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钒氧化还原液流电池中阴离子交换混合膜的性能

Performances of Anion-Exchange Blend Membranes on Vanadium Redox Flow Batteries.

作者信息

Cho Hyeongrae, Krieg Henning M, Kerres Jochen A

机构信息

Institute of Chemical Process Engineering, University of Stuttgart, 70199 Stuttgart, Germany.

Faculty of Natural Science, North-West University, Focus Area: Chemical Resource Beneficiation, Potchefstroom 2520, South Africa.

出版信息

Membranes (Basel). 2019 Feb 17;9(2):31. doi: 10.3390/membranes9020031.

Abstract

Anion exchange blend membranes (AEBMs) were prepared for use in Vanadium Redox Flow Batteries (VRFBs). These AEBMs consisted of 3 polymer components. Firstly, PBI-OO (nonfluorinated PBI) or F6-PBI (partially fluorinated PBI) were used as a matrix polymer. The second polymer, a bromomethylated PPO, was quaternized with 1,2,4,5-tetramethylimidazole (TMIm) which provided the anion exchange sites. Thirdly, a partially fluorinated polyether or a non-fluorinated poly (ether sulfone) was used as an ionical cross-linker. While the AEBMs were prepared with different combinations of the blend polymers, the same weight ratios of the three components were used. The AEBMs showed similar membrane properties such as ion exchange capacity, dimensional stability and thermal stability. For the VRFB application, comparable or better energy efficiencies were obtained when using the AEBMs compared to the commercial membranes included in this study, that is, Nafion (cation exchange membrane) and FAP 450 (anion exchange membrane). One of the blend membranes showed no capacity decay during a charge-discharge cycles test for 550 cycles run at 40 mA/cm² indicating superior performance compared to the commercial membranes tested.

摘要

制备了用于钒氧化还原液流电池(VRFB)的阴离子交换共混膜(AEBM)。这些AEBM由3种聚合物成分组成。首先,使用PBI-OO(非氟化PBI)或F6-PBI(部分氟化PBI)作为基体聚合物。第二种聚合物是溴甲基化PPO,用1,2,4,5-四甲基咪唑(TMIm)进行季铵化,从而提供阴离子交换位点。第三种聚合物是部分氟化聚醚或非氟化聚(醚砜),用作离子交联剂。虽然AEBM是用共混聚合物的不同组合制备的,但三种成分的重量比相同。AEBM表现出相似的膜性能,如离子交换容量、尺寸稳定性和热稳定性。对于VRFB应用,与本研究中包含的商业膜(即Nafion(阳离子交换膜)和FAP 450(阴离子交换膜))相比,使用AEBM时可获得相当或更好的能量效率。其中一种共混膜在40 mA/cm²下进行550次充放电循环测试期间没有容量衰减,表明其性能优于所测试的商业膜。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f277/6410199/ac09893b4921/membranes-09-00031-g001.jpg

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