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首页> 外文期刊>Journal of Colloid and Interface Science >Polar modified post-cross-linked resin and its adsorption toward salicylic acid from aqueous solution: Equilibrium, kinetics and breakthrough studies
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Polar modified post-cross-linked resin and its adsorption toward salicylic acid from aqueous solution: Equilibrium, kinetics and breakthrough studies

机译:极性改性的后交联树脂及其对水溶液中水杨酸的吸附:平衡,动力学和突破性研究

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摘要

A novel polar modified post-cross-linked resin PDMPA was synthesized, characterized and evaluated for adsorption of salicylic acid from aqueous solution. PDMPA was prepared by a suspension polymerization of methyl acrylate (MA) and divinylbenzene (DVB), a Friedel-Crafts reaction and an amination reaction After characterization of the chemical and pore structure of PDMPA, the adsorption behaviors of salicylic acid on PDMPA were determined in comparison with the precursor resins. The equilibrium adsorption capacity of salicylic acid on PDMPA was much larger than the precursor resins and the equilibrium dat were correlated by both of the Langmuir and Freundlich models. The pseudo-second-order rate equation fitted the kinetic data better than the pseudo-first-order rate equation, and the micropore diffusion model could characterize the kinetic data very well. The dynamic experimental results showed that the breakthrough point and saturated point of salicylic acid on PDMPA were 40.3 and 92.4 BV (1 BV = 10 mL) at a feed concentration of 995.8 mg/L and a flow rate of 1.4 mL/min, and the resin column could be regenerated by 16.0 BV of a mixture desorption solvent containing 0.01 mol/L of NaOH (w/v) an 50% of ethanol (v/v). (C) 2015 Elsevier Inc. All rights reserved
机译:合成了新型的极性改性后交联树脂PDMPA,表征并评价了水杨酸从水溶液中的吸附。通过丙烯酸甲酯(MA)和二乙烯基苯(DVB)的悬浮聚合,Friedel-Crafts反应和胺化反应制备PDMPA。表征了PDMPA的化学和孔结构后,测定了水杨酸在PDMPA上的吸附行为。与前体树脂的比较。水杨酸在PDMPA上的平衡吸附容量远大于前体树脂,并且Langmuir和Freundlich模型都将平衡dat关联起来。拟二阶速率方程比拟一阶速率方程更适合动力学数据,微孔扩散模型可以很好地表征动力学数据。动态实验结果表明,在进水浓度为995.8 mg / L,流速为1.4 mL / min时,水杨酸在PDMPA上的突破点和饱和点分别为40.3和92.4 BV(1 BV = 10 mL),并且可以通过16.0 BV的混合解吸溶剂(含0.01 mol / L NaOH(w / v)和50%乙醇(v / v))再生树脂柱。 (C)2015 Elsevier Inc.保留所有权利

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