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Recovery of hydrogen from impurities using a palladium membrane reactor

机译:使用钯膜反应器从杂质中回收氢

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One of the important steps in processing the exhaust from a fusion reactor is recovering tritium which is incorporated into molecules such as water and methane. One device which may prove very effective for this purpose is a palladium membrane reactor. This is a reactor which incorporates a Pd/Ag membrane in the reactor geometry. Reactions such as water gas shift, steam reforming and methane cracking can be carried out over the reactor catalyst, and the product hydrogen can be simultaneously removed from the reacting mixture. Because product is removed, greater than usual conversions can be obtained. In addition ultrapure hydrogen is produced eliminating the need for an additional processing step. A palladium membrane reactor has been built and tested with three different catalysts. Initial results with a Ni-based catalyst show that it is very effective at promoting all three reactions listed above. Under the proper conditions, hydrogen recoveries approaching 100% have been observed. This study serves to experimentally validate the palladium membrane reactor as a potentially important tool for fusion fuel processing.
机译:处理来自聚变反应堆的废气的重要步骤之一是回收tri,该tri被掺入分子中,例如水和甲烷。可以证明对于该目的非常有效的一种装置是钯膜反应器。这是一种在反应器几何结构中结合了Pd / Ag膜的反应器。可以在反应器催化剂上进行诸如水煤气变换,蒸汽重整和甲烷裂化之类的反应,并且可以从反应混合物中同时除去产物氢。由于除去了产品,因此可以获得比平常更高的转化率。另外,产生了超纯氢,无需额外的处理步骤。钯膜反应器已经建成,并使用三种不同的催化剂进行了测试。镍基催化剂的初步结果表明,它对促进上述所有三个反应非常有效。在适当的条件下,已观察到氢气回收率接近100%。这项研究旨在通过实验验证钯膜反应器作为聚变燃料加工的潜在重要工具。

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