Pt和氧化铈在聚合物电解质水电解槽中抑制氢交叉和清除自由基的研究

Zheyu Zhang, Zongyi Han, A. Testino, L. Gubler
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摘要

聚合物电解质水电解是绿色制氢的关键技术之一。它具有在相对高的电流密度和差压下工作的优点。在高阴极压力和薄膜下产生的氢气容易越过阳极室,形成爆炸性的H2/O2气体混合物,给装置带来严重的安全问题。文献表明,一种有效的解决方案是使用铂作为复合催化剂。另一方面,自由基对pfsa基膜的攻击可能导致膜变薄和针孔形成,从而降低电化学性能并最终导致细胞衰竭。为此,铈常被用作自由基清除剂。在这项工作中,我们报道了Pt和氧化铈在溶液铸造的Nafion膜中共掺入,具有抑制氢交叉和清除自由基的双重功能。在100小时的恒流电解测量中,我们发现Pt的掺入显著降低了阳极气流中氧中氢的含量,而在膜内包裹铈锆氧化物能够降低氟的释放率。该研究为研制耐久性强、操作范围安全的质子交换膜提供了指导。
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Suppressing Hydrogen Crossover and Scavenging Radicals By Incorporation of Pt and Cerium-Zirconium Oxide for Polymer Electrolyte Water Electrolyzers
Polymer electrolyte water electrolysis (PEWE) is one of the key technologies for green hydrogen production. It has the advantages of operating at relatively high current densities and differential pressures. The hydrogen gas produced, under high cathodic pressure and with a thin membrane, tends to cross over to the anode chamber, forming explosive H2/O2 gas mixture and posing severe safety concerns for the device. Literature has shown that one effective solution is the use of Pt as the recombination catalyst. On the other hand, radical attacks to the PFSA-based membrane leads to possible thinning and pinhole formation, which deteriorates the electrochemical performance and eventually causes cell failure. To this end, ceria is often employed as a radical scavenger. In this work, we report the co-incorporation of Pt and cerium-zirconium oxide in solution-cast Nafion membranes for the dual functions of suppressing hydrogen crossover and scavenging of radicals. We show that the hydrogen in oxygen content in the anode gas stream is significantly reduced with the incorporation of Pt, and the inclusion of cerium-zirconium oxide inside the membrane is able to decrease fluoride release rate in a 100-hour constant-current water electrolysis measurement. This study provides guidance in developing proton exchange membranes with enhanced durability and safe operating range.
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