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新型生物电极-UASB 耦合系统中对邻氯硝基苯的强化还原转化。

Enhanced reductive transformation of p-chloronitrobenzene in a novel bioelectrode-UASB coupled system.

机构信息

Department of Environmental Engineering, Zhejiang University, Hangzhou 310058, China; Zhejiang Province Key Laboratory for Water Pollution Control and Environmental Safety, Hangzhou 310058, China.

Department of Environmental Engineering, Zhejiang University, Hangzhou 310058, China.

出版信息

Bioresour Technol. 2014 Sep;167:303-9. doi: 10.1016/j.biortech.2014.05.116. Epub 2014 Jun 9.

Abstract

The laboratory-scale upflow anaerobic sludge blanket (UASB) reactor equipped with a pair of bioelectrodes was established for the enhancement of p-chloronitrobenzene (p-ClNB) reductive transformation via the electrolysis. Results showed that a stable COD removal efficiency over 99% and high p-ClNB transformation rate of 0.328 h(-1) were achieved in the bioelectrode-UASB coupled system with influent COD and p-ClNB loading rates of 2.1-4.2 kg COD m(-3)d(-1) and 60 gm(-3)d(-1), respectively. The bioelectrodes were supplied with a voltage of 2.5-5.0 V and the effective current was above 2 mA, which resulted in a continuous supply of H2. Compared with the traditional UASB reactor (R1), the production of H2 was promoted in the bioelectrode-UASB coupled system (R2), and was consumed as an internal electron donor for p-ClNB reductive transformation by anaerobic microbes simultaneously. Furthermore, the cyclic voltammetry curve (CV) analysis of biocathodes showed a positive shift in the reductive peak potential and a dramatic increase in the reductive peak current, which demonstrated the catalytic reduction of p-ClNB by biocathode in the combined system.

摘要

采用带有一对生物电极的实验室规模上流式厌氧污泥床(UASB)反应器,通过电解增强对 p-氯硝基苯(p-ClNB)的还原转化。结果表明,在生物电极-UASB 耦合系统中,进水 COD 和 p-ClNB 负荷分别为 2.1-4.2 kg COD m(-3)d(-1)和 60 gm(-3)d(-1)时,可获得稳定的 COD 去除效率超过 99%和高 p-ClNB 转化速率 0.328 h(-1)。生物电极的电压为 2.5-5.0 V,有效电流超过 2 mA,从而持续供应 H2。与传统的 UASB 反应器(R1)相比,在生物电极-UASB 耦合系统(R2)中促进了 H2 的产生,同时被厌氧微生物作为内部电子供体消耗用于 p-ClNB 的还原转化。此外,生物阴极的循环伏安曲线(CV)分析表明还原峰电位出现正移,还原峰电流显著增加,这证明了在组合系统中 p-ClNB 被生物阴极催化还原。

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