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逐步还原法揭示了天然有机物和混合有机配体中汞的竞争结合和交换反应。

Stepwise Reduction Approach Reveals Mercury Competitive Binding and Exchange Reactions within Natural Organic Matter and Mixed Organic Ligands.

机构信息

Guangdong Key Laboratory of Environmental Pollution and Health, School of Environment , Jinan University , Guangzhou 511443 , China.

Environmental Sciences Division , Oak Ridge National Laboratory , Oak Ridge , Tennessee 37831 , United States.

出版信息

Environ Sci Technol. 2019 Sep 17;53(18):10685-10694. doi: 10.1021/acs.est.9b02586. Epub 2019 Aug 29.

Abstract

The kinetics of mercuric ion (Hg) binding with heterogeneous naturally dissolved organic matter (DOM) has been hypothesized to result from competitive interactions among different organic ligands and functional groups of DOM for Hg. However, an experimental protocol is lacking to determine Hg binding with various competitive ligands and DOM, their binding strengths, and their dynamic exchange reactions. In this study, a stepwise reduction approach using ascorbic acid (AA) and stannous tin [Sn(II)] was devised to differentiate Hg(II) species in the presence of two major functional groups in DOM: the carboxylate-bound Hg(II) is reducible by both AA and Sn(II), whereas the thiolate-bound Hg(II) is reducible only by Sn(II). Using this operational approach, the relative binding strength of Hg with selected organic ligands was found in the order dimercaptopropanesulfonate (DMPS) > glutathione (GSH) > penicillamine (PEN) > cysteine (CYS) > ethylenediaminetetraacetate > citrate, acetate, and glycine at the ligand-to-Hg molar ratio < 2. Dynamic, competitive ligand exchanges for Hg from weak carboxylate to strong thiolate functional groups were observed among these ligands and within DOM, and the reaction depended on the relative binding strength and abundance of thiols and carboxylates, as well as reaction time. These results provide additional insights into dynamic exchange reactions of Hg within multicompositional DOM in controlling the transformation and bioavailability of Hg(II) in natural aquatic environments.

摘要

汞离子(Hg)与异质天然溶解有机质(DOM)的结合动力学,据推测是由于 DOM 中不同有机配体和官能团之间的竞争相互作用所致。然而,目前缺乏一种实验方案来确定 Hg 与各种竞争配体和 DOM 的结合、它们的结合强度以及它们的动态交换反应。在这项研究中,设计了一种使用抗坏血酸(AA)和亚锡[Sn(II)]的逐步还原方法,以区分 DOM 中两种主要官能团存在时的 Hg(II)物种:AA 和 Sn(II)均可还原与羧酸盐结合的 Hg(II),而只有 Sn(II)可还原与硫醇盐结合的 Hg(II)。使用这种操作方法,发现 Hg 与选定有机配体的相对结合强度顺序为二巯基丙磺酸盐(DMPS)>谷胱甘肽(GSH)>青霉胺(PEN)>半胱氨酸(CYS)>乙二胺四乙酸(EDTA)>柠檬酸盐、醋酸盐和甘氨酸,在配体与 Hg 的摩尔比<2 时。在这些配体和 DOM 之间观察到 Hg 从弱羧酸盐到强硫醇盐官能团的动态、竞争性配体交换,反应取决于硫醇和羧酸盐的相对结合强度和丰度以及反应时间。这些结果为控制自然水生态环境中 Hg(II)的转化和生物可利用性,提供了对多组份 DOM 中 Hg 动态交换反应的深入了解。

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