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Decolorization of anionic and cationic dyes by electro-adsorption process using activated carbon electrodes

机译:采用活性炭电极的电吸收过程脱滤阴离子和阳离子染料

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The performance of the Coconut shell (CS) and Bael shell (BS) activated carbon electrodes on removal of Methylene blue (MB) and Eosin-Y (EY) dyes have been carried out by electro-adsorption process. Modification of electrodes is done to enhance the decolourization performances. The colour removal capability of the electrodes are evaluated by varying the process parameters such as time (15-150 min), potential (5- 45 V) and initial dye concentration as (25-200 mg/L) in batch mode. The adsorption isotherm is determined by Langmuir, Freundlich and Jovanic-Isotherms models. The kinetic data are evaluated by using Pseudo-first and Pseudo-second order model and the rate of diffusion is determined by Intra-particle diffusion model. The electrochemical studies are carried out by cyclic voltammetry and Tafel plots. The experimental results depict that the adsorption isotherm follow the Langmuir isotherm model with the correlation co-efficient, R 2 = 0.99 for CS activated carbon electrode system, whereas the BS activated carbon electrode system strongly adhere to Freundlich Isotherm models. In addition, the rate kinetics follow Pseudo-first order kinetic model with R 2 = 0.99 for all the studies. The surface changes, elemental interaction, porosity, functional groups involved in electro-adsorption process and thermal stability are analysed for raw and modified form of electrodes using SEM, EDS, BET, FTIR and TGA respectively.
机译:通过电吸附过程进行了去除亚甲基蓝(Mb)和eosin-y(eosin-y(Ey)染料上除去亚甲基蓝(Mb)和eosin-y(eosin-y(eosin-y(eosin-y)染料的性能的性能。进行电极的改性以增强脱色性能。通过在分批模式下改变诸如时间(15-150min),电位(5-45V)和初始染料浓度,例如(25-200mg / L),评估电极的颜色去除能力。吸附等温线由Langmuir,Freundlich和Jovanic-Isotherms模型决定。通过使用伪第一和伪二次阶模型来评估动力学数据,并且通过粒子延伸模型确定扩散速率。电化学研究由循环伏安法和Tafel图进行。实验结果描绘了吸附等温线遵循Langmuir等温模型与CS活性碳电极系统的相关性共同高效,R 2 = 0.99,而BS活性碳电极系统强烈地粘附到Freundlich等温机型。此外,速率动力学遵循伪第一订单动力学模型,用于所有研究的R 2 = 0.99。使用SEM,EDS,BET,FTIR和TGA分析了电吸收过程中涉及的电吸收过程和热稳定性涉及的电吸收过程和热稳定性的表面变化,涉及的官能团。

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