Reshaping the energy landscape: Explorations and strategic perspectives on hydrogen energy preparation, efficient storage, safe transportation and wide applications

IF 8.1 2区 工程技术 Q1 CHEMISTRY, PHYSICAL International Journal of Hydrogen Energy Pub Date : 2024-11-30 DOI:10.1016/j.ijhydene.2024.11.110
Kaiyou Shu, Bin Guan, Zhongqi Zhuang, Junyan Chen, Lei Zhu, Zeren Ma, Xuehan Hu, Chenyu Zhu, Sikai Zhao, Hongtao Dang, Tiankui Zhu, Zhen Huang
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Abstract

As the global demand for clean energy continues to rise, hydrogen, as a promising clean energy carrier, is increasingly becoming the focus of international attention. This paper aims to present a comprehensive overview of hydrogen preparation strategies, recent advances in storage and transportation technologies, and the extensive application of hydrogen in many fields. First, we explored the current mainstream hydrogen preparation paths, including but not limited to hydroelectrolysis (decomposition of water molecules using renewable energy power); gas steam reforming (traditional but efficient hydrogen production methods requiring carbon emission management); biomass gasification and coal gasification (based on innovative utilisation of renewable and fossil resources); and hydrolysis hydrogen production (advanced cutting-edge technology directly using solar energy). Each method shows its unique advantages and potential application scenarios. Subsequently, we have focused on hydrogen storage technology, a key area that is undergoing rapid technological innovation and widespread application. Hydrogen storage technology, with its energy storage and release characteristics without carbon dioxide emissions, is regarded as an important bridge to promote the transformation of energy structure and achieve the sustainable development goals. This paper not only expounds the basic principle of hydrogen storage technology and historical evolution, also analyzed in detail in the compressed hydrogen, liquid hydrogen and solid hydrogen storage form of concrete application examples, at the same time, the selection of hydrogen storage materials, cost efficiency, safety performance and deeply analyzes the core challenges, and the future development trend and potential solutions. In terms of hydrogen transport, this paper will introduce three common transport modes: gas transport, liquid transport and hydrogen carrier transport. Further, we turned to the diversified utilisation technology of hydrogen, focusing on the breakthroughs of fuel cell technology in energy conversion efficiency, Hydrogen combustionand, thow hydrogen energy can help to achieve low-carbon travel in the transportation field. The integration and application of these technologies not only broaden the use of hydrogen energy, but also lay a solid foundation for them to occupy a core position in the clean energy system. To sum up, through a detailed review, this paper draws a panorama of hydrogen production, storage, transportation and use, revealing the key role and huge potential of hydrogen energy in the clean energy transition. We look forward to that this paper will provide valuable reference and inspiration for researchers, engineers and policy makers, jointly promote the continuous progress and wide application of hydrogen technology, and contribute to the construction of a green and low-carbon future.

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重塑能源格局:氢能制备、高效储存、安全运输和广泛应用的探索与战略展望
随着全球对清洁能源需求的持续上升,氢能作为一种前景广阔的清洁能源载体日益成为国际社会关注的焦点。本文旨在全面介绍氢的制备策略、储存和运输技术的最新进展以及氢在许多领域的广泛应用。首先,我们探索了目前主流的制氢途径,包括但不限于水电解(利用可再生能源电力分解水分子);燃气蒸汽重整(传统但高效的制氢方法,需要碳排放管理);生物质气化和煤气化(基于可再生能源和化石资源的创新利用);和水解制氢(直接利用太阳能的先进尖端技术)。每种方法都展示了其独特的优势和潜在的应用场景。随后,我们将重点放在储氢技术上,这是一个正在快速技术创新和广泛应用的关键领域。储氢技术以其不排放二氧化碳的储能和释放特性,被视为促进能源结构转型、实现可持续发展目标的重要桥梁。本文不仅阐述了储氢技术的基本原理和历史沿革,还详细分析了在压缩氢、液态氢和固态氢等储氢形式下的具体应用实例,同时,对储氢材料的选择、成本效益、安全性能等核心挑战进行了深入分析,以及未来发展趋势和潜在解决方案。在氢输运方面,本文将介绍三种常见的输运方式:气体输运、液体输运和氢载体输运。此外,我们还转向氢的多元化利用技术,重点关注燃料电池技术在能量转换效率、氢燃烧以及氢能如何帮助交通领域实现低碳出行方面的突破。这些技术的整合与应用,不仅拓宽了氢能的使用范围,也为其在清洁能源体系中占据核心地位奠定了坚实的基础。综上所述,通过详细的综述,本文描绘了氢的生产、储存、运输和利用的全景,揭示了氢能在清洁能源转型中的关键作用和巨大潜力。我们期待本文能够为研究者、工程师和政策制定者提供有价值的参考和启发,共同推动氢能技术的不断进步和广泛应用,为构建绿色低碳的未来做出贡献。
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来源期刊
International Journal of Hydrogen Energy
International Journal of Hydrogen Energy 工程技术-环境科学
CiteScore
13.50
自引率
25.00%
发文量
3502
审稿时长
60 days
期刊介绍: The objective of the International Journal of Hydrogen Energy is to facilitate the exchange of new ideas, technological advancements, and research findings in the field of Hydrogen Energy among scientists and engineers worldwide. This journal showcases original research, both analytical and experimental, covering various aspects of Hydrogen Energy. These include production, storage, transmission, utilization, enabling technologies, environmental impact, economic considerations, and global perspectives on hydrogen and its carriers such as NH3, CH4, alcohols, etc. The utilization aspect encompasses various methods such as thermochemical (combustion), photochemical, electrochemical (fuel cells), and nuclear conversion of hydrogen, hydrogen isotopes, and hydrogen carriers into thermal, mechanical, and electrical energies. The applications of these energies can be found in transportation (including aerospace), industrial, commercial, and residential sectors.
期刊最新文献
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