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Microbial fuel cell cathodes: from bottleneck to prime opportunity?

机译:微生物燃料电池阴极:从瓶颈到主要机遇?

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Microbial fuel cells that can generate energy out of wastewaters are close to pilot scale testing. As such, MFC technology is complementary to methane generation due to the possibility to rapidly convert organic acids, polish effluents and work at low substrate concentrations. The main bottleneck perceived at the moment is the cathodic electron transfer. A variety of catalysts has been investigated for the direct transfer of electrons from the cathode to oxygen in the air. Overlooked in this context were bacteria. Bacteria could indeed be worthwhile to replace chemical catalysts. Moreover, their versatility enables us to not only target at oxygen, but also at nitrous oxides and contaminants as possible drivers of electricity generation, nutrient removal and bioremediation. This paper addresses several recent developments in MFC cathode research, and demonstrates that energy generation is but an aspect of this versatile technology.
机译:可以从废水中产生能量的微生物燃料电池已经接近中试规模的测试。这样,由于可以快速转化有机酸,抛光废水并在低底物浓度下工作,因此MFC技术是甲烷生成的补充。目前主要的瓶颈是阴极电子转移。为了将电子从阴极直接转移到空气中的氧气,已经研究了多种催化剂。在这种情况下,细菌被忽视了。细菌确实值得取代化学催化剂。此外,它们的多功能性使我们不仅可以针对氧气,而且可以针对一氧化二氮和污染物作为发电,营养去除和生物修复的可能动力。本文介绍了MFC阴极研究的一些最新进展,并证明了发电只是这项通用技术的一个方面。

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