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    • 3. 发明授权
    • Multi-electrode microbial fuel cells and fuel cell systems and bioreactors with dynamically configurable fluidics
    • 多电极微生物燃料电池和具有动态可配置流体学的燃料电池系统和生物反应器
    • US08518566B2
    • 2013-08-27
    • US12726980
    • 2010-03-18
    • Brian Sefton
    • Brian Sefton
    • H01M8/16
    • H01M8/16Y02E60/527
    • Microbial fuel cells including multiple electrodes, and systems of such fuel cells, are provided. An exemplary fuel cell includes a population of exoelectrogenic microbes and at least two anodes in an anode chamber, and a cathode in a cathode chamber. A path exists between the chambers for conducting hydrogen ions and each anode is connected to the cathode by a separate external circuit. Electrical output from the fuel cell is maximized by optimizing the microbe population, achieved by dynamically controlling the sub-populations at each of the multiple anodes. Systems comprising multiple such fuel cells connected by a dynamically reconfigurable fluidics system provide further optimization.
    • 提供包括多个电极的微生物燃料电池和这种燃料电池的系统。 一个示例性的燃料电池包括一组外电子微生物和阳极室中的至少两个阳极,以及阴极室中的阴极。 在用于进行氢离子的室之间存​​在路径,并且每个阳极通过单独的外部电路连接到阴极。 通过优化微生物群体,通过动态控制多个阳极中的每个阳极处的子群体来实现燃料电池的电力输出最大化。 包括由动态可重构流体系统连接的多个这样的燃料电池的系统提供了进一步的优化。
    • 5. 发明申请
    • Multi-Electrode Microbial Fuel Cells and Fuel Cell Systems and Bioreactors with Dynamically Configurable Fluidics
    • 多电极微生物燃料电池和燃料电池系统和具有动态配置流体的生物反应器
    • US20100239920A1
    • 2010-09-23
    • US12726980
    • 2010-03-18
    • Brian Sefton
    • Brian Sefton
    • H01M8/16
    • H01M8/16Y02E60/527
    • Microbial fuel cells including multiple electrodes, and systems of such fuel cells, are provided. An exemplary fuel cell includes a population of exoelectrogenic microbes and at least two anodes in an anode chamber, and a cathode in a cathode chamber. A path exists between the chambers for conducting hydrogen ions and each anode is connected to the cathode by a separate external circuit. Electrical output from the fuel cell is maximized by optimizing the microbe population, achieved by dynamically controlling the sub-populations at each of the multiple anodes. Systems comprising multiple such fuel cells connected by a dynamically reconfigurable fluidics system provide further optimization.
    • 提供包括多个电极的微生物燃料电池和这种燃料电池的系统。 一个示例性的燃料电池包括一组外电子微生物和阳极室中的至少两个阳极,以及阴极室中的阴极。 在用于进行氢离子的室之间存​​在路径,并且每个阳极通过单独的外部电路连接到阴极。 通过优化微生物群体,通过动态控制多个阳极中的每个阳极处的子群体来实现燃料电池的电力输出最大化。 包括由动态可重构流体系统连接的多个这样的燃料电池的系统提供了进一步的优化。