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首页> 外文期刊>International journal of hydrogen energy >Hydrogen storage at low temperature and high pressure for application in automobile manufacturing
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Hydrogen storage at low temperature and high pressure for application in automobile manufacturing

机译:低温高压储氢在汽车制造中的应用

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A brief review of the different methods of hydrogen storage process for application in automobile manufacturing was presented and discussed. The hydrogen storage by adsorption on super activated carbon AX21 at various thermodynamic conditions was investigated. In order to describe the reality of the system, we planned a brief review, a discussion and modeling of the different EOS equations adapted to a hydrogen gas. Different characterization tools for obtaining the physical property of AX21 were used, among them SEM, BET and Helium displacement method at high temperature. The hydrogen storage capacity of AX21 at different temperature and pressure up to 70 MPa was investigated experimentally. In order to describe the experimental hydrogen gas excess adsorption results, the model of Chilev and a modified potential theory were selected. The comparison of the two models describing adsorption isotherms and a critical discussion of their accuracy was given. Based on the models results the absolute amount adsorbed was obtained. The difference between an absolute and an excess amount adsorbed at 77 K and 293 K was discussed. A comparison between the volumetric tank capacity obtained by pure compression and the adsorption process at both temperatures were studied. The method of hydrogen storage and optimal operating conditions were investigated. Copyright (c) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:简要介绍并讨论了在汽车制造中应用的不同储氢方法。研究了在各种热力学条件下通过吸附在超级活性炭AX21上的氢存储。为了描述系统的真实性,我们计划了简短的回顾,讨论和建模以适应氢气的不同EOS方程。为了获得AX21的物理性质,使用了不同的表征工具,其中包括SEM,BET和高温氦置换法。实验研究了AX21在不同温度和最高70 MPa压力下的储氢能力。为了描述实验氢气过量吸附的结果,选择了智利的模型和改进的势能理论。比较了两种描述吸附等温线的模型,并对其准确性进行了严格的讨论。基于模型结果,获得了绝对吸附量。讨论了在77 K和293 K处绝对和过量吸附量之间的差异。研究了在两种温度下通过纯压缩获得的容积罐容量与吸附过程之间的比较。研究了储氢方法和最佳操作条件。 Hydrogen Energy Publications,LLC版权所有(c)2015。由Elsevier Ltd.出版。保留所有权利。

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