metals and other deleterious substances found in construction materials present serious environmental challenges that pose direct threats to human safety. The need to develop local sustainable construction materials that meet the United Nation’s 2030 target for sustainable development goals (SDGs) necessitated this study. The authors blended and reinforced Agbani clay with granite to produce composite clay materials that can be used in building services. The samples were heated to 900 0 C, 1000 0 C, 1100 0 C and maximum temperature of 1200 0 C. XRF, XRD, physical properties, mechanical behaviour and physicochemical properties of the samples were characterized using different combined experimental techniques. The result of the XRF analysis shows that SiO 2 , Al 2 O 3 , and Fe 2 O 3 constitute the major oxides while the XRD analysis shows that quartz, orthoclase, kaolinite and albite dominate the mineralogical composition of the clay. The results of the physical properties of Agbani clay deposit suggest remarkable improvement in the physical properties such as apparent porosity, bulk density and water absorption with the addition of granite and firing at 1200 o C. Mechanical properties results show that impact strength, impact energy, modulus of rupture and compressive strength all increased with addition of granite and firing to elevated temperature. However, the plasticity limit was adversely affected as it reduced. For all the clay samples produced, blending them with granite and firing at 1200 o C lead to significant reduction in the toxic materials such as Lead, Mercury, Arsenic, Phosphorous and Chloride.
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Manufacture and utilization of locally abundant natural materials in building services remain the most viable option in mitigating such challenges. However, environmental safety and public health concerns due to toxic pollutants in such construction materials should be given priority attention. Heavy metals and other deleterious substances found in construction materials present serious environmental challenges that pose direct threats to human safety. The need to develop local sustainable construction materials that meet the United Nation’s 2030 target for sustainable development goals (SDGs) necessitated this study. The authors blended and reinforced Agbani clay with granite to produce composite clay materials that can be used in building services. The samples were heated to 900 0 C, 1000 0 C, 1100 0 C and maximum temperature of 1200 0 C. XRF, XRD, physical properties, mechanical behaviour and physicochemical properties of the samples were characterized using different combined experimental techniques. The result of the XRF analysis shows that SiO 2 , Al 2 O 3 , and Fe 2 O 3 constitute the major oxides while the XRD analysis shows that quartz, orthoclase, kaolinite and albite dominate the mineralogical composition of the clay. The results of the physical properties of Agbani clay deposit suggest remarkable improvement in the physical properties such as apparent porosity, bulk density and water absorption with the addition of granite and firing at 1200 o C. Mechanical properties results show that impact strength, impact energy, modulus of rupture and compressive strength all increased with addition of granite and firing to elevated temperature. However, the plasticity limit was adversely affected as it reduced. For all the clay samples produced, blending them with granite and firing at 1200 o C lead to significant reduction in the toxic materials such as Lead, Mercury, Arsenic, Phosphorous and Chloride. Clay composite building services constriction materials environmental safety strengthening of Agbani clay Figures Figure 1 Figure 2 Figure 3 Figure 4 Figure 5 Figure 6 1 Introduction Ceramic composites represent very important group of traditional and advanced engineering materials that have applications ranging from thermal and electrical insulators, paint production, catalysis, building services and so many other applications. These applications are directly tied to the characteristics of the various clay deposits such as high thermal stability, adequate mechanical strength and resistance to chemical attack. The desired properties of clays stemmed from their intrinsic chemical bonding which constitute mixtures of covalent and ionic bonds. Clay minerals are naturally occurring abundant materials that have withstand several weathering conditions such as high temperature and humidity which make them metamorphosed into several ceramic composite materials. As we transverse across different regions of the earth, there is a gradual compositional and mineralogical gradient in the clay minerals. This makes them to be efficient in some specific applications and poor in so many others. Therefore, it is necessary to first characterize the properties of the clay minerals and evaluate their performance for specific and general applications. Several studies have presented different combined experimental techniques for the characterization of various clay minerals (Egole et al. 2024 , Egole et al. 2024 , Chenga and Heidarib 2017 , Shuaib-Babata et al. 2018 , Garcia-Valles et al. 2020 , Funmilayo et al. 2020 , Ihekweme et al. 2020 , Kagonbé et al. 2021 , Yan et al. 2021 , Rat et al. 2023 , Kostova et al. 2023 ). Egole et al. ( 2024 ) used quartz and feldspar to blend two clay deposits and evaluated their performances for building services and refractory applications. The results of the various tests suggested that blending clays with quartz and felspar improved thermal stability and mechanical strengths and therefore suitable for applications in building services and refractory linings. In a related study, the same authors (Egole et al. 2024 ) blended quartz and feldspar and evaluated their performances in thermal and structural applications. Results obtained from thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC) analysis confirmed the clay samples to be highly thermally stable. From their various results, it could be inferred that the clay sample is suited for thermal insulation and structural applications. Chenga and Heidarib ( 2017 ) combined interpretation of NMR and TGA measurements to quantify the impact of relative humidity on hydration of clay minerals. Shuaib-Babata et al. ( 2018 ) characterized clays in Baruten local government area of kwara state (Nigeria) fireclays as suitable refractory materials. Garcia et al. (2020) characterized the thermal and mineralogical properties of the Terra Alta clay deposit and evaluated its possible applications. It was discovered that the clay contains some elements which enhance coloration and therefore prevent them from being used as raw materials for white ceramics. Funmilayo et al. ( 2020 ) characterized raw and thermally treated Nigerian clays using experimental methods. Their results suggest that the clay deposit could be used as a partial replacement for cementitious materials in the building and construction industry. Ihekweme et al. ( 2020 ) characterized some Nigerian clay minerals for applications in water purification and industrial purposes. Kagonbé et al. ( 2021 ) considered mineralogical, geochemical and physicochemical characterization of clay raw materials from three clay deposits in northern Cameroon. Yan et al. ( 2021 ) applied a new FTIR method for estimating the firing temperature of ceramic bronze-casting moulds. Rat et al. ( 2023 ) characterized thermal and ceramic properties of clays from Alhabia. Kostova et al. ( 2023 ) determined raw material and production technology using chemical, phase, and thermal analyses. Their results indicated that clay type cannot be determined by one method alone. Therefore, a combination of different analyses is required for the accurate identification of minerals present in clay deposits. Several studies (Lingling et al. 2005 , Andrewsa et al. 2013 , Kazmi et al. 2016 , Phonphuak et al. 2016 , Phonphuak and Chindaprasirt 2018 , Njindam et al. 2018 , Esmeray and Atis 2019 , Mao et al. 2019 , Sutcu et al. 2019 , Mao et al. 2020 , Khitab et al. 2021 , Chindaprasirt et al. 2021 ) have been dedicated to the reinforcement of clay minerals with various materials to improve target performance. The expected enhancement could be in form of thermal stability by nucleation of refractory phases, improved compressive strength, better plasticity index and desired physical properties. Lingling et al. ( 2005 ) presented a study that used high volume ratio of fly ash to replace clay as a raw material in the production fired bricks. Andrewsa et al. ( 2013 ) Developed fireclay aluminosilicate refractory from lithomargic clay deposits. Kazmi et al. ( 2016 ) manufactured sustainable clay bricks utilizing waste sugarcane bagasse and rice husk ashes. The study observed that incorporating these materials into clay exhibited lower compressive strength. Phonphuak et al. ( 2016 ) utilized waste glass to enhance physical and mechanical properties of clay brick. Phonphuak and Chindaprasirt ( 2018 ) Utilized sugarcane bagasse ash to improve properties of fired clay brick. Njindam et al. ( 2018 ) studied the effect of powder on the technological and microstructure of clay mixture for porcelain stoneware tiles manufacture. The experimental results revealed that waste glass contributes to improve physical-mechanical properties of clay samples. Esmeray and Atis ( 2019 ) utilized sewage sludge, oven glass and fly ash in clay brick production. Mao et al. ( 2019 ) considered the reuse of waste glass for enhancement of heavy metals immobilization during the introduction of galvanized sludge in brick manufacturing. They discovered that the introduction of waste glass enhanced the physical and mechanical performances of fired clay bricks and resulted in an increase in bulk density and compressive strength and a decrease in water absorption. Sutcu et al. ( 2019 ) recycled bottom ash and fly ash wastes in eco-friendly clay brick production. Mao et al. ( 2020 ) investigated the effects of waste glass particle size on improving the property and environmental safety of fired bricks containing electroplating sludge. Khitab et al. ( 2021 ) manufactured clayey bricks by synergistic use of waste brick and ceramic powders as partial replacement of clay. Their findings suggested that 27% of clays can be replaced with ceramic waste powder and waste brick powder. Chindaprasirt et al. ( 2021 ) considered synergistic effect of fly ash and glass cullet additive on the properties of fire clay bricks. They summarized that the blending of clay with fly ash improved strength through increase of SiO 2 , Al 2 O 3 and MgO while glass cullet additive acted as a flux and in fusion bonding between the clay and glassy phase. The need for the development of environmentally friendly and sustainable construction materials has continued to evolve in various forms. Blending clays with various additives has sufficiently improved the overall properties of clays in terms of thermal stability, mechanical strength and physical behaviour. However, the issue of public safety concerns due to blending of clay with additives has not been adequately addressed. This is necessary to achieve the 2015 United Nation’s projection for 2030 sustainable development goals (SDGs). Evaluation of toxic substances in clay composites is critically necessary to maintain sustainable construction materials for applications in building services. Limited research (Kortei et al. 2020 , Mouri et al. 2023 , Orisakwe et al. 2020 , Malebatja et al. 2024 ) have studied the presence of heavy metals and toxic substances such as arsenic, chloride, lead, mercury and phosphates in clays. When used as construction materials such as building bricks, roof tiles, floor tiles and surface coating bricks, these materials can leach out the toxic materials into the immediate vicinity of the environment and can gradually be dispersed everywhere. These substances hugely affect mostly pregnant women and children. Aquatic life is not spared as traces of these toxic materials are carried through flooding into rivers. The presence of toxic heavy metals when diffused into the water can affect the oxygen level inside the water which in turn affects the lives of aquatic animals. Life can as well be affected by the consumption of water or animals with an overdose of heavy toxic metals. The occurrence of death for both the mother and the child has been associated with toxic clay substances (Kortei et al. 2020 ). Orisakwe et al. ( 2020 ) investigated the cadmium and lead in geophagic clay consumed in Southern Nigeria: Health risk from such traditional nutraceutical The consumption of clay soil with a high arsenic content could lead to the development of abdominal pains, numbness, vomiting, diarrhoea, headaches, and muscular pains (Malebatja et al. 2024 ) and arsenic levels of up to 4mg/kg could pose serious health risks. The objective of the current study is to reinforce one of the abundant Nigerian clays with granite and characterize their properties and the presence of toxic materials. For all the similar studies reviewed above for the development of structural and construction materials, environmental safety and toxicity from such building applications were not considered. This is necessitated by the need to locally develop sustainable and environmentally friendly construction materials from affordable natural raw materials. This has the potential to address the acute housing deficit among the Nigerian working population and maintain healthy environment. 2 Materials and Methods 2.1 Materials Nigeria has large deposits of untapped clay materials across different geographical locations. Some of which have been characterized for various applications. However, evaluation of the toxic substances in those clay composites and their effect on the environment has not gained sufficient attention. The clay samples used for this study are mined from within the premises of Enugu State University of Science and Technology Agbani Campus, Nigeria. Granite stones were collected from Amasiri quarry site in Afikpo, Ebonyi State, Nigeria. Other materials include water, plastic buckets, jaw crusher, ball mill, slab compaction machine, sieve screens, gas kiln, digital weighing balance, X-Ray florescence (XRF), X-Ray diffraction machine (XRD), vernier calliper, oven dryer, strength testing machines, standard rammer, hydraulic press, rectangular wooden mould, test desiccators, porcelain crucible, atomic absorption spectrophotometer, beaker and knife. The processed clay samples and the granite reinforcement were then used to formulate five batches, according to the composition shown in Table 1 . Table 1 Different composition of the clay and granite samples Batch Number Agbani Clay (%) Granite (%) A 100 0 B 95 5 C 90 10 D 85 15 E 80 20 Sub-batches were designated for the corresponding firing temperatures, which include A 1 , B 1 , C 1 , D 1 and E 1 , for samples fired at 900°C, A 2 , B 2 , C 2 , D 2 and E 2 , for samples fired at 1000°C, A 3 , B 3 , C 3 , D 3 and E 3 , for samples fired a 1100°C, A 4 , B 4 , C 4 , D 4 and E 4 , for samples fired at 1200°C while A 0 , B 0 , C 0 , D 0 and E 0 unfired clay composites at room temperature. 2.2 Experimental Method The procedures and details of sample preparation, XRD, XRF, and physical properties are similar to those presented in the previous studies by the authors (Egole et al. 2024 and Egole et al. 2024 ). For the cold-crushing strength, fired cubic test pieces were measured to determine the dimensions of the test piece. Each test piece was then placed on the sample holder of the hydraulic compressive strength test machine. A steady uniaxial compressive load was then applied through the handle of the machine, until failure and the load at failure was recorded. Compressive strength was then calculated according to previous study (Osonwa et al. 2018 ) For the impact test, the impact test specimen had a dimension of 75 mm x 10 mm x 10 mm. A 2 mm deep notch was cut out at 22 mm from one end at an angle of 45°. The specimen was held vertically in the vice of the impact test machine and the striking hammer was released from an angle of 45° (ɑ), to strike and break the specimen from the notched face. The angle of rise of the hammer, after breaking the specimen was recorded as (β). The initial height H of the hammer was also recorded as well as the height h after breaking the specimen. The impact energy and impact strength were calculated using the same procedures of previous research (Khurmi and Sedha 2009 ). The Atterberg plastic limit is the lowest water content (expressed in mass percent of the clay dried at 120°C) at which the body can be rolled into threads without breaking and the details can be found in Bergaya et al. ( 2006 ). The Atterberg liquid limit is the water content at which the body begins to flow, using a specific apparatus usually a Casagrande cup. The difference between both values is called the plasticity (or plastic) index. The liquid and plastic limits define the transitions between liquid and plastic behaviour. The Atterbeig limits of the clay samples and the other batches were determined according to the ASTM D4318-10 standard (2010). A small quantity of the batch sample was then wet with water until it became plastic. The mix was rolled on a glass plate with the hand into a thread of about 1.3mm in diameter until the thread showed signs of crumbling. The rolled clay was weighed and then dried in an oven at 120°C, after which the moisture content was determined, as described by Irabo and Okunkpolor (2020). This process was repeated for three times and the average moisture content was determined and reported. The values obtained were recorded as plastic limit. The plasticity index of the batches was then calculated as Liquid limit (%) – Plastic limit (%). Physicochemical analysis was carried out to evaluate the toxic level in the construction materials developed in this research. Heavy metals and deleterious substances such as arsenic, chloride, lead, mercury and phosphates are evaluated in this analysis. Certain reagents such as silver nitrate (AgNO 3 ) solution (0.01 M), potassium chloride (KCl) solution (0.01 M) for standardization, Nitric acid (HNO 3 ) solution (1 M), ammonium molybdate solution (0.5 M), ascorbic acid solution (0.1 M) and sulfuric acid solution (1 M) are used in laboratory beakers according to standard procedure. 