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Adsorption of organic chemicals in soils.

机译:有机化学物质在土壤中的吸附。

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摘要

This paper presents a review on adsorption of organic chemicals on soils sediments and their constituents. The first part of this review deals with adsorption from gas and liquid phases and gives a discussion on the physical meaning of the shape of adsorption isotherms. Results show that no general rules can be proposed to describe univocally the relation between the shape of isotherms and the nature of adsorbate-adsorbent system. Kinetics of adsorption is discussed through the description of various models. Theoretical developments exist both for the thermodynamics and the kinetics of adsorption, but there is a strong need for experimental results. Possible adsorption mechanisms are ion exchange, interaction with metallic cations, hydrogen bonds, charge transfers, and London-van der Waals dispersion forces/hydrophobic effect. However, direct proofs of a given mechanism are rare. Several factors influence adsorption behavior. Electronic structure of adsorbed molecules, properties of adsorbents, and characteristics of the liquid phase are discussed in relation to adsorption. Such properties as water solubility, organic carbon content of adsorbing materials, and the composition of the liquid phase are particularly important. Evaluation of adsorption can be obtained through either laboratory measurements or use of several correlations. Adsorption measurements must be interpreted, taking into account treatment of adsorbent materials, experimental conditions, and secondary phenomena such as degradations. Correlations between adsorption coefficients and water-octanol partition coefficient or water solubility are numerous. They may be useful tools for prediction purposes. Relations with transport, bioavailability, and degradation are described.
机译:本文介绍了有机化学物质在土壤沉积物及其成分上的吸附作用。本文的第一部分讨论了气相和液相的吸附问题,并对吸附等温线形状的物理意义进行了讨论。结果表明,无法提出一般规则来明确描述等温线形状与被吸附物-吸附剂系统性质之间的关系。通过描述各种模型来讨论吸附动力学。吸附的热力学和动力学都存在理论上的发展,但是对实验结果的需求非常强烈。可能的吸附机理是离子交换,与金属阳离子的相互作用,氢键,电荷转移和伦敦范德华分散力/疏水效应。但是,很少有给定机制的直接证明。几个因素影响吸附行为。讨论了与吸附有关的吸附分子的电子结构,吸附剂的性质以及液相的特征。诸如水溶性,吸附材料的有机碳含量以及液相组成之类的特性尤其重要。可以通过实验室测量或使用几种相关性来评估吸附。必须解释吸附量,并考虑到吸附剂材料的处理,实验条件以及诸如降解之类的次要现象。吸附系数与水辛醇分配系数或水溶性之间的相关性很多。它们可能是用于预测目的的有用工具。描述了与运输,生物利用度和降解的关系。

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