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Cation-mediated cross-linking in natural organic matter: a review

机译:阳离子介导的天然有机物交联:综述

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摘要

Interactions between cations and natural organic matter (NOM) are central for the stability of organic matter, formation of supramolecular NOM structure, formation of organo-mineral associations, soil aggregation and binding of organic contaminants. The effect of multivalent cations on environmental functionalities of NOM strongly depends on the relative importance between intramolecular complex-ation and intermolecular cross-linking, the degree of which will be determined by the spatial arrangement of the hydrophilic functional groups in NOM. This literature review seeks to evaluate the current state of the art regarding the relevance of intermolecular crosslinks via bridges of multivalent cations. Cross-linking has been suggested to explain among others aggregate stability, retarded dissolved organic matter release, reduced organic matter (OM) solubility as well as increase in degree and nonlinearity of sorption or organic chemicals to NOM. Although the cross-linking mechanism has been suggested in numerous studies, it has not yet been verified directly. The dynamics of the intermolecular cross-links, their persistence as well as their interplay with OM and their influence on stability and bioavailability of organic chemicals is up to now unknown. The major challenge in this context is the development of a suitable combination of experimental and instrumental techniques and relating the results to molecular and physicochemical models on the basis of targeted combination of spectroscopic, molecular modelling and thermoanalytical methods.
机译:阳离子与天然有机物(NOM)之间的相互作用对于有机物的稳定性,超分子NOM结构的形成,有机矿物质缔合的形成,土壤聚集和有机污染物的结合至关重要。多价阳离子对NOM的环境功能的影响在很大程度上取决于分子内络合和分子间交联之间的相对重要性,其程度将取决于NOM中亲水性官能团的空间排列。这篇文献综述旨在评估有关通过多价阳离子桥进行分子间交联的相关性的现有技术。已经提出了交联来解释聚集体稳定性,延迟的溶解有机物释放,降低的有机物(OM)溶解度以及对NOM的吸附或有机化学物质的程度和非线性的增加。尽管在许多研究中都提出了交联机制,但尚未直接对其进行验证。分子间交联的动力学,它们的持久性以及它们与OM的相互作用以及它们对有机化学品的稳定性和生物利用度的影响目前还未知。在这种情况下,主要的挑战是开发适当的实验和仪器技术组合,并根据光谱,分子建模和热分析方法的目标组合,将结果与分子和物理化学模型联系起来。

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