电合成
微生物燃料电池
微生物代谢
资源回收
厌氧氨氧化菌
污水处理
环境科学
反硝化
生化工程
硝酸盐
废水
化学
环境化学
氮气
环境工程
电化学
反硝化细菌
工程类
生物
电极
细菌
有机化学
遗传学
物理化学
阳极
作者
Na Chu,Yong Jiang,Qinjun Liang,Panpan Liu,Li Wang,Xueming Chen,Daping Li,Peng Liang,Raymond Jianxiong Zeng,Yifeng Zhang
标识
DOI:10.1021/acs.est.2c07588
摘要
Electricity-driven microbial metabolism relies on the extracellular electron transfer (EET) process between microbes and electrodes and provides promise for resource recovery from wastewater and industrial discharges. Over the past decades, tremendous efforts have been dedicated to designing electrocatalysts and microbes, as well as hybrid systems to push this approach toward industrial adoption. This paper summarizes these advances in order to facilitate a better understanding of electricity-driven microbial metabolism as a sustainable waste-to-resource solution. Quantitative comparisons of microbial electrosynthesis and abiotic electrosynthesis are made, and the strategy of electrocatalyst-assisted microbial electrosynthesis is critically discussed. Nitrogen recovery processes including microbial electrochemical N2 fixation, electrocatalytic N2 reduction, dissimilatory nitrate reduction to ammonium (DNRA), and abiotic electrochemical nitrate reduction to ammonia (Abio-NRA) are systematically reviewed. Furthermore, the synchronous metabolism of carbon and nitrogen using hybrid inorganic-biological systems is discussed, including advanced physicochemical, microbial, and electrochemical characterizations involved in this field. Finally, perspectives for future trends are presented. The paper provides valuable insights on the potential contribution of electricity-driven microbial valorization of waste carbon and nitrogen toward a green and sustainable society.
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