苯酚
化学
生物膜
降级(电信)
地杆菌
电极
生物降解
胞外聚合物
环境化学
化学工程
制浆造纸工业
细菌
生物
有机化学
电信
遗传学
物理化学
计算机科学
工程类
作者
Lili Tian,Chengmei Liao,Xuejun Yan,Qian Zhao,Ziyuan Wang,Tian Li,Nan Li,Xin Wang
标识
DOI:10.1016/j.jhazmat.2022.130043
摘要
Reducing the electrode spacing in bioelectrochemical systems (BESs) are widely reported to improve power output, which was mainly attributed to the decrease of ohmic resistance (Rohm) for a long time. Here we found the change of endogenous electric field (EF) intensity was the key to improve electroactivity in response to a reduced electrode spacing, which also accelerated phenol biodegradation. Correlation and principal components analysis revealed that the microbial community of electroactive biofilm (EAB) was independent of Rohm, while the EF intensity was found closely related to most of predominant genera. A strong EF selectively enriched phenol-degrading bacteria Comamonas in suspension and Geobacter in EAB, contributed to the improvement of degradation efficiency. EF also induced the secretion of extracellular polymeric substances, protected EAB from being inactivated by phenol. Our findings highlighted the importance of EF intensity on BESs performance, providing new insights into the design and application of BESs in wastewater treatment.
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