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关于汞污染土壤的植物修复综述。

A review on phytoremediation of mercury contaminated soils.

机构信息

Green Intelligence Environmental School, Yangtze Normal University, 16 Juxian Rd. Lidu, Fuling District of Chongqing, China; Chongqing Multiple-source Technology Engineering Research Center for Ecological Environment Monitoring, Yangtze Normal University, 16 Juxian Rd. Lidu, Fuling District of Chongqing, China.

Fuling Environmental Monitoring Center, 3 Taibai Rd, Fuling New District of Chongqing, China.

出版信息

J Hazard Mater. 2020 Dec 5;400:123138. doi: 10.1016/j.jhazmat.2020.123138. Epub 2020 Jun 19.

Abstract

Mercury (Hg) and its compounds are one of the most dangerous environmental pollutants and Hg pollution exists in soils in different degrees over the world. Phytoremediation of Hg-contaminated soils has attracted increasing attention for the advantages of low investment, in-situ remediation, potential economic benefits and so on. Searching for the hyperaccumulator of Hg and its application in practice become a research hotspot. In this context, we review the current literatures that introduce various experimental plant species for accumulating Hg and aided techniques improving the phytoremediation of Hg-contaminated soils. Experimental plant species for accumulating Hg and accumulation or translocation factor of Hg are listed in detail. The translocation factor (TF) is greater than 1.0 for some plant species, however, the bioaccumulation factor (BAF) is greater than 1.0 for Axonopus compressus only. Plant species, soil properties, weather condition, and the bioavailability and heterogeneity of Hg in soils are the main factors affecting the phytoremediation of Hg-contaminated soils. Chemical accelerator kinds and promoting effect of chemical accelerators for accumulating and transferring Hg by various plant species are also discussed. Potassium iodide, compost, ammonium sulphate, ammonium thiosulfate, sodium sulfite, sodium thiosulfate, hydrochloric acid and sulfur fertilizer may be selected to promote the absorption of Hg by plants. The review introduces transgenic gene kinds and promoting effect of transgenic plants for accumulating and transferring Hg in detail. Some transgenic plants can accumulate more Hg than non-transgenic plants. The composition of rhizosphere microorganisms of remediation plants and the effect of rhizosphere microorganisms on the phytoremediation of Hg-contaminated soils are also introduced. Some rhizosphere microorganisms can increase the mobility of Hg in soils and are beneficial for the phytoremediation.

摘要

汞(Hg)及其化合物是最危险的环境污染物之一,全球土壤不同程度地存在汞污染。利用植物修复受汞污染的土壤,因其投资低、原位修复、潜在经济效益等优点而受到越来越多的关注。寻找汞的超富集植物并将其应用于实践已成为研究热点。在此背景下,我们综述了介绍各种用于积累汞的实验植物物种及其辅助技术以提高受汞污染土壤的植物修复的文献。详细列出了用于积累汞的实验植物物种及其汞的积累或迁移因子。一些植物物种的迁移因子(TF)大于 1.0,然而,只有 Axonopus compressus 的生物积累因子(BAF)大于 1.0。植物物种、土壤性质、天气条件以及土壤中汞的生物利用度和异质性是影响受汞污染土壤植物修复的主要因素。还讨论了各种植物物种积累和转移汞的化学促进剂种类及其促进作用。碘化钾、堆肥、硫酸铵、硫代硫酸铵、亚硫酸钠、硫代硫酸钠、盐酸和硫酸肥料可用于促进植物吸收汞。本综述详细介绍了转基因植物积累和转移汞的转基因种类及其促进作用。一些转基因植物比非转基因植物积累更多的汞。还介绍了修复植物根际微生物的组成及其对受汞污染土壤的植物修复的影响。一些根际微生物可以增加土壤中汞的迁移性,有利于植物修复。

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