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- W4320041216 abstract "The coexistence and distribution of nitrate and vanadate co-pollutants in groundwater have become an environmental problem, which needs to be urgently addressed. Although recent advances in the combination of activated sludge and agro-industrial waste have improved co-pollution removal, conventional activated sludge methods focused primarily on enhancing abiotic priming effects, neglecting the biological priming effects of colonizing microorganisms in agro-industrial waste, which limited the insights into the treatment mechanism. The removal of nitrate and vanadate was microbially mediated and highlighted the abiotic enhancement mechanism of the solid phase carbon source in the presence of microorganisms. Microorganisms in conventional activated sludge methods should be continuously incubated with the co-contaminants for at least 30 days to demonstrate stable and effective removal of the co-contaminants. This study demonstrated that the coupled system of unsterilized agro-industrial waste and untamed sludge achieved competitive nitrate (0.1319 h−1) and vanadate reduction rates (0.0359 h−1) without sludge acclimation. Compared with the control experiments, the nitrate and vanadate reduction rate increased 1.95–7.62 times and 2.85–5.36 times, respectively. The colonized functional microbes carried by agro-industrial waste played an important role in the microbial priming effect of co-pollutant removal. This work contributes to the efficient and economical treatment of the co-pollution of inorganic salts and heavy metals." @default.
- W4320041216 created "2023-02-12" @default.
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- W4320041216 date "2023-04-01" @default.
- W4320041216 modified "2023-10-01" @default.
- W4320041216 title "Priming effect and mechanism of nitrate and vanadate removal from agro-industrial waste-based colonizing microbial communities" @default.
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- W4320041216 doi "https://doi.org/10.1016/j.jclepro.2023.136384" @default.
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