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Adsorption of anion polyacrylamide from aqueous solution by polytetrafluoroethylene (PTFE) membrane as an adsorbent: Kinetic and isotherm studies

机译:用聚四氟乙烯(PTFE)膜作为吸附剂的水溶液吸附阴离子聚丙烯酰胺:动力学和等温性研究

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In this study, the kinetic and isothermal behaviors of anion polyacrylamide (APAM) on a polytetrafluoroethylene (PTFE) microfiltration membrane were investigated to better understand the adsorption mechanism. A series of adsorption experiments were conducted to determine the effects of the initial APAM concentration, contact time, solution pH and temperature on the adsorption performance. The results showed that the three isotherm models (Langmuir equation, Freundlich equation and Temkin equation) favorably fit the adsorption process with R-2 values of 0.98957, 0.90721 and 0.96321, respectively. The adsorption rate of APAM onto the PTFE membrane increased with increasing temperature, and the adsorption reaction reached equilibrium at 20 h. The values of thermodynamic adsorption parameters (Delta(r)G(m)(theta), Delta H-r(m)theta, and Delta S-r(m)0) suggested that the adsorption process was not spontaneous but endothermic. In addition, high temperatures favored adsorption, and the adsorption can be categorized as physisorption. Specifically, the main physisorption force was hydrogen bonding. The adsorption process consisted of two phases: rapid adsorption and stable adsorption. The three kinetic equations provided a good fit according to the R-2 values and were applicable in the following order: pseudo-first-order > pseudo-second-order > Elovich. (C) 2019 Elsevier Inc. All rights reserved.
机译:在这项研究中,阴离子聚丙烯酰胺(APAM)上的聚四氟乙烯(PTFE)微滤膜的动力学和等温行为进行调查,以更好地了解吸附机理。一系列的吸附实验以确定初始APAM浓度,接触时间,溶液的pH值和温度对吸附性能的影响。结果表明,三种等温线模型(Langmuir方程,Freundlich方程和的Temkin方程)有利地与适合的0.98957,分别0.90721和0.96321,R-2的值的吸附过程。 APAM的吸附率到PTFE膜随温度升高而增大,并且吸附在反应20小时达到平衡。的热力学吸附参数的值(德尔塔(R)G(M)(THETA),德尔塔H-R(米)theta和德尔塔S-R(米)0)建议,吸附过程是不是自发的,但吸热。此外,高的温度有利于吸附,吸附可归类为物理吸附。具体地,主物理吸附力为氢键。吸附过程包括两个阶段:快速吸附和稳定的吸附。三个动力学方程根据R-2的值提供了良好的贴合性和均适用于下列顺序:伪一阶>伪二阶> Elovich。 (c)2019 Elsevier Inc.保留所有权利。

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