3 Results and discussion 3.1 Chemical analysis XRF technique was used to characterize the chemical composition of the blended clay composites. The chemical composition results of the granite-reinforced clay samples at room temperature and the batch fired at maximum temperature of 1200 0 C are shown in Table 2 and Table 3 respectively Table 2 Summary of XRF results of the sample batches at room temperature Oxides Sample A O Sample B O Sample C O Sample D O Sample E O SiO 2 50.331 47.642 50.05 52.384 51.542 V 2 O 5 0.148 0.183 0.150 0.148 0.144 Cr 2 O 3 0.027 0.027 0.017 0.036 0.044 MnO 0.071 0.104 0.090 0.083 0.095 Fe 2 O 3 15.661 19.778 15.835 15.789 15.295 CO 3 O 4 0.052 0.066 0.067 0.057 0.059 NiO 0.006 0.009 0.006 0.007 0.008 CuO 0.042 0.072 0.053 0.043 0.043 Nb 2 O 3 0.012 0.030 0.005 0.015 0.009 SO 3 0.463 0.495 0.899 0.267 0.460 CaO 0.459 2.441 1.319 2.721 1.957 K 2 O 0.079 1.326 1.129 1.237 1.122 Al 2 O 3 28.230 23.496 27.013 24.139 26.276 Ta 2 O 5 0.027 0.029 0.025 0.010 0.033 TiO 2 2.270 2.713 2.233 2.231 2.109 ZnO 0.010 0.012 0.014 0.011 0.008 ZrO 2 0.215 0.031 0.179 0.167 0.165 SiO 2 /Al2O 3 1.78 2.03 1.85 2.16 1.962 Al 2 O 3 /Fe 2 O 3 1.81 4.999 1.71 1.528 1.72 Table 3 Summary of X-ray fluorescence spectroscopy of the sample batches fired at 1200°C Oxides Sample A 4 Sample B 4 Sample C 4 Sample D 4 Sample E 4 SiO 2 71.09 69.998 68.605 67.081 64.750 V 2 O 5 0.102 0.097 0.087 0.086 0.096 Cr 2 O 3 0.064 0.053 0.062 0.059 0.038 MnO 0.059 0.063 0.064 0.069 0.073 Fe 2 O 3 9.595 10.114 9.863 10.247 11.077 Co 3 O 4 0.035 0.044 0.039 0.020 0.035 NiO 0.007 0.004 0.004 0.009 0.007 CuO 0.049 0.043 0.041 0.043 0.041 Nb 2 O 3 0.016 0.010 0.014 0.005 0.004 SO 3 0.266 0.339 0.696 0.423 0.291 CaO 0.314 1.175 1.848 2.390 2.623 K 2 O 1.021 1.053 0.995 0.958 0.971 Al 2 O 3 14.868 14.730 14.565 16.285 17.107 Ta 2 O 5 0.053 0.036 0.024 0.037 0.027 TiO 2 1.536 1.379 1.341 1.397 1.691 ZnO 0.005 0.005 0.019 0.003 0.007 ZrO 2 0.143 0.147 0.130 0.095 0.108 SiO 2 /Al2O 3 4.78 4.75 4.71 4.112 3.79 Al 2 O 3 /Fe 2 O 3 1.55 1.46 1.47 1.60 1.710 Compositional analysis in Table 2 and Table 3 show that the major oxides found in the unfired and fired clays are silica, alumina and haematite. Titanium oxide is found in significantly minor concentration for all the samples. Other oxides appear in trace amounts for both fired and unfired clays except for CaO and K 2 O which tend to increase with the increase in granite reinforcement and firing at elevated temperature. Generally, the clay mineral can be classified as aluminosilicate group of clay minerals. The compositional analyses as seen in Tables 2 and 3 are similar to those presented previously by the current researchers (Egole et al. 2024 , Egole et al. 2024 ) as they characterize the applications of the clays for structural and refractory services. However, it can be observed that blending of the clay deposit with granite significantly affected the overall composition of the major oxides. A careful comparison between unfired and fired clays in Table 2 and Table 3 respectively suggests an increment in silica and a serious decrease in alumina and haematite (Al 2 O 3 & Fe 2 O 3 ). This is expected to influence the mineralogical contents of the fired clay samples. It can be seen from Tables 2 and 3 that the addition of granite to Agbani clay increased the amount of silica present in the sample while lowering the amount of alumina and hamaetite. The amount of flux oxides such as potassium oxide in the sample was also increased with the addition of granite to the sample. It can be observed that the weight concentrations of the major oxides altered after the clay has been fired at 1200°C. This can be explained from the possible densification, vitrification and volatilization of some of the constituents of the clay during firing. This can as well be attributed to the formation of new high temperature phases such as mullite. Some of the alumina originally present in the unfired samples was converted to mullite during the sintering process. 3.2 Mineralogical composition Table 4 and Table 5 show the quantitative mineralogical composition of the samples of the clay composites for the unfired and the ones fired at the temperature of 1200°C respectively. For all the samples considered at room temperature, the major minerals detected by the XRD technique are quartz, orthoclase, kaolinite and albite as seen in Table 4 . Firing the same materials to a temperature of 1200°C and holding for some time resulted in a significant compositional variation as suggested in Table 5 . Table 4 Quantitative mineralogical composition of the sample batches at room temperature Mineral Sample A 0 % Sample B 0 % Sample C 0 % Sample D 0 % Sample E 0 % Quartz 67.00 83.00 70.00 65.00 73.00 Orthoclase 03.40 01.00 03.00 12.00 11.00 Kaolinite 21.00 02.00 19.00 22.00 10.00 Albite 09.00 14.10 09.00 02.30 06.10 Table 5 Quantitative mineralogical composition of the sample batches fired at 1200°C Mineral Sample A 4 % Sample B 4 % Sample C 4 % Sample D 4 % Sample E 4 % Quartz 87.00 69.00 65.00 68.00 68.70 Orthoclase 09.00 14.00 27.00 19.40 17.20 Kaolinite 00.00 00.00 00.00 00.00 00.00 Albite 03.00 13.00 05.00 12.70 14.20 A detailed comparison between Table 4 and Table 5 shows a general trend of total elimination of the kaolinite mineral as the simultaneous blending of clays with granite and firing at the temperature of 1200°C is processed. It can also be observed from Tables 4 and 5 that there is a significant increment of quartz in the unreinforced clay samples from 67–87% as we move from room temperature to 1200°C. For the same unreinforced clay samples, orthoclase increased as we heated to 1200°C. However, albite decreased significantly while the kaolinite mineral was totally eliminated. For all the reinforced and fired clay samples (samples B-E), there are significant changes in the mineralogical compositions as seen in Tables 4 and 5 while noting that these changes did not take a particular regular sequence. The only general trend in the reinforced and fired clay bricks is the total elimination of the kaolinite mineral. These variations in the mineralogical composition of Agbani clay deposit is expected to influence the end application and performance of these clays in various services. The X-Ray diffraction patterns of the blended clay composites for unfired and fired samples are shown in Fig. 1 and Fig. 2 respectively. The diffraction peaks for the unfired clay samples are shown in Fig. 1 a- 1 e while the samples fired at 1200 o C are shown in Fig. 2 a- 2 e. The diffraction patterns for the unfired clay samples show that the samples contain four major minerals (quartz, kaolinite, orthoclase and albite) in various amounts as shown in Fig. 1 a- 1 e. When these samples are fired to 1200 o C and held for some time, it was observed that there is nucleation and crystallization of more refractory mineral phases such as quartz, orthoclase and albite while the less refractory phase is eliminated, as seen in Fig. 2 a- 2 e. However, this is not the focal point of the objectives of the current study which dwell on the toxicity and environmental safety for the production of affordable and sustainable construction materials. The previous studies by the current authors (Egole et al. 2024 , Egole et al. 2024 ) have evaluated the performance of clays from similar locations and found them to be durable for application as refractory and structural materials. The information about environmental safety and health risks of these clay composites as construction materials in building services has received little or no attention to the best knowledge of the authors. The qualitative analyses of the samples for the unfired and the ones fired at 1200 o C are shown in Fig. 3 and Fig. 4 respectively. The qualitative description of the mineralogical compositions is in agreement with the diffraction patterns as seen in Figs. 1 and 2 . The four major minerals in the clay samples are given with their specific amounts for the unfired bricks as shown in Fig. 3 a- 3 e. When the samples were fired at 1200 o C, Fig. 4 a- 4 e show total elimination of kaolinite while maintaining general increase in other minerals phases in the clay. 3.3 Physical Properties The apparent porosity, apparent density, bulk density and water absorption for all the samples are shown in Fig. 5 . The results of the physical properties show that reinforcing clay samples with granite and firing at 1200 o C significantly improved the porosity, bulk density and water absorption. Figure 5 a shows that the sample with the highest amount of granite and fired at maximum temperature of 1200 o C has the lowest apparent porosity. Porosity is the volume of soil that is filled with either water or air. A high porosity often means a weakening of the support structure and therefore a serious decrease in the strength of the particles. Therefore, the porosity decreases with increase in granite and firing at 1200 o C. This is expected to increase the mechanical strength of the clay. The apparent density describes the ratio between the fired mass to the volume of solid part of the test piece, excluding open and closed pores. It is a constant property of the material. Apparent density measures the mass per unit volume of the fired test piece, excluding the voids in the sintered test piece. If the inter-particulate voids are high due to poor densification, then the total apparent volume is increased, resulting in lower apparent density. The variation in apparent density is largely inconsistent and no reason could be given for this, as shown in Fig. 5 b. The addition of granite did not appear to have any remarkable effect on the apparent density of the sample. However, the results obtained from sample E, clearly indicated that the addition of granite to Agbani clay improved the sintering behaviour, possibly due to the significant amounts of anorthite in the granite. The bulk density describes the ratio between the fired mass of the sample and the exterior volume or total volume of the sample including closed and open pores. It gives an indication of the degree of densification of the sample during firing or how dense and therefore well sintered the specimen is. The higher the bulk density, the better the sintering behaviour. Partial vitrification of some of the constituents of the clay body creates a glassy phase which seals some of the open pores, thereby increasing the bulk density. The particle size distribution of the clays is another factor that can affect bulk density, although it was not investigated in the present work. Bulk density for the samples shows that sample E has the overall best quality as seen in Fig. 5 c. Further improvement in bulk density could be attained by incorporation of more fluxing materials in the body as suggested by (Egole et al. 2024 , Egole et al. 2024 ). The water absorption of the samples describes the ratio of the open pore volume to the dry weight of the test piece. It gives an idea of the suitability of the material for applications in impervious products such as construction materials. Water absorption which adversely affects construction materials in building services is lowest for sample E as shown in Fig. 5 d. The water absorption of the samples appears to be high initially but significantly decreased with increasing additions of granite and higher firing temperatures. This can be explained by the increased tendency to develop a viscous liquid phase due to the anorthite, chlorite and quartz introduced by the granite addition. Sample E had a water absorption value close to the range reported in the literature for commercial clays Martinez et al. ( 2023 ). Therefore, the results in Fig. 5 are sufficient to conclude that reinforcing Agbani clay deposit with granite and firing at 1200 o C has a positive influence on the performance of the clay for application in building services. 3.4 Mechanical Properties Just like other properties, mechanical behaviours are critical performance evaluation criteria for construction and structural materials. Mechanical stability of construction materials is needed to withstand structural deformation such as deflections under compressive and tensile loads. Construction materials such as coating bricks should have adequate strength to suite such purposes. The impact energy, impact strength, modulus of rupture and compressive strength are shown in Figs. 6 a- 6 d respectively. A close observation of Fig. 6 a- 6 d shows a trend that suggests that an increase in granite and firing to 1200 o C improved all the mechanical properties. Impact strength in clay is a critical measure that reflects the material’s capability to endure the forces applied in service and when supporting machinery foundations that experience impulsive loads. Impact strength of clay refers to its ability to resist sudden load or shock. It is influenced by various factors such as the water-clay ratio, types of aggregate, curing method, and so on. As the granite is increased, the impact energy and strength are also increased as seen in Figs. 6 a and 6 b respectively. This increases the strength of the clay to withstand compressive load or shock. At a firing temperature of 1100°C, increasing the percentage of granite from 0–20% increases the impact strength of the samples. Similarly, at a firing temperature of 1200°C, increasing the percentage of granite from 0–20% increases the impact energy and strength further. Modulus of rupture is one of the most important properties of structural clay design which affects the shear strength, brittleness ratio, and flexural cracking. The modulus of rupture is a measure of the maximum load-carrying capacity of a given species in bending strength. It is proportional to the breaking point or maximum strength as borne by the specimen. As the granite percentage increases, the modulus of rupture increases as seen in Fig. 6 c This implies that the maximum load-carrying capacity, maximum strength, breaking point of the clay increases. Therefore, it can withstand high level of load, pressure before breaking. The presence of refractory minerals such as mullite, as well as alumina will increase the modulus of rupture of the specimen. Also, the amount of flux in the sample could impact on the maturity temperature, forming vitreous phases that seal off the pores between particles, thereby improving mechanical strength. Thus, the incremental addition of granite to the samples increases the amount of silica in the sample, which is a glass former, as well as the mineral albite, which tends to improve fusion. Samples with the highest bulk density values also showed the highest modulus of rupture values as illustrated in Figs. 5 c and 6 c. This observation is in agreement with the findings of the previous studies (Egole et al. 2024 , Egole et al. 2024 ). Higher compressive strength means higher resistance to stress and better ability to bear heavy weight. As the percentage of granite increases, the compressive strength increases gradually as seen in Fig. 6 d. Mechanical strength development increases with firing temperature and is also affected by the particle size distribution as well as partial vitrification of the clay body which is influenced by the minerals present. Consequently, it can be observed from Fig. 6 d that the compressive strength of the specimens increased with firing temperature, as well as with increasing amounts of granite. Granite addition increased the amounts of quartz in the clay composites which is a glass former, as well as increasing the amounts of the mineral anorthite which is a feldspar. The combined effect is the formation of a viscous vitreous phase which helps seal off and eliminate the pores between particles. This porosity acts as stress raisers, reducing the effective load bearing cross sectional area of the material. It can be seen from the results that compressive strength of samples increased as the apparent porosity decreases as we compare Fig. 5 a and Fig. 6 d. Atterberg plasticity index for the samples are shown in Table 6 . The Atterberg liquid and plastic limits define the transitions between liquid and plastic behaviour of the samples and the plasticity index