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Modeling the control of the desorption rate of hydrogen released from the adsorption storage bed to supply a fuel cell

机译:从吸附储存床中释放的氢气解吸速率的控制以提供燃料电池的控制

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The storage of hydrogen by adsorbent materials has been addressed by several researchers. These materials can serve as a reservoir of hydrogen at a very lower temperature, and the emptying operation to supply the fuel cell is simply heating the adsorbent bed. However, to maximize the ability of the adsorbent materials to meet the instantaneous hydrogen demand, adequate knowledge of desorbed hydrogen flow rate (DHR) must be investigated. The objective of this study is to model the control of the DHR induced by heating. The results show that the excess of hydrogen stored in the adsorbent material can be completely released at room temperature and the DHR increases with temperature. A solution is proposed for stabilizing the DHR, which consists in controlling the fuel cell supply section and, consequently, the power to be produced. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:几位研究人员已经解决了吸附材料的氢气储存。这些材料可以用作在非常较低的温度下氢气的储存器,并且为了提供燃料电池的排空操作是简单地加热吸附床。然而,为了最大限度地提高吸附材料以满足瞬时氢需求的能力,必须研究对解吸的氢气流速(DHR)的充分了解。本研究的目的是模拟加热诱导的DHR的控制。结果表明,储存在吸附材料中的过量氢气可以在室温下完全释放,DHR随温度的增加。提出了一种解决方案来稳定DHR,其包括控制燃料电池供应部分,从而制造的电力。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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