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土壤中钼的吸附和迁移的动力学建模。

Kinetic modeling of molybdenum sorption and transport in soils.

机构信息

School of Plant, Environmental, and Soil Sciences, Louisiana State University, 308 Sturgis Hall, Baton Rouge, LA, 70803, USA.

出版信息

Environ Sci Pollut Res Int. 2020 Jun;27(16):20227-20234. doi: 10.1007/s11356-020-08546-1. Epub 2020 Apr 1.

Abstract

In this investigation, batch and column experiments were conducted to investigate the molybdenum (Mo) sorption and transport processes on a neutral-pH soil (Webster loam) and an acidic soil (Mahan sand) in Ca and K background solutions. Batch results showed that the adsorption of Mo was strongly non-linear in both soils and amount of Mo sorbed in the acidic soil was larger than the neutral soil. The Freundlich distribution coefficients (K) and Langmuir sorption maxima (S) in Ca background solution are larger than that in K solution, indicating greater Mo sorption in Ca than in K. Experimental breakthrough curves (BTCs) demonstrated that mobility of Mo was higher at neutral condition than that at acidic condition. A multi-reaction transport model (MRTM) formulation with two kinetic retention reactions (reversible and irreversible) well described Mo transport for Webster soil. However, MRTM model which accounts for equilibrium and kinetic sites is recommended for Mo transport in Mahan soil, reflecting different soil properties. Based on inverse modeling, the sorption forward rate coefficients (k) obtained from Ca in both soils are larger than that from K, which consistent with batch experiment. Overall, MRTM model was capable of describing the Mo transport behavior under different geochemical conditions.

摘要

在这项研究中,通过批处理和柱实验研究了钼(Mo)在中性 pH 土壤(Webster 壤土)和酸性土壤(Mahan 砂)在 Ca 和 K 背景溶液中的吸附和迁移过程。批处理结果表明,Mo 在两种土壤中的吸附均强烈呈非线性,并且酸性土壤中吸附的 Mo 量大于中性土壤。Ca 背景溶液中的 Freundlich 分布系数(K)和 Langmuir 吸附最大值(S)大于 K 溶液,表明 Ca 比 K 更有利于 Mo 的吸附。实验突破曲线(BTC)表明,Mo 在中性条件下的迁移率高于酸性条件。具有两个动力学保留反应(可逆和不可逆)的多反应迁移模型(MRTM)公式很好地描述了 Webster 土壤中 Mo 的迁移。然而,对于 Mahan 土壤中的 Mo 迁移,建议使用考虑到平衡和动力学位点的 MRTM 模型,这反映了不同的土壤特性。基于反演模拟,从两种土壤中的 Ca 获得的吸附前向速率系数(k)大于从 K 获得的,这与批处理实验一致。总体而言,MRTM 模型能够描述不同地球化学条件下 Mo 的迁移行为。

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