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Closing the loop: life cycle assessment and optimization of a PEMFC platinum-based catalyst recycling process

机译:关闭环路:PEMFC铂催化剂回收过程的生命周期评估和优化

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This study is focused on the development of an environmentally friendly recycling method for selective recovery in a closed loop manner of Co and Pt from a Pt3Co/C catalyst used as the proton exchange membrane fuel cell (PEMFC) cathode. Pt and Co selective separation was carried out using two different hydrometallurgical alternatives based either on ion exchange resin or solvent extraction. The recycling process was optimized in order to maximize the platinum recovery yield, which reached 85% and 78% of the Pt initially present in the membrane-electrode assembly (MEA) using respectively solvent extraction or ion exchange resin separation alternatives. The recovered platinum alkaline solutions have been further used for Pt/C particle synthesis via a modified polyol method and it was shown that although the resin alternative resulted in a slightly lower recovery yield, the catalyst prepared via this alternative had satisfactory morphological and electrochemical properties for the oxygen reduction reaction (ORR) by performing similar to a commercial state-of-art Pt/C catalyst. The feasibility of the closed loop Pt/C catalyst recycling was thus proven. The environmental impacts of the two recycling alternatives have been compared using the life cycle assessment methodology (LCA) and similar impacts have been found for both alternatives from the point of view of the entire MEA life cycle. The ion exchange resin alternative has thus been selected as the most appropriate one.
机译:该研究专注于开发用于从用作质子交换膜燃料电池(PEMFC)阴极的PT3CO / C催化剂的CO和Pt的闭环方式选择性回收环友好回收方法。使用基于离子交换树脂或溶剂萃取的两种不同的液压冶金替代方法进行Pt和Co选择性分离。优化回收过程以最大化铂回收率,其使用分别溶剂萃取或离子交换树脂分离替代品达到膜 - 电极组件(MEA)中最初存在的85%和78%的PT。通过改性多元醇法进一步用于Pt / C颗粒合成的回收的铂碱性溶液,并且显示了尽管树脂替代物得到稍​​低的回收率,但通过该替代方案制备的催化剂具有令人满意的形态和电化学性能通过进行类似于商业最先进的Pt / C催化剂来氧还原反应(ORR)。因此证明了闭环Pt / C催化剂再循环的可行性。使用生命周期评估方法(LCA)比较了两种回收替代品的环境影响,并且从整个MEA生命周期的角度来看,都发现了两个替代方案的类似影响。因此选择了离子交换树脂替代品作为最合适的选择。

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