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Anaerobic Treatment of N, N-dimethylformamide-contained Wastewater by Mixing Anaerobic Digestion Sludge and Activated Sludge

机译:通过混合厌氧消化污泥和活性污泥来厌氧处理N,N-二甲基甲酰胺胺含废水

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Inoculated with anaerobic digestion sludge, a lab-scale anaerobic membrane bioreactor (AnMBR) obtained inferior removal efficiency and low methane production when treating N, iV-dimethylformamide (DMF) even after 120-day's culturing. In order to enhance the DMF removal performance of AnMBR, another aerobic reactor was conducted with continuously aerating for culturing DMF-hydrolyzing activated sludge. The mixture sludge combined with anaerobic digestion sludge and activated sludge was then tested in a long-term batch experiment for 60 days. Results demonstrated that two kinds of sludge successfully symbiosed under anaerobic condition and could effectively degrade 5000 mg/L DMF within 20 days and massively produce methane biogas. The mixture sludge could be easily cultivated and served as seed sludge for a quick start-up of AnMBR with both excellent DMF removal efficiency and high methane biogas conversion when treating high loading DMF-contained wastewater.
机译:接种厌氧消化污泥,即使在120天培养后,也可以在治疗N,IV-二甲基甲酰胺(DMF)时获得较差的去除效率和低甲烷产生的实验室脉络膜生物反应器(ANMBR)。为了提高ANMBR的DMF去除性能,通过连续充气进行另一种有氧反应器以培养DMF水解活性污泥。然后将混合物污泥与厌氧消化污泥和活化污泥结合在长期批量实验中进行60天。结果表明,两种污泥在厌氧条件下成功融合,可以在20天内有效降解5000 mg / L DMF,并大量生产甲烷沼气。混合物污泥可以容易地培养并用作种子污泥,用于在处理高负载DMF载废水时具有优异的DMF去除效率和高甲烷沼气转化的ANMBR。

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