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首页> 外文期刊>Journal of Microbial & Biochemical Technology >Enzymatic Electrosynthesis: An Overview on the Progress in Enzyme-Electrodes for the Production of Electricity, Fuels and Chemicals
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Enzymatic Electrosynthesis: An Overview on the Progress in Enzyme-Electrodes for the Production of Electricity, Fuels and Chemicals

机译:酶电合成:用于生产电力,燃料和化学物质的酶电极的进展概述

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Recent interest in the field of biocommodities production through bioelectrochemical systems has generated interest in the enzyme catalyzed redox reactions. Enzyme catalyzed electrodes are well established as sensors and power generators. However, a paradigm shift in recent science towards the production of useful chemicals has changed the face of biofuel cells, keeping the fuels or chemicals production in the upfront. This review article comprehensively presents the progress in the field of enzyme-electrodes for the production of electricity, fuels and chemicals with an aim to represent a practical outline for understanding the use of single or multiple redox enzymes as electrocatalysts for their electron transfer onto electrodes. It also provides the state-of-the-art information regarding the different existing processes to fabricate enzyme electrodes. Successfully-achieved electroenzymatic anodic and cathodic reactions are further discussed, together with their potential applications. Particular focus was made on the novel single/multiple enzyme systems towards product synthesis and other applications. Finally, techno-economic and environmental elements for industrial processing with enzyme catalyzed bioelectrochemical system (e-BES) are anticipated, in order to provide useful strategies for further development of this technology.
机译:通过生物电化学系统在生物商品生产领域中的最新兴趣引起了对酶催化的氧化还原反应的兴趣。酶催化的电极已经很好地用作传感器和发电机。但是,近来科学向有用化学物质生产的范式转变已经改变了生物燃料电池的面貌,使燃料或化学物质生产处于前列。这篇综述文章全面介绍了用于生产电力,燃料和化学药品的酶电极领域的进展,旨在代表实用的概述,以了解使用一种或多种氧化还原酶作为电子催化剂将其电子转移到电极上的方法。它还提供了有关制造酶电极的不同现有工艺的最新信息。进一步讨论了成功实现的酶促阳极和阴极反应及其潜在应用。特别关注了针对产物合成和其他应用的新型单/多酶系统。最后,为酶催化生物电化学系统(e-BES)进行工业加工的技术经济和环境因素已被预料到,以便为该技术的进一步发展提供有用的策略。

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