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用于高效水分解电渗析的含铁基催化剂的双极膜

Bipolar Membranes Containing Iron-Based Catalysts for Efficient Water-Splitting Electrodialysis.

作者信息

Song Hyeon-Bee, 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). 2022 Nov 28;12(12):1201. doi: 10.3390/membranes12121201.

Abstract

Water-splitting electrodialysis (WSED) process using bipolar membranes (BPMs) is attracting attention as an eco-friendly and efficient electro-membrane process that can produce acids and bases from salt solutions. BPMs are a key component of the WSED process and should satisfy the requirements of high water-splitting capability, physicochemical stability, low membrane cost, etc. The water-splitting performance of BPMs can be determined by the catalytic materials introduced at the bipolar junction. Therefore, in this study, several kinds of iron metal compounds (i.e., Fe(OH), Fe(OH)@FeO, Fe(OH)EDTA, and FeO@ZIF-8) were prepared and the catalytic activities for water-splitting reactions in BPMs were systematically analyzed. In addition, the pore-filling method was applied to fabricate low-cost/high-performance BPMs, and the 50 μm-thick BPMs prepared on the basis of PE porous support showed several times superior toughness compared to Fumatech FBM membrane. Through various electrochemical analyses, it was proven that Fe(OH)EDTA has the highest catalytic activity for water-splitting reactions and the best physical and electrochemical stabilities among the considered metal compounds. This is the result of stable complex formation between Fe and EDTA ligand, increase in hydrophilicity, and catalytic water-splitting reactions by weak acid and base groups included in EDTA as well as iron hydroxide. It was also confirmed that the hydrophilicity of the catalyst materials introduced to the bipolar junction plays a critical role in the water-splitting reactions of BPM.

摘要

使用双极膜(BPMs)的水分解电渗析(WSED)工艺作为一种可从盐溶液中生产酸和碱的环保高效电膜工艺正受到关注。双极膜是WSED工艺的关键组成部分,应满足高水分解能力、物理化学稳定性、低膜成本等要求。双极膜的水分解性能可由双极结处引入的催化材料决定。因此,在本研究中,制备了几种铁金属化合物(即Fe(OH)、Fe(OH)@FeO、Fe(OH)EDTA和FeO@ZIF-8),并系统分析了它们在双极膜中对水分解反应的催化活性。此外,采用孔填充法制备低成本/高性能双极膜,基于PE多孔支撑体制备的50μm厚双极膜的韧性比Fumatech FBM膜高出几倍。通过各种电化学分析证明,在所考虑的金属化合物中,Fe(OH)EDTA对水分解反应具有最高的催化活性以及最佳的物理和电化学稳定性。这是由于Fe与EDTA配体之间形成稳定的络合物、亲水性增加以及EDTA和氢氧化铁中所含的弱酸和弱碱基团催化水分解反应的结果。还证实了引入双极结的催化剂材料的亲水性在双极膜的水分解反应中起关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d38/9786226/9a262966e2d4/membranes-12-01201-g001.jpg

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