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四溴双酚 A 与水锰矿的相互作用及其结合残留物的化学结构。

Stimulation of Tetrabromobisphenol A Binding to Soil Humic Substances by Birnessite and the Chemical Structure of the Bound Residues.

机构信息

Institute for Environmental Research, RWTH Aachen University , D-52056 Aachen, Germany.

出版信息

Environ Sci Technol. 2016 Jun 21;50(12):6257-66. doi: 10.1021/acs.est.5b06265. Epub 2016 Jun 2.

Abstract

Studies have shown the main fate of the flame retardant tetrabromobisphenol A (TBBPA) in soils is the formation of bound residues, and mechanisms on it are less-understood. This study investigated the effect of birnessite (δ-MnO2), a naturally occurring oxidant in soils, on the formation of bound residues. (14)C-labeled TBBPA was used to investigate the pH dependency of TBBPA bound-residue formation to two soil humic acids (HAs), Elliott soil HA and Steinkreuz soil HA, in the presence of δ-MnO2. The binding of TBBPA and its transformation products to both HAs was markedly increased (3- to 17-fold) at all pH values in the presence of δ-MnO2. More bound residues were formed with the more aromatic Elliott soil HA than with Steinkreuz soil HA. Gel-permeation chromatography revealed a uniform distribution of the bound residues within Steinkreuz soil HA and a nonuniform distribution within Elliott soil HA. (13)C NMR spectroscopy of (13)C-TBBPA residues bound to (13)C-depleted HA suggested that in the presence of δ-MnO2, binding occurred via ester and ether and other types of covalent bonds besides HA sequestration. The insights gained in this study contribute to an understanding of the formation of TBBPA bound residues facilitated by δ-MnO2.

摘要

研究表明,阻燃剂四溴双酚 A(TBBPA)在土壤中的主要归宿是形成结合残留,而其机制仍不太清楚。本研究探讨了土壤中天然氧化剂 - 钠锰矿(δ-MnO2)对结合残留形成的影响。(14)C 标记的 TBBPA 被用于研究 TBBPA 结合残留形成与两种土壤腐殖酸(HA),即 Elliott 土壤 HA 和 Steinkreuz 土壤 HA 在 δ-MnO2 存在下的 pH 值依赖性。在所有 pH 值下,δ-MnO2 的存在都显著增加了 TBBPA 及其转化产物与两种 HA 的结合(3-17 倍)。与 Steinkreuz 土壤 HA 相比,更芳香的 Elliott 土壤 HA 形成了更多的结合残留。凝胶渗透色谱显示,结合残留在 Steinkreuz 土壤 HA 中呈均匀分布,而在 Elliott 土壤 HA 中呈非均匀分布。(13)C NMR 光谱研究表明,(13)C-TBBPA 与(13)C 耗尽的 HA 结合的残留表明,在 δ-MnO2 存在下,除了 HA 螯合之外,还通过酯和醚以及其他类型的共价键发生结合。本研究的结果有助于理解 δ-MnO2 促进 TBBPA 结合残留形成的机制。

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