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A preliminary batch study of sorption kinetics of Cr(VI) ions from aqueous solutions by a magnetic ion exchange (MIEX (R)) resin and determination of film/pore diffusivity

机译:磁性离子交换(MIEX(R))树脂从水溶液中吸附Cr(VI)离子的吸附动力学的初步批量研究和膜/孔扩散系数的测定

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摘要

A magnetic ion exchange resin was tested for the removal of Cr(VI) ions from aqueous solutions in a batch reactor at different resin dosages (0.5-1.5 g L-1), pH values (2 10), temperatures (25 degrees C-55 degrees C) and initial concentrations of Cr(VI) (0.11-2.12 mmol L-1 or 5.7-110 mg L-1). The experimental data were evaluated using kinetic models based on the rate controlling steps relevant to pseudo-first order or pseudo-second order reactions or diffusion through fluid film or pores of the MIEX resin beads. Fast uptake of Cr(VI) ions by MIEX resin facilitates the attainment of equilibrium within 60 min. The sorption process is strongly dependent on the initial pH of the solution with maximum occurring at pH 4-6. The sorption of Cr(VI) at equilibrium increases with the increase in initial concentration according to the Langmuir isotherm, with a maximum sorption capacity of 93 mg g(-1) on MIEX resin. Relatively low activation energy of 43 kJ mol(-1) at a high initial concentration of 1 mmol L-1 Cr(VI) suggests a mixed chemical-diffusion controlled process, supported by the agreement of the sorption results with the homogeneous particle diffusion model with a film diffusivity of D-f = 1 x 10(-9) m(2) s(-1) and a pore diffusivity of D-p = 8 x 10(-13) m(2) s(-1). (C) 2016 Elsevier B.V. All rights reserved.
机译:测试了磁性离子交换树脂在不同树脂用量(0.5-1.5 g L-1),pH值(2 10),温度(25摄氏度-)下在间歇式反应器中从水溶液中去除Cr(VI)离子的情况。 55摄氏度)和Cr(VI)的初始浓度(0.11-2.12 mmol L-1或5.7-110 mg L-1)。基于动力学模型评估了实验数据,该动力学模型基于与MIEX树脂珠粒的流体一级膜或孔中的拟一级反应或拟二级反应或扩散有关的速率控制步骤。 MIEX树脂快速吸收Cr(VI)离子有助于在60分钟内达到平衡。吸附过程在很大程度上取决于溶液的初始pH,最大pH发生在pH 4-6。根据Langmuir等温线,平衡态对Cr(VI)的吸附随初始浓度的增加而增加,在MIEX树脂上的最大吸附容量为93 mg g(-1)。在初始浓度为1 mmol L-1 Cr(VI)时,活化能相对较低,为43 kJ mol(-1),表明混合化学扩散控制过程受吸附结果与均相颗粒扩散模型一致的支持膜的扩散系数为Df = 1 x 10(-9)m(2)s(-1),孔的扩散系数为Dp = 8 x 10(-13)m(2)s(-1)。 (C)2016 Elsevier B.V.保留所有权利。

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