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作 者:李怡凡 LI Yifan
机构地区:[1]长安大学,陕西西安710000
出 处:《电力系统装备》2024年第7期43-45,共3页Electric Power System Equipment
摘 要:光电催化制氢技术作为一种具有巨大潜力的清洁能源技术,正在成为能源转型的关键领域之一。文章着重探讨了光电催化制氢技术在太阳能大规模应用中的关键问题和解决策略。针对光电催化剂的设计与优化,强调了通过调控催化剂的结构和性能来提高制氢效率的重要性。同时对反应体系优化与工艺控制进行了讨论,强调了通过合理调节反应条件和实现自动化控制来提高制氢系统的效率和稳定性。进一步对储氢技术与系统集成进行了阐述,强调了构建完整的氢能产业链的关键性,以促进光电催化制氢技术的商业化应用和产业化进程。针对成本降低与市场推广进行了分析,强调了技术创新、政策扶持和市场推广等多方面措施在推动光电催化制氢技术大规模应用中的重要性。文章旨在为光电催化制氢技术的进一步发展和应用提供理论指导和实践借鉴,为推动清洁能源的可持续发展作出贡献。As a clean energy technology with great potential,photoelectric catalytic hydrogen production technology is becoming one of the key areas of energy transformation.This paper focuses on the key problems and solution strategies of photoelectric catalytic hydrogen production technology in the large-scale application of solar energy.The design and optimization of the photocatalysts stresses the importance of improving the hydrogen production efficiency by regulating the structure and performance of the catalysts.At the same time,the reaction system optimization and process control are discussed,and the efficiency and stability of the hydrogen production system should be improved by reasonably adjusting the reaction conditions and realizing automatic control.Further,the hydrogen storage technology and system integration are expounded,and the key of building a complete hydrogen energy industry chain is emphasized,so as to promote the commercial application and industrialization process of photoelectric catalytic hydrogen production technology.Finally,the cost reduction and marketing are analyzed,and the importance of technological innovation,policy support and marketing measures in promoting the large-scale application of photoelectric catalytic hydrogen production technology is emphasized.To sum up,this paper aims to provide theoretical guidance and practical reference for the further development and application of photoelectric catalytic hydrogen production technology,and to make contributions to promoting the sustainable development of clean energy.
关 键 词:光电催化制氢技术 可再生能源 氢能经济 催化剂设计与优化
分 类 号:TM75[电气工程—电力系统及自动化]
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