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探索相变材料在低温太阳能热应用中的作用:挑战与机遇的全面概述

Exploring the role of phase change materials in low-temperature solar thermal applications: an extensive overview with challenges and opportunities.

作者信息

Vasudevan Gopi, Muthuvairavan Guna, Suraparaju Subbarama Kousik, Yadav Aman, Samykano Mahendran, Natarajan Sendhil Kumar

机构信息

Solar Energy Laboratory, Department of Mechanical Engineering, National Institute of Technology Puducherry, Karaikal, Union Territory of Puducherry, 609609, India.

Department of Mechanical Automotive Engineering, University Malaysia Pahang, 26600, Pekan, Pahang, Malaysia.

出版信息

Environ Sci Pollut Res Int. 2025 Mar;32(14):8801-8833. doi: 10.1007/s11356-025-36239-0. Epub 2025 Mar 21.

Abstract

Solar energy is widely acknowledged as a renewable and environmentally friendly energy source. Efficient storage of heat energy is a crucial challