Review on intensified treatment of refractory wastewater in anaerobic digestion based on extracellular electron transfer: Mechanisms, strategies, and applications

厌氧消化 污染物 流出物 废水 污水处理 化学 难熔金属 废物管理 制浆造纸工业 环境化学 环境科学 环境工程 工程类 甲烷 有机化学
作者
Longyi Lv,Bingbing Yin,Shiyang Zhang,Weiguang Li,Wenfang Gao,Pengfei Wang,Xiaoyang Liu,Li Sun,Jinsong Liang,Guangming Zhang,Zhijun Ren
出处
期刊:Chemical Engineering Journal [Elsevier]
卷期号:489: 151456-151456 被引量:11
标识
DOI:10.1016/j.cej.2024.151456
摘要

In anaerobic digestion (AD) system for the treatment of refractory wastewater, extracellular electron transfer (EET) by microorganisms is critical in influencing pollutant degradation and wastewater resourcing. However, when removing pollutants from refractory wastewater using AD technology, hydrolysis by extracellular enzymes is limited by EET efficiency, which often difficult to achieve their efficient degradation. Meanwhile, the anaerobic bacterial community was impacted by the toxicity of pollutants, which also affected the interspecies electron transfer, which seriously affected the effluent water quality and methane production. Therefore, intensifying the EET efficiency of the anaerobic system has become the key to break through the bottleneck of refractory wastewater treatment and resource utilization technology. In this paper, the EET mechanisms in the AD system for treating refractory wastewaters are summarized and a systematic review of EET intensification strategies for AD systems for treating refractory wastewaters, including EET from microorganisms to pollutants and electroactive bacteria to methanogens, is presented. In addition, this paper discusses in detail the application of EET based on enhanced treatment of refractory wastewaters containing pollutants with electron-absorbing groups (azo dyes, halogenated compounds, nitroaromatic compounds) and heavy metal oxides, and it also looks forward to the research direction and application prospect of regulating EET. This paper will provide a reference for treating and resourcing refractory wastewaters by AD technology.
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