环境修复
芘
化学
生物修复
环境化学
污染物
微生物代谢
代谢途径
电动现象
电动修复
生物降解
微生物
降级(电信)
新陈代谢
微生物降解
污染
生物化学
细菌
有机化学
生态学
生物
电信
遗传学
物理化学
计算机科学
作者
Ruijuan Fan,Haihua Tian,Qiong Wu,Yuanyuan Yi,Xingfu Yan,Bingru Liu
标识
DOI:10.1016/j.jhazmat.2021.126959
摘要
In this study, the mechanism of bio-electrokinetic (BIO-EK) remediation to improve the degradation of pyrene was evaluated based on an analysis of the intermediate products and the microbial community. The results show that BIO-EK remediation has a higher pyrene degradation efficiency on pyrene and its intermediate products than the bioremediation and electrokinetic (EK) remediation processes. A series of intermediate products were detected. According to the type of the intermediate products, two degradation pathways, biological metabolism and electrochemical oxidation, are proposed in the BIO-EK remediation of pyrene. Furthermore, the primary microbial taxa involved in the pollutant degradation changed, which led to variations in the functional gene components. The abundant and functional genes related to metabolism were specifically analyzed. The results indicate that the electric field promotes the expression of metabolisms associated with 14 carbohydrates, 13 lipids, 13 amino acids, five energies, and in particular, 11 xenobiotics. These results suggest that in addition to the promotion effect on the microbial metabolism caused by the electric field, BIO-EK remediation can promote the degradation of pollutants due to the coexistence of a microbial metabolic pathway and an electrochemical oxidation pathway.
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