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自供电超级电容器微生物燃料电池:提升和收获能量的终极途径。

Self-powered supercapacitive microbial fuel cell: The ultimate way of boosting and harvesting power.

机构信息

Department of Chemical & Biological Engineering, Center for Micro-Engineered Materials (CMEM), University of New Mexico, Albuquerque, NM 87131, USA.

Department of Chemistry "Giacomo Ciamician", Alma Mater Studiorum - Università di Bologna, Via Selmi, 2, 40126 Bologna, Italy.

出版信息

Biosens Bioelectron. 2016 Apr 15;78:229-235. doi: 10.1016/j.bios.2015.11.026. Epub 2015 Nov 14.

Abstract

In this work, for the first time, we demonstrate a supercapacitive microbial fuel cell which integrates the energy harvesting function of a microbial fuel cell (MFC) with the high-power operation of an internal supercapacitor. The pursued strategies are: (i) the increase of the cell voltage by the use of high potential cathodes like bilirubin oxidase (BOx) or iron-aminoantipyrine (Fe-AAPyr); (ii) the use of an additional capacitive electrode (additional electrode, AdE) which is short-circuited with the MFC cathode and coupled with the MFC anode (MFC-AdE). The high working potential of BOx cathode and the low impedances of the additional capacitive electrode and the MFC anode permitted to achieve up to 19 mW (84.4 Wm(-2), 152 Wm(-3)), the highest power value ever reported for MFCs. Exploiting the supercapacitive properties of the MFC electrodes allows the system to be simpler, cheaper and more efficient without additional electronics management added with respect to an MFC/external supercapacitor coupling. The use of the AdE makes it possible to decouple energy and power and to achieve recharge times in the order of few seconds making the system appealing for practical applications.

摘要

在这项工作中,我们首次展示了一种超级电容器微生物燃料电池,它将微生物燃料电池(MFC)的能量收集功能与内部超级电容器的高功率运行相结合。所采用的策略是:(i)使用胆红素氧化酶(BOx)或铁-氨基安替比林(Fe-AAPyr)等高电位阴极来提高电池电压;(ii)使用附加的电容电极(附加电极,AdE),该电极与 MFC 阴极短路,并与 MFC 阳极耦合(MFC-AdE)。BOx 阴极的高工作电位和附加电容电极以及 MFC 阳极的低阻抗,使得功率达到了 19 mW(84.4 Wm(-2),152 Wm(-3)),这是迄今为止报道的 MFC 的最高功率值。利用 MFC 电极的超级电容特性,可以使系统更简单、更便宜、更高效,而无需与 MFC/外部超级电容器耦合相比增加额外的电子管理。使用 AdE 可以实现能量和功率的解耦,并实现几秒钟的充电时间,这使得该系统在实际应用中具有吸引力。

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