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首页> 外文期刊>Desalination and water treatment >Adsorption of methylene blue on strongly basic anion exchange resin (Zerolit DMF): kinetic, isotherm, and thermodynamic studies
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Adsorption of methylene blue on strongly basic anion exchange resin (Zerolit DMF): kinetic, isotherm, and thermodynamic studies

机译:亚甲基蓝在强碱性阴离子交换树脂(Zerolit DMF)上的吸附:动力学,等温线和热力学研究

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摘要

This work explored the adsorption potential of Zerolit DM-F (ZDMF) resin for methylene blue (MB) removal form aqueous system in batch mode. Both linear and non-linear models have been applied to kinetic and isotherm data. Practical feasibility of ZDMF was testified by performing breakthrough, desorption, and regeneration studies. Results showed optimum adsorption (24.75 mg/g) at pH 10. Contact time studies showed equilibration time ranged between 30 and 90 min for various MB concentrations (C-o-25-200 mg/L). Kinetic modeling studies showed applicability of pseudo-first-order model at various MB concentrations while, isotherm studies showed applicability of Freundlich model at various temperatures. Thermodynamics studies showed endothermic and spontaneous process. The breakthrough studies showed that 550 mL of MB solution (C-o-50 mg/L) which was prepared separately in deionized water and tap water matrix could be passed through the columns without detecting MB traces. The breakthrough and exhaustive capacities in deionized water and tap water matrix were found to be 27.5 and 45 mg/g, respectively. Desorption studies showed optimum MB recovery (86%) with 5 M HCl solution while, regeneration studies revealed 10.20 and 16.28% loss in adsorption and desorption after five consecutive cycles, respectively.
机译:这项工作探索了Zerolit DM-F(ZDMF)树脂以分批方式从水性体系中去除亚甲基蓝(MB)的吸附潜力。线性和非线性模型均已应用于动力学和等温线数据。通过进行突破,解吸和再生研究证明了ZDMF的实际可行性。结果表明,在pH 10时最佳吸附(24.75 mg / g)。接触时间研究表明,各种MB浓度(C-o-25-200 mg / L)的平衡时间为30至90分钟。动力学建模研究表明伪一级模型在各种MB浓度下的适用性,等温研究表明Freundlich模型在各种温度下的适用性。热力学研究表明吸热和自发过程。突破性研究表明,分别在去离子水和自来水基质中制备的550 mL MB溶液(C-o-50 mg / L)可以通过色谱柱,而不会检测到MB痕迹。在去离子水和自来水基质中的穿透和排空能力分别为27.5和45 mg / g。解吸研究表明,在5 M HCl溶液中MB的最佳回收率(86%),而再生研究表明,连续五个循环后吸附和解吸分别损失10.20%和16.28%。

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