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A multiple model approach for evaluating the performance of time-lapse capsules in trapping heavy metals from water bodies

机译:一种评价时间流逝胶囊在水体捕获重金属中的性能的多模型方法

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Adsorption by ion-exchange resins has been widely used as a cost-effective method for removing numerous hazardous materials, particularly heavy metals, from aqueous solutions. For effectively detecting the illegal discharge of industrial wastewater containing heavy metals, we developed “time-lapse capsules” to trap metallic ions from water bodies. Despite recent progress in the development of time-lapse capsules, a fundamental understanding was still needed to unravel the adsorption behavior of different heavy metals for further improvement of the design and scale-up of the capsule. In this study, three different approaches, viz. , response surfaces (from the statistical point of view), time-dependent diffusion-controlled models (from the kinetic point of view), and adsorption isotherms (from the equilibrium point of view), were utilized to evaluate the effect of operating factors on the adsorption of heavy metals from watershed using time-lapse capsules. The obtained results indicated that the key parameters, such as adsorption rate constant, diffusivity, and maximum adsorption capacity, could provide insights into the basis of design criteria.
机译:离子交换树脂的吸附已被广泛用作从水溶液中除去许多有害物质,特别是重金属的成本有效的方法。为了有效地检测含有重金属的工业废水的非法排放,我们开发了“延时胶囊”,以将金属离子与水体捕获。尽管最近在延时胶囊的发展进展方面,但仍然需要一个基本的理解来解开不同重金属的吸附行为,以进一步改善胶囊的设计和扩大。在这项研究中,三种不同的方法,viz。 ,响应表面(来自统计观点),使用时间依赖性扩散控制模型(从动力学的角度来看)和吸附等温线(来自平衡观点),用于评估操作系统的效果使用时间流逝胶囊吸附来自流域的重金属。所获得的结果表明,受吸附速率恒定,扩散性和最大吸附容量的关键参数可以为设计标准的基础提供见解。

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