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Chemical Modeling of Arsenic(III, V) and Selenium(IV, VI) Adsorption by Soils Surrounding Ash Disposal Facilities

机译:灰渣处理设施周围土壤吸附砷(III,V)和硒(IV,VI)的化学模型

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摘要

Received for publication 22 January 2008. Leachate derived from coal ash disposal facilities is a potential anthropogenic source of As and Se to the environment. To establish a practical framework for predicting attenuation and transport of As and Se in ash leachates, the adsorption of As(III), As(V), Se(IV), and Se(VI) had been characterized in prior studies for 18 soils obtained downgradient from ash landfill sites and representing a wide range of soil properties. The constant capacitance model was applied for the first time to describe As(III), As(V), Se(IV), and Se(VI) adsorption on soils as a function of equilibrium solution As(III), As(V), Se(IV), and Se(VI) concentrations. Prior applications of the model had been restricted to describing Se(IV) and As(V) adsorption by soils as a function of solution pH. The constant capacitance model was applied for the first time to describe As(III) and Se(VI) adsorption by soils. The model was able to describe adsorption of these ions on all soils as a function of solution ion concentration by optimizing only one adjustable parameter, the anion surface complexation constant. This chemical model represents an advancement over adsorption isotherm equation approaches that contain two empirical adjustable parameters. Incorporation of these anion surface complexation constants obtained with the constant capacitance model into chemical speciation transport models will allow simulation of soil solution anion concentrations under diverse environmental and agricultural conditions.
机译:于2008年1月22日发布。煤灰处理设施产生的渗滤液是环境中砷和硒的潜在人为来源。为了建立一个预测灰分渗滤液中砷和硒衰减和迁移的实用框架,先前对18种土壤进行了表征,分析了砷(III),砷(V),硒(IV)和硒(VI)的吸附。从灰渣填埋场获得了降级,代表了广泛的土壤特性。首次使用恒定电容模型来描述As(III),As(V),Se(IV)和Se(VI)在土壤上的吸附与平衡溶液As(III),As(V)的关系,Se(IV)和Se(VI)的浓度。该模型的先前应用仅限于描述土壤对Se(IV)和As(V)的吸附随溶液pH的变化。首次使用恒定电容模型描述土壤中As(III)和Se(VI)的吸附。该模型仅通过优化一个可调节参数,即阴离子表面络合常数,就能够描述这些离子在所有土壤上的吸附量与溶液离子浓度的函数关系。该化学模型代表了包含两个经验可调整参数的吸附等温线方程方法的进步。将通过恒定电容模型获得的这些阴离子表面络合常数并入化学形态迁移模型中,将可以模拟各种环境和农业条件下土壤溶液中阴离子的浓度。

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