indicates the range within which the sample is plastic. From the results in Table 6 , it is evident that the as received Agbani clay is not quite plastic, with a plasticity index of 29.8%. The plasticity of clays is related to the morphology of the plate-like clay mineral particles that slide over the others when water is added, which acts as a lubricant. As the water content of clay is increased, plasticity increases up to a maximum, depending on the nature of the clay. The relatively low plasticity index of Agbani clay can be explained by the mineralogical composition, as it is composed chiefly of non-plastic minerals such as, quartz (67%), albite (9%) and orthoclase (3.5%). The incremental addition of granite to the Agbani clay had the effect of reducing the plasticity index of the sample, as granite is also a non-plastic material composed chiefly of quartz (41%), and anorthite (38%), the calcium end member of the plagioclase feldspar mineral series. Table 6 Result of the Atterberg plasticity test of the batches. Batch Plastic Limit (%) Liquid Limit (%) Plasticity Index (%) A 46.8 76.6 29.8 B 48.1 76.1 28.0 C 51.6 74.8 23.2 D 52.8 72.4 19.6 E 55.1 71.9 16.8 3.5 Toxicity and environmental safety The physicochemical analysis was performed to determine the amounts of harmful or toxic constituents of the samples that can affect public health. Construction materials in building services such as outside coating bricks, building bricks, floor tiles and roofing tiles are supposed to be safe for human and aquatic inhabitants. Heavy metals and other toxic elements like arsenic, chloride, lead, mercury and phosphates are often associated with weathering reactions in composite clay materials. The potential health effects related to the ingestion of clay soil that contains high quantities of these toxic substances include premature deaths, low-birth-weight babies, anaemia, nervous system disorder, and at times, the occurrence of death for both the mother and the child (Kortei et al. 2020 ). Blending clays with various materials as reinforcements or partial replacements of cementitious materials for the construction industry has attracted several research interests Egole et al. 2024 , Egole et al. 2024 , Lingling et al. 2005 , Andrewsa et al. 2013 , Kazmi et al. 2016 , Phonphuak et al. 2016 , Phonphuak and Chindaprasirt 2018 , Njindam et al. 2018 , Esmeray and Atis 2019 , Mao et al. 2019 , Sutcu et al. 2019 , Mao et al. 2020 , Khitab et al. 2021 , Chindaprasirt et al. 2021 ) recently. These materials have adequately been subjected to the evaluation of some specific target performances such as chemical stability in the corrosive environment, thermal stability and characterization of mechanical strengths. However, leachability, toxicity and environmental safety for these materials as construction materials in building services have not received commensurate attention. Table 7 shows the results of the toxicity level of the heavy metals and undesired substances in the clay composite construction materials. The leading toxic substance is chloride, followed by lead and phosphate respectively. Arsenic and mercury are also found in trace amounts that can be detrimental to the safety of our environment. It can be seen from Table 7 that increasing granite increased the toxic substances, but heating the samples to a high temperature of 1200 o C and holding for some time significantly reduced the toxicity in the materials. Affordable and sustainable materials in building applications are critical needs for low- and medium-income countries to offset acute housing deficits. This study falls in line with the objectives of the United Nation’s sustainable development goals (SDGs) target for the developing countries. The results in Table 7 show the percentage reduction of the toxic substances for all the samples considered. The values for the unfired samples (at 30 0 C) are given in column T 1 while the toxicity for the clays fired at 1200 0 C is given as T 2 . It can be seen from Table 7 that the computed reduction in toxic substances is significant in all the samples, though, no regular periodic variation in percentage reduction is reported in Table 7 . 4 Conclusion Developing countries with exponential growth of young population are often faced with the burden of housing deficit. Development and utilization of locally abundant natural materials in building services remain the most viable option in mitigating such challenges. However, environmental safety and public health concerns due to toxic pollutants in such construction materials should be given priority attention. The current research focuses on strengthening of Agbani clay with various amounts of granite and firing the samples to a maximum temperature of 1200 0 C and evaluation of the environmental safety and public health of the clays for applications as affordable and sustainable construction materials. The XRF, XRD, physical properties, mechanical properties and toxicity of the clay composite were characterized using various techniques. Based on the results of the different analyses, following conclusions can be drawn from the study: From the visual inspection of the blended clays, addition of granite did not affect the overall physical appearance of the clays produced for application in building bricks and coating tiles and other construction materials. It can be concluded that the reddish-brown colour of Agbani clay is a clear indication of the presence of high concentrations of iron oxide. Appreciable amount of iron oxide present in the composite suggests that Agbani clay will give good colouration and decorative outlook to the houses coated with these bricks. From the results of the chemical compositions and mineralogical analysis obtained from the XRF and XRD respectively, it can be concluded that the clay belongs to the aluminosilicate group of clay minerals. The XRF analysis shows that SiO 2 , Al 2 O 3 , and Fe 2 O 3 constitute the major oxides while the XRD analysis shows that quartz, orthoclase, kaolinite and albite dominate the mineralogical composition of the clay. The results of the physical properties of Agbani clay deposit suggests remarkable improvement in the physical properties such as apparent porosity, bulk density and water absorption with the addition of granite and firing at 1200 o C. It can be concluded that this helped to improve the mouldability of the clays which allows them to be built into desired shapes of building and construction materials. The results of the mechanical properties show that the mechanical strengths of the clay increase with addition of granite and firing up to 1200°C. It can be concluded that the improved mechanical properties could be attributed to the presence of mechanically stable minerals such as quartz, orthoclase, kaolinite and albite. No dimensional defect, warpage or some other kind of deformation induced by excessive thermal degradation occurs in the clay up to 1200°C. This implies that Agbani clay can be suitable for applications in building services and construction materials when blended with granite and fired at 1200°C. Increased amounts of granite enabled improved sintering which enhanced densification behaviour and mechanical strength. For all the clay samples produced, blending them with granite and firing at 1200 o C lead to significant reduction in the toxic materials such as Lead, Mercury, Arsenic, Phosphorous and Chloride. Heavy metals and other deleterious substances found in construction materials present serious environmental challenges that pose direct threats to human safety. The need to develop local sustainable construction materials that meet the United Nation’s 2030 target for sustainable development goals (SDGs) necessitated this study. From the toxicity tests results, it can be concluded that the building and construction materials developed from the current study are environmentally safe and poses no safety concerns for the ecosystem and its inhabitants. Declarations Acknowledgement This is not applicable Authorship contributions Chijioke Peter Egole: Writing – review & editing, Writing – original draft, Methodology, Investigation, Formal analysis, Data curation, Conceptualization. Onwudiwe Ugochukwu Chinonso : Writing – review & editing, Visualization, Investigation, Formal analysis, Data curation. Gaius Chukwuka Nzebuka : Writing – review & editing, Writing – original draft, Resources, Project administration, Investigation, Formal analysis, Data curation. Onuoha Chukwudike : Writing – review & editing, Resources, Methodology, Investigation. Chima Chinedu Ugwuegbu : Writing – review & editing, Resources, Investigation. Justus Uchenna Anaele : Writing – review & editing, Resources. Innocent Okechi Arukalam c : Methodology development. Maxwell Ikenna Chikwue: Physicochemical analysis. Agha Inya Ndukwe : Technical editorial and typesetting. Chukwuzubelu Okenwa Ufodike : Projection administration, general supervision and English Language editing. Funding No form of funding was received for this study. Data availability Data would be made available on reasonable request from the corresponding author Ethical approval The manuscript was written in total compliance with ethical standards. Consent to participate All the authors willingly consented to participate in this study. Consent to publish All the authors approved this manuscript for publication in the of journal Environmental Science and Pollution Research Competing interests The authors hereby declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper. 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Cite Share Download PDF Status: Published Journal Publication published 29 Jan, 2026 Read the published version in Environmental Science and Pollution Research → Version 1 posted Editorial decision: Major Revision 22 Sep, 2025 Reviewers agreed at journal 22 Jul, 2025 Reviewers invited by journal 07 Jul, 2025 Editor assigned by journal 11 Jun, 2025 First submitted to journal 09 Jun, 2025 You are reading this latest preprint version Research Square lets you share your work early, gain feedback from the community, and start making changes to your manuscript prior to peer review in a journal. As a division of Research Square Company, we’re committed to making research communication faster, fairer, and more useful. We do this by developing innovative software and high quality services for the global research community. Our growing team is made up of researchers and industry professionals working together to solve the most critical problems facing scientific publishing. Also discoverable on Platform About Our Team In Review Editorial Policies Advisory Board Help Center Resources Author Services Accessibility API Access RSS feed Manage Cookie Preferences © Research Square 2026 | ISSN 2693-5015 (online) Privacy Policy Terms of Service Do Not Sell My Personal Information {"props":{"pageProps":{"initialData":{"identity":"rs-6803827","acceptedTermsAndConditions":true,"allowDirectSubmit":false,"archivedVersions":[],"articleType":"Research Article","associatedPublications":[],"authors":[{"id":481701445,"identity":"be7afa2f-95bb-4040-85c1-07eb4d277556","order_by":0,"name":"Chijioke Peter 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B\u003csub\u003e4\u003c/sub\u003e (c) C\u003csub\u003e4\u003c/sub\u003e (d) D\u003csub\u003e4\u003c/sub\u003e (e) E\u003csub\u003e4\u003c/sub\u003e\u003c/p\u003e","description":"","filename":"4.jpg","url":"https://assets-eu.researchsquare.com/files/rs-6803827/v1/f236c18322e7d5f117071383.jpg"},{"id":86311989,"identity":"a7c26c97-972f-44fd-98ab-d8f750af930a","added_by":"auto","created_at":"2025-07-09 08:17:38","extension":"jpg","order_by":5,"title":"Figure 5","display":"","copyAsset":false,"role":"figure","size":59894,"visible":true,"origin":"","legend":"\u003cp\u003ePhysical properties of the samples (a) apparent porosity (b) apparent density (c) bulk density (d) water absorption\u003c/p\u003e","description":"","filename":"5.jpg","url":"https://assets-eu.researchsquare.com/files/rs-6803827/v1/ba94af1831265a221988db54.jpg"},{"id":86313175,"identity":"f582081c-fbac-4e4b-b022-4c9dcc86f636","added_by":"auto","created_at":"2025-07-09 08:25:38","extension":"jpg","order_by":6,"title":"Figure 6","display":"","copyAsset":false,"role":"figure","size":55590,"visible":true,"origin":"","legend":"\u003cp\u003eMechanical properties of the samples (a) impact energy (b) impact strength (c) modulus of rupture (d) compressive strength\u003c/p\u003e","description":"","filename":"6.jpg","url":"https://assets-eu.researchsquare.com/files/rs-6803827/v1/b0f07f3c6bafdff19cd86242.jpg"},{"id":101690817,"identity":"9571ea31-b91f-47b2-8aa0-6388b33ffa80","added_by":"auto","created_at":"2026-02-02 16:09:26","extension":"pdf","order_by":0,"title":"","display":"","copyAsset":false,"role":"manuscript-pdf","size":1581029,"visible":true,"origin":"","legend":"","description":"","filename":"manuscript.pdf","url":"https://assets-eu.researchsquare.com/files/rs-6803827/v1/856af4ae-24db-4194-a0b5-b0f2dd453565.pdf"}],"financialInterests":"","formattedTitle":"Strengthening of Agbani clay with granite and characterization of their properties and toxicity for applications as construction materials in building services","fulltext":[{"header":"1 Introduction","content":"\u003cp\u003eCeramic composites represent very important group of traditional and advanced engineering materials that have applications ranging from thermal and electrical insulators, paint production, catalysis, building services and so many other applications. These applications are directly tied to the characteristics of the various clay deposits such as high thermal stability, adequate mechanical strength and resistance to chemical attack. The desired properties of clays stemmed from their intrinsic chemical bonding which constitute mixtures of covalent and ionic bonds. Clay minerals are naturally occurring abundant materials that have withstand several weathering conditions such as high temperature and humidity which make them metamorphosed into several ceramic composite materials. As we transverse across different regions of the earth, there is a gradual compositional and mineralogical gradient in the clay minerals. This makes them to be efficient in some specific applications and poor in so many others. Therefore, it is necessary to first characterize the properties of the clay minerals and evaluate their performance for specific and general applications.\u003c/p\u003e\u003cp\u003eSeveral studies have presented different combined experimental techniques for the characterization of various clay minerals (Egole et al. \u003cspan citationid=\"CR6\" class=\"CitationRef\"\u003e2024\u003c/span\u003e, Egole et al. \u003cspan citationid=\"CR6\" class=\"CitationRef\"\u003e2024\u003c/span\u003e, Chenga and Heidarib \u003cspan citationid=\"CR3\" class=\"CitationRef\"\u003e2017\u003c/span\u003e, Shuaib-Babata et al. \u003cspan citationid=\"CR31\" class=\"CitationRef\"\u003e2018\u003c/span\u003e, Garcia-Valles et al. \u003cspan citationid=\"CR9\" class=\"CitationRef\"\u003e2020\u003c/span\u003e, Funmilayo et al. \u003cspan citationid=\"CR8\" class=\"CitationRef\"\u003e2020\u003c/span\u003e, Ihekweme et al. \u003cspan citationid=\"CR10\" class=\"CitationRef\"\u003e2020\u003c/span\u003e, Kagonb\u0026eacute; et al. \u003cspan citationid=\"CR12\" class=\"CitationRef\"\u003e2021\u003c/span\u003e, Yan et al. \u003cspan citationid=\"CR33\" class=\"CitationRef\"\u003e2021\u003c/span\u003e, Rat et al. \u003cspan citationid=\"CR30\" class=\"CitationRef\"\u003e2023\u003c/span\u003e, Kostova et al. \u003cspan citationid=\"CR17\" class=\"CitationRef\"\u003e2023\u003c/span\u003e). Egole et al. (\u003cspan citationid=\"CR6\" class=\"CitationRef\"\u003e2024\u003c/span\u003e) used quartz and feldspar to blend two clay deposits and evaluated their performances for building services and refractory applications. The results of the various tests suggested that blending clays with quartz and felspar improved thermal stability and mechanical strengths and therefore suitable for applications in building services and refractory linings. In a related study, the same authors (Egole et al. \u003cspan citationid=\"CR6\" class=\"CitationRef\"\u003e2024\u003c/span\u003e) blended quartz and feldspar and evaluated their performances in thermal and structural applications. Results obtained from thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC) analysis confirmed the clay samples to be highly thermally stable. From their various results, it could be inferred that the clay sample is suited for thermal insulation and structural applications. Chenga and Heidarib (\u003cspan citationid=\"CR3\" class=\"CitationRef\"\u003e2017\u003c/span\u003e) combined interpretation of NMR and TGA measurements to quantify the impact of relative humidity on hydration of clay minerals. Shuaib-Babata et al. (\u003cspan citationid=\"CR31\" class=\"CitationRef\"\u003e2018\u003c/span\u003e) characterized clays in Baruten local government area of kwara state (Nigeria) fireclays as suitable refractory materials. Garcia et al. (2020) characterized the thermal and mineralogical properties of the Terra Alta clay deposit and evaluated its possible applications. It was discovered that the clay contains some elements which enhance coloration and therefore prevent them from being used as raw materials for white ceramics. Funmilayo et al. (\u003cspan citationid=\"CR8\" class=\"CitationRef\"\u003e2020\u003c/span\u003e) characterized raw and thermally treated Nigerian clays using experimental methods. Their results suggest that the clay deposit could be used as a partial replacement for cementitious materials in the building and construction industry. Ihekweme et al. (\u003cspan citationid=\"CR10\" class=\"CitationRef\"\u003e2020\u003c/span\u003e) characterized some Nigerian clay minerals for applications in water purification and industrial purposes. Kagonb\u0026eacute; et al. (\u003cspan citationid=\"CR12\" class=\"CitationRef\"\u003e2021\u003c/span\u003e) considered mineralogical, geochemical and physicochemical characterization of clay raw materials from three clay deposits in northern Cameroon. Yan et al. (\u003cspan citationid=\"CR33\" class=\"CitationRef\"\u003e2021\u003c/span\u003e) applied a new FTIR method for estimating the firing temperature of ceramic bronze-casting moulds. Rat et al. (\u003cspan citationid=\"CR30\" class=\"CitationRef\"\u003e2023\u003c/span\u003e) characterized thermal and ceramic properties of clays from Alhabia. Kostova et al. (\u003cspan citationid=\"CR17\" class=\"CitationRef\"\u003e2023\u003c/span\u003e) determined raw material and production technology using chemical, phase, and thermal analyses. Their results indicated that clay type cannot be determined by one method alone. Therefore, a combination of different analyses is required for the accurate identification of minerals present in clay deposits.