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电渗析条件下矿物盐-中性氨基酸溶液中不同阳离子交换剂含量的膜的电流-电压特性

Current-Voltage Characteristics of Membranes with Different Cation-Exchanger Content in Mineral Salt-Neutral Amino Acid Solutions under Electrodialysis.

作者信息

Vasil'eva Vera I, Akberova Elmara M, Saud Ali M, Zabolotsky Victor I

机构信息

Department of Analytical Chemistry, Chemical Faculty, Voronezh State University, Universitetskaya pl. 1, 394018 Voronezh, Russia.

Faculty of Science, Tishreen University, Latakia 2237, Syria.

出版信息

Membranes (Basel). 2022 Nov 2;12(11):1092. doi: 10.3390/membranes12111092.

Abstract

The features of the electrochemical behavior of experimental heterogeneous ion-exchange membranes with different mass fractions of sulfonated cation-exchange resin (from 45 to 65 wt%) have been studied by voltammetry during electrodialysis. Electromembrane systems with 0.01 M NaCl solution and with a mixed 0.01 M NaCl + 0.05 M phenylalanine (Phe) solution have been investigated. A significant influence of the ion-exchanger content on the parameters of current-voltage curves (CVCs) was established for the first time. Electrodialysis of the sodium chloride solution revealed a decrease in the length of the limiting current plateau and in the resistances of the second and third sections of the CVCs with an increase in the resin content in the membrane. The fact of the specific shape of the CVCs of all studied cation-exchange membrane samples in mixed solutions of the mineral salt and the amino acid was established. A specific feature of current-voltage curves is the presence of two plateaus of the limiting current and two values of the limiting current, respectively. This phenomenon in electromembrane systems with neutral amino acids has not been found before. The value of the first limiting current is determined by cations of the mineral salt, which are the main current carriers in the system. The presence of the second plateau and the corresponding second limiting current is due to the appearance of additional carriers due to the ability of phenylalanine as an organic ampholyte to participate in protolytic reactions. In the cation-exchange electromembrane system with the phenylalanine containing solution, two mechanisms of H/OH ion generation through water splitting and acid dissociation are shown. The possibility of the generation of H/OH ions at the enriched solution/cation-exchange membrane interface during electrodialysis of amino acid containing solutions is shown for the first time. The results of this study can be used to improve the process of electromembrane demineralization of neutral amino acid solutions by both targeted selection or the creation of new membranes and the selection of effective current operating modes.

摘要

通过伏安法在电渗析过程中研究了具有不同质量分数磺化阳离子交换树脂(45至65 wt%)的实验性非均相离子交换膜的电化学行为特征。研究了含有0.01 M NaCl溶液以及混合的0.01 M NaCl + 0.05 M苯丙氨酸(Phe)溶液的电膜系统。首次确定了离子交换剂含量对电流 - 电压曲线(CVCs)参数有显著影响。氯化钠溶液的电渗析显示,随着膜中树脂含量的增加,极限电流平台的长度以及CVCs第二和第三部分的电阻减小。确定了所有研究的阳离子交换膜样品在矿物盐和氨基酸混合溶液中的CVCs具有特定形状这一事实。电流 - 电压曲线的一个特定特征是分别存在两个极限电流平台和两个极限电流值。在具有中性氨基酸的电膜系统中,这种现象以前尚未被发现。第一个极限电流的值由矿物盐的阳离子决定,这些阳离子是系统中的主要载流子。第二个平台和相应的第二个极限电流的存在是由于苯丙氨酸作为有机两性电解质参与质子分解反应而产生了额外的载流子。在含有苯丙氨酸溶液的阳离子交换电膜系统中,展示了通过水分解和酸解离产生H/OH离子的两种机制。首次展示了在含氨基酸溶液的电渗析过程中,在富集溶液/阳离子交换膜界面处产生H/OH离子的可能性。本研究结果可用于通过有针对性地选择或制造新膜以及选择有效的电流操作模式来改进中性氨基酸溶液的电膜脱盐过程。

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