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固态储氢技术的研究进展与应用前景

Research Progress and Application Prospects of Solid-State Hydrogen Storage Technology.

作者信息

Xu Yaohui, Zhou Yang, Li Yuting, Ding Zhao

机构信息

Laboratory for Functional Materials, School of New Energy Materials and Chemistry, Leshan Normal University, Leshan 614000, China.

Leshan West Silicon Materials Photovoltaic New Energy Industry Technology Research Institute, Leshan 614000, China.

出版信息

Molecules. 2024 Apr 12;29(8):1767. doi: 10.3390/molecules29081767.

Abstract

Solid-state hydrogen storage technology has emerged as a disruptive solution to the "last mile" challenge in large-scale hydrogen energy applications, garnering significant global research attention. This paper systematically reviews the Chinese research progress in solid-state hydrogen storage material systems, thermodynamic mechanisms, and system integration. It also quantitatively assesses the market potential of solid-state hydrogen storage across four major application scenarios: on-board hydrogen storage, hydrogen refueling stations, backup power supplies, and power grid peak shaving. Furthermore, it analyzes the bottlenecks and challenges in industrialization related to key materials, testing standards, and innovation platforms. While acknowledging that the cost and performance of solid-state hydrogen storage are not yet fully competitive, the paper highlights its unique advantages of high safety, energy density, and potentially lower costs, showing promise in new energy vehicles and distributed energy fields. Breakthroughs in new hydrogen storage materials like magnesium-based and vanadium-based materials, coupled with improved standards, specifications, and innovation mechanisms, are expected to propel solid-state hydrogen storage into a mainstream technology within 10-15 years, with a market scale exceeding USD 14.3 billion. To accelerate the leapfrog development of China's solid-state hydrogen storage industry, increased investment in basic research, focused efforts on key core technologies, and streamlining the industry chain from materials to systems are recommended. This includes addressing challenges in passenger vehicles, commercial vehicles, and hydrogen refueling stations, and building a collaborative innovation ecosystem involving government, industry, academia, research, finance, and intermediary entities to support the achievement of carbon peak and neutrality goals and foster a clean, low-carbon, safe, and efficient modern energy system.

摘要

固态储氢技术已成为大规模氢能应用中“最后一公里”挑战的颠覆性解决方案,受到全球广泛关注。本文系统回顾了中国在固态储氢材料体系、热力学机制及系统集成方面的研究进展。还定量评估了固态储氢在车载储氢、加氢站、备用电源和电网调峰这四大应用场景的市场潜力。此外,分析了与关键材料、测试标准和创新平台相关的产业化瓶颈与挑战。尽管承认固态储氢的成本和性能尚未完全具备竞争力,但本文强调了其高安全性、能量密度及潜在低成本的独特优势,在新能源汽车和分布式能源领域展现出前景。镁基和钒基等新型储氢材料的突破,以及标准、规范和创新机制的完善,有望在10至15年内推动固态储氢成为主流技术,市场规模超过143亿美元。为加速中国固态储氢产业的跨越式发展,建议增加基础研究投入,集中攻关关键核心技术,优化从材料到系统的产业链。这包括应对乘用车、商用车和加氢站方面的挑战,构建由政府、产业、学术界、研究机构、金融机构和中介机构组成的协同创新生态系统,以支持实现碳达峰和碳中和目标,培育清洁、低碳、安全、高效的现代能源体系。

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