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首页> 外文期刊>Journal of Molecular Liquids >Isotherm, kinetic and thermodynamics of arsenic adsorption onto Iron-Zirconium Binary Oxide-Coated Sand (IZBOCS): Modelling and process optimization
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Isotherm, kinetic and thermodynamics of arsenic adsorption onto Iron-Zirconium Binary Oxide-Coated Sand (IZBOCS): Modelling and process optimization

机译:Isotherm,动力学和热力学的砷吸附在铁 - 锆二进制氧化物涂层砂(IZBOC):建模和过程优化

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The aim of this work was preparation and investigation of Iron-Zirconium Binary Oxide-Coated Sand (IZBOCS) for the adsorptive removal of As(V) from water, in both batch and'fixed-bed column systems. The batch experiment was performed with As(V) solution of concentration 125 mg/L, at neutral pH, 27 degrees C temperature by agitating for 120 min and data was fitted in Langmuir, Freundlich, Temkin and Radushkevich isotherms. Langmuir adsorption capacity of IZBOCS for As(V) increased from 45.05 to 84.75 mg/g when temperature of the solution was raised from 27 to 45 C. Separation factor values, 0.435, 0.489 and 0.508 at 27, 35 and 45 degrees C indicated feasibility of adsorption process. Dubinin-Radushkevich isotherm gave energy ranging between 0.494 and 0.449 kJ/mol within 27 and 45 degrees C, indicated physical sorption processes. Gibb's free energy of adsorption came out -11.391, -12.255 and -12.855 kJ/mol at 27, 35 and 45 C, respectively, and.H was found to be + 12.668 kJ/mol, both indicated spontaneity and endothermic nature. As(V) sorption followed pseudo-second order kinetics, and both liquid-film and intra-particle diffusion process controlled the rate. Column adsorption data was analyzed with Thomas and Yoon-Nelson models to describe dynamic behavior of the adsorption process. (C) 2016 Elsevier B.V. All rights reserved.
机译:该工作的目的是在两家批次和晶床柱系统中制备和调查铁 - 锆二元氧化涂层砂(IZBOC)的吸附除去水(v)。批量实验用As(v)浓度125mg / L的溶液进行,在中性pH下,通过搅拌120分钟,通过搅拌120分钟,并且在Langmuir,Freundlich,Temkin和Radushkevich等温机中安装了数据。 IZBOC的Langmuir吸附容量(v)增加到0.05至84.75 mg / g,当溶液的温度从27-55℃升高时,分离因子值,0.435,0.489和0.508,在27,35和45摄氏度下表示可行性吸附过程。 Dubinin-Radushkevich等温线在27和45摄氏度内,在27和45摄氏度范围内的0.494和0.449 kJ / mol之间。 Gibb的吸附自由能量出现-11.391,-12.255和-12.855 kJ / mol,分别为27,35和45 c,并且发现了+ 12.668 kJ / mol,两者都表明自发性和吸热性。 AS(v)吸附遵循伪二阶动力学,液体膜和颗粒间扩散过程均控制速率。用托马斯和Yoon-Nelson模型分析列吸附数据,以描述吸附过程的动态行为。 (c)2016 Elsevier B.v.保留所有权利。

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