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微尺度微生物燃料电池:进展与挑战。

Microscale microbial fuel cells: Advances and challenges.

机构信息

Bioelectronics and Microsystems Laboratory, Department of Electrical and Computer Engineering, State University of New York-Binghamton, Binghamton, NY 13902, USA.

出版信息

Biosens Bioelectron. 2015 Jul 15;69:8-25. doi: 10.1016/j.bios.2015.02.021. Epub 2015 Feb 14.

Abstract

The next generation of sustainable energy could come from microorganisms; evidence that it can be seen with the given rise of Electromicrobiology, the study of microorganisms' electrical properties. Many recent advances in electromicrobiology stem from studying microbial fuel cells (MFCs), which are gaining acceptance as a future alternative "green" energy technology and energy-efficient wastewater treatment method. MFCs are powered by living microorganisms with clean and sustainable features; they efficiently catalyse the degradation of a broad range of organic substrates under natural conditions. There is also increasing interest in photosynthetic MFCs designed to harness Earth's most abundant and promising energy source (solar irradiation). Despite their vast potential and promise, however, MFCs and photosynthetic MFCs have not yet successfully translated into commercial applications because they demonstrate persistent performance limitations and bottlenecks associated with scaling up. Instead, microscale MFCs have received increasing attention as a unique platform for various applications such as powering small portable electronic elements in remote locations, performing fundamental studies of microorganisms, screening bacterial strains, and toxicity detection in water. Furthermore, the stacking of miniaturized MFCs has been demonstrated to offer larger power densities than a single macroscale MFC in terms of scaling up. In this overview, we discuss recent achievements in microscale MFCs as well as their potential applications. Further scientific and technological challenges are also reviewed.

摘要

下一代可持续能源可能来自微生物;随着电微生物学的兴起,即对微生物电特性的研究,这一证据可见一斑。电微生物学的许多最新进展源于对微生物燃料电池 (MFC) 的研究,微生物燃料电池作为未来替代“绿色”能源技术和节能废水处理方法越来越受到认可。MFC 由具有清洁和可持续特性的活体微生物提供动力;它们在自然条件下高效地催化降解广泛的有机底物。人们对设计用于利用地球最丰富和最有前途的能源(太阳辐射)的光合 MFC 的兴趣也在增加。然而,尽管 MFC 和光合 MFC 具有巨大的潜力和前景,但它们尚未成功转化为商业应用,因为它们表现出与扩大规模相关的持续性能限制和瓶颈。相反,微尺度 MFC 作为各种应用的独特平台受到越来越多的关注,例如为偏远地区的小型便携式电子元件供电、对微生物进行基础研究、筛选细菌菌株以及检测水中的毒性。此外,已经证明,就扩大规模而言,小型化 MFC 的堆叠比单个宏观 MFC 提供更高的功率密度。在这篇综述中,我们讨论了微尺度 MFC 的最新成就及其潜在应用。还回顾了进一步的科学和技术挑战。

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