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碱性预处理对微生物电解池脱水污泥中有机物的降解作用。

Degradation of organics extracted from dewatered sludge by alkaline pretreatment in microbial electrolysis cell.

机构信息

Key Laboratory of Integrated Regulation and Resource Development on Shallow Lakes, Ministry of Education, Hohai University, Nanjing, 210098, Jiangsu, People's Republic of China.

College of Environment, Hohai University, Nanjing, 210098, Jiangsu, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2018 Mar;25(9):8715-8724. doi: 10.1007/s11356-018-1213-1. Epub 2018 Jan 11.

Abstract

Waste activated sludge in China are mostly subjected to dewatering process before final disposal without stabilization. This study investigated the feasibility of organics degradation and H production from non-stabilized dewatered sludge (DS) by microbial electrolysis cells (MECs). Alkaline pretreatment was used to disintegrate sludge matrix and solubilize organic matters in DS. Then, the treatment performance of DS supernatant in a single-chamber MEC at various applied voltages was investigated. The COD (chemical oxygen demand) removal rate increased with increasing voltage, which ranged from 26.35 to 44.92% at 0.5-0.9 V. The average coulombic efficiency was 75.6%, while the cathodic hydrogen recovery was not satisfied (15.56-20.05%) with H production rates of 0.027-0.038 m H/(m day). The reasons could be ascribed to the complexity of the substrate, H loss, and the confinement of configuration in scale-up. The organic matter degradation was influenced by the composition of DS. The carbohydrates could be readily used; meanwhile, the major component of the DS supernatant, i.e. proteins, was difficult to be utilized, which resulted from the low biodegradability of the transphilic fractions during the MEC operation.

摘要

中国的剩余活性污泥在最终处置前大多未经稳定化而进行脱水处理。本研究考察了微生物电解池(MEC)对未稳定脱水污泥(DS)中有机物降解和产氢的可行性。采用碱性预处理来破坏污泥基质并溶解 DS 中的有机物。然后,考察了在不同外加电压下,单室 MEC 中 DS 上清液的处理性能。COD(化学需氧量)去除率随电压升高而增加,在 0.5-0.9 V 时范围为 26.35-44.92%。平均库仑效率为 75.6%,而阴极产氢率(0.027-0.038 m H/(m·天))并不令人满意(15.56-20.05%),这归因于底物的复杂性、H 损失以及放大过程中结构的限制。有机物降解受 DS 组成的影响。碳水化合物可被轻易利用;而 DS 上清液的主要成分,即蛋白质,由于 MEC 运行过程中疏水性组分的低生物降解性,难以被利用。

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