\u003c/p\u003e\u003cp\u003eSeveral studies (Lingling et al. \u003cspan citationid=\"CR18\" class=\"CitationRef\"\u003e2005\u003c/span\u003e, Andrewsa et al. \u003cspan citationid=\"CR1\" class=\"CitationRef\"\u003e2013\u003c/span\u003e, Kazmi et al. \u003cspan citationid=\"CR13\" class=\"CitationRef\"\u003e2016\u003c/span\u003e, Phonphuak et al. \u003cspan citationid=\"CR28\" class=\"CitationRef\"\u003e2016\u003c/span\u003e, Phonphuak and Chindaprasirt \u003cspan citationid=\"CR29\" class=\"CitationRef\"\u003e2018\u003c/span\u003e, Njindam et al. \u003cspan citationid=\"CR25\" class=\"CitationRef\"\u003e2018\u003c/span\u003e, Esmeray and Atis \u003cspan citationid=\"CR7\" class=\"CitationRef\"\u003e2019\u003c/span\u003e, Mao et al. \u003cspan citationid=\"CR20\" class=\"CitationRef\"\u003e2019\u003c/span\u003e, Sutcu et al. \u003cspan citationid=\"CR32\" class=\"CitationRef\"\u003e2019\u003c/span\u003e, Mao et al. \u003cspan citationid=\"CR21\" class=\"CitationRef\"\u003e2020\u003c/span\u003e, Khitab et al. \u003cspan citationid=\"CR14\" class=\"CitationRef\"\u003e2021\u003c/span\u003e, Chindaprasirt et al. \u003cspan citationid=\"CR4\" class=\"CitationRef\"\u003e2021\u003c/span\u003e) have been dedicated to the reinforcement of clay minerals with various materials to improve target performance. The expected enhancement could be in form of thermal stability by nucleation of refractory phases, improved compressive strength, better plasticity index and desired physical properties. Lingling et al. (\u003cspan citationid=\"CR18\" class=\"CitationRef\"\u003e2005\u003c/span\u003e) presented a study that used high volume ratio of fly ash to replace clay as a raw material in the production fired bricks. Andrewsa et al. (\u003cspan citationid=\"CR1\" class=\"CitationRef\"\u003e2013\u003c/span\u003e) Developed fireclay aluminosilicate refractory from lithomargic clay deposits. Kazmi et al. (\u003cspan citationid=\"CR13\" class=\"CitationRef\"\u003e2016\u003c/span\u003e) manufactured sustainable clay bricks utilizing waste sugarcane bagasse and rice husk ashes. The study observed that incorporating these materials into clay exhibited lower compressive strength. Phonphuak et al. (\u003cspan citationid=\"CR28\" class=\"CitationRef\"\u003e2016\u003c/span\u003e) utilized waste glass to enhance physical and mechanical properties of clay brick. Phonphuak and Chindaprasirt (\u003cspan citationid=\"CR29\" class=\"CitationRef\"\u003e2018\u003c/span\u003e) Utilized sugarcane bagasse ash to improve properties of fired clay brick. Njindam et al. (\u003cspan citationid=\"CR25\" class=\"CitationRef\"\u003e2018\u003c/span\u003e) studied the effect of powder on the technological and microstructure of clay mixture for porcelain stoneware tiles manufacture. The experimental results revealed that waste glass contributes to improve physical-mechanical properties of clay samples. Esmeray and Atis (\u003cspan citationid=\"CR7\" class=\"CitationRef\"\u003e2019\u003c/span\u003e) utilized sewage sludge, oven glass and fly ash in clay brick production. Mao et al. (\u003cspan citationid=\"CR20\" class=\"CitationRef\"\u003e2019\u003c/span\u003e) considered the reuse of waste glass for enhancement of heavy metals immobilization during the introduction of galvanized sludge in brick manufacturing. They discovered that the introduction of waste glass enhanced the physical and mechanical performances of fired clay bricks and resulted in an increase in bulk density and compressive strength and a decrease in water absorption. Sutcu et al. (\u003cspan citationid=\"CR32\" class=\"CitationRef\"\u003e2019\u003c/span\u003e) recycled bottom ash and fly ash wastes in eco-friendly clay brick production. Mao et al. (\u003cspan citationid=\"CR21\" class=\"CitationRef\"\u003e2020\u003c/span\u003e) investigated the effects of waste glass particle size on improving the property and environmental safety of fired bricks containing electroplating sludge. Khitab et al. (\u003cspan citationid=\"CR14\" class=\"CitationRef\"\u003e2021\u003c/span\u003e) manufactured clayey bricks by synergistic use of waste brick and ceramic powders as partial replacement of clay. Their findings suggested that 27% of clays can be replaced with ceramic waste powder and waste brick powder. Chindaprasirt et al. (\u003cspan citationid=\"CR4\" class=\"CitationRef\"\u003e2021\u003c/span\u003e) considered synergistic effect of fly ash and glass cullet additive on the properties of fire clay bricks. They summarized that the blending of clay with fly ash improved strength through increase of SiO\u003csub\u003e2\u003c/sub\u003e, Al\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e and MgO while glass cullet additive acted as a flux and in fusion bonding between the clay and glassy phase.\u003c/p\u003e\u003cp\u003eThe need for the development of environmentally friendly and sustainable construction materials has continued to evolve in various forms. Blending clays with various additives has sufficiently improved the overall properties of clays in terms of thermal stability, mechanical strength and physical behaviour. However, the issue of public safety concerns due to blending of clay with additives has not been adequately addressed. This is necessary to achieve the 2015 United Nation\u0026rsquo;s projection for 2030 sustainable development goals (SDGs). Evaluation of toxic substances in clay composites is critically necessary to maintain sustainable construction materials for applications in building services. Limited research (Kortei et al. \u003cspan citationid=\"CR16\" class=\"CitationRef\"\u003e2020\u003c/span\u003e, Mouri et al. \u003cspan citationid=\"CR24\" class=\"CitationRef\"\u003e2023\u003c/span\u003e, Orisakwe et al. \u003cspan citationid=\"CR26\" class=\"CitationRef\"\u003e2020\u003c/span\u003e, Malebatja et al. \u003cspan citationid=\"CR19\" class=\"CitationRef\"\u003e2024\u003c/span\u003e) have studied the presence of heavy metals and toxic substances such as arsenic, chloride, lead, mercury and phosphates in clays. When used as construction materials such as building bricks, roof tiles, floor tiles and surface coating bricks, these materials can leach out the toxic materials into the immediate vicinity of the environment and can gradually be dispersed everywhere. These substances hugely affect mostly pregnant women and children. Aquatic life is not spared as traces of these toxic materials are carried through flooding into rivers. The presence of toxic heavy metals when diffused into the water can affect the oxygen level inside the water which in turn affects the lives of aquatic animals. Life can as well be affected by the consumption of water or animals with an overdose of heavy toxic metals. The occurrence of death for both the mother and the child has been associated with toxic clay substances (Kortei et al. \u003cspan citationid=\"CR16\" class=\"CitationRef\"\u003e2020\u003c/span\u003e). Orisakwe et al. (\u003cspan citationid=\"CR26\" class=\"CitationRef\"\u003e2020\u003c/span\u003e) investigated the cadmium and lead in geophagic clay consumed in Southern Nigeria: Health risk from such traditional nutraceutical The consumption of clay soil with a high arsenic content could lead to the development of abdominal pains, numbness, vomiting, diarrhoea, headaches, and muscular pains (Malebatja et al. \u003cspan citationid=\"CR19\" class=\"CitationRef\"\u003e2024\u003c/span\u003e) and arsenic levels of up to 4mg/kg could pose serious health risks.\u003c/p\u003e\u003cp\u003eThe objective of the current study is to reinforce one of the abundant Nigerian clays with granite and characterize their properties and the presence of toxic materials. For all the similar studies reviewed above for the development of structural and construction materials, environmental safety and toxicity from such building applications were not considered. This is necessitated by the need to locally develop sustainable and environmentally friendly construction materials from affordable natural raw materials. This has the potential to address the acute housing deficit among the Nigerian working population and maintain healthy environment.\u003c/p\u003e"},{"header":"2 Materials and Methods","content":"\u003cdiv id=\"Sec3\" class=\"Section2\"\u003e\u003ch2\u003e2.1 Materials\u003c/h2\u003e\u003cp\u003eNigeria has large deposits of untapped clay materials across different geographical locations. Some of which have been characterized for various applications. However, evaluation of the toxic substances in those clay composites and their effect on the environment has not gained sufficient attention. The clay samples used for this study are mined from within the premises of Enugu State University of Science and Technology Agbani Campus, Nigeria. Granite stones were collected from Amasiri quarry site in Afikpo, Ebonyi State, Nigeria. Other materials include water, plastic buckets, jaw crusher, ball mill, slab compaction machine, sieve screens, gas kiln, digital weighing balance, X-Ray florescence (XRF), X-Ray diffraction machine (XRD), vernier calliper, oven dryer, strength testing machines, standard rammer, hydraulic press, rectangular wooden mould, test desiccators, porcelain crucible, atomic absorption spectrophotometer, beaker and knife. The processed clay samples and the granite reinforcement were then used to formulate five batches, according to the composition shown in Table\u0026nbsp;\u003cspan refid=\"Tab1\" class=\"InternalRef\"\u003e1\u003c/span\u003e.\u003c/p\u003e\u003cp\u003e\u003cdiv class=\"gridtable\"\u003e\u003ctable float=\"Yes\" id=\"Tab1\" border=\"1\"\u003e\u003ccaption language=\"En\"\u003e\u003cdiv class=\"CaptionNumber\"\u003eTable 1\u003c/div\u003e\u003cdiv class=\"CaptionContent\"\u003e\u003cp\u003eDifferent composition of the clay and granite samples\u003c/p\u003e\u003c/div\u003e\u003c/caption\u003e\u003ccolgroup cols=\"3\"\u003e\u003cdiv align=\"left\" class=\"colspec\" colname=\"c1\" colnum=\"1\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c2\" colnum=\"2\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c3\" colnum=\"3\"\u003e\u003c/div\u003e\u003cthead\u003e\u003ctr\u003e\u003cth align=\"left\" colname=\"c1\"\u003e\u003cp\u003eBatch Number\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c2\"\u003e\u003cp\u003eAgbani Clay (%)\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c3\"\u003e\u003cp\u003eGranite (%)\u003c/p\u003e\u003c/th\u003e\u003c/tr\u003e\u003c/thead\u003e\u003ctbody\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eA\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e100\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eB\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e95\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e5\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eC\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e90\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e10\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eD\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e85\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e15\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eE\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e80\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e20\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003c/tbody\u003e\u003c/colgroup\u003e\u003c/table\u003e\u003c/div\u003e\u003c/p\u003e\u003cp\u003eSub-batches were designated for the corresponding firing temperatures, which include A\u003csub\u003e1\u003c/sub\u003e, B\u003csub\u003e1\u003c/sub\u003e, C\u003csub\u003e1\u003c/sub\u003e, D\u003csub\u003e1\u003c/sub\u003e and E\u003csub\u003e1\u003c/sub\u003e, for samples fired at 900\u0026deg;C, A\u003csub\u003e2\u003c/sub\u003e, B\u003csub\u003e2\u003c/sub\u003e, C\u003csub\u003e2\u003c/sub\u003e, D\u003csub\u003e2\u003c/sub\u003e and E\u003csub\u003e2\u003c/sub\u003e, for samples fired at 1000\u0026deg;C, A\u003csub\u003e3\u003c/sub\u003e, B\u003csub\u003e3\u003c/sub\u003e, C\u003csub\u003e3\u003c/sub\u003e, D\u003csub\u003e3\u003c/sub\u003e and E\u003csub\u003e3\u003c/sub\u003e, for samples fired a 1100\u0026deg;C, A\u003csub\u003e4\u003c/sub\u003e, B\u003csub\u003e4\u003c/sub\u003e, C\u003csub\u003e4\u003c/sub\u003e, D\u003csub\u003e4\u003c/sub\u003e and E\u003csub\u003e4\u003c/sub\u003e, for samples fired at 1200\u0026deg;C while A\u003csub\u003e0\u003c/sub\u003e, B\u003csub\u003e0\u003c/sub\u003e, C\u003csub\u003e0\u003c/sub\u003e, D\u003csub\u003e0\u003c/sub\u003e and E\u003csub\u003e0\u003c/sub\u003e unfired clay composites at room temperature.\u003c/p\u003e\u003c/div\u003e\u003cdiv id=\"Sec4\" class=\"Section2\"\u003e\u003ch2\u003e2.2 Experimental Method\u003c/h2\u003e\u003cp\u003eThe procedures and details of sample preparation, XRD, XRF, and physical properties are similar to those presented in the previous studies by the authors (Egole et al. \u003cspan citationid=\"CR6\" class=\"CitationRef\"\u003e2024\u003c/span\u003e and Egole et al. \u003cspan citationid=\"CR6\" class=\"CitationRef\"\u003e2024\u003c/span\u003e). For the cold-crushing strength, fired cubic test pieces were measured to determine the dimensions of the test piece. Each test piece was then placed on the sample holder of the hydraulic compressive strength test machine. A steady uniaxial compressive load was then applied through the handle of the machine, until failure and the load at failure was recorded. Compressive strength was then calculated according to previous study (Osonwa et al. \u003cspan citationid=\"CR27\" class=\"CitationRef\"\u003e2018\u003c/span\u003e) For the impact test, the impact test specimen had a dimension of 75 mm x 10 mm x 10 mm. A 2 mm deep notch was cut out at 22 mm from one end at an angle of 45\u0026deg;. The specimen was held vertically in the vice of the impact test machine and the striking hammer was released from an angle of 45\u0026deg; (ɑ), to strike and break the specimen from the notched face. The angle of rise of the hammer, after breaking the specimen was recorded as (β). The initial height H of the hammer was also recorded as well as the height h after breaking the specimen. The impact energy and impact strength were calculated using the same procedures of previous research (Khurmi and Sedha \u003cspan citationid=\"CR15\" class=\"CitationRef\"\u003e2009\u003c/span\u003e). The Atterberg plastic limit is the lowest water content (expressed in mass percent of the clay dried at 120\u0026deg;C) at which the body can be rolled into threads without breaking and the details can be found in Bergaya et al. (\u003cspan citationid=\"CR2\" class=\"CitationRef\"\u003e2006\u003c/span\u003e). The Atterberg liquid limit is the water content at which the body begins to flow, using a specific apparatus usually a Casagrande cup. The difference between both values is called the plasticity (or plastic) index. The liquid and plastic limits define the transitions between liquid and plastic behaviour. The Atterbeig limits of the clay samples and the other batches were determined according to the ASTM D4318-10 standard (2010). A small quantity of the batch sample was then wet with water until it became plastic. The mix was rolled on a glass plate with the hand into a thread of about 1.3mm in diameter until the thread showed signs of crumbling. The rolled clay was weighed and then dried in an oven at 120\u0026deg;C, after which the moisture content was determined, as described by Irabo and Okunkpolor (2020). This process was repeated for three times and the average moisture content was determined and reported. The values obtained were recorded as plastic limit. The plasticity index of the batches was then calculated as Liquid limit (%) \u0026ndash; Plastic limit (%).