Renewable Biomass-Derived Bio-Liquid that Can Prevent Transmission of SARS-CoV-2 from Waste to Humans

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Abstract

COVID-19 pandemic caused a significant increase in medical and infected domestic waste, greatly increasing risk of human infected with SARS-CoV-2. To control pandemic and restore social order, there is a great of importance to prevent the spread of SARS-CoV-2 from solid waste to humans. Here, we prepared a renewable wheat straw-based bio-liquid that can damage SARS-CoV-2 RNA and protein. The wet thermochemical extraction (WTE) bio-liquid, with total organic carbon concentration exceeding 1,892 mg/L, could effectively damage the virus. However, dry thermochemical extraction (DTE) samples were not efficient due to their low content of effective compounds. The life cycle assessment showed that WTE bio-liquid production implies lower energy and environmental impacts than DTE. Moreover, the process by-product, char, can simultaneously reduce 3.1 million tonnes of CO2 emissions while used as coal substitute. Yield of antiviral bio-liquid extremely exceed commercial disinfectant with just 1% wheat straw utilisation, which meet the demand of processing solid waste. Further, their costs are significantly lower than commercial disinfectant s. Therefore, the antiviral bio-liquid produced from agricultural straw can meet the needs of preventing the spread of SARS-CoV-2 from solid waste to humans to control the epidemic and resume the sustainable development of society.

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