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用于通过反向电渗析高效收集能量的表面改性孔填充阴离子交换膜

Surface-Modified Pore-Filled Anion-Exchange Membranes for Efficient Energy Harvesting via Reverse Electrodialysis.

作者信息

Lee Ji-Hyeon, Kim Do-Hyeong, Kang Moon-Sung

机构信息

Department of Green Chemical Engineering, College of Engineering, Sangmyung University, Cheonan 31066, Republic of Korea.

出版信息

Membranes (Basel). 2023 Nov 30;13(12):894. doi: 10.3390/membranes13120894.

Abstract

In this study, novel pore-filled anion-exchange membranes (PFAEMs) modified with polypyrrole (PPy) and reduced graphene oxide (rGO) were developed to improve the energy harvesting performance of reverse electrodialysis (RED). The surface-modified PFAEMs were fabricated by varying the contents of PPy and rGO through simple spin coating and chemical/thermal treatments. It was confirmed that the PPy and PPy/rGO layers introduced on the membrane surface did not significantly increase the electrical resistance of the membrane and could effectively control surface characteristics, such as structural tightness, hydrophilicity, and electrostatic repulsion. The PPy/rGO-modified PFAEM showed excellent monovalent ion selectivity, more than four times higher than that of the commercial membrane (AMX, Astom Corp., Tokyo, Japan). This means that the PPy/rGO layer can effectively reduce the permeation of multivalent ions with a high charge intensity and a relatively large hydration radius compared to monovalent ions. The results of evaluating the performance of the surface-modified PFAEMs by applying them to a RED cell revealed that the decrease in potential difference occurring in the membrane was reduced by effectively suppressing the uphill transport of multivalent ions. Consequently, the PPy/rGO-modified membrane exhibited a 5.43% higher power density than the AMX membrane.

摘要

在本研究中,开发了用聚吡咯(PPy)和还原氧化石墨烯(rGO)改性的新型孔隙填充阴离子交换膜(PFAEMs),以提高反向电渗析(RED)的能量收集性能。通过简单的旋涂和化学/热处理改变PPy和rGO的含量,制备了表面改性的PFAEMs。证实引入膜表面的PPy和PPy/rGO层不会显著增加膜的电阻,并且可以有效地控制表面特性,如结构致密性、亲水性和静电排斥。PPy/rGO改性的PFAEM表现出优异的单价离子选择性,比商业膜(AMX,日本东京Astom公司)高出四倍以上。这意味着与单价离子相比,PPy/rGO层可以有效地减少具有高电荷强度和相对较大水合半径的多价离子的渗透。将表面改性的PFAEMs应用于RED电池来评估其性能的结果表明,通过有效抑制多价离子的上坡传输,膜中发生的电位差降低。因此,PPy/rGO改性膜的功率密度比AMX膜高5.43%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/968f/10744693/74e526120566/membranes-13-00894-g001.jpg

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