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On the Edge of Research and Technological Application: A Critical Review of Electromethanogenesis

机译:在研究和技术应用的边缘:对电甲烷生成的评论

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摘要

The conversion of electrical current into methane (electromethanogenesis) by microbes represents one of the most promising applications of bioelectrochemical systems (BES). Electromethanogenesis provides a novel approach to waste treatment, carbon dioxide fixation and renewable energy storage into a chemically stable compound, such as methane. This has become an important area of research since it was first described, attracting different research groups worldwide. Basics of the process such as microorganisms involved and main reactions are now much better understood, and recent advances in BES configuration and electrode materials in lab-scale enhance the interest in this technology. However, there are still some gaps that need to be filled to move towards its application. Side reactions or scaling-up issues are clearly among the main challenges that need to be overcome to its further development. This review summarizes the recent advances made in the field of electromethanogenesis to address the main future challenges and opportunities of this novel process. In addition, the present fundamental knowledge is critically reviewed and some insights are provided to identify potential niche applications and help researchers to overcome current technological boundaries.
机译:微生物将电流转化为甲烷(电甲烷生成)代表了生物电化学系统(BES)最有前途的应用之一。甲烷生成为废物处理,二氧化碳固定和将可再生能源存储到化学稳定的化合物(例如甲烷)中提供了一种新颖的方法。自从第一次被描述以来,它就已经成为重要的研究领域,吸引了全世界不同的研究小组。现在,人们对过程的基本知识(例如涉及的微生物和主要反应)有了更好的了解,并且BES配置和实验室规模的电极材料的最新进展增强了对该技术的兴趣。但是,仍然需要填补一些空白才能迈向其应用。副反应或规模扩大问题显然是其进一步发展需要克服的主要挑战之一。这篇综述总结了在电甲烷发生领域中为解决该新方法未来的主要挑战和机遇所取得的最新进展。此外,对当前的基础知识进行了严格的审查,并提供了一些见识,以识别潜在的利基应用并帮助研究人员克服当前的技术边界。

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