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Investigating the association between photosynthetic efficiency and generation of biophotoelectricity in autotrophic microbial fuel cells

机译:研究自养微生物燃料电池中光合作用效率与生物光电发电之间的关系

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摘要

Microbial fuel cells operating with autotrophic microorganisms are known as biophotovoltaic devices. It represents a great opportunity for environmentally-friendly power generation using the energy of the sunlight. The efficiency of electricity generation in this novel system is however low. This is partially reflected by the poor understanding of the bioelectrochemical mechanisms behind the electron transfer from these microorganisms to the electrode surface. In this work, we propose a combination of electrochemical and fluorescence techniques, giving emphasis to the pulse amplitude modulation fluorescence. The combination of these two techniques allow us to obtain information that can assist in understanding the electrical response obtained from the generation of electricity through the intrinsic properties related to the photosynthetic efficiency that can be obtained from the fluorescence emitted. These were achieved quantitatively by means of observed changes in four photosynthetic parameters with the bioanode generating electricity. These are the maximum quantum yield (Fv/Fm), alpha (α), light saturation coefficient (Ek) and maximum rate of electron transfer (rETRm). The relationship between the increases in the current density collected by the bioanode to the decrease of the rETRm values in the photosynthetic pathway for the two microorganisms was also discussed.
机译:与自养微生物一起工作的微生物燃料电池被称为生物光伏设备。它代表了利用阳光能量进行环保发电的绝佳机会。然而,在这种新颖系统中发电效率很低。这部分是由于对从这些微生物到电极表面的电子转移背后的生物电化学机制的了解不足所致。在这项工作中,我们提出了电化学和荧光技术的结合,重点是脉冲幅度调制荧光。这两种技术的结合使我们能够获得信息,这些信息可通过与可从发出的荧光获得的光合作用效率相关的内在特性来帮助理解从发电中获得的电响应。这些是通过观察生物阳极产生的四个光合作用参数的变化来定量实现的。它们是最大量子产率(Fv / Fm),α(α),光饱和系数(Ek)和最大电子传输速率(rETRm)。还讨论了由生物阳极收集的电流密度的增加与两种微生物的光合作用途径中的rETRm值降低之间的关系。

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