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Kinetic study of the removal of dimethyl phthalate from an aqueous solution using an anion exchange resin

机译:使用阴离子交换树脂从水溶液中去除邻苯二甲酸二甲酯的动力学研究

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Phthalate acid esters are becoming an important class of pollutants in wastewaters. This study addresses the kinetics of removal of dimethyl phthalate (DMP) using the anion exchange resin D201-OH from an aqueous solution. The effects of various factors on the removal rate and efficiency were investigated. An overall initial removal rate (OIRR) law and a pseudo first-order kinetic (PFOK) model were also developed. The internal diffusion of DMP within the resin phase of D201-OH is the rate-controlling step. Optimization of the particle size and pore structure of the resin D201-OH, the DMP concentration, and the reaction temperature can improve the DMP removal rate. The hydrolysis reaction of DMP catalyzed by D201-OH indicates an overall reaction order of 1.76, a value that is between the first order and the second order. The apparent activation energy of the reaction is 34.6 kJ/mol, which is below the homogeneous alkaline hydrolysis activation energy of 44.3 kJ/mol. The OIRR law can quantify the initial removal rate under different conditions. The results also show that the theoretical DMP removal efficiency predicted by the PFOK model agrees well with the experimentally determined values. Our research provides valuable insights into the primary parameters influencing the kinetic process, which enables a focused improvement in the removal or hydrolysis rate for similar processes.
机译:邻苯二甲酸酯正在成为废水中的重要污染物。这项研究涉及使用阴离子交换树脂D201-OH从水溶液中去除邻苯二甲酸二甲酯(DMP)的动力学。研究了各种因素对去除率和效率的影响。还开发了总体初始去除率(OIRR)规律和伪一级动力学(PFOK)模型。 DMP在D201-OH树脂相内的内部扩散是速率控制步骤。树脂D201-OH的粒径和孔结构,DMP浓度和反应温度的优化可以提高DMP的去除率。 D201-OH催化的DMP水解反应表明总反应级数为1.76,该值介于第一级和第二级之间。反应的表观活化能为34.6 kJ / mol,低于均相碱性水解活化能44.3 kJ / mol。 OIRR法可以量化不同条件下的初始去除率。结果还表明,PFOK模型预测的理论DMP去除效率与实验确定的值非常吻合。我们的研究为影响动力学过程的主要参数提供了宝贵的见识,从而可以重点提高类似过程的去除率或水解速率。

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