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提高微生物脱盐池中污水污泥的生物电生成及化学需氧量去除率。

Improving bioelectricity generation and COD removal of sewage sludge in microbial desalination cell.

作者信息

Ebrahimi Atieh, Yousefi Kebria Daryoush, Darzi Ghasem Najafpour

机构信息

a Environmental Engineering Department , Faculty of Civil Engineering, Babol Noshirvani University of Technology , Babol , Iran.

b Biotechnology Research Lab, Department of Chemical Engineering , Babol Noshirvani University of Technology , Iran.

出版信息

Environ Technol. 2018 May;39(9):1188-1197. doi: 10.1080/09593330.2017.1323958. Epub 2017 May 11.

Abstract

Improving wastewater treatment process and water desalination are two important solutions for increasing the available supply of fresh water. Microbial desalination cells (MDCs) with common electrolytes display relatively low organic matter removal and high cost. In this study, sewage sludge was used as the substrate in the Microbial desalination cell (MDC) under three different initial salt concentrations (5, 20 and 35 g.L) and the maximum salt removal rates of 50.6%, 64% and 69.6% were obtained under batch condition, respectively. The MDC also produced the maximum power density of 47.1 W m and the averaged chemical oxygen demand (COD) removal of 58.2 ± 0.89% when the initial COD was 6610 ± 83 mg L. Employing treated sludge as catholyte enhanced COD removal and power density to 87.3% and 54.4 W m, respectively, with counterbalancing pH variation in treated effluent. These promising results showed, for the first time, that the excess sewage sludge obtained from biological wastewater treatment plants could be successfully used as anolyte and catholyte in MDC, achieving organic matter biodegradation along with salt removal and energy production. In addition, using treated sludge as catholyte will improve the performance of MDC and introduce a more effective method for both sludge treatment and desalination.

摘要

改进废水处理工艺和海水淡化是增加淡水可用供应量的两个重要解决方案。使用普通电解质的微生物脱盐电池(MDC)有机物去除率相对较低且成本较高。在本研究中,以污水污泥为底物,在三种不同初始盐浓度(5、20和35 g·L)下运行微生物脱盐电池(MDC),在批次条件下分别获得了50.6%、64%和69.6%的最大脱盐率。当初始化学需氧量(COD)为6610±83 mg·L时,该MDC还产生了47.1 W·m的最大功率密度,平均COD去除率为58.2±0.89%。使用处理后的污泥作为阴极电解液,可将COD去除率和功率密度分别提高到87.3%和54.4 W·m,同时平衡处理后出水的pH变化。这些令人鼓舞的结果首次表明,从生物废水处理厂获得的剩余污水污泥可以成功用作MDC的阳极电解液和阴极电解液,实现有机物生物降解以及脱盐和产电。此外,使用处理后的污泥作为阴极电解液将提高MDC的性能,并为污泥处理和脱盐引入一种更有效的方法。

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