\u003c/p\u003e\u003cp\u003ePhysicochemical analysis was carried out to evaluate the toxic level in the construction materials developed in this research. Heavy metals and deleterious substances such as arsenic, chloride, lead, mercury and phosphates are evaluated in this analysis. Certain reagents such as silver nitrate (AgNO\u003csub\u003e3\u003c/sub\u003e) solution (0.01 M), potassium chloride (KCl) solution (0.01 M) for standardization, Nitric acid (HNO\u003csub\u003e3\u003c/sub\u003e) solution (1 M), ammonium molybdate solution (0.5 M), ascorbic acid solution (0.1 M) and sulfuric acid solution (1 M) are used in laboratory beakers according to standard procedure.\u003c/p\u003e\u003c/div\u003e"},{"header":"3 Results and discussion","content":"\u003cdiv id=\"Sec6\" class=\"Section2\"\u003e\u003ch2\u003e3.1 Chemical analysis\u003c/h2\u003e\u003cp\u003eXRF technique was used to characterize the chemical composition of the blended clay composites. The chemical composition results of the granite-reinforced clay samples at room temperature and the batch fired at maximum temperature of 1200 \u003csup\u003e0\u003c/sup\u003eC are shown in Table\u0026nbsp;\u003cspan refid=\"Tab2\" class=\"InternalRef\"\u003e2\u003c/span\u003e and Table\u0026nbsp;\u003cspan refid=\"Tab3\" class=\"InternalRef\"\u003e3\u003c/span\u003e respectively\u003c/p\u003e\u003cp\u003e\u003cdiv class=\"gridtable\"\u003e\u003ctable float=\"Yes\" id=\"Tab2\" border=\"1\"\u003e\u003ccaption language=\"En\"\u003e\u003cdiv class=\"CaptionNumber\"\u003eTable 2\u003c/div\u003e\u003cdiv class=\"CaptionContent\"\u003e\u003cp\u003eSummary of XRF results of the sample batches at room temperature\u003c/p\u003e\u003c/div\u003e\u003c/caption\u003e\u003ccolgroup cols=\"6\"\u003e\u003cdiv align=\"left\" class=\"colspec\" colname=\"c1\" colnum=\"1\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c2\" colnum=\"2\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c3\" colnum=\"3\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c4\" colnum=\"4\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c5\" colnum=\"5\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c6\" colnum=\"6\"\u003e\u003c/div\u003e\u003cthead\u003e\u003ctr\u003e\u003cth align=\"left\" colname=\"c1\"\u003e\u003cp\u003eOxides\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c2\"\u003e\u003cp\u003eSample A\u003csub\u003eO\u003c/sub\u003e\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c3\"\u003e\u003cp\u003eSample B\u003csub\u003eO\u003c/sub\u003e\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c4\"\u003e\u003cp\u003eSample C\u003csub\u003eO\u003c/sub\u003e\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c5\"\u003e\u003cp\u003eSample D\u003csub\u003eO\u003c/sub\u003e\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c6\"\u003e\u003cp\u003eSample E\u003csub\u003eO\u003c/sub\u003e\u003c/p\u003e\u003c/th\u003e\u003c/tr\u003e\u003c/thead\u003e\u003ctbody\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eSiO\u003csub\u003e2\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e50.331\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e47.642\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e50.05\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e52.384\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e51.542\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eV\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e5\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.148\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.183\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.150\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.148\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.144\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eCr\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.027\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.027\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.017\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.036\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.044\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eMnO\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.071\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.104\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.090\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.083\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.095\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eFe\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e15.661\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e19.778\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e15.835\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e15.789\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e15.295\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eCO\u003csub\u003e3\u003c/sub\u003eO\u003csub\u003e4\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.052\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.066\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.067\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.057\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.059\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eNiO\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.006\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.009\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.006\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.007\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.008\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eCuO\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.042\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.072\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.053\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.043\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.043\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eNb\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.012\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.030\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.005\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.015\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.009\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eSO\u003csub\u003e3\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.463\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.495\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.899\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.267\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.460\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eCaO\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.459\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e2.441\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e1.319\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e2.721\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e1.957\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eK\u003csub\u003e2\u003c/sub\u003eO\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.079\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e1.326\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e1.129\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e1.237\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e1.122\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eAl\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e28.230\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e23.496\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e27.013\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e24.139\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e26.276\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eTa\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e5\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.027\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.029\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.025\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.010\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.033\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eTiO\u003csub\u003e2\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e2.270\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e2.713\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e2.233\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e2.231\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e2.109\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eZnO\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.010\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.012\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.014\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.011\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.008\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eZrO\u003csub\u003e2\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.215\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.031\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.179\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.167\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.165\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eSiO\u003csub\u003e2\u003c/sub\u003e/Al2O\u003csub\u003e3\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e1.78\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e2.03\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e1.85\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e2.16\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e1.962\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eAl\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e/Fe\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e1.81\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e4.999\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e1.71\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e1.528\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e1.72\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003c/tbody\u003e\u003c/colgroup\u003e\u003c/table\u003e\u003c/div\u003e\u003c/p\u003e\u003cp\u003e\u003cdiv class=\"gridtable\"\u003e\u003ctable float=\"Yes\" id=\"Tab3\" border=\"1\"\u003e\u003ccaption language=\"En\"\u003e\u003cdiv class=\"CaptionNumber\"\u003eTable 3\u003c/div\u003e\u003cdiv class=\"CaptionContent\"\u003e\u003cp\u003eSummary of X-ray fluorescence spectroscopy of the sample batches fired at 1200\u0026deg;C\u003c/p\u003e\u003c/div\u003e\u003c/caption\u003e\u003ccolgroup cols=\"6\"\u003e\u003cdiv align=\"left\" class=\"colspec\" colname=\"c1\" colnum=\"1\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c2\" colnum=\"2\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c3\" colnum=\"3\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c4\" colnum=\"4\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c5\" colnum=\"5\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c6\" colnum=\"6\"\u003e\u003c/div\u003e\u003cthead\u003e\u003ctr\u003e\u003cth align=\"left\" colname=\"c1\"\u003e\u003cp\u003eOxides\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c2\"\u003e\u003cp\u003eSample A\u003csub\u003e4\u003c/sub\u003e\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c3\"\u003e\u003cp\u003eSample B\u003csub\u003e4\u003c/sub\u003e\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c4\"\u003e\u003cp\u003eSample C\u003csub\u003e4\u003c/sub\u003e\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c5\"\u003e\u003cp\u003eSample D\u003csub\u003e4\u003c/sub\u003e\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c6\"\u003e\u003cp\u003eSample E\u003csub\u003e4\u003c/sub\u003e\u003c/p\u003e\u003c/th\u003e\u003c/tr\u003e\u003c/thead\u003e\u003ctbody\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eSiO\u003csub\u003e2\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e71.09\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e69.998\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e68.605\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e67.081\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e64.750\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eV\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e5\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.102\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.097\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.087\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.086\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.096\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eCr\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.064\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.053\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.062\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.059\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.038\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eMnO\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.059\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.063\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.064\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.069\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.073\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eFe\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e9.595\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e10.114\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e9.863\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e10.247\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e11.077\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eCo\u003csub\u003e3\u003c/sub\u003eO\u003csub\u003e4\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.035\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.044\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.039\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.020\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.035\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eNiO\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.007\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.004\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.004\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.009\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.007\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eCuO\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.049\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.043\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.041\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.043\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.041\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eNb\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.016\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.010\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.014\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.005\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.004\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eSO\u003csub\u003e3\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.266\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.339\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.696\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.423\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.291\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eCaO\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.314\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e1.175\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e1.848\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e2.390\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e2.623\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eK\u003csub\u003e2\u003c/sub\u003eO\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e1.021\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e1.053\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.995\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.958\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.971\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eAl\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e14.868\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e14.730\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e14.565\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e16.285\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e17.107\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eTa\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e5\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.053\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.036\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.024\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.037\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.027\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eTiO\u003csub\u003e2\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e1.536\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e1.379\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e1.341\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e1.397\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e1.691\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eZnO\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.005\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.005\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.019\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.003\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.007\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eZrO\u003csub\u003e2\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e0.143\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e0.147\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e0.130\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e0.095\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e0.108\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eSiO\u003csub\u003e2\u003c/sub\u003e/Al2O\u003csub\u003e3\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e4.78\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e4.75\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e4.71\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e4.112\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e3.79\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eAl\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e/Fe\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e1.55\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e1.46\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e1.47\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e1.60\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e1.710\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003c/tbody\u003e\u003c/colgroup\u003e\u003c/table\u003e\u003c/div\u003e\u003c/p\u003e\u003cp\u003eCompositional