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采用水性聚氨酯固定化活性污泥的高效硝化反硝化生物反应器处理丙烯腈废水。

A high-efficiency denitrification bioreactor for the treatment of acrylonitrile wastewater using waterborne polyurethane immobilized activated sludge.

机构信息

State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Beijing 102249, PR China.

College of Chemistry and Environmental Engineering, Yangtze University, Jingzhou 434023, PR China.

出版信息

Bioresour Technol. 2017 Sep;239:472-481. doi: 10.1016/j.biortech.2017.05.015. Epub 2017 May 5.

Abstract

The performance of a laboratory-scale, high-efficiency denitrification bioreactor (15L) using activated sludge immobilized by waterborne polyurethane in treating acrylonitrile wastewater with high concentration of nitrate nitrogen (249mg/L) was investigated. The bioreactor was operated at 30°C for 220days. Batch denitrification experiments showed that the optimal operation parameters were C/NO-N molar ratio of 2.0 using sodium acetate as electron donor and carrier filling rate of 20% (V/V) in the bioreactor. Stable performance of denitrification was observed with a hydraulic retention time of 30 to 38h. A volumetric removal rate up to 2.1kgN/m·d was achieved with a total nitrogen removal efficiency of 95%. Pyrosequencing results showed that Rhodocyclaceae and Pseudomonadaceae were the dominant bacterial families in the immobilized carrier and bioreactor effluent. The overall microbial diversity declined as denitrifiers gradually dominated and the relative abundance of other bacteria decreased along with testing time.

摘要

采用水基型聚氨酯包埋固定化活性污泥的实验室规模高效反硝化生物反应器(15L)处理高浓度硝酸盐氮(249mg/L)丙烯腈废水的性能进行了研究。生物反应器在 30°C 下运行 220 天。批式反硝化实验表明,使用乙酸钠作为电子供体时最佳操作参数为 C/NO-N 摩尔比为 2.0,生物反应器中的载体填充率为 20%(V/V)。在水力停留时间为 30 至 38h 时,观察到稳定的反硝化性能。总氮去除效率达到 95%时,最大容积去除率达到 2.1kgN/m·d。焦磷酸测序结果表明,固定化载体和生物反应器出水中的优势细菌科为红环菌科和假单胞菌科。随着反硝化菌逐渐占主导地位,以及随着测试时间的延长,其他细菌的相对丰度下降,整体微生物多样性下降。

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