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A general stirred-flow model for time-dependent adsorption and desorption of heavy metal in soils

机译:一种通用的搅拌流动模型,用于土壤中重金属的时间依赖性吸附和解吸

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摘要

Quantitative understanding of kinetics and mechanisms heavy metal adsorption-desorption and transport processes, batch and stirred-flow experiments were carried out with vanadium (V) and molybdenum (Mo) on soils at different reaction conditions and time scale. Batch experiments indicated that adsorption of V and Mo on soils was highly nonlinear and time-dependent, where V and Mo retention showed typical biphasic reaction kinetics. The stirred-flow experiments showed that both V and Mo adsorption consisted of a fast initial reaction, as indicated by the fact that effluent solute concentration was close to zero for the first few minutes. A stirred-flow multi-reaction model (MRM) which accounts for slow as well as fast reactions of the reversible and irreversible type was developed to describe V and Mo adsorption and desorption processes on soils. Based on model simulations and experimental tracer breakthrough curves (BTCs) results, we concluded that the proposed model is valid for stirred-flow conditions. The strong retardation and slow release behaviors of V and Mo from stirred-flow experiments were successfully described using the proposed stirred-flow MRM where retardation and irreversible reactions were necessary. Our work provides a general stirred-flow model which is capable of describing reactive and non-reactive solutes.
机译:在不同反应条件和时间尺度的土壤中,在不同反应条件和时间尺度的土壤上进行测量和机制重金属吸附 - 解吸和运输过程,分批和搅拌流动实验。批量实验表明,V和MO对土壤的吸附是高度非线性和时间依赖性的,其中V和Mo保留显示典型的双相反应动力学。搅拌流程实验表明,V和MO吸附包括快速初始反应,如前几分钟所示的流出物溶质浓度接近零。开发了一种搅拌流动的多反应模型(MRM),其考虑了可逆和不可逆转型的可逆和不可逆类型的快速反应,以描述土壤的V和MO吸附和解吸过程。基于模型模拟和实验示踪突破性曲线(BTCS)结果,我们得出结论,该模型对搅拌条件有效。使用所提出的搅拌流动MRM成功地描述了V和MO免受搅拌流动实验的强的延迟和缓释行为,其中需要延迟和不可逆反应。我们的作品提供了一般的搅拌模型,其能够描述反应性和非反应性溶质。

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