analysis in Table\u0026nbsp;\u003cspan refid=\"Tab2\" class=\"InternalRef\"\u003e2\u003c/span\u003e and Table\u0026nbsp;\u003cspan refid=\"Tab3\" class=\"InternalRef\"\u003e3\u003c/span\u003e show that the major oxides found in the unfired and fired clays are silica, alumina and haematite. Titanium oxide is found in significantly minor concentration for all the samples. Other oxides appear in trace amounts for both fired and unfired clays except for CaO and K\u003csub\u003e2\u003c/sub\u003eO which tend to increase with the increase in granite reinforcement and firing at elevated temperature. Generally, the clay mineral can be classified as aluminosilicate group of clay minerals. The compositional analyses as seen in Tables\u0026nbsp;\u003cspan refid=\"Tab2\" class=\"InternalRef\"\u003e2\u003c/span\u003e and \u003cspan refid=\"Tab3\" class=\"InternalRef\"\u003e3\u003c/span\u003e are similar to those presented previously by the current researchers (Egole et al. \u003cspan citationid=\"CR6\" class=\"CitationRef\"\u003e2024\u003c/span\u003e, Egole et al. \u003cspan citationid=\"CR6\" class=\"CitationRef\"\u003e2024\u003c/span\u003e) as they characterize the applications of the clays for structural and refractory services. However, it can be observed that blending of the clay deposit with granite significantly affected the overall composition of the major oxides. A careful comparison between unfired and fired clays in Table\u0026nbsp;\u003cspan refid=\"Tab2\" class=\"InternalRef\"\u003e2\u003c/span\u003e and Table\u0026nbsp;\u003cspan refid=\"Tab3\" class=\"InternalRef\"\u003e3\u003c/span\u003e respectively suggests an increment in silica and a serious decrease in alumina and haematite (Al\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e\u0026amp; Fe\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e). This is expected to influence the mineralogical contents of the fired clay samples. It can be seen from Tables\u0026nbsp;\u003cspan refid=\"Tab2\" class=\"InternalRef\"\u003e2\u003c/span\u003e and \u003cspan refid=\"Tab3\" class=\"InternalRef\"\u003e3\u003c/span\u003e that the addition of granite to Agbani clay increased the amount of silica present in the sample while lowering the amount of alumina and hamaetite. The amount of flux oxides such as potassium oxide in the sample was also increased with the addition of granite to the sample. It can be observed that the weight concentrations of the major oxides altered after the clay has been fired at 1200\u0026deg;C. This can be explained from the possible densification, vitrification and volatilization of some of the constituents of the clay during firing. This can as well be attributed to the formation of new high temperature phases such as mullite. Some of the alumina originally present in the unfired samples was converted to mullite during the sintering process.\u003c/p\u003e\u003c/div\u003e\u003cdiv id=\"Sec7\" class=\"Section2\"\u003e\u003ch2\u003e3.2 Mineralogical composition\u003c/h2\u003e\u003cp\u003eTable\u0026nbsp;\u003cspan refid=\"Tab4\" class=\"InternalRef\"\u003e4\u003c/span\u003e and Table\u0026nbsp;\u003cspan refid=\"Tab5\" class=\"InternalRef\"\u003e5\u003c/span\u003e show the quantitative mineralogical composition of the samples of the clay composites for the unfired and the ones fired at the temperature of 1200\u0026deg;C respectively. For all the samples considered at room temperature, the major minerals detected by the XRD technique are quartz, orthoclase, kaolinite and albite as seen in Table\u0026nbsp;\u003cspan refid=\"Tab4\" class=\"InternalRef\"\u003e4\u003c/span\u003e. Firing the same materials to a temperature of 1200\u0026deg;C and holding for some time resulted in a significant compositional variation as suggested in Table\u0026nbsp;\u003cspan refid=\"Tab5\" class=\"InternalRef\"\u003e5\u003c/span\u003e.\u003c/p\u003e\u003cp\u003e\u003cdiv class=\"gridtable\"\u003e\u003ctable float=\"Yes\" id=\"Tab4\" border=\"1\"\u003e\u003ccaption language=\"En\"\u003e\u003cdiv class=\"CaptionNumber\"\u003eTable 4\u003c/div\u003e\u003cdiv class=\"CaptionContent\"\u003e\u003cp\u003eQuantitative mineralogical composition of the sample batches at room temperature\u003c/p\u003e\u003c/div\u003e\u003c/caption\u003e\u003ccolgroup cols=\"6\"\u003e\u003cdiv align=\"left\" class=\"colspec\" colname=\"c1\" colnum=\"1\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c2\" colnum=\"2\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c3\" colnum=\"3\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c4\" colnum=\"4\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c5\" colnum=\"5\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c6\" colnum=\"6\"\u003e\u003c/div\u003e\u003cthead\u003e\u003ctr\u003e\u003cth align=\"left\" colname=\"c1\"\u003e\u003cp\u003eMineral\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c2\"\u003e\u003cp\u003eSample A\u003csub\u003e0\u003c/sub\u003e%\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c3\"\u003e\u003cp\u003eSample B\u003csub\u003e0\u003c/sub\u003e%\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c4\"\u003e\u003cp\u003eSample C\u003csub\u003e0\u003c/sub\u003e%\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c5\"\u003e\u003cp\u003eSample D\u003csub\u003e0\u003c/sub\u003e%\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c6\"\u003e\u003cp\u003eSample E\u003csub\u003e0\u003c/sub\u003e%\u003c/p\u003e\u003c/th\u003e\u003c/tr\u003e\u003c/thead\u003e\u003ctbody\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eQuartz\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e67.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e83.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e70.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e65.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e73.00\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eOrthoclase\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e03.40\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e01.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e03.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e12.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e11.00\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eKaolinite\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e21.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e02.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e19.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e22.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e10.00\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eAlbite\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e09.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e14.10\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e09.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e02.30\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e06.10\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003c/tbody\u003e\u003c/colgroup\u003e\u003c/table\u003e\u003c/div\u003e\u003c/p\u003e\u003cp\u003e\u003cdiv class=\"gridtable\"\u003e\u003ctable float=\"Yes\" id=\"Tab5\" border=\"1\"\u003e\u003ccaption language=\"En\"\u003e\u003cdiv class=\"CaptionNumber\"\u003eTable 5\u003c/div\u003e\u003cdiv class=\"CaptionContent\"\u003e\u003cp\u003eQuantitative mineralogical composition of the sample batches fired at 1200\u0026deg;C\u003c/p\u003e\u003c/div\u003e\u003c/caption\u003e\u003ccolgroup cols=\"6\"\u003e\u003cdiv align=\"left\" class=\"colspec\" colname=\"c1\" colnum=\"1\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c2\" colnum=\"2\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c3\" colnum=\"3\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c4\" colnum=\"4\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c5\" colnum=\"5\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c6\" colnum=\"6\"\u003e\u003c/div\u003e\u003cthead\u003e\u003ctr\u003e\u003cth align=\"left\" colname=\"c1\"\u003e\u003cp\u003eMineral\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c2\"\u003e\u003cp\u003eSample A\u003csub\u003e4\u003c/sub\u003e%\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c3\"\u003e\u003cp\u003eSample B\u003csub\u003e4\u003c/sub\u003e%\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c4\"\u003e\u003cp\u003eSample C\u003csub\u003e4\u003c/sub\u003e%\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c5\"\u003e\u003cp\u003eSample D\u003csub\u003e4\u003c/sub\u003e%\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c6\"\u003e\u003cp\u003eSample E\u003csub\u003e4\u003c/sub\u003e%\u003c/p\u003e\u003c/th\u003e\u003c/tr\u003e\u003c/thead\u003e\u003ctbody\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eQuartz\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e87.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e69.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e65.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e68.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e68.70\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eOrthoclase\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e09.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e14.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e27.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e19.40\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e17.20\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eKaolinite\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e00.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e00.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e00.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e00.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e00.00\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eAlbite\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e03.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e13.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e05.00\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c5\"\u003e\u003cp\u003e12.70\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c6\"\u003e\u003cp\u003e14.20\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003c/tbody\u003e\u003c/colgroup\u003e\u003c/table\u003e\u003c/div\u003e\u003c/p\u003e\u003cp\u003eA detailed comparison between Table\u0026nbsp;\u003cspan refid=\"Tab4\" class=\"InternalRef\"\u003e4\u003c/span\u003e and Table\u0026nbsp;\u003cspan refid=\"Tab5\" class=\"InternalRef\"\u003e5\u003c/span\u003e shows a general trend of total elimination of the kaolinite mineral as the simultaneous blending of clays with granite and firing at the temperature of 1200\u0026deg;C is processed. It can also be observed from Tables\u0026nbsp;\u003cspan refid=\"Tab4\" class=\"InternalRef\"\u003e4\u003c/span\u003e and \u003cspan refid=\"Tab5\" class=\"InternalRef\"\u003e5\u003c/span\u003e that there is a significant increment of quartz in the unreinforced clay samples from 67\u0026ndash;87% as we move from room temperature to 1200\u0026deg;C. For the same unreinforced clay samples, orthoclase increased as we heated to 1200\u0026deg;C. However, albite decreased significantly while the kaolinite mineral was totally eliminated. For all the reinforced and fired clay samples (samples B-E), there are significant changes in the mineralogical compositions as seen in Tables\u0026nbsp;\u003cspan refid=\"Tab4\" class=\"InternalRef\"\u003e4\u003c/span\u003e and \u003cspan refid=\"Tab5\" class=\"InternalRef\"\u003e5\u003c/span\u003e while noting that these changes did not take a particular regular sequence. The only general trend in the reinforced and fired clay bricks is the total elimination of the kaolinite mineral. These variations in the mineralogical composition of Agbani clay deposit is expected to influence the end application and performance of these clays in various services.\u003c/p\u003e\u003cp\u003e\u003c/p\u003e\u003cp\u003e\u003c/p\u003e\u003cp\u003eThe X-Ray diffraction patterns of the blended clay composites for unfired and fired samples are shown in Fig.\u0026nbsp;\u003cspan refid=\"Fig1\" class=\"InternalRef\"\u003e1\u003c/span\u003e and Fig.\u0026nbsp;\u003cspan refid=\"Fig2\" class=\"InternalRef\"\u003e2\u003c/span\u003e respectively. The diffraction peaks for the unfired clay samples are shown in Fig.\u0026nbsp;\u003cspan refid=\"Fig1\" class=\"InternalRef\"\u003e1\u003c/span\u003ea-\u003cspan refid=\"Fig1\" class=\"InternalRef\"\u003e1\u003c/span\u003ee while the samples fired at 1200 \u003csup\u003eo\u003c/sup\u003eC are shown in Fig.\u0026nbsp;\u003cspan refid=\"Fig2\" class=\"InternalRef\"\u003e2\u003c/span\u003ea-\u003cspan refid=\"Fig2\" class=\"InternalRef\"\u003e2\u003c/span\u003ee. The diffraction patterns for the unfired clay samples show that the samples contain four major minerals (quartz, kaolinite, orthoclase and albite) in various amounts as shown in Fig.\u0026nbsp;\u003cspan refid=\"Fig1\" class=\"InternalRef\"\u003e1\u003c/span\u003ea-\u003cspan refid=\"Fig1\" class=\"InternalRef\"\u003e1\u003c/span\u003ee. When these samples are fired to 1200 \u003csup\u003eo\u003c/sup\u003eC and held for some time, it was observed that there is nucleation and crystallization of more refractory mineral phases such as quartz, orthoclase and albite while the less refractory phase is eliminated, as seen in Fig.\u0026nbsp;\u003cspan refid=\"Fig2\" class=\"InternalRef\"\u003e2\u003c/span\u003ea-\u003cspan refid=\"Fig2\" class=\"InternalRef\"\u003e2\u003c/span\u003ee. However, this is not the focal point of the objectives of the current study which dwell on the toxicity and environmental safety for the production of affordable and sustainable construction materials. The previous studies by the current authors (Egole et al. \u003cspan citationid=\"CR6\" class=\"CitationRef\"\u003e2024\u003c/span\u003e, Egole et al. \u003cspan citationid=\"CR6\" class=\"CitationRef\"\u003e2024\u003c/span\u003e) have evaluated the performance of clays from similar locations and found them to be durable for application as refractory and structural materials. The information about environmental safety and health risks of these clay composites as construction materials in building services has received little or no attention to the best knowledge of the authors.\u003c/p\u003e\u003cp\u003e\u003c/p\u003e\u003cp\u003e\u003c/p\u003e\u003cp\u003eThe qualitative analyses of the samples for the unfired and the ones fired at 1200 \u003csup\u003eo\u003c/sup\u003eC are shown in Fig.\u0026nbsp;\u003cspan refid=\"Fig3\" class=\"InternalRef\"\u003e3\u003c/span\u003e and Fig.\u0026nbsp;\u003cspan refid=\"Fig4\" class=\"InternalRef\"\u003e4\u003c/span\u003e respectively. The qualitative description of the mineralogical compositions is in agreement with the diffraction patterns as seen in Figs.\u0026nbsp;\u003cspan refid=\"Fig1\" class=\"InternalRef\"\u003e1\u003c/span\u003e and \u003cspan refid=\"Fig2\" class=\"InternalRef\"\u003e2\u003c/span\u003e. The four major minerals in the clay samples are given with their specific amounts for the unfired bricks as shown in Fig.\u0026nbsp;\u003cspan refid=\"Fig3\" class=\"InternalRef\"\u003e3\u003c/span\u003ea-\u003cspan refid=\"Fig3\" class=\"InternalRef\"\u003e3\u003c/span\u003ee. When the samples were fired at 1200 \u003csup\u003eo\u003c/sup\u003eC, Fig.\u0026nbsp;\u003cspan refid=\"Fig4\" class=\"InternalRef\"\u003e4\u003c/span\u003ea-\u003cspan refid=\"Fig4\" class=\"InternalRef\"\u003e4\u003c/span\u003ee show total elimination of kaolinite while maintaining general increase in other minerals phases in the clay.\u003c/p\u003e\u003c/div\u003e\u003cdiv id=\"Sec8\" class=\"Section2\"\u003e\u003ch2\u003e3.3 Physical Properties\u003c/h2\u003e\u003cp\u003eThe apparent porosity, apparent density, bulk density and water absorption for all the samples are shown in Fig.