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首页> 外文期刊>Chemosphere >Simultaneous leaching of arsenite, arsenate, selenite and selenate, and their migration in tunnel-excavated sedimentary rocks: II. Kinetic and reactive transport modeling
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Simultaneous leaching of arsenite, arsenate, selenite and selenate, and their migration in tunnel-excavated sedimentary rocks: II. Kinetic and reactive transport modeling

机译:亚砷酸盐,砷酸盐,亚硒酸盐和硒酸盐的同时浸出及其在隧道开挖的沉积岩中的迁移:II。动力学和反应运输模型

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Predicting the fates of arsenic (As) and selenium (Se) in natural geologic media like rocks and soils necessitates the understanding of how their various oxyanionic species behave and migrate under dynamic conditions. In this study, geochemical factors and processes crucial in the leaching and transport of arsenite (As-III), arsenate (As-V), selenite (Se-IV) and selenate (Se-VI) in tunnel-excavated rocks of marine origin were investigated using microscopic/extraction techniques, column experiments, dissolution-precipitation kinetics and one-dimensional reactive transport modeling. The results showed that evaporite salts were important because aside from containing As and Se, they played crucial roles in the evolution of pH and concentrations of coexisting ions, both of which had strong effects on adsorption-desorption reactions of As and Se species with iron oxyhydroxide minerals/phases. The observed leaching trends of As-V, As-III, Se-IV and Se-VI were satisfactorily simulated by one-dimensional reactive transport models, which predict that preferential adsorptions of As-V and Se-IV were magnified by geochemical changes in the columns due to water flow. Moreover, our results showed that migrations of As-III, Se-IV and Se-VI could be predicted adequately by 1D solute transport with simple activity-K '(d) approach, but surface complexation was more reliable to simulate adsorption-desorption behavior of As-V. (C) 2017 Elsevier Ltd. All rights reserved.
机译:预测岩石和土壤等自然地质介质中砷(As)和硒(Se)的命运,需要了解其各种氧阴离子物种在动态条件下的行为和迁移方式。在这项研究中,地球化学因素和过程对从海底隧道挖出的岩石中砷和砷(As-III),砷酸盐(As-V),亚硒酸盐(Se-IV)和硒酸盐(Se-VI)的浸出和运输至关重要。用显微镜/萃取技术,柱实验,溶出-沉淀动力学和一维反应性运输模型进行了研究。结果表明,蒸发盐是重要的,因为除含有As和Se外,它们还对pH和共存离子浓度的变化起着至关重要的作用,二者均对As和Se物种与羟基氧化铁的吸附-解吸反应具有重要影响。矿物/相。一维反应性输运模型对As-V,As-III,Se-IV和Se-VI的浸出趋势进行了令人满意的模拟,预测了As-V和Se-IV的优先吸附因地球化学变化而放大。柱子由于水的流动。此外,我们的结果表明,可以通过简单的活性K'(d)方法通过一维溶质迁移来充分预测As-III,Se-IV和Se-VI的迁移,但表面络合对于模拟吸附-解吸行为更可靠As-V。 (C)2017 Elsevier Ltd.保留所有权利。

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