Journal of Hazardous Materials, volume 431, pages 128584
Fabrication, application, and mechanism of metal and heteroatom co-doped biochar composites (MHBCs) for the removal of contaminants in water: A review
Yihuan Liu
1, 2
,
Yaoning Chen
1
,
Yuanping Li
3
,
Wenjun Liu
1
,
Hongjuan Jiang
1
,
H. Li
4
,
Xinli Luo
1
,
Ping Tang
1
,
Han Yan
1
,
Mengyang Zhao
1
,
Yu Yuan
1
,
Suzhen Hou
1
3
4
State Key Laboratory of Utilization of Woody Oil Resource and Institute of Biological and Environmental Engineering, Hunan Academy of Forestry, Changsha 410004, China
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Publication type: Journal Article
Publication date: 2022-06-01
Journal:
Journal of Hazardous Materials
scimago Q1
SJR: 2.950
CiteScore: 25.4
Impact factor: 12.2
ISSN: 03043894, 18733336
Environmental Chemistry
Environmental Engineering
Health, Toxicology and Mutagenesis
Pollution
Waste Management and Disposal
Abstract
The potential risk of various contaminants in water has recently attracted public attention. Biochars and modified biochars have been widely developed for environmental remediation. Metal and heteroatom co-doped biochar composites (MHBCs) quickly caught the interest of researchers with more active sites and higher affinity for contaminants compared to single-doped biochar by metal or heteroatoms. This study provides a comprehensive review of MHBCs in wastewater decontamination. Firstly, the main fabrication methods of MHBCs were external doping and internal doping, with external doping being the most common. Secondly, the applications of MHBCs as adsorbents and catalysts in water treatment were introduced emphatically, which mainly included the removal of metals, antibiotics, dyes, pesticides, phenols, and other organic contaminants. Thirdly, the removal mechanisms of contaminants by MHBCs were deeply discussed in adsorption, oxidation and reduction, and degradation. Furthermore, the influencing factors for the removal of contaminants by MHBCs were also summarized, including the physicochemical properties of MHBCs, and environmental variables of pH and co-existing substance. Finally, futural challenges of MHBCs are proposed in the leaching toxicity of metal from MHBCs, the choice of heteroatoms on the fabrication for MHBCs, and the application in the composite system and soil remediation.
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