首页> 外文会议>Meeting of the Electrochemical Society;International Meeting on Chemical Sensors >Directly Generated Hydrogen to Feed a 2.4 Kw PEM Fuel Cell Stack By Hydrolysis of Nanoporous Aluminum with Pure Water
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Directly Generated Hydrogen to Feed a 2.4 Kw PEM Fuel Cell Stack By Hydrolysis of Nanoporous Aluminum with Pure Water

机译:通过用纯水水解纳米多孔铝,直接产生氢气以供给2.4kWPEM燃料电池堆

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Jules Verne stated more than 145 years ago that water will be the coal of the future. Indeed, hydrogen, a highly abundant substance on Earth in the form of water, is a promising energy carrier for producing zero-emission electricity upon reaction with oxygen using fuel cell technology. There are still many scientific and engineering challenges that need to be addressed before Jules Verne's dream can become true, however. Two of these challenges include hydrogen production from water and hydrogen storage. In this talk, I will present our work on direct hydrogen generation by hydrolysis of nanoporous aluminum in pure water to feed a 2.4 kW PEM fuel cell stack, which in turn can be used to power a low speed electric vehicle. The possibility to make nanoporous aluminum from secondary aluminum and the advent of carbon-free primary aluminum from Elysis could make hydrogen production by hydrolysis of aluminum with pure water a promising alternative to hydrogen production by electrolysis of water.
机译:Jules Verne在145年前陈述了,水将成为未来的煤炭。实际上,氢是水形式的地球上的高度丰富的物质,是一种有希望的能量载体,用于使用燃料电池技术与氧气反应时产生零排放电力。然而,在Jules Verne的梦想中,仍有许多需要解决的科学和工程挑战,但是。其中两个挑战包括水和储氢的氢气。在这次谈判中,我将通过在纯水中水解纳米多孔铝的直接氢气来展示我们的工作,以供给2.4 kW Pem燃料电池堆,这又可以用于为低速电动车供电。从次铝中制备纳米多孔铝的可能性来自伊萨斯的无碳原代铝的出现可以通过用纯水水解铝的氢气产生氢气通过电解氢化水的替代品。

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