用磷酸化超支化树枝状聚合物 Bolthorn H20 对 MF-4SK 膜进行批量改性对水的电吸附/解离机制以及对二价离子的特异选择性的影响

A. Achoh, Denis Bondarev, E. Nosova, S. Melnikov
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引用次数: 0

摘要

本研究的重点是在磺化聚四氟乙烯膜中加入磷酸化树枝状聚合物,以提高离子交换膜对单价/二价离子的特异选择性。这项研究利用机械、物理化学和电化学分析来探讨 P-H20 的加入对膜特性的影响。在维持相同的极限电流密度水平的同时,大块改性明显提高了膜对钙离子的选择性(特定过选择系数从 1.5 上升到 7.2)。其他研究结果表明,大块改性显著改变了膜的传输通道结构,并改变了超限传质的机制。原始膜的超限电流主要是由于非平衡电对流造成的,而改性膜则积极参与了分水反应,从而抑制了电对流。尽管存在这一缺点,但过极限电位下降导致比能耗从 0.11 kWh/mol 降至 0.07 kWh/mol。在欠极限电流模式下,所有研究膜的比能耗都保持在 0.02-0.03 kWh/mol 的范围内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effect of Bulk Modification of the MF-4SK Membrane with Phosphorylated Hyper-Branched Dendrimer Bolthorn H20 on the Mechanisms of Electroconvection/Dissociation of Water and Specific Selectivity to Divalent Ions
This study focuses on the modification of ion-exchange membranes by incorporating a phosphorylated dendrimer into sulfonated polytetrafluoroethylene membranes to enhance the specific selectivity between mono-/divalent ions, using the Ca2+/Na+ pair as an example. This research employs mechanical, physicochemical, and electrochemical analyses to explore the effects of P-H20 incorporation on membrane properties. Bulk modification significantly increases membrane selectivity towards calcium ions (the specific permselectivity coefficient rises from 1.5 to 7.2), while maintaining the same level of the limiting current density. Other findings indicate that bulk modification significantly changes the transport-channel structure of the membrane and alters the mechanism of over-limiting mass transfer. The over-limiting current for the pristine membrane is mainly due to non-equilibrium electroconvection, while modified membranes actively participate in the water-splitting reaction, leading to the suppression of the electroconvection. Despite this drawback, the decrease of the over-limiting potential drop results in a decrease in specific energy consumption from 0.11 to 0.07 kWh/mol. In the underlimiting current mode, the specific energy consumption for all studied membranes remains within the same limits of 0.02–0.03 kWh/mol.
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CiteScore
6.30
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