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Design of an efficient, high purity hydrogen generation apparatus and method for a sustainable, closed clean energy cycle

机译:高效,高纯度制氢设备和方法的设计,以实现可持续,封闭的清洁能源循环

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In this paper we present a detailed design study of a novel apparatus for safely generating hydrogen (H-2) on demand according to a novel method, using a controlled chemical reaction between water (H2O) and sodium (Na) metal that yields hydrogen gas of sufficient purity for direct use in fuel cells without risk of contaminating sensitive catalysts. The apparatus consists of a first pressure vessel filled with liquid H2O with an overpressure of nitrogen (N-2) gas above the H2O reactant, and a second pressure vessel that stores solid Na reactant. Hydrogen gas is generated above the solid Na when H2O reactant is introduced using a regulator that senses when the downstream pressure of H-2 gas above the solid Na reactant has dropped below a threshold value. The sodium hydroxide (NaOH) byproduct of the hydrogen producing reaction, is collected within the apparatus for later reprocessing by electrolysis, to recover the Na reactant. Copyright (C) 2015, The Authors. Published by Elsevier Ltd on behalf of Hydrogen Energy Publications, LLC.
机译:在本文中,我们将对一种新颖的装置进行详细的设计研究,该装置可根据一种新方法,利用水(H2O)与金属钠(Na)之间的受控化学反应,根据需要安全地产生氢气(H-2),从而产生氢气具有足够的纯度,可直接用于燃料电池,而不会污染敏感催化剂。该设备包括一个第一压力容器和一个第二压力容器,第二压力容器装有液态H2O,该液态H2O在H2O反应物上方具有氮气(N-2)超压。当使用调节器引入H2O反应物时,会在固体Na上方产生氢气,该调节器感应何时在固体Na反应物上方的H-2气体的下游压力已降至阈值以下。产氢反应的氢氧化钠(NaOH)副产物收集在设备内,供以后通过电解进行后处理,以回收Na反应物。版权所有(C)2015,作者。由Elsevier Ltd代表Hydrogen Energy Publications,LLC发布。

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