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首页> 外文期刊>Advances in colloid and interface science >Binding of heavy metals by algal biosorbents. Theoretical models of kinetics, equilibria and thermodynamics
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Binding of heavy metals by algal biosorbents. Theoretical models of kinetics, equilibria and thermodynamics

机译:藻类生物吸附剂与重金属的结合。动力学,平衡和热力学的理论模型

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摘要

Biosorption is an extensively studied technology applied for the removal of heavy metal ions and other pollutants from aqueous solutions. Most biosorption research is focused on the experimentally measured sorption isotherms, kinetics and thermodynamics. The aim of this paper is to review a class of theoretical models developed for the interpretation of such experimental data related to biosorption of metal cations by alginate-containing sorbents (e.g. algal biosorbents). The focus is put on: (i) modeling the biosorption equilibrium isotherms (including the description of the pH and ionic strength effects); (ii) thermodynamics of biosorption; (iii) kinetics of biosorption; and (iv) metal ion binding modes. This review facilitates the choice of the model suitable for the given type of data and describes the most common mistakes made during the data analysis (e.g. the use of incorrect or oversimplified models).
机译:生物吸附是一项广泛研究的技术,用于从水溶液中去除重金属离子和其他污染物。大多数生物吸附研究都集中在实验测量的吸附等温线,动力学和热力学上。本文的目的是回顾一类理论模型,该模型用于解释与含藻酸盐的吸附剂(例如藻类生物吸附剂)对金属阳离子的生物吸附有关的实验数据。重点放在:(i)模拟生物吸附平衡等温线(包括pH和离子强度影响的描述); (ii)生物吸附的热力学; (iii)生物吸附动力学; (iv)金属离子结合模式。该审查有助于选择适合给定数据类型的模型,并描述数据分析过程中最常见的错误(例如,使用错误或过于简化的模型)。

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