\u0026nbsp;\u003cspan refid=\"Fig5\" class=\"InternalRef\"\u003e5\u003c/span\u003e. The results of the physical properties show that reinforcing clay samples with granite and firing at 1200 \u003csup\u003eo\u003c/sup\u003eC significantly improved the porosity, bulk density and water absorption. Figure\u0026nbsp;\u003cspan refid=\"Fig5\" class=\"InternalRef\"\u003e5\u003c/span\u003ea shows that the sample with the highest amount of granite and fired at maximum temperature of 1200 \u003csup\u003eo\u003c/sup\u003eC has the lowest apparent porosity. Porosity is the volume of soil that is filled with either water or air. A high porosity often means a weakening of the support structure and therefore a serious decrease in the strength of the particles. Therefore, the porosity decreases with increase in granite and firing at 1200 \u003csup\u003eo\u003c/sup\u003eC. This is expected to increase the mechanical strength of the clay. The apparent density describes the ratio between the fired mass to the volume of solid part of the test piece, excluding open and closed pores. It is a constant property of the material. Apparent density measures the mass per unit volume of the fired test piece, excluding the voids in the sintered test piece. If the inter-particulate voids are high due to poor densification, then the total apparent volume is increased, resulting in lower apparent density. The variation in apparent density is largely inconsistent and no reason could be given for this, as shown in Fig.\u0026nbsp;\u003cspan refid=\"Fig5\" class=\"InternalRef\"\u003e5\u003c/span\u003eb. The addition of granite did not appear to have any remarkable effect on the apparent density of the sample. However, the results obtained from sample E, clearly indicated that the addition of granite to Agbani clay improved the sintering behaviour, possibly due to the significant amounts of anorthite in the granite. The bulk density describes the ratio between the fired mass of the sample and the exterior volume or total volume of the sample including closed and open pores. It gives an indication of the degree of densification of the sample during firing or how dense and therefore well sintered the specimen is. The higher the bulk density, the better the sintering behaviour. Partial vitrification of some of the constituents of the clay body creates a glassy phase which seals some of the open pores, thereby increasing the bulk density. The particle size distribution of the clays is another factor that can affect bulk density, although it was not investigated in the present work. Bulk density for the samples shows that sample E has the overall best quality as seen in Fig.\u0026nbsp;\u003cspan refid=\"Fig5\" class=\"InternalRef\"\u003e5\u003c/span\u003ec. Further improvement in bulk density could be attained by incorporation of more fluxing materials in the body as suggested by (Egole et al. \u003cspan citationid=\"CR6\" class=\"CitationRef\"\u003e2024\u003c/span\u003e, Egole et al. \u003cspan citationid=\"CR6\" class=\"CitationRef\"\u003e2024\u003c/span\u003e). The water absorption of the samples describes the ratio of the open pore volume to the dry weight of the test piece. It gives an idea of the suitability of the material for applications in impervious products such as construction materials. Water absorption which adversely affects construction materials in building services is lowest for sample E as shown in Fig.\u0026nbsp;\u003cspan refid=\"Fig5\" class=\"InternalRef\"\u003e5\u003c/span\u003ed. The water absorption of the samples appears to be high initially but significantly decreased with increasing additions of granite and higher firing temperatures. This can be explained by the increased tendency to develop a viscous liquid phase due to the anorthite, chlorite and quartz introduced by the granite addition. Sample E had a water absorption value close to the range reported in the literature for commercial clays Martinez et al. (\u003cspan citationid=\"CR23\" class=\"CitationRef\"\u003e2023\u003c/span\u003e).\u003c/p\u003e\u003cp\u003e\u003c/p\u003e\u003cp\u003eTherefore, the results in Fig.\u0026nbsp;\u003cspan refid=\"Fig5\" class=\"InternalRef\"\u003e5\u003c/span\u003e are sufficient to conclude that reinforcing Agbani clay deposit with granite and firing at 1200 \u003csup\u003eo\u003c/sup\u003eC has a positive influence on the performance of the clay for application in building services.\u003c/p\u003e\u003c/div\u003e\u003cdiv id=\"Sec9\" class=\"Section2\"\u003e\u003ch2\u003e3.4 Mechanical Properties\u003c/h2\u003e\u003cp\u003eJust like other properties, mechanical behaviours are critical performance evaluation criteria for construction and structural materials. Mechanical stability of construction materials is needed to withstand structural deformation such as deflections under compressive and tensile loads. Construction materials such as coating bricks should have adequate strength to suite such purposes. The impact energy, impact strength, modulus of rupture and compressive strength are shown in Figs.\u0026nbsp;\u003cspan refid=\"Fig6\" class=\"InternalRef\"\u003e6\u003c/span\u003ea-\u003cspan refid=\"Fig6\" class=\"InternalRef\"\u003e6\u003c/span\u003ed respectively. A close observation of Fig.\u0026nbsp;\u003cspan refid=\"Fig6\" class=\"InternalRef\"\u003e6\u003c/span\u003ea-\u003cspan refid=\"Fig6\" class=\"InternalRef\"\u003e6\u003c/span\u003ed shows a trend that suggests that an increase in granite and firing to 1200 \u003csup\u003eo\u003c/sup\u003eC improved all the mechanical properties. Impact strength in clay is a critical measure that reflects the material\u0026rsquo;s capability to endure the forces applied in service and when supporting machinery foundations that experience impulsive loads. Impact strength of clay refers to its ability to resist sudden load or shock. It is influenced by various factors such as the water-clay ratio, types of aggregate, curing method, and so on. As the granite is increased, the impact energy and strength are also increased as seen in Figs.\u0026nbsp;\u003cspan refid=\"Fig6\" class=\"InternalRef\"\u003e6\u003c/span\u003ea and \u003cspan refid=\"Fig6\" class=\"InternalRef\"\u003e6\u003c/span\u003eb respectively. This increases the strength of the clay to withstand compressive load or shock. At a firing temperature of 1100\u0026deg;C, increasing the percentage of granite from 0\u0026ndash;20% increases the impact strength of the samples. Similarly, at a firing temperature of 1200\u0026deg;C, increasing the percentage of granite from 0\u0026ndash;20% increases the impact energy and strength further.\u003c/p\u003e\u003cp\u003e\u003c/p\u003e\u003cp\u003eModulus of rupture is one of the most important properties of structural clay design which affects the shear strength, brittleness ratio, and flexural cracking. The modulus of rupture is a measure of the maximum load-carrying capacity of a given species in bending strength. It is proportional to the breaking point or maximum strength as borne by the specimen. As the granite percentage increases, the modulus of rupture increases as seen in Fig.\u0026nbsp;\u003cspan refid=\"Fig6\" class=\"InternalRef\"\u003e6\u003c/span\u003ec This implies that the maximum load-carrying capacity, maximum strength, breaking point of the clay increases. Therefore, it can withstand high level of load, pressure before breaking. The presence of refractory minerals such as mullite, as well as alumina will increase the modulus of rupture of the specimen. Also, the amount of flux in the sample could impact on the maturity temperature, forming vitreous phases that seal off the pores between particles, thereby improving mechanical strength. Thus, the incremental addition of granite to the samples increases the amount of silica in the sample, which is a glass former, as well as the mineral albite, which tends to improve fusion. Samples with the highest bulk density values also showed the highest modulus of rupture values as illustrated in Figs.\u0026nbsp;\u003cspan refid=\"Fig5\" class=\"InternalRef\"\u003e5\u003c/span\u003ec and \u003cspan refid=\"Fig6\" class=\"InternalRef\"\u003e6\u003c/span\u003ec. This observation is in agreement with the findings of the previous studies (Egole et al. \u003cspan citationid=\"CR6\" class=\"CitationRef\"\u003e2024\u003c/span\u003e, Egole et al. \u003cspan citationid=\"CR6\" class=\"CitationRef\"\u003e2024\u003c/span\u003e). Higher compressive strength means higher resistance to stress and better ability to bear heavy weight. As the percentage of granite increases, the compressive strength increases gradually as seen in Fig.\u0026nbsp;\u003cspan refid=\"Fig6\" class=\"InternalRef\"\u003e6\u003c/span\u003ed. Mechanical strength development increases with firing temperature and is also affected by the particle size distribution as well as partial vitrification of the clay body which is influenced by the minerals present. Consequently, it can be observed from Fig.\u0026nbsp;\u003cspan refid=\"Fig6\" class=\"InternalRef\"\u003e6\u003c/span\u003ed that the compressive strength of the specimens increased with firing temperature, as well as with increasing amounts of granite. Granite addition increased the amounts of quartz in the clay composites which is a glass former, as well as increasing the amounts of the mineral anorthite which is a feldspar. The combined effect is the formation of a viscous vitreous phase which helps seal off and eliminate the pores between particles. This porosity acts as stress raisers, reducing the effective load bearing cross sectional area of the material. It can be seen from the results that compressive strength of samples increased as the apparent porosity decreases as we compare Fig.\u0026nbsp;\u003cspan refid=\"Fig5\" class=\"InternalRef\"\u003e5\u003c/span\u003ea and Fig.\u0026nbsp;\u003cspan refid=\"Fig6\" class=\"InternalRef\"\u003e6\u003c/span\u003ed.\u003c/p\u003e\u003cp\u003eAtterberg plasticity index for the samples are shown in Table\u0026nbsp;\u003cspan refid=\"Tab6\" class=\"InternalRef\"\u003e6\u003c/span\u003e. The Atterberg liquid and plastic limits define the transitions between liquid and plastic behaviour of the samples and the plasticity index indicates the range within which the sample is plastic. From the results in Table\u0026nbsp;\u003cspan refid=\"Tab6\" class=\"InternalRef\"\u003e6\u003c/span\u003e, it is evident that the as received Agbani clay is not quite plastic, with a plasticity index of 29.8%. The plasticity of clays is related to the morphology of the plate-like clay mineral particles that slide over the others when water is added, which acts as a lubricant. As the water content of clay is increased, plasticity increases up to a maximum, depending on the nature of the clay. The relatively low plasticity index of Agbani clay can be explained by the mineralogical composition, as it is composed chiefly of non-plastic minerals such as, quartz (67%), albite (9%) and orthoclase (3.5%). The incremental addition of granite to the Agbani clay had the effect of reducing the plasticity index of the sample, as granite is also a non-plastic material composed chiefly of quartz (41%), and anorthite (38%), the calcium end member of the plagioclase feldspar mineral series.\u003c/p\u003e\u003cp\u003e\u003cdiv class=\"gridtable\"\u003e\u003ctable float=\"Yes\" id=\"Tab6\" border=\"1\"\u003e\u003ccaption language=\"En\"\u003e\u003cdiv class=\"CaptionNumber\"\u003eTable 6\u003c/div\u003e\u003cdiv class=\"CaptionContent\"\u003e\u003cp\u003eResult of the Atterberg plasticity test of the batches.\u003c/p\u003e\u003c/div\u003e\u003c/caption\u003e\u003ccolgroup cols=\"4\"\u003e\u003cdiv align=\"left\" class=\"colspec\" colname=\"c1\" colnum=\"1\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c2\" colnum=\"2\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c3\" colnum=\"3\"\u003e\u003c/div\u003e\u003cdiv align=\"char\" char=\".\" class=\"colspec\" colname=\"c4\" colnum=\"4\"\u003e\u003c/div\u003e\u003cthead\u003e\u003ctr\u003e\u003cth align=\"left\" colname=\"c1\"\u003e\u003cp\u003eBatch\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c2\"\u003e\u003cp\u003ePlastic Limit (%)\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c3\"\u003e\u003cp\u003eLiquid Limit (%)\u003c/p\u003e\u003c/th\u003e\u003cth align=\"left\" colname=\"c4\"\u003e\u003cp\u003ePlasticity Index (%)\u003c/p\u003e\u003c/th\u003e\u003c/tr\u003e\u003c/thead\u003e\u003ctbody\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eA\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e46.8\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e76.6\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e29.8\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eB\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e48.1\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e76.1\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e28.0\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eC\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e51.6\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e74.8\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e23.2\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eD\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e52.8\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e72.4\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e19.6\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003ctr\u003e\u003ctd align=\"left\" colname=\"c1\"\u003e\u003cp\u003eE\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c2\"\u003e\u003cp\u003e55.1\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c3\"\u003e\u003cp\u003e71.9\u003c/p\u003e\u003c/td\u003e\u003ctd align=\"char\" char=\".\" colname=\"c4\"\u003e\u003cp\u003e16.8\u003c/p\u003e\u003c/td\u003e\u003c/tr\u003e\u003c/tbody\u003e\u003c/colgroup\u003e\u003c/table\u003e\u003c/div\u003e\u003c/p\u003e\u003c/div\u003e\u003cdiv id=\"Sec10\" class=\"Section2\"\u003e\u003ch2\u003e3.5 Toxicity and environmental safety\u003c/h2\u003e\u003cp\u003eThe physicochemical analysis was performed to determine the amounts of harmful or toxic constituents of the samples that can affect public health. Construction materials in building services such as outside coating bricks, building bricks, floor tiles and roofing tiles are supposed to be safe for human and aquatic inhabitants. Heavy metals and other toxic elements like arsenic, chloride, lead, mercury and phosphates are often associated with weathering reactions in composite clay materials. The potential health effects related to the ingestion of clay soil that contains high quantities of these toxic substances include premature deaths, low-birth-weight babies, anaemia, nervous system disorder, and at times, the occurrence of death for both the mother and the child (Kortei et al. \u003cspan citationid=\"CR16\" class=\"CitationRef\"\u003e2020\u003c/span\u003e). Blending clays with various materials as reinforcements or partial replacements of cementitious materials for the construction industry has attracted several research interests Egole et al. \u003cspan citationid=\"CR6\" class=\"CitationRef\"\u003e2024\u003c/span\u003e, Egole et al. \u003cspan citationid=\"CR6\" class=\"CitationRef\"\u003e2024\u003c/span\u003e, Lingling et al. \u003cspan citationid=\"CR18\" class=\"CitationRef\"\u003e2005\u003c/span\u003e, Andrewsa et al. \u003cspan citationid=\"CR1\" class=\"CitationRef\"\u003e2013\u003c/span\u003e, Kazmi et al. \u003cspan citationid=\"CR13\" class=\"CitationRef\"\u003e2016\u003c/span\u003e, Phonphuak et al. \u003cspan citationid=\"CR28\" class=\"CitationRef\"\u003e2016\u003c/span\u003e, Phonphuak and Chindaprasirt \u003cspan citationid=\"CR29\" class=\"CitationRef\"\u003e2018\u003c/span\u003e, Njindam et al. \u003cspan citationid=\"CR25\" class=\"CitationRef\"\u003e2018\u003c/span\u003e, Esmeray and Atis \u003cspan citationid=\"CR7\" class=\"CitationRef\"\u003e2019\u003c/span\u003e, Mao et al. \u003cspan citationid=\"CR20\" class=\"CitationRef\"\u003e2019\u003c/span\u003e, Sutcu et al. \u003cspan citationid=\"CR32\" class=\"CitationRef\"\u003e2019\u003c/span\u003e, Mao et al. \u003cspan citationid=\"CR21\" class=\"CitationRef\"\u003e2020\u003c/span\u003e, Khitab et al. \u003cspan citationid=\"CR14\" class=\"CitationRef\"\u003e2021\u003c/span\u003e, Chindaprasirt et al. \u003cspan citationid=\"CR4\" class=\"CitationRef\"\u003e2021\u003c/span\u003e) recently. These materials have adequately been subjected to the evaluation of some specific target performances such as chemical stability in the corrosive environment, thermal stability and characterization of mechanical strengths. However, leachability, toxicity and environmental safety for these materials as construction materials in building services have not received commensurate attention. Table\u0026nbsp;\u003cspan refid=\"Tab7\" class=\"InternalRef\"\u003e7\u003c/span\u003e shows the results of the toxicity level of the heavy metals and undesired substances in the clay composite construction materials. The leading toxic substance is chloride, followed by lead and phosphate respectively. Arsenic and mercury are also found in trace amounts that can be detrimental to the safety of our environment. It can be seen from Table\u0026nbsp;\u003cspan refid=\"Tab7\" class=\"InternalRef\"\u003e7\u003c/span\u003e that increasing granite increased the toxic substances, but heating the samples to a high temperature of 1200 \u003csup\u003eo\u003c/sup\u003eC and holding for some time significantly reduced the toxicity in the materials. Affordable and sustainable materials in building applications are critical needs for low- and medium-income countries to offset acute housing deficits. This study falls in line with the objectives of the United Nation\u0026rsquo;s sustainable development goals (SDGs) target for the developing countries. The results in Table\u0026nbsp;\u003cspan refid=\"Tab7\" class=\"InternalRef\"\u003e7\u003c/span\u003e show the percentage reduction of the toxic substances for all the samples considered. The values for the unfired samples (at 30 \u003csup\u003e0\u003c/sup\u003eC) are given in column T\u003csub\u003e1\u003c/sub\u003e while the toxicity for the clays fired at 1200 \u003csup\u003e0\u003c/sup\u003eC is given as T\u003csub\u003e2\u003c/sub\u003e. It can be seen from Table\u0026nbsp;\u003cspan refid=\"Tab7\" class=\"InternalRef\"\u003e7\u003c/span\u003e that the computed reduction in toxic substances is significant in all the samples, though, no regular periodic variation in percentage reduction is reported in Table\u0026nbsp;\u003cspan refid=\"Tab7\" class=\"InternalRef\"\u003e7\u003c/span\u003e.