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Aluminum-powered climate change resiliency: From aluminum debris to electricity and clean water

机译:铝能气候变化弹性:从铝碎片到电力和清洁水

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摘要

This paper presents a novel ecosystem for converting aluminum debris from a natural disaster to a stable water reactive fuel that can be used to generate electricity and power emergency desalination. Bulk aluminum can be made water-reactive via a minimal surface treatment of gallium and indium, which works to passivate the oxide layer that would otherwise inhibit the reaction. With this oxide layer disrupted, the underlying bulk aluminum is able to react exothermically with water to produce hydrogen gas and aluminum oxyhydroxide (AlO(OH)) at high levels of reaction completion ( 95%). The gallium and indium, which are not consumed in the initial reaction, can be recycled to produce more fuel. Several systems for converting the hydrogen product of this reaction to electricity are reviewed here, as well as a device capable of desalinating seawater using the thermal energy released in the aluminum-water reaction to drive a reverse osmosis process. Finally, a new economics analysis of the value of the electricity, water, and AlO(OH) outputs of this system was performed for 10 different countries and territories. In each case this value is shown to outweigh the scrap price of aluminum by up to 600%, providing added economic incentive for utilizing this aluminum treatment process as a means of post-disaster cleanup and subsequent disaster preparedness.
机译:本文介绍了一种新型生态系统,用于将铝碎片从自然灾害转换为稳定的水反应燃料,可用于产生电力和动力应急海水淡化。通过镓和铟的最小表面处理可以使散装铝可以进行水反应,这适用于将否则抑制反应的氧化物层钝化。通过该氧化物层破坏,下面的块状铝能够在高水平的反应完成(> 95%)下对水进行热水反应以产生氢气和氧化铝(AlO(OH))。镓和铟不会在初始反应中消耗,可以再循环以产生更多的燃料。这里综述用于将该反应的氢产物转换为电力的若干系统,以及使用铝 - 水反应中释放的热能脱落海水的装置,以驱动反渗透过程。最后,为10个不同的国家和地区进行了该系统的电力,水和ALO(OH)产出的新经济学分析。在每种情况下,该值显示出铝的废料价格高达600%,为利用这种铝处理过程提供了额外的经济动力,作为灾后清理后的手段和随后的备灾。

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