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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Transport and retention of Molybdenum(VI) on iron oxide-coated sand: A modified multi reaction model
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Transport and retention of Molybdenum(VI) on iron oxide-coated sand: A modified multi reaction model

机译:氧化铁涂层硅(VI)的运输和保留:改性多反应模型

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In this investigation, batch and miscible displacement experiments were performed to investigate the pH-dependent effect on retention and transport of Mo(VI) on iron oxide-coated sand (IOCS). Measured results indicated that Mo(VI) sorption was strongly nonlinear and kinetically controlled, where the amount of Mo(VI) sorbed and its reaction rates increased with decreasing solution pH. Mo(VI) breakthrough curves (BTCs) obtained at varying pHs were asymmetrical in shape and exhibited different degree of tailing, where mobility of Mo (VI) was lowest under acidic condition (pH 4.0) and highest under alkaline condition (pH 7.5). In this study, based on extended Freundlich equation, we proposed a modified multi-reaction model (M-MRM) including a pH term, which was utilized to describe pH-dependent sorption and transport process. From the goodness-of-fit of modeling results, the M-MRM model provided a good prediction for Mo(VI) retention and transport datasets on IOCS. In comparison to numerical surface complexation models (SCMs), the proposed M-MRM is relatively less complex and requires fewer parameters. Moreover, it is simpler to integrate reaction transport equations into kinetic models to simulate non-equilibrium transport behavior. Our work provided a unified kinetic model to describe pH-dependent sorption and transport in IOCS.
机译:在该研究中,进行分批和混溶性位移实验,以研究对氧化铁涂层砂(IOC)对钼(VI)的对依赖性和转运的影响。测量结果表明,Mo(vi)吸附强烈非线性和动力学控制,其中Mo(vi)吸附的量和其反应速率随着溶液pH的降低而增加。在不同pHS上获得的Mo(VI)突破性曲线(BTC)以不对称的形状是不对称的,并且表现出不同程度的尾矿,其中Mo(VI)的迁移率在酸性条件(pH 4.0)下最低,并且在碱性条件下最高(pH7.5)。在本研究中,基于扩展Freundlich方程,我们提出了一种改性的多反应模型(M-MRM),包括pH术语,用于描述pH依赖性吸附和运输过程。从建模结果的高度,M-MRM模型为IOC上的MO(VI)保留和运输数据集提供了良好的预测。与数值表面络合模型(SCM)相比,所提出的M-MRM相对较差并且需要较少的参数。此外,将反应传输方程集成到动力学模型中更简单以模拟非平衡传输行为。我们的工作提供了一个统一的动力学模型,以描述IOC的pH依赖的吸附和运输。

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