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SUSTAINABLE ALKALINE MEMBRANE FUEL CELL (SAMFC)

机译:可持续碱性膜燃料电池(SAMFC)

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This work addresses the development and construction of a sustainable alkaline membrane fuel cell (SAMFC). The SAMFC couples an alkaline membrane fuel cell (AMFC) with a hydrogen generation reactor that uses recycled aluminum from soda cans to split the water molecule through the oxidation of aluminum catalyzed by sodium hydroxide. An innovative cellulosic membrane supports the electrolyte, which avoids the undesirable characteristics of liquid electrolytes, and asbestos or ammonia that are substances that have been used to manufacture alkaline electrolyte membranes, which are knowingly toxic and carcinogenic. Aluminum is an inexpensive, abundant element in the earth's crust and fully recyclable. Oxygen is supplied to the cell with atmospheric air that is pumped through a potassium hydroxide (KOFI) aqueous solution in order to fix CO_2, and in this way avoid potassium carbonate formation in order to keep the cell fully functional. A sustainable alkaline membrane fuel cell (SAMFC) system with one unitary cell, the reactor, and CO_2 purifier was designed and built in the laboratory. The results are presented in polarization and power curves directly measured in the laboratory. Although recycled aluminum was used in the experiments, the results demonstrate that the cell was capable of delivering 0.9 V in open circuit and approximately 0.42 W of maximum power. The main conclusion is that by allowing for in situ sustainable hydrogen production, the SAMFC could eventually become economically competitive with traditional power generation systems.
机译:这项工作解决了可持续碱性膜燃料电池(SAMFC)的开发和建设。 SAMFC将碱膜燃料电池(AMFC)与制氢反应器耦合,该反应器使用从汽水罐回收的铝通过氢氧化钠催化的铝氧化来分裂水分子。创新的纤维素膜支撑电解质,避免了液体电解质以及石棉或氨的不良特性,而液态石棉或氨是用于制造碱性电解质膜的物质,已知这些物质具有毒性和致癌性。铝是地壳中廉价,丰富的元素,可以完全回收。氧气与大气中的氧气一起被供给到电池,该空气被泵送通过氢氧化钾(KOFI)水溶液,以固定CO_2,并以此方式避免形成碳酸钾,以保持电池的完整功能。在实验室中设计并建造了带有一个单体电池,反应器和CO_2净化器的可持续碱性膜燃料电池(SAMFC)系统。结果显示在实验室中直接测量的极化和功率曲线中。尽管实验中使用了再生铝,但结果表明该电池在断路时能够提供0.9 V的电压,最大功率约为0.42W。主要结论是,通过允许就地可持续地生产氢气,SAMFC最终可以在经济上与传统发电系统竞争。

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