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不同溶解有机物质极性组分影响铁铝土吸附除草剂 MCPA 的机制。

Mechanisms by which different polar fractions of dissolved organic matter affect sorption of the herbicide MCPA in ferralsol.

机构信息

Institute of Environment and Plant Protection, Chinese Academy of Tropical Agricultural Sciences, Haikou 571101, PR China.

Rubber Research Institute, Chinese Academy of Tropical Agricultural Sciences, Haikou 571101, PR China.

出版信息

J Hazard Mater. 2021 Aug 15;416:125774. doi: 10.1016/j.jhazmat.2021.125774. Epub 2021 Mar 31.

Abstract

Exogenous dissolved organic matter (DOM) modifies the sorption of 4-chloro-2-methylphenoxyacetic acid (MCPA, a polar herbicide) in soil. However, how the chemodiversity and diverse fractions of DOM affect MCPA sorption is still unknown. Here, DOM was extracted from compost and rice straw; the structure-activity correlations between DOM chemodiversity and their effects on MCPA sorption were investigated by redundancy analysis. Moreover, the mechanism involved was explored by spectroscopic techniques, microbeam and modeling. DOM mainly affected MCPA sorption by altering soil surface properties and MCPA complexed form. Hydrophobic neutral (HON) and acid insoluble matter (AIM) were the fractions of DOM that most inhibited MCPA sorption through soil pore blockage, and were related to the humic-like substances with high aromaticity and large molecular weight. The hydrophobic acid fraction (HOA) only showed an intermediate inhibition on the sorption, although the largest competitive sorption occurred. This was because HOA contained abundant aromatic acid and polar groups with moderate polarity. Thus, the reduced effect caused by competitive sorption was partly compensated by the greatest co-sorption by HOA. The hydrophilic matter (HIM) had the weakest inhibition on MCPA sorption, because this fraction was rich in simple sugars, poly- and oligosaccharides, but lacked aryl groups. The results will aid in the risk assessments and prevention of MCPA in DOM-introduced soil.

摘要

外源性溶解有机质 (DOM) 会改变土壤中 4-氯-2-甲基苯氧乙酸 (MCPA,一种极性除草剂) 的吸附。然而,DOM 的化学多样性和不同组分如何影响 MCPA 的吸附仍不清楚。在这里,DOM 是从堆肥和稻草中提取的;通过冗余分析研究了 DOM 化学多样性与它们对 MCPA 吸附的影响之间的结构-活性相关性。此外,还通过光谱技术、微束和建模来探讨所涉及的机制。DOM 主要通过改变土壤表面性质和 MCPA 的络合形式来影响 MCPA 的吸附。疏水性中性(HON)和酸不溶物(AIM)是 DOM 的组分,它们通过土壤孔隙堵塞对 MCPA 的吸附抑制作用最大,与富里酸样物质具有高芳香度和较大分子量有关。疏水性酸(HOA)仅表现出对吸附的中等抑制作用,尽管发生了最大的竞争吸附。这是因为 HOA 含有丰富的芳香酸和具有中等极性的极性基团。因此,竞争吸附引起的减少效应部分被 HOA 的最大共吸附所补偿。亲水性物质(HIM)对 MCPA 吸附的抑制作用最弱,因为该组分富含简单糖、多聚糖和寡聚糖,但缺乏芳基。这些结果将有助于评估和预防 DOM 引入土壤中 MCPA 的风险。

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