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重金属在超富集植物热处理过程中的迁移和转化:综述。

Migration and transformation of heavy metals in hyperaccumulators during the thermal treatment: a review.

机构信息

School of Energy and Environmental Engineering, University of Science and Technology Beijing, Beijing, 100083, China.

Beijing Key Laboratory of Resource-oriented Treatment of Industrial Pollutants, University of Science and Technology Beijing, Beijing, 100083, China.

出版信息

Environ Sci Pollut Res Int. 2021 Sep;28(35):47838-47855. doi: 10.1007/s11356-021-15346-8. Epub 2021 Jul 23.

Abstract

The pollution of heavy metals (HMs) in the soil has become one of the important factors affecting the national environment and human health. Phytoremediation, as a technology to deal with HM pollution in soil, has been extensively studied and applied due to its sustainability and environmental friendliness. However, hyperaccumulators polluted by HMs need to be properly treated to avoid secondary pollution to the environment. This paper reviews the migration and transformation of HMs during the incineration, pyrolysis, gasification, and hydrothermal treatment of hyperaccumulators; comprehensively evaluates the advantages and disadvantages of each technology in the treatment of HM-enriched hyperaccumulators; and analyzes the current development status and unsolved problems in detail for each technology. Generally speaking, thermal treatment technology can fix most of the HMs of exchangeable fraction in biochar, reducing its bioavailability and biotoxicity. In addition, the application direction and research focus of the target product are discussed, and it is clarified that in the future, it is necessary to further optimize the reaction conditions and explore the mechanism of HM immobilization to maximize the immobilization of HMs and improve the quality and output of the target product.

摘要

土壤中重金属(HMs)的污染已成为影响国家环境和人类健康的重要因素之一。由于其可持续性和环境友好性,植物修复作为一种处理土壤中 HM 污染的技术,已经得到了广泛的研究和应用。然而,被 HMs 污染的超富集植物需要进行适当的处理,以避免对环境造成二次污染。本文综述了超富集植物在焚烧、热解、气化和水热处理过程中 HMs 的迁移和转化;全面评估了每种技术在处理富含 HM 的超富集植物方面的优缺点;并详细分析了每种技术的当前发展状况和未解决的问题。总的来说,热处理技术可以固定生物炭中大部分可交换态的 HMs,降低其生物可利用性和生物毒性。此外,还讨论了目标产物的应用方向和研究重点,并阐明了未来有必要进一步优化反应条件,探索 HM 固定化机制,以最大限度地固定 HMs,提高目标产物的质量和产量。

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