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从经典方法到纳米材料在土壤修复中的应用:有毒金属(类)污染土壤修复方法的综合观点。

From classic methodologies to application of nanomaterials for soil remediation: an integrated view of methods for decontamination of toxic metal(oid)s.

机构信息

Department of Chemistry, FFCLRP-USP, University of São Paulo - USP, Ribeirão Preto, SP, Brazil.

出版信息

Environ Sci Pollut Res Int. 2020 Apr;27(10):10205-10227. doi: 10.1007/s11356-020-08032-8. Epub 2020 Feb 17.

Abstract

Soil pollution with toxic elements is a recurrent issue due to environmental disasters, fossil fuel burning, urbanization, and industrialization, which have contributed to soil contamination over the years. Therefore, the remediation of toxic metals in soil is always an important topic since contaminated soil can affect the environment, agricultural safety, and human health. Many remediation methods have been developed; however, it is essential to ensure that they are safe, and also take into account the limitation of each methodology (including high energy input and generation of residues). This scenario has motivated this review, where we explore soil contamination with arsenic, lead, mercury, and chromium and summarize information about the methods employed to remediate each of these toxic elements such as phytoremediation, soil washing, electrokinetic remediation, and nanoparticles besides elucidating some mechanisms involved in the remediation. Considering all the discussed techniques, nowadays, different techniques can be combined together in order to improve the efficiency of remediation besides the new approach of the techniques and the use of one technique for remediating more than one contaminant.

摘要

由于环境灾害、化石燃料燃烧、城市化和工业化,土壤中的有毒元素污染是一个反复出现的问题,这些因素导致了多年来的土壤污染。因此,修复土壤中的有毒金属一直是一个重要的课题,因为受污染的土壤会影响环境、农业安全和人类健康。已经开发了许多修复方法;然而,必须确保它们是安全的,并且还要考虑到每种方法的局限性(包括高能量输入和产生残留物)。正是这种情况促使我们进行了这项综述,我们探讨了砷、铅、汞和铬的土壤污染,并总结了用于修复这些有毒元素的方法信息,如植物修复、土壤淋洗、电动修复和纳米颗粒,此外还阐明了修复过程中涉及的一些机制。考虑到所有讨论过的技术,如今,可以将不同的技术结合在一起,以提高修复效率,除了新技术的新方法和使用一种技术来修复多种污染物。

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