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利用微生物电合成提高沼气中甲烷含量并同时回收增值产品。

Increasing methane content in biogas and simultaneous value added product recovery using microbial electrosynthesis.

作者信息

Das Sovik, Chatterjee Pritha, Ghangrekar M M

机构信息

Department of Civil Engineering, Indian Institute of Technology, Kharagpur 721302, India E-mail:

出版信息

Water Sci Technol. 2018 Mar;77(5-6):1293-1302. doi: 10.2166/wst.2018.002.

Abstract

Electrosynthesis of multi-carbon compounds from the carbon dioxide present in biogas is a nascent approach towards purification of biogas. Microbial electrosynthesis (MES) cells, fabricated using different electrode materials, were operated using different electrolytes and mixed anaerobic culture as biocatalysts in the cathodic chamber under an applied cathode potential of -0.7 V vs standard hydrogen electrode (SHE). The rate of production of acetate, isobutyrate, propionate and 2-piperidinone from reduction of CO in the cathodic chamber of the MES was 0.81 mM/day, 0.63 mM/day, 0.44 mM/day and 0.53 mM/day, respectively. As methane was also present in the biogas, methyl derivatives of these acids were also found in traces in catholyte. It was observed that the use of nickel foam as an anode, 1 M NiSO solution as anolyte, graphite felt as a cathode, phosphate buffer solution as catholyte at a pH of 5.2 proved to be the best possible combination for MES for this study to get enhanced product yield at higher energy efficiency.

摘要

从沼气中的二氧化碳电合成多碳化合物是一种新兴的沼气净化方法。使用不同电极材料制造的微生物电合成(MES)电池,在相对于标准氢电极(SHE)为-0.7 V的施加阴极电位下,在阴极室中使用不同的电解质和混合厌氧培养物作为生物催化剂进行操作。MES阴极室中通过还原CO产生乙酸盐、异丁酸盐、丙酸盐和2-哌啶酮的速率分别为0.81 mM/天、0.63 mM/天、0.44 mM/天和0.53 mM/天。由于沼气中也存在甲烷,这些酸的甲基衍生物在阴极电解液中也有微量发现。据观察,在本研究中,使用泡沫镍作为阳极,1 M NiSO溶液作为阳极电解液,石墨毡作为阴极,pH为5.2的磷酸盐缓冲溶液作为阴极电解液,被证明是MES的最佳组合,可在更高的能量效率下提高产物产率。

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