School of Civil and Environmental Engineering, Yonsei University, Seoul 03722, Republic of Korea.
School of Civil and Environmental Engineering, Yonsei University, Seoul 03722, Republic of Korea; Institute of Chemistry, Bioscience and Environmental Engineering, Faculty of Science and Technology, University of Stavanger, 4036 Stavanger, Norway.
Bioresour Technol. 2021 Mar;323:124598. doi: 10.1016/j.biortech.2020.124598. Epub 2020 Dec 23.
Electro-fermentation is an emerging bioporcess that could regulate the metabolism of electrochemically active microorganisms. The provision of electrodes for the fermentation process that functions as an electron acceptor and supports the formation and transportation of electrons and protons, consequently producing bioelectricity and value-added chemicals. The traditional method of fermentation has several limitations in usability and economic feasibility. Subsequently, a series of metabolic processes occurring in conventional fermentation processes are most often redox misaligned. In this regard, electro-fermentation emerged as a hybrid technology which can regulate a series of metabolic processes occurring in a bioreactor by regulating the redox instabilities and boosting the overall metabolic process towards high biomass yield and enhanced product formation. The present article deals with microorganisms-electrode interactions, various types of electro-fermentation systems, comparative evaluation of pure and mixed culture electro-fermentation application, and value-added fuels and chemical synthesis.
电发酵是一种新兴的生物工艺,可以调节电化学活性微生物的代谢。为发酵过程提供电极,作为电子受体,支持电子和质子的形成和传输,从而产生生物电能和增值化学品。传统的发酵方法在可用性和经济可行性方面存在一些局限性。随后,传统发酵过程中发生的一系列代谢过程通常在氧化还原方面存在不匹配。在这方面,电发酵作为一种混合技术出现,可以通过调节氧化还原不稳定性并促进整个代谢过程朝着高产生物质和增强产物形成的方向发展,来调节生物反应器中发生的一系列代谢过程。本文介绍了微生物-电极相互作用、各种类型的电发酵系统、纯培养和混合培养电发酵应用的比较评估以及增值燃料和化学合成。