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Environmentally Friendly Recycling of Fuel-Cell Membrane Electrode Assemblies by Using Ionic Liquids

机译:使用离子液体环保燃料 - 电池膜电极组件的环保回收

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The platinum nanoparticles used as the catalyst in proton exchange membrane fuel cells (PEMFCs) represent approximately 46% of the total price of the cells for a large- scale production, and this is one of the barriers to their commercialization. Therefore, the recycling of the platinum catalyst could be the best alternative to limit the production costs of PEMFCs. The usual recovery routes for spent catalysts containing platinum are pyro- hydrometallurgical processes in which a calcination step is followed by aqua regia treatment, and these processes generate fumes and NOx emissions, respectively. The electrochemical recovery route proposed here is more environmentally friendly, performed under "soft" temperature conditions, and does not result in any gas emissions. It consists of the coupling of the electrochemical leaching of platinum in chloride-based ionic liquids (ILs), followed by its electrodeposition. The leaching of platinum was studied in pure ILs and in ionic-liquid melts at different temperatures and with different chloride contents. Through the modulation of the composition of the ionic-liquid melts, it is possible to leach and electrodeposit the platinum from fuel-cell electrodes in a single-cell process under an inert or ambient atmosphere.
机译:用作质子交换膜燃料电池(PEMFC)中的铂纳米颗粒(PEMFC)的催化剂代表大约46%的细胞总产为大规模生产,这是其商业化的障碍之一。因此,铂催化剂的再循环可能是限制PEMFCs生产成本的最佳替代方案。含有铂的废催化剂的通常回收路线是热动冶金方法,其中煅烧步骤之后是Aqua Regia治疗,这些过程分别产生烟雾和NOx排放。这里提出的电化学回收路线更环保,在“软”温度条件下进行,并且不会导致任何气体排放。它由铂的电化学浸出在基于氯化物的离子液体(ILS)中的偶联,其次是其电沉积。在纯ILS中研究了铂的浸出,并在不同温度和不同的氯化物含量下熔化。通过调制离子液体熔体的组成,可以在惰性或环境气氛下在单细胞过程中从燃料电池电极中浸出和浸入铂。

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