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Simultaneous electrosorptive removal of chromium(VI) and fluoride ions by capacitive deionization (CDI): Multicomponent isotherm modeling and kinetic study

机译:通过电容去离子(CDI)同时隔热去除铬(VI)和氟离子:多组分等温模拟和动力学研究

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摘要

The aim of present study is simultaneous and individual removal of chromium (VI) (Cr(VI)) and fluoride (F) ions with activated carbon (AC) electrode by capacitive deionization (CDI). Capacitive deionization is recently developing and worldwide attracted technique due to less energy consumption and eco-friendly in use. AC electrode was fabricated and further it characterized by SEM, EDS, and cyclic voltammetry. The maximum electrosorptive removal of Cr(VI) and F were found to 97.1% and 94.20% for 10 mg/L binary feed at optimized flow rate 16 mL/min and 1.2 V. Effective regeneration electrode was observed after electrosoprtion of Cr(VI) and F. In mono component modeling Redlich Peterson model and Freundlich isotherm model were found best agreement with experimental results of Cr(VI) and F electrosorption. Non Modified R-P model and Extended Freundlich model among six applied multicomponent isotherm models found to good correlation with the experimental data for both Cr(VI) and F electrosorption. Pseudo first order kinetic model found good agreement experimental data for both Cr(VI) and F electrosorption. Thus CDI process could be used for simultaneous electrosorptive removal of low concentrated Cr(VI) and F binary feed system. (C) 2017 Elsevier B.V. All rights reserved.
机译:目前研究的目的是通过电容去离子(CDI)同时和单独除去铬(VI)(Cr(vi))和氟化物(F)离子(CDI)电极(CDI)。最近在使用能耗和使用生态友好的能源消耗和生态友好时,最近在开发和全球吸引技术。制备AC电极,并进一步以SEM,EDS和循环伏安法为特征。在优化的流速16ml / min和1.2V中发现Cr(VI)和F的最大电热除去10mg / L二进制饲料的97.1%和94.20%。在Cr(VI)的电涂膜后观察到有效再生电极。 F.在Mono组件建模中,Redlich Peterson Model和Freundlich等温模型与Cr(vi)和f吸油的实验结果最为愉快。六个应用多组分等温模型中的非改进的R-P型号和扩展Freundlich模型与Cr(vi)和F吸热的实验数据良好相关性。伪第一阶动力学模型发现CR(VI)和F吸油的良好协议实验数据。因此,CDI工艺可用于同时隔离低浓缩Cr(VI)和F二进制馈送系统的集热去除。 (c)2017 Elsevier B.v.保留所有权利。

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