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首页> 外文期刊>ChemSusChem >Environmentally and Industrially Friendly Recycling of Platinum Nanoparticles Through Electrochemical Dissolution-Electrodeposition in Acid-Free/Dilute Acidic Electrolytes
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Environmentally and Industrially Friendly Recycling of Platinum Nanoparticles Through Electrochemical Dissolution-Electrodeposition in Acid-Free/Dilute Acidic Electrolytes

机译:通过在无酸/稀酸电解质中通过电化学溶解电沉积的铂纳米颗粒的环保和工业友好再循环

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摘要

A process to recycle platinum from industrial waste, for example, spent catalysts from polymer fuel cells and electrolyzers, through potentiodynamic dissolution along with potentiostatic electrodeposition in dilute acidic/acid-free baths has been explored. During potentiodynamic dissolution, owing to Ostwald ripening, redeposition of the dissolved Pt species on source nanoparticles becomes significant, leading to lower overall dissolution efficiency. Alternatively, high concentrations of Pt-complexing agents (e.g., Cl-) are required to stabilize dissolved species through complex formation. The present process overcomes those limitations by removing the dissolved Pt species continuously through electrodepositing them in the form of Pt-0 on another electrode. Such a process significantly promotes the overall reaction kinetics, and an increase in dissolution rate by a factor of two or more has been observed in non-complexing electrolytes. The process may be implemented for environmentally and industrially friendly recycling of Pt in dilute acidic/acid-free baths, thus eliminating the additional steps such as electrolyte upconcentration and post-dissolution reduction of dissolved Pt species.
机译:已经探讨了从工业废物中回收铂的方法,例如,通过溶性酸性/无酸浴中的电量溶解以及来自聚合物燃料电池和电解器的催化剂。在电位动力学溶解期间,由于OSTWALD成熟,在源纳米粒子上的溶解PT物质的重新沉积变得显着,导致较低的总溶解效率。或者,需要高浓度的Pt络合剂(例如,CL-)来通过复杂的形成稳定溶解物种。通过在另一个电极上以Pt-0的形式连续除去溶解的Pt种来克服这些限制来克服这些限制。这种方法显着促进了整个反应动力学,在非络合电解质中观察到溶出速率的增加两种以上。该方法可以在稀酸/酸浴中的环保和工业上友好的再循环来实施,从而消除了诸如电解质上浓缩的附加步骤和溶解的PT物质的溶解后还原。

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