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Recent developments on functional nanomaterial-based electrodes for microbial fuel cells

机译:用于微生物燃料电池的功能性纳米材料电极的最新发展

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摘要

For a fuel cell, key figures of merit for operation are recognized as efficiency and low costs (for manufacturing and operating). Conversion of chemical energy to electrical energy via oxidation-reduction reactions is dependent on the performance (and efficiency) of the anode and cathode materials used in the fuel cell. In the past few years, the significance of the electrode material has been recognized from various research studies aimed to improve its performance and efficiency of fuel cells. In this review paper, various developments in electrode materials for microbial fuel cells (MFC) are discussed. In this application, modification of anode material to seek compatibility with microorganisms is a major concern for the enhancement of the power generation. To this end, various strategies have been discussed in detail to effectively enhance MFC properties. This paper focuses on the role of different nanomaterials and their composites as electrode materials (with a major emphasis on anode application) in MFCs based on the evaluation of their performance in relation to their properties. Further promising pathways for the future research in this area have been identified and discussed.
机译:对于燃料电池,操作的主要图是效率和低成本(用于制造和运行)。通过氧化还原反应将化学能转化为电能,取决于燃料电池中使用的阳极和阴极材料的性能(和效率)。在过去几年中,已经从各种研究研究中认识到电极材料的重要性,该研究旨在提高其燃料电池的性能和效率。在本文中,讨论了微生物燃料电池(MFC)的电极材料中的各种开发。在本申请中,修改阳极材料,以寻求与微生物的相容性是增强发电的主要问题。为此,已经详细讨论了各种策略以有效地增强MFC属性。本文重点介绍了不同纳米材料及其复合材料作为电极材料的作用(在MFC中的电极材料(主要重点是阳极应用),基于其与其性能相关的性能的评估。已经确定并讨论了该地区未来研究的进一步前途途径。

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