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The potential of hydrogen hydrate as a future hydrogen storage medium

机译:氢气水合物作为未来储氢介质的潜力

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摘要

Hydrogen is recognized as the “future fuel” and the most promising alternative of fossil fuels due to its remarkable properties including exceptionally high energy content per unit mass (142 MJ/kg), low mass density, and massive environmental and economical upsides. A wide spectrum of methods in H2 production, especially carbon-free approaches, H2purification, and H2storage have been investigated to bring this energy source closer to the technological deployment. Hydrogen hydrates are among the most intriguing material paradigms for H2storage due to their appealing properties such as low energy consumption for charge and discharge, safety, cost-effectiveness, and favorable environmental features. Here, we comprehensively discuss the progress in understanding of hydrogen clathrate hydrates with an emphasis on charging/discharging rate of H2 (i.e. hydrate formation and dissociation rates) and the storage capacity. A thorough understanding on phase equilibrium of the hydrates and its variation through different materials is provided. The path toward ambient temperature and pressure hydrogen batteries with high storage capacity is elucidated. We suggest that the charging rate of H2 in this storage medium and long cyclic performance are more immediate challenges than storage capacity for technological translation of this storage medium. This review and provided outlook establish a groundwork for further innovation on hydrogen hydrate systems for promising future of hydrogen fuel.
机译:氢被认为是“未来的燃料”和化石燃料最有前途的替代品,包括每单位质量(142MJ / kg),低质量密度和大规模环境和经济上覆盖的异常高能量含量。已经研究了H2生产中的广泛方法,尤其是无碳方法,H2Purification和H2Storage,使这种能源更接近技术部署。由于它们的吸引力,例如低能耗,安全,成本效益和有利的环境特征,氢气水合物是H2Storage的最有趣的材料范例之一。这里,我们全面地讨论了了解氢气包合物水合物的进展,重点是H 2的充电/放电率(即水合物形成和解离率)和储存能力。提供了对水合物相平衡的透彻理解及其通过不同材料的变化。阐明了环境温度和高存储容量的压力氢电池的路径。我们建议在该存储介质中的H2的充电率和长循环性能比该存储介质的技术翻译的存储容量更加立即挑战。本综述和提供了展望,为氢气燃料未来有希望的未来,为氢水系统进行了进一步创新的基础。

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