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腐殖酸对六价铬的非生物还原:动力学及去除机制。

Abiotic reduction of Cr(VI) by humic acids derived from peat and lignite: kinetics and removal mechanism.

机构信息

School of Civil Engineering, University of Leeds, Leeds, LS2 9JT, UK.

School of Earth and Environment, University of Leeds, Leeds, LS2 9JT, UK.

出版信息

Environ Sci Pollut Res Int. 2019 Feb;26(5):4717-4729. doi: 10.1007/s11356-018-3902-1. Epub 2018 Dec 18.

Abstract

Hexavalent chromium contamination of groundwater is a worldwide problem caused by anthropogenic and natural processes. We report the rate of Cr(VI) removal by two humic acids (extracted from Miocene age lignite and younger peat soil) in aqueous suspensions across a pH range likely to be encountered in terrestrial environments. Cr(VI) was reduced to Cr(III) in a first-order reaction with respect Cr(VI) concentration, but exhibited a partial order (~ 0.5) with respect to [H+]. This reaction was more rapid with the peat humic acid, where Cr(VI) reduction was observed at all pH values investigated (3.7 ≤ pH ≤ 10.5). C NMR and pyrolysis GC-MS spectroscopy indicate that the reaction results in loss of substituted phenolic moieties and hydroxyl groups from the humic acids. X-ray absorption spectroscopy indicated that at all pH values the resulting Cr(III) was associated with the partially degraded humic acid in an inner-sphere adsorption complex. The reaction mechanism is likely to be controlled by ester formation between Cr(VI) and phenolic/hydroxyl moieties, as this initial step is rapid in acidic systems but far less favourable in alkaline conditions. Our findings highlight the potential of humic acid to reduce and remove Cr(VI) from solution in a range of environmental conditions.

摘要

地下水六价铬污染是一个全球性问题,由人为和自然过程引起。我们报告了两种腐殖酸(分别从中新世褐煤和较年轻的泥炭土壤中提取)在可能在陆地环境中遇到的 pH 范围内,在水悬浮液中去除 Cr(VI)的速率。Cr(VI)与 Cr(VI)浓度呈一级反应,而与[H+]呈部分一级(~0.5)。该反应在泥炭腐殖酸中更快,在所有研究的 pH 值(3.7≤pH≤10.5)下都观察到 Cr(VI)的还原。C NMR 和热解 GC-MS 光谱表明,该反应导致腐殖酸中取代的酚类部分和羟基的损失。X 射线吸收光谱表明,在所有 pH 值下,生成的 Cr(III)与部分降解的腐殖酸在内球吸附络合物中相关。反应机制可能受 Cr(VI)和酚类/羟基部分之间的酯形成控制,因为该初始步骤在酸性系统中很快,但在碱性条件下远不那么有利。我们的发现强调了腐殖酸在一系列环境条件下从溶液中还原和去除 Cr(VI)的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ebf/6394447/df317fd65c91/11356_2018_3902_Fig1_HTML.jpg

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