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Integration of fermentative hydrogen process and fuel cell for on-line electricity generation

机译:发酵氢工艺和燃料电池的集成,可在线发电

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In this work, a dark H_2 fermentation process was integrated with a proton-exchange-membrane fuel-cell (PEMFC) system for on-line electricity generation. The H_2 producing system was a continuously stirred anaerobic bioreactor (CSABR) seeded with silicone-immobilized sludge. The CSABR system, using sucrose as the sole carbon substrate, was able to continuously and stably produce H_2 for over 300 days at a hydraulic retention time (HRT) of 6 h and an influent sucrose concentration of 30 g COD/l. The maximum H_2 production rate and the optimal H_2 yield were 1.15 ± 0.08 l/h/l and 3.71 ± 0.18mol H_2/mol sucrose, respectively. The H_2 produced from the CSABR system was purified via a CO_2 absorber and a silica-gel desiccator, and then the > 99% pure H_2 was fed into a PEMFC system at a rate of 1.72 l/h, generating electricity with a stable electromotive force of 3.30 ± 0.04 V. The output power was ca. 0.87 W (at 25 ℃), and the output voltage and current were stably maintained at 2.28 V and 0.38 A, respectively, when connected to a small light emission diode (LED) panel.
机译:在这项工作中,将黑暗的H_2发酵过程与质子交换膜燃料电池(PEMFC)系统集成在一起以进行在线发电。产生H_2的系统是连续搅拌的厌氧生物反应器(CSABR),接种了硅胶固定的污泥。使用蔗糖作为唯一碳底物的CSABR系统能够在6 h的水力停留时间(HRT)和进水蔗糖浓度为30 g COD / l的情况下连续稳定地生产H_2超过300天。最大的H_2产生速率和最佳的H_2产量分别为1.15±0.08 l / h / l和3.71±0.18mol H_2 / mol蔗糖。由CSABR系统产生的H_2通过CO_2吸收器和硅胶干燥器进行纯化,然后将纯度大于99%的H_2以1.72 l / h的速度送入PEMFC系统,以稳定的电动势发电的3.30±0.04 V的输出功率。连接到小型发光二极管(LED)面板时,在25℃时为0.87 W(输出电压)和电流,分别稳定地保持在2.28 V和0.38A。

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