Kerzenmacher Sven
IMTEK - Department of Microsystems Engineering, University of Freiburg, Freiburg im Breisgau, Germany.
Adv Biochem Eng Biotechnol. 2019;167:135-180. doi: 10.1007/10_2017_16.
This chapter provides an overview of the current state-of-the-art in the engineering of microbial electrodes for application in microbial electrosynthesis. First, important functional aspects and requirements of basic materials for microbial electrodes are introduced, including the meaningful benchmarking of electrode performance, a comparison of electrode materials, and methods to improve microbe-electrode interaction. Suitable current collectors and composite materials that combine different functionalities are also discussed. Subsequently, the chapter focuses on the design of macroscopic electrode structures. Aspects such as mass transfer and electrode topology are touched upon, and a comparison of the performance of microbial electrodes relevant for practical application is provided. The chapter closes with an overall conclusion and outlook, highlighting the future prospects and challenges for the engineering of microbial electrodes toward practical application in the field of microbial electrosynthesis. Graphical Abstract.
本章概述了用于微生物电合成的微生物电极工程的当前技术水平。首先,介绍了微生物电极基础材料的重要功能方面和要求,包括电极性能的有意义的基准测试、电极材料的比较以及改善微生物与电极相互作用的方法。还讨论了合适的集流体和结合不同功能的复合材料。随后,本章重点关注宏观电极结构的设计。涉及传质和电极拓扑等方面,并提供了与实际应用相关的微生物电极性能比较。本章最后给出总体结论和展望,突出了微生物电极工程在微生物电合成领域实际应用的未来前景和挑战。图形摘要。