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环境中的锑氧化还原过程:相关氧化剂和还原剂的批判性回顾。

Antimony redox processes in the environment: A critical review of associated oxidants and reductants.

机构信息

Department of Earth and Environmental Sciences, Korea University, Seoul 02841, Republic of Korea.

Biosciences Division, Argonne National Laboratory, Lemont, IL 60439, USA.

出版信息

J Hazard Mater. 2022 Jun 5;431:128607. doi: 10.1016/j.jhazmat.2022.128607. Epub 2022 Mar 1.

Abstract

The environmental behavior of antimony (Sb) has recently received greater attention due to the increasing global use of Sb in a range of industrial applications. Although present at trace levels in most natural systems, elevated Sb concentrations in aquatic and terrestrial environments may result from anthropogenic activities. The mobility and toxicity of Sb largely depend on its speciation, which is dependent to a large extent on its oxidation state. To a certain extent, our understanding of the environmental behavior of Sb has been informed by studies of the environmental behavior of arsenic (As), as Sb and As have somewhat similar chemical properties. However, recently it has become evident that the speciation of Sb and As, especially in the context of redox reactions, may be fundamentally different. Therefore, it is crucial to study the biogeochemical processes impacting Sb redox transformations to understand the behavior of Sb in natural and engineered environments. Currently, there is a growing body of literature involving the speciation, mobility, toxicity, and remediation of Sb, and several reviews on these general topics are available; however, a comprehensive review focused on Sb environmental redox chemistry is lacking. This paper provides a review of research conducted within the past two decades examining the redox chemistry of Sb in aquatic and terrestrial environments and identifies knowledge gaps that need to be addressed to develop a better understanding of Sb biogeochemistry for improved management of Sb in natural and engineered systems.

摘要

由于锑(Sb)在一系列工业应用中的全球使用量不断增加,其环境行为最近受到了更多关注。尽管 Sb 在大多数自然系统中仅以痕量存在,但水生和陆地环境中 Sb 浓度的升高可能是人为活动造成的。Sb 的迁移性和毒性在很大程度上取决于其形态,而形态又在很大程度上取决于其氧化态。在一定程度上,我们对 Sb 环境行为的理解是通过对砷(As)环境行为的研究得出的,因为 Sb 和 As 具有某些相似的化学性质。然而,最近显然表明,Sb 和 As 的形态,特别是在氧化还原反应的背景下,可能存在根本差异。因此,研究影响 Sb 氧化还原转化的生物地球化学过程对于了解 Sb 在自然和工程环境中的行为至关重要。目前,涉及 Sb 形态、迁移性、毒性和修复的文献越来越多,关于这些一般主题的几篇评论文章也已发表;然而,缺乏针对 Sb 环境氧化还原化学的全面综述。本文回顾了过去二十年中在研究 Sb 在水生和陆地环境中的氧化还原化学方面所做的研究,并确定了需要解决的知识空白,以更好地了解 Sb 的生物地球化学,从而改善 Sb 在自然和工程系统中的管理。

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