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从微生物燃料电池在最大功率点处无电阻主动能量收集。

Active energy harvesting from microbial fuel cells at the maximum power point without using resistors.

机构信息

Department of Civil Engineering, University of Colorado Denver, Denver, Colorado 80004, USA.

出版信息

Environ Sci Technol. 2012 May 1;46(9):5247-52. doi: 10.1021/es300313d. Epub 2012 Apr 17.

Abstract

Microbial fuel cell (MFC) technology offers a sustainable approach to harvest electricity from biodegradable materials. Energy production from MFCs has been demonstrated using external resistors or charge pumps, but such methods can only dissipate energy through heat or receive electrons passively from the MFC without any controllability. This study developed a new approach and system that can actively extract energy from MFC reactors at any operating point without using any resistors, especially at the peak power point to maximize energy production. Results show that power harvesting from a recirculating-flow MFC can be well maintained by the maximum power point circuit (MPPC) at its peak power point, while a charge pump was not able to change operating point due to current limitation. Within 18-h test, the energy gained from the MPPC was 76.8 J, 76 times higher than the charge pump (1.0 J) that was commonly used in MFC studies. Both conditions resulted in similar organic removal, but the Coulombic efficiency obtained from the MPPC was 21 times higher than that of the charge pump. Different numbers of capacitors could be used in the MPPC for various energy storage requirements and power supply, and the energy conversion efficiency of the MPPC was further characterized to identify key factors for system improvement. This active energy harvesting approach provides a new perspective for energy harvesting that can maximize MFC energy generation and system controllability.

摘要

微生物燃料电池 (MFC) 技术为从可生物降解材料中获取电能提供了一种可持续的方法。已经证明可以使用外部电阻器或电荷泵从 MFC 中产生电能,但是这些方法只能通过热耗散能量或被动地从 MFC 接收电子,而没有任何可控性。本研究开发了一种新的方法和系统,可以在不使用任何电阻器的情况下,在任何工作点从 MFC 反应器中主动提取能量,特别是在最大功率点以最大限度地提高能量产量。结果表明,通过最大功率点电路 (MPPC) 可以很好地维持循环流 MFC 的功率采集在其最大功率点,而电荷泵由于电流限制无法改变工作点。在 18 小时的测试中,从 MPPC 获得的能量为 76.8 J,是通常用于 MFC 研究的电荷泵 (1.0 J) 的 76 倍。两种情况下的有机去除率相似,但从 MPPC 获得的库仑效率比电荷泵高 21 倍。MPPC 中可以使用不同数量的电容器来满足各种能量存储要求和电源供应,并且进一步表征了 MPPC 的能量转换效率,以确定系统改进的关键因素。这种主动能量采集方法为能量采集提供了新的视角,可以最大限度地提高 MFC 的能量产生和系统的可控性。

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