生物炭
化学
生物降解
产甲烷
苯酚
废水
核化学
吸附
无氧运动
降级(电信)
缺氧水域
环境修复
环境化学
甲烷
热解
有机化学
废物管理
污染
生理学
电信
计算机科学
工程类
生物
生态学
作者
Da Li,Qinxue Wen,Zhiqiang Chen
标识
DOI:10.1016/j.biortech.2024.130308
摘要
In this study, two kinds of magnetic biochar (BC) were synthesized by loading Fe (FeBC) and Fe–Mn oxides (FMBC) and their effects on anaerobic phenolics degradation were investigated. Compared with BC/FMBC, FeBC addition achieved the superior phenolics biodegradation even for 3,5-xylenol. Compared with control, FeBC addition enhanced CH4 production by 100.1 % with the lag time shortened from 9.5 days to 6.6 days while it increased to 11.2 days with FMBC addition. FeBC addition activated adsorption-biodegradation and Fe (III) reduction with the improved electron transfer activity, adenosine triphosphate and cytochrome C concentrations. Abundant phenol degrading bacteria, electroactive bacteria, syntrophic partners could be enriched by FeBC addition, contributing to the enhanced benzoyl-CoA and methanogenesis pathways. However, this enhancement was inhibited by FMBC addition owing to the accumulation of reactive oxygen species. This study provided novel insights into the application of magnetic BC to enhanced anaerobic treatment of phenolic wastewater.
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