厌氧消化
微生物电解槽
电解
沼气
甲烷
废水
有机质
微生物燃料电池
生化工程
原材料
化学
阳极
废物管理
环境科学
制浆造纸工业
环境工程
工程类
有机化学
电极
物理化学
电解质
作者
Aditya Amrut Pawar,Anandakrishnan Karthic,Sangmin Lee,Soumya Pandit,Sokhee P. Jung
出处
期刊:Environmental Engineering Research
[Korean Society of Environmental Engineering]
日期:2020-12-24
卷期号:27 (1): 200484-
被引量:99
摘要
Anaerobic digestion is a traditional method of producing methane-containing biogas by utilizing the methanogenic conversion of organic matter like agricultural waste and animal excreta. Recently, the application of microbial electrolysis cell (MECs) technology to a traditional anaerobic digestion system has been extensively studied to find new opportunities in increasing wastewater treatability and methane yield and producing valuable chemicals. The finding that both anodic and cathodic bacteria can synthesize methane has led to the efforts of optimizing multiple aspects like microbial species, formation of biofilms, substrate sources and electrode surface for higher production of the combustible compound. MECs are very fascinating because of its ability to uptake a wide variety of raw materials including untreated wastewater (and its microbial content as biocatalysts). Extensive work in this field has established different systems of MECs for hydrogen production and biodegradation of organic compounds. This review is dedicated to explaining the operating principles and mechanism of the MECs for electromethanogenesis using different biochemical pathways. Emphasis on single- and double-chambered MECs along with reactor components is provided for a comprehensive description of the technology. Methane production using hydrogen evolution reaction and nanocatalysts has also been discussed.
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