Mechanistic insights of removing pollutant in adsorption and advanced oxidation processes by sludge biochar

生物炭 吸附 热解 催化作用 化学 污水污泥 化学工程 过硫酸盐 污水处理 废物管理 环境工程 环境科学 有机化学 工程类
作者
Jingqin Ji,Xingzhong Yuan,Yanlan Zhao,Longbo Jiang,Hou Wang
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:430: 128375-128375 被引量:79
标识
DOI:10.1016/j.jhazmat.2022.128375
摘要

With the accelerated industrialization, more and more sewage sludge (SS) needs to be treated properly. The conversion of sludge into harmless biochar material with dual utilization value of adsorption and catalysis by pyrolysis is in line with the concept of sustainable development. However, the reaction mechanisms of pristine sludge biochar (SDBC) and its composites (SDBCs) in adsorption, persulfate (PS), and Fenton-like advanced oxidation processes (AOPs) are very closely related to its adsorption performance and catalytic efficiency. In this paper, from the application mechanisms of SDBC in adsorption and AOPs, we review in detail the common methods for synthesizing SDBC and their characteristics. We discuss the synthesis techniques that affect the structural, chemical, and catalytic properties of SDBC, including gasification, pyrolysis, and hydrothermal carbonation (HTC). The pyrolysis temperature, environmental factors, and sludge characteristics have important effects on the properties of SDBC, leading to different mechanisms in adsorption and catalytic processes. Furthermore, this paper systematically generalizes the mechanisms of SDBCs in adsorption, where π-π interactions and electrostatic attractions are the main adsorption mechanisms. Then, activation mechanisms of SDBCs in PS and Fenton-like AOPs systems are discussed, including free radical pathways and non-free radical pathways. Finally, we present several challenges and perspectives for the application of SDBC and SDBCs in the field of adsorption, PS, and Fenton-like AOPs from the mechanistic point of views.

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