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Evaluation of Linear Alkylbenzene Sulfonate (LAS) behaviour in agricultural soil through laboratory continuous studies

机译:通过实验室连续研究评估线性土壤烷基苯磺酸盐(LAS)在农业土壤中的行为

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The behaviour of Linear Alkylbenzene Sulfonate (LAS) in agricultural soil is investigated in the laboratory using continuous-flow soil column studies in order to simultaneously analyze the three main underlying phenomena (adsorption/desorption, degradation and transport). The continuous-flow soil column experiments generated the breakthrough curves for each LAS homologue, C-10, C-11, C-12 and C-13, and by adding them up, for total LAS, from which the relevant retention, degradation and transport parameters could be estimated, after proposing adequate models. Several transport equations were considered, including the degradation of the sorbate in solution and its retention by soil, under equilibrium and non-equilibrium conditions between the sorbent and the sorbate. In general, the results obtained for the estimates of those parameters that were common to the various models studied (such as the isotherm slope, first order degradation rate coefficient and the hydrodynamic dispersion coefficient) were rather consistent, meaning that mass transfer limitations are not playing a major role in the experiments. These three parameters increase with the length of the LAS homologue chain. The study will provide the underlying conceptual framework and fundamental parameters to understand, simulate and predict the environmental behaviour of LAS compounds in agricultural soils. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在实验室中,使用连续流动土壤柱研究对线性烷基苯磺酸盐(LAS)在农业土壤中的行为进行了研究,以便同时分析三种主要的潜在现象(吸附/解吸,降解和运输)。连续流土柱实验生成了每个LAS同源物C-10,C-11,C-12和C-13的突破曲线,并将它们相加得出总LAS,从中可以得出相关的保留,降解和在提出适当的模型后,可以估算运输参数。考虑了几种迁移方程,包括在吸附剂和被吸附物之间的平衡和非平衡条件下溶液中山梨酸酯的降解及其在土壤中的保留。通常,对于所研究的各种模型所共有的那些参数(例如等温线斜率,一阶降解速率系数和流体动力扩散系数)而言,所获得的估计结果相当一致,这意味着没有发挥传质限制在实验中扮演重要角色这三个参数随LAS同源链的长度增加。该研究将提供基础的概念框架和基本参数,以了解,模拟和预测农业土壤中LAS化合物的环境行为。 (C)2015 Elsevier Ltd.保留所有权利。

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