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Assembly of coupled redox fuel cells using copper as electron acceptors to generate power and its in-situ retrieval

机译:耦合氧化还原燃料电池的组装使用铜作为电子受体来发电并进行原位回收

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摘要

Energy extraction from waste has attracted much interest nowadays. Herein, a coupled redox fuel cell (CRFC) device using heavy metals, such as copper, as an electron acceptor is assembled to testify the recoveries of both electricity and the precious metal without energy consumption. In this study, a NaBH4-Cu(II) CRFC was employed as an example to retrieve copper from a dilute solution with self-electricity production. The properties of the CRFC have been characterized, and the open circuit voltage was 1.65 V with a maximum power density of 7.2 W m−2 at an initial Cu2+ concentration of 1,600 mg L−1 in the catholyte. 99.9% of the 400 mg L−1 copper was harvested after operation for 24 h, and the product formed on the cathode was identified as elemental copper. The CRFC demonstrated that useful chemicals were recovered and the electricity contained in the chemicals was produced in a self-powered retrieval process.
机译:如今,从废物中提取能量已引起人们极大的兴趣。在此,组装了使用重金属例如铜作为电子受体的耦合氧化还原燃料电池(CRFC)装置,以在不消耗能量的情况下证明电力和贵金属的回收。在这项研究中,以NaBH4-Cu(II)CRFC为例,从具有自发电功能的稀溶液中回收铜。表征了CRFC的特性,在初始Cu 2 + 浓度下,开路电压为1.65 V,最大功率密度为7.2 W m −2 。阴极液中1,600μgL -1 操作24 forh后,收获了4009.9mg L -1 铜的99.9%,并且在阴极上形成的产物被鉴定为元素铜。 CRFC表明,可以回收有用的化学物质,并且化学物质中包含的电力是通过自供电的检索过程产生的。

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