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Application of proton exchange membrane fuel cells for the monitoring and direct usage of biohydrogen produced by Chlamydomonas reinhardtii

机译:质子交换膜燃料电池在监测和直接利用莱茵衣藻产生的生物氢中的应用

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Photo-biologically produced hydrogen by Chlamydomonas reinhardtii is integrated with a proton exchange (PEM) fuel cell for online electricity generation. To investigate the fuel cell efficiency, the effect of hydrogen production on the open circuit fuel cell voltage is monitored during 27 days of batch culture. Values of volumetric hydrogen production, monitored by the help of the calibrated water columns, are related with the open circuit voltage changes of the fuel cell. From the analysis of this relation a dead end configuration is selected to use the fuel cell in its best potential. After the open circuit experiments external loads are tested for their effects on the fuel cell voltage and current generation. According to the results two external loads are selected for the direct usage of the fuel cell incorporating with the photobioreactors (PBR). Experiments with the PEM fuel cell generate a current density of 1.81 mAcrn~(-2) for about 50 h with 10 Ω load and 0.23 mA cm~(-2) for about 80 h with 100 Ω load.
机译:衣藻(Chlamydomonas reinhardtii)通过光生物产生的氢与质子交换(PEM)燃料电池集成在一起,用于在线发电。为了研究燃料电池效率,在分批培养的27天期间监测了氢气生产对开路燃料电池电压的影响。在校准水柱的帮助下,氢气的体积产生值与燃料电池的开路电压变化有关。从对这种关系的分析中,选择了一种无端配置,以便以其最佳潜力使用燃料电池。在开路实验之后,测试外部负载对燃料电池电压和电流产生的影响。根据结果​​,选择了两个外部负载以直接使用结合了光生物反应器(PBR)的燃料电池。 PEM燃料电池的实验在10Ω负载下持续约50 h产生1.81 mAcrn〜(-2)的电流密度,在100Ω负载下持续约80 h产生0.23 mA cm〜(-2)的电流密度。

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