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Water-soluble polyelectrolyte in conjunction with membrane systems: modeling and simulation of retention profiles from washing method

机译:水溶性聚电解质与膜系统的结合:清洗方法对保留曲线的建模和模拟

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摘要

Liquid-phase polymer-based retention (LPR) is a novel technique for eliminating, concentrating and separating pollutants from aqueous effluents. Using the washing method, LPR can provide a retention profile that contains the contributions of all the factors associated with the retention. To advance the LPR technique and further our understanding of polymeric systems in aqueous solutions, a model of the retention profile was developed and applied to Cu2+ retention. The removal of Cu2+ was studied with LPR experiments employing various polymers, a range of pH values (2.0, 3.5, and 5.0) and different interfering species (Co2+, Ni2+, and Zn2+). The resulting retention profiles were simulated from the experimental data. The results revealed constant R (syst) values at pH 5.0. However, at pH 3.5 and 2.0, R (syst) by PVPA exhibited the following behavior: Cu2+ > Zn2+ > Co2+ > Ni2+ and Cu2+ > Co2+ a parts per thousand Ni2+ > Zn2+, respectively. In addition, our results suggested that at pH 6.0, Co2+, Zn2+ and Ni2+ affected the Cu2+ retention by PVPA by decreasing the retention capacity due to the competition of ions for functional groups on the polymer chains, whereas at pH 2.0, the preferential retention of Cu2+ and Ni2+ was observed.
机译:液相聚合物基保留(LPR)是一种用于消除,浓缩和分离废水中污染物的新技术。使用清洗方法,LPR可以提供保留曲线,其中包含与保留相关的所有因素的贡献。为了推进LPR技术并进一步了解水溶液中的聚合物体系,开发了保留曲线模型并将其应用于Cu2 +保留。通过LPR实验研究了Cu2 +的去除,该实验采用了各种聚合物,一系列pH值(2.0、3.5和5.0)和不同的干扰物质(Co2 +,Ni2 +和Zn2 +)。从实验数据模拟得到的保留曲线。结果显示在pH 5.0下恒定的R(syst)值。但是,在pH 3.5和2.0下,PVPA的R(syst)表现出以下行为:Cu2 +> Zn2 +> Co2 +> Ni2 +和Cu2 +> Co2 +千分之二Ni2 +> Zn2 +。此外,我们的结果表明,在pH 6.0时,Co2 +,Zn2 +和Ni2 +通过离子对聚合物链上官能团的竞争而降低了保留能力,从而通过PVPA影响了PVPA对Cu2 +的保留,而在pH 2.0时,P2的优先保留观察到Cu 2+和Ni 2+。

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