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土壤锑污染来源的综述及受锑污染土壤修复的最新进展。

A review on sources of soil antimony pollution and recent progress on remediation of antimony polluted soils.

机构信息

Key Laboratory of Crop Physiology, Ecology and Genetic Breeding, Ministry of Education, Jiangxi Agricultural University, Nanchang 330045, China; Research Center on Ecological Sciences, Jiangxi Agricultural University, Nanchang 330045, China; School of Agriculture and Biotechnology, Hunan University of Humanities, Science and Technology, Loudi 417000, China.

Key Laboratory of Crop Physiology, Ecology and Genetic Breeding, Ministry of Education, Jiangxi Agricultural University, Nanchang 330045, China; Research Center on Ecological Sciences, Jiangxi Agricultural University, Nanchang 330045, China.

出版信息

Ecotoxicol Environ Saf. 2023 Nov 1;266:115583. doi: 10.1016/j.ecoenv.2023.115583. Epub 2023 Oct 18.

Abstract

Antimony (Sb) is a serious toxic and non-essential metalloid for animals, humans, and plants. The rapid increase in anthropogenic inputs from mining and industrial activities, vehicle emissions, and shoot activity increased the Sb concentration in the environment, which has become a serious concern across the globe. Hence, remediation of Sb-contaminated soils needs serious attention to provide safe and healthy foods to humans. Different techniques, including biochar (BC), compost, manures, plant additives, phyto-hormones, nano-particles (NPs), organic acids (OA), silicon (Si), microbial remediation techniques, and phytoremediation are being used globally to remediate the Sb polluted soils. In the present review, we described sources of soil Sb pollution, the environmental impact of antimony pollution, the multi-faceted nature of antimony pollution, recent progress in remediation techniques, and recommendations for the remediation of soil Sb-pollution. We also discussed the success stories and potential of different practices to remediate Sb-polluted soils. In particular, we discussed the various mechanisms, including bio-sorption, bio-accumulation, complexation, and electrostatic attraction, that can reduce the toxicity of Sb by converting Sb-V into Sb-III. Additionally, we also identified the research gaps that need to be filled in future studies. Therefore, the current review will help to develop appropriate and innovative strategies to limit Sb bioavailability and toxicity and sustainably manage Sb polluted soils hence reducing the toxic effects of Sb on the environment and human health.

摘要

锑(Sb)是一种对动物、人类和植物都具有严重毒性和非必需的类金属。由于采矿和工业活动、车辆排放和秸秆燃烧等人为活动导致的锑输入量迅速增加,导致环境中的锑浓度升高,这已成为全球关注的严重问题。因此,需要认真关注受锑污染土壤的修复,为人类提供安全健康的食品。目前,全球范围内采用了多种技术,包括生物炭(BC)、堆肥、粪肥、植物添加剂、植物激素、纳米颗粒(NPs)、有机酸(OA)、硅(Si)、微生物修复技术和植物修复技术,以修复受锑污染的土壤。在本综述中,我们描述了土壤锑污染的来源、锑污染对环境的影响、锑污染的多面性、修复技术的最新进展以及土壤锑污染修复的建议。我们还讨论了不同实践修复受锑污染土壤的成功案例和潜力。特别是,我们讨论了各种机制,包括生物吸附、生物积累、络合和静电吸引,这些机制可以通过将 Sb-V 转化为 Sb-III 来降低 Sb 的毒性。此外,我们还确定了未来研究中需要填补的研究空白。因此,本综述将有助于制定适当和创新的策略,以限制 Sb 的生物利用度和毒性,并可持续地管理受 Sb 污染的土壤,从而减少 Sb 对环境和人类健康的毒性影响。

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