\u003c/p\u003e\u003cp\u003e\u003cimg 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\" width=\"584\" height=\"369\"\u003e\u003c/p\u003e"},{"header":"4 Conclusion","content":"\u003cp\u003eDeveloping countries with exponential growth of young population are often faced with the burden of housing deficit. Development and utilization of locally abundant natural materials in building services remain the most viable option in mitigating such challenges. However, environmental safety and public health concerns due to toxic pollutants in such construction materials should be given priority attention. The current research focuses on strengthening of Agbani clay with various amounts of granite and firing the samples to a maximum temperature of 1200 \u003csup\u003e0\u003c/sup\u003eC and evaluation of the environmental safety and public health of the clays for applications as affordable and sustainable construction materials. The XRF, XRD, physical properties, mechanical properties and toxicity of the clay composite were characterized using various techniques. Based on the results of the different analyses, following conclusions can be drawn from the study:\u003c/p\u003e\u003col style=\"list-style-type: lower-roman;\"\u003e\n \u003cli\u003eFrom the visual inspection of the blended clays, addition of granite did not affect the overall physical appearance of the clays produced for application in building bricks and coating tiles and other construction materials. It can be concluded that the reddish-brown colour of Agbani clay is a clear indication of the presence of high concentrations of iron oxide. Appreciable amount of iron oxide present in the composite suggests that Agbani clay will give good colouration and decorative outlook to the houses coated with these bricks.\u0026nbsp;\u003c/li\u003e\n \u003cli\u003eFrom the results of the chemical compositions and mineralogical analysis obtained from the XRF and XRD respectively, it can be concluded that the clay belongs to the aluminosilicate group of clay minerals. The XRF analysis shows that SiO\u003csub\u003e2\u003c/sub\u003e, Al\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e, and Fe\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e constitute the major oxides while the XRD analysis shows that quartz, orthoclase, kaolinite and albite dominate the mineralogical composition of the clay.\u0026nbsp;\u003c/li\u003e\n \u003cli\u003eThe results of the physical properties of Agbani clay deposit suggests remarkable improvement in the physical properties such as apparent porosity, bulk density and water absorption with the addition of granite and firing at 1200 \u003csup\u003eo\u003c/sup\u003eC. It can be concluded that this helped to improve the mouldability of the clays which allows them to be built into desired shapes of building and construction materials.\u003c/li\u003e\n \u003cli\u003eThe results of the mechanical properties show that the mechanical strengths of the clay increase with addition of granite and firing up to 1200\u0026deg;C. It can be concluded that the improved mechanical properties could be attributed to the presence of mechanically stable minerals such as quartz, orthoclase, kaolinite and albite. No dimensional defect, warpage or some other kind of deformation induced by excessive thermal degradation occurs in the clay up to 1200\u0026deg;C. This implies that Agbani clay can be suitable for applications in building services and construction materials when blended with granite and fired at 1200\u0026deg;C. Increased amounts of granite enabled improved sintering which enhanced densification behaviour and mechanical strength.\u003c/li\u003e\n \u003cli\u003eFor all the clay samples produced, blending them with granite and firing at 1200 \u003csup\u003eo\u003c/sup\u003eC lead to significant reduction in the toxic materials such as Lead, Mercury, Arsenic, Phosphorous and Chloride. Heavy metals and other deleterious substances found in construction materials present serious environmental challenges that pose direct threats to human safety. The need to develop local sustainable construction materials that meet the United Nation\u0026rsquo;s 2030 target for sustainable development goals (SDGs) necessitated this study. From the toxicity tests results, it can be concluded that the building and construction materials developed from the current study are environmentally safe and poses no safety concerns for the ecosystem and its inhabitants.\u003c/li\u003e\n\u003c/ol\u003e"},{"header":"Declarations","content":"\u003cp\u003e\u003cstrong\u003eAcknowledgement\u0026nbsp;\u003c/strong\u003eThis is not applicable\u003c/p\u003e\n\u003cp\u003e\u003cstrong\u003eAuthorship contributions Chijioke Peter Egole:\u003c/strong\u003e Writing \u0026ndash; review \u0026amp; editing, Writing \u0026ndash; original draft, Methodology, Investigation, Formal analysis, Data curation, Conceptualization. \u003cstrong\u003eOnwudiwe Ugochukwu Chinonso\u003c/strong\u003e: Writing \u0026ndash; review \u0026amp; editing, Visualization, Investigation, Formal analysis, Data curation. \u003cstrong\u003eGaius Chukwuka Nzebuka\u003c/strong\u003e: Writing \u0026ndash; review \u0026amp; editing, Writing \u0026ndash; original draft, Resources, Project administration, Investigation, Formal analysis, Data curation. \u003cstrong\u003eOnuoha Chukwudike\u003c/strong\u003e: Writing \u0026ndash; review \u0026amp; editing, Resources, Methodology, Investigation. \u003cstrong\u003eChima Chinedu Ugwuegbu\u003c/strong\u003e: Writing \u0026ndash; review \u0026amp; editing, Resources, Investigation. \u003cstrong\u003eJustus Uchenna Anaele\u003c/strong\u003e: Writing \u0026ndash; review \u0026amp; editing, Resources. \u003cstrong\u003eInnocent Okechi Arukalam\u003csup\u003ec\u003c/sup\u003e\u003c/strong\u003e: Methodology development. \u003cstrong\u003eMaxwell Ikenna Chikwue:\u0026nbsp;\u003c/strong\u003ePhysicochemical analysis. \u003cstrong\u003eAgha Inya Ndukwe\u003c/strong\u003e: Technical editorial and typesetting. \u003cstrong\u003eChukwuzubelu Okenwa Ufodike\u003c/strong\u003e: Projection administration, general supervision and English Language editing.\u003c/p\u003e\n\u003cp\u003e\u003cstrong\u003eFunding\u0026nbsp;\u003c/strong\u003eNo form of funding was received for this study.\u0026nbsp;\u003c/p\u003e\n\u003cp\u003e\u003cstrong\u003eData availability\u0026nbsp;\u003c/strong\u003eData would be made available on reasonable request from the corresponding author\u0026nbsp;\u003c/p\u003e\n\u003cp\u003e\u003cstrong\u003eEthical approval\u0026nbsp;\u003c/strong\u003eThe manuscript was written in total compliance with ethical standards.\u003c/p\u003e\n\u003cp\u003e\u003cstrong\u003eConsent to participate\u0026nbsp;\u003c/strong\u003eAll the authors willingly consented to participate in this study.\u003c/p\u003e\n\u003cp\u003e\u003cstrong\u003eConsent to publish\u0026nbsp;\u003c/strong\u003eAll the authors approved this manuscript for publication in the of journal Environmental Science and Pollution Research\u003c/p\u003e\n\u003cp\u003e\u003cstrong\u003eCompeting interests\u0026nbsp;\u003c/strong\u003eThe authors hereby declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper. The authors declare no potential conflicts of interest, concerning the research, authorship, and/or publication of this article.\u003c/p\u003e"},{"header":"References","content":"\u003col\u003e\n\u003cli\u003eAndrewsa, A. Adama J. and Gawu S. K.Y. (2013) Development of fireclay aluminosilicate refractory from lithomargic clay deposits, \u003cem\u003eCeramics international\u003c/em\u003e, 39, 779\u0026ndash;783.\u003c/li\u003e\n\u003cli\u003eBergaya F., Theng B.K.G. and Lagaly G. (2006) Handbook of Clay Science. Amsterdam, Elsevier, (2006) 141\u0026ndash;246. \u003c/li\u003e\n\u003cli\u003eChenga K. and Heidarib Z. (2017) Combined interpretation of NMR and TGA measurements to quantify the impact of relative humidity on hydration of clay minerals, \u003cem\u003eApplied Clay Science\u003c/em\u003e, 143, 362-371.\u003c/li\u003e\n\u003cli\u003eChindaprasirt P., Srisuwan A., Saengthong C., Lawanwadeekul S. and Phonphuak N. 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Sci.\u003c/em\u003e 45 (4) 1855\u0026ndash;1862.\u003c/li\u003e\n\u003cli\u003eRat E., Mart\u0026iacute;nez-Mart\u0026iacute;nez S., Sanchez-Garrido J.A., P\u0026acute;erez-Villarejo L., Garzon E. and Sanchez-Soto P.J. (2023) Characterization, thermal and ceramic properties of clays from Alhabia (Almer\u0026iacute;a, Spain), \u003cem\u003eCeramics International\u003c/em\u003e, 49, 14814\u0026ndash;14825.\u003c/li\u003e\n\u003cli\u003eShuaib-Babata Y. L., Yaru S. S, Abdulkareem S., Busari Y. O., Ambali I. O., Ajao K. S and Mohammed G. A. (2018) Characterization of baruten local government area of kwara state (Nigeria) fireclays as suitable refractory materials, \u003cem\u003eNigeria Journal of Technology\u003c/em\u003e, 37(2) 374-386.\u003c/li\u003e\n\u003cli\u003eSutcu M., Erdogmus E.and Gencel O. (2019) A. Gholampour, E. Atan, and T. Ozbakkaloglu, Recycling of bottom ash and fly ash wastes in eco-friendly clay brick production, J\u003cem\u003eournal Cleaner Production\u003c/em\u003e 233,753\u0026ndash;764.\u003c/li\u003e\n\u003cli\u003eYan B., Liu S., Chastain M.L., Yang S. and Chen J. (2021) A new FTIR method for estimating the firing temperature of ceramic bronze-casting moulds from early China, \u003cem\u003eScientific Reports\u003c/em\u003e, 11 (2021) 1-10. \u003c/li\u003e\n\u003c/ol\u003e"}],"fulltextSource":"","fullText":"","funders":[],"hasAdminPriorityOnWorkflow":false,"hasManuscriptDocX":true,"hasOptedInToPreprint":true,"hasPassedJournalQc":"","hasAnyPriority":false,"hideJournal":false,"highlight":"","institution":"","isAcceptedByJournal":true,"isAuthorSuppliedPdf":false,"isDeskRejected":"","isHiddenFromSearch":false,"isInQc":false,"isInWorkflow":true,"isPdf":false,"isPdfUpToDate":true,"isWithdrawnOrRetracted":false,"journal":{"display":true,"email":"[email protected]","identity":"environmental-science-and-pollution-research","isNatureJournal":false,"hasQc":true,"allowDirectSubmit":false,"externalIdentity":"espr","sideBox":"Learn more about [Environmental Science and Pollution Research](https://www.springer.com/journal/11356)","snPcode":"11356","submissionUrl":"https://submission.nature.com/new-submission/11356/3","title":"Environmental Science and Pollution Research","twitterHandle":"","acdcEnabled":true,"dfaEnabled":true,"editorialSystem":"em","reportingPortfolio":"Springer Hybrid","inReviewEnabled":true,"inReviewRevisionsEnabled":false},"keywords":"Clay composite, building services, constriction materials, environmental safety, strengthening of Agbani clay","lastPublishedDoi":"10.21203/rs.3.rs-6803827/v1","lastPublishedDoiUrl":"https://doi.org/10.21203/rs.3.rs-6803827/v1","license":{"name":"CC BY 4.0","url":"https://creativecommons.org/licenses/by/4.0/"},"manuscriptAbstract":"\u003cp\u003eDeveloping countries with high growth of young population are often faced with the burden of housing deficit. Manufacture and utilization of locally abundant natural materials in building services remain the most viable option in mitigating such challenges. However, environmental safety and public health concerns due to toxic pollutants in such construction materials should be given priority attention. Heavy metals and other deleterious substances found in construction materials present serious environmental challenges that pose direct threats to human safety. The need to develop local sustainable construction materials that meet the United Nation\u0026rsquo;s 2030 target for sustainable development goals (SDGs) necessitated this study. The authors blended and reinforced Agbani clay with granite to produce composite clay materials that can be used in building services. The samples were heated to 900 \u003csup\u003e0\u003c/sup\u003eC, 1000 \u003csup\u003e0\u003c/sup\u003eC, 1100 \u003csup\u003e0\u003c/sup\u003eC and maximum temperature of 1200 \u003csup\u003e0\u003c/sup\u003eC. XRF, XRD, physical properties, mechanical behaviour and physicochemical properties of the samples were characterized using different combined experimental techniques. The result of the XRF analysis shows that SiO\u003csub\u003e2\u003c/sub\u003e, Al\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e, and Fe\u003csub\u003e2\u003c/sub\u003eO\u003csub\u003e3\u003c/sub\u003e constitute the major oxides while the XRD analysis shows that quartz, orthoclase, kaolinite and albite dominate the mineralogical composition of the clay. The results of the physical properties of Agbani clay deposit suggest remarkable improvement in the physical properties such as apparent porosity, bulk density and water absorption with the addition of granite and firing at 1200 \u003csup\u003eo\u003c/sup\u003eC. Mechanical properties results show that impact strength, impact energy, modulus of rupture and compressive strength all increased with addition of granite and firing to elevated temperature. However, the plasticity limit was adversely affected as it reduced. For all the clay samples produced, blending them with granite and firing at 1200 \u003csup\u003eo\u003c/sup\u003eC lead to significant reduction in the toxic materials such as Lead, Mercury, Arsenic, Phosphorous and Chloride.\u003c/p\u003e","manuscriptTitle":"Strengthening of Agbani clay with granite and characterization of their properties and toxicity for applications as construction materials in building services","msid":"","msnumber":"","nonDraftVersions":[{"code":1,"date":"2025-07-09 08:17:33","doi":"10.21203/rs.3.rs-6803827/v1","editorialEvents":[{"type":"communityComments","content":0},{"type":"decision","content":"Major Revision","date":"2025-09-22T17:07:32+00:00","index":"","fulltext":""},{"type":"reviewerAgreed","content":"","date":"2025-07-22T09:38:06+00:00","index":0,"fulltext":""},{"type":"reviewersInvited","content":"","date":"2025-07-07T10:46:22+00:00","index":"","fulltext":""},{"type":"editorAssigned","content":"","date":"2025-06-11T05:10:20+00:00","index":"","fulltext":""},{"type":"submitted","content":"Environmental Science and Pollution Research","date":"2025-06-09T10:19:12+00:00","index":"","fulltext":""}],"status":"published","journal":{"display":true,"email":"[email protected]","identity":"environmental-science-and-pollution-research","isNatureJournal":false,"hasQc":true,"allowDirectSubmit":false,"externalIdentity":"espr","sideBox":"Learn more about [Environmental Science and Pollution Research](https://www.springer.com/journal/11356)","snPcode":"11356","submissionUrl":"https://submission.nature.com/new-submission/11356/3","title":"Environmental Science and Pollution Research","twitterHandle":"","acdcEnabled":true,"dfaEnabled":true,"editorialSystem":"em","reportingPortfolio":"Springer Hybrid","inReviewEnabled":true,"inReviewRevisionsEnabled":false}}],"origin":"","ownerIdentity":"8eea53b6-56b8-4a28-9a72-4ed5c63f7fda","owner":[],"postedDate":"July 9th, 2025","published":true,"recentEditorialEvents":[],"rejectedJournal":[],"revision":"","amendment":"","status":"published-in-journal","subjectAreas":[],"tags":[],"updatedAt":"2026-02-02T16:06:07+00:00","versionOfRecord":{"articleIdentity":"rs-6803827","link":"https://doi.org/10.1007/s11356-025-37372-6","journal":{"identity":"environmental-science-and-pollution-research","isVorOnly":false,"title":"Environmental Science and Pollution Research"},"publishedOn":"2026-01-29 15:59:23","publishedOnDateReadable":"January 29th, 2026"},"versionCreatedAt":"2025-07-09 08:17:33","video":"","vorDoi":"10.1007/s11356-025-37372-6","vorDoiUrl":"https://doi.org/10.1007/s11356-025-37372-6","workflowStages":[]},"version":"v1","identity":"rs-6803827","journalConfig":"researchsquare"},"__N_SSP":true},"page":"/article/[identity]/[[...version]]","query":{"redirect":"/article/rs-6803827","identity":"rs-6803827","version":["v1"]},"buildId":"8U1c8b4HqxoKbykW_rLl7","isFallback":false,"isExperimentalCompile":false,"dynamicIds":[84888],"gssp":true,"scriptLoader":[]}

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