4.6 Article

Applications of Biochar and Modified Biochar in Heavy Metal Contaminated Soil: A Descriptive Review

期刊

SUSTAINABILITY
卷 13, 期 24, 页码 -

出版社

MDPI
DOI: 10.3390/su132414041

关键词

biochar; modified biochar; heavy metal; remediation mechanism; soil

资金

  1. National Natural Science Foundation of China [52160017]
  2. Guangxi Natural Science Foundation Project [2018GXNSFAA050044]
  3. Guangxi Science and Technology Planning Project [Guike-AD19110105, GuiKe-AD18126018]
  4. Research Startup Fund of Guilin University of Technology [GUTQDJJ2006022, GUTQDJJ2017072]

向作者/读者索取更多资源

This review provides an overview of the use of biochar and modified biochar as eco-friendly and cost-effective materials for remediating heavy-metal-contaminated soil. It covers topics such as raw materials, synthesis methods, mechanisms of action, monitoring technologies, and future research directions, aiming to support the development of green environmental protection materials and effective follow-up monitoring techniques.
Given that the problem of contaminated soil continues to grow, the development of effective control and remediation measures has become imperative, especially for heavy-metal-contaminated soil. Biochar and modified biochar are eco-friendly and cost-effective remediation materials that are widely used in the remediation of contaminated soil. This review provides an overview of the different raw materials used in the preparation of biochar as well as the modification of biochar using various synthesis methods, highlighting their differences and providing recommendations for biochar and modified biochar as applied toward ameliorating pollution in soil contaminated by heavy metals. We also explore the effects of the physicochemical properties of raw materials, pyrolysis temperature, additives, and modification methods on the properties of the resulting biochar and modified biochar, and systematically present the types of soil and operating factors for repair. Moreover, the mechanisms involved in remediation of heavy-metal-contaminated soil by biochar and modified biochar are outlined in detail, and include adsorption, complexation, precipitation, ion exchange, and electrostatic attractions. Finally, the corresponding monitoring technologies after remediation are illustrated. Future directions for studies on biochar and modified biochar in the remediation of contaminated soil are also proposed to support the development of green environmental protection materials, simple preparation methods, and effective follow-up monitoring techniques.

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