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采用铁/碳电极的微生物电化学系统中高氯酸盐的去除

Perchlorate Removal in Microbial Electrochemical Systems With Iron/Carbon Electrodes.

作者信息

Yang Qiao, Zhang Fengxiang, Zhan Jingjing, Gao Chao, Liu Minhui

机构信息

School of Food and Environment, Dalian University of Technology, Panjin, China.

出版信息

Front Chem. 2019 Jan 24;7:19. doi: 10.3389/fchem.2019.00019. eCollection 2019.

Abstract

Perchlorate removal was tested in the cathode chamber of microbial electrochemical systems (MESs). Dual-chambers MESs were constructed and operated in batch mode with four kinds of cathode materials including Fe/C particles (Fe/C), zero valent iron particles (ZVI), blank carbon felt (CF), and active carbon (AC). Without external energy supply or perchlorate-reducing microbial pre-enrichment, perchlorate ( ) removal could be achieved in the cathode chambers of MESs at different efficiencies. The highest removal rates in these reactors were 18.96 (Fe/C, 100 Ω, 2 days), 15.84 (ZVI, 100 Ω, 2 days), 14.37 (CF, 100 Ω, 3 days), and 19.78 mg/L/day (AC, 100 Ω, 2 days). degradation products were mainly Cl and , and the total chlorine in the products was lower than the theoretical input. The non-conservation of the total chlorine may be caused by the adsorption and co-precipitation related to the electrode materials. Coulombs and coulombic efficiency calculation showed that electron provided by MESs was partially responsible for reduction, for the Fe/C cathode reactors, about a quarter of electron was provided by MESs.

摘要

在微生物电化学系统(MESs)的阴极室中测试了高氯酸盐的去除情况。构建了双室MESs,并以分批模式运行,使用了四种阴极材料,包括铁/碳颗粒(Fe/C)、零价铁颗粒(ZVI)、空白碳毡(CF)和活性炭(AC)。在没有外部能量供应或高氯酸盐还原微生物预富集的情况下,MESs的阴极室中可以以不同效率实现高氯酸盐( )的去除。这些反应器中的最高去除率分别为18.96(Fe/C,100Ω,2天)、15.84(ZVI,100Ω,2天)、14.37(CF,100Ω,3天)和19.78mg/L/天(AC,100Ω,2天)。 的降解产物主要是Cl和 ,产物中的总氯含量低于理论输入量。总氯的不守恒可能是由与电极材料相关的吸附和共沉淀引起的。库仑和库仑效率计算表明,MESs提供的电子部分负责 的还原,对于Fe/C阴极反应器,约四分之一的电子由MESs提供。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f32/6357934/e4ff6b9956c2/fchem-07-00019-g0001.jpg

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