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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Kinetics of heavy metal adsorption and desorption in soil: Developing a unified model based on chemical speciation
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Kinetics of heavy metal adsorption and desorption in soil: Developing a unified model based on chemical speciation

机译:土壤中重金属吸附和解吸的动力学 - 基于化学品质的统一模型

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摘要

Predicting the kinetics of heavy metal adsorption and desorption in soil requires consideration of multiple heterogeneous soil binding sites and variations of reaction chemistry conditions. Although chemical speciation models have been developed for predicting the equilibrium of metal adsorption on soil organic matter (SOM) and important mineral phases (e.g. Fe and Al (hydr) oxides), there is still a lack of modeling tools for predicting the kinetics of metal adsorption and desorption reactions in soil. In this study, we developed a unified model for the kinetics of heavy metal adsorption and desorption in soil based on the equilibrium models WHAM 7 and CD-MUSIC, which specifically consider metal kinetic reactions with multiple binding sites of SOM and soil minerals simultaneously. For each specific binding site, metal adsorption and desorption rate coefficients were constrained by the local equilibrium partition coefficients predicted by WHAM 7 or CD-MUSIC, and, for each metal, the desorption rate coefficients of various binding sites were constrained by their metal binding constants with those sites. The model had only one fitting parameter for each soil binding phase, and all other parameters were derived from WHAM 7 and CD-MUSIC. A stirred-flow method was used to study the kinetics of Cd, Cu, Ni, Pb, and Zn adsorption and desorption in multiple soils under various pH and metal concentrations, and the model successfully reproduced most of the kinetic data. We quantitatively elucidated the significance of different soil components and important soil binding sites during the adsorption and desorption kinetic processes. Our model has provided a theoretical framework to predict metal adsorption and desorption kinetics, which can be further used to predict the dynamic behavior of heavy metals in soil under various natural conditions by coupling other important soil processes. (C) 2018 Elsevier Ltd. All rights reserved.
机译:预测土壤中重金属吸附和解吸的动力学需要考虑多种异质土壤结合位点和反应化学条件的变化。虽然已经开发了化学品种模型,用于预测土壤有机物质(SOM)和重要的矿物相对金属吸附的平衡(例如Fe和Al(氢)氧化物),仍然缺乏用于预测金属动力学的模拟工具土壤中的吸附和解法反应。在这项研究中,我们为基于均衡模型WHAM 7和CD-Music的土壤中重金属吸附和解吸的动力学开发了一个统一的模型,其特异性地考虑了同时与索华渣和土壤矿物的多重结合位点的金属动力学反应。对于每个特异性结合位点,金属吸附和解吸速率系数受到WHAM 7或CD-Music预测的局部平衡分配系数的约束,并且对于每种金属,各种结合位点的解吸速率系数受其金属结合常数约束与这些网站。该模型仅针对每个土壤结合阶段仅具有一个配合参数,并且所有其他参数源自WHAM 7和CD-Music。搅拌流动方法用于研究各种pH和金属浓度下多种土壤中Cd,Cu,Ni,Pb和Zn吸附和解吸的动力学,而该模型成功再现了大多数动力学数据。我们在吸附和解吸动力学过程中定量阐明了不同土壤成分和重要土壤结合位点的重要性。我们的模型提供了一种理论框架来预测金属吸附和解吸动力学,其可以进一步用于通过偶联其他重要的土壤过程来预测各种自然条件下土壤中重金属的动态行为。 (c)2018年elestvier有限公司保留所有权利。

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