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Hydrogen Sorption Measurements on Potential Storage Materials

机译:潜在存储材料的氢吸附测量

摘要

The hydrogen storage problem is one of the major issues that needs to be resolved if hydrogen is to become a viable energy carrier in the future. An earlier EUR report [ ] examined the hydrogen storage issue, including the possible solution to the problem through the use of solid state storage materials. This option is one of the most attractive for a number of reasons, although no material currently satisfies the practical requirements, in terms of storage capacity, operating temperature and pressure ranges, impurity resistance, long term cycling stability and cost. The search for a material to satisfy the above criteria is therefore generating a great deal of scientific research interest, and an increasing number of publications on this topic are appearing in the scientific literature.A crucial part of the search for new storage materials is the accurate determination of the hydrogen sorption or storage characteristics of new or modified materials. This is an issue that has come to prominence in recent years due to the controversy over the potential storage capacity of carbon nanostructures, such as nanotubes and nanofibres, during which widely varying claims of potential storage capacity and hydrogen uptake behaviour were made. A significant contribution to this controversy was made by inaccuracy in the measurement of the potential gas phase hydrogen storage capacities of these nanostructured carbon materials.This report focuses on the gas phase, as opposed to electrochemical, characterisation of the equilibrium hydrogen sorption properties of potential storage materials, and covers the common techniques that can be used to determine the hydrogen uptake behaviour of potential hydrogen storage media. The latter part of the report concentrates on the accuracy of these measurement techniques and discusses the possible sources of error in these methods with reference to previous work that has appeared in the scientific press, as well as existing measurement standards and guidelines. In addition, checklists of the issues that affect the accuracy of hydrogen sorption measurement, in the case of absorbers and adsorbents, based on the discussion presented here, are tentatively proposed. The appendix also includes a discussion of the conversion of the experimentally-determined hydrogen adsorption parameter, the excess adsorption, to a total, or absolute, adsorbed quantity. The part of this report dealing with measurement accuracy is based on a review article published recently in the International Journal of Hydrogen Energy.
机译:储氢问题是未来氢要成为可行的能源载体时需要解决的主要问题之一。早期的欧元报告[]研究了氢存储问题,包括通过使用固态存储材料解决氢存储问题的方法。由于多种原因,该选项是最吸引人的选项之一,尽管在存储容量,工作温度和压力范围,抗杂质性,长期循环稳定性和成本方面,目前还没有任何材料可以满足实际要求。因此,寻找满足上述标准的材料引起了极大的科学研究兴趣,并且在科学文献中出现了关于该主题的越来越多的出版物。寻找新的存储材料的关键部分是准确的确定新材料或改性材料的氢吸附或储存特性。近年来,由于碳纳米结构(例如纳米管和纳米纤维)的潜在存储容量之争引起了人们的关注,在此期间人们对潜在存储容量和氢吸收行为提出了各种各样的主张。这些纳米结构碳材料潜在的气相储氢能力的测量不准确,对这一争议做出了重大贡献。本报告着重于气相而不是电化学表征了潜在储能的平衡氢吸附特性材料,并涵盖了可用于确定潜在储氢介质的氢吸收行为的常用技术。报告的后半部分着重于这些测量技术的准确性,并参考科学出版社以前的工作以及现有的测量标准和指南,讨论了这些方法中可能的误差来源。另外,根据这里提出的讨论,初步提出了在吸收剂和吸附剂的情况下影响氢吸收测量精度的问题清单。附录还讨论了将实验确定的氢吸附参数(过量吸附)转换为总吸附量或绝对吸附量的讨论。本报告中有关测量精度的部分基于最近在《国际氢能杂志》上发表的评论文章。

著录项

  • 作者

    BROOM D. P.;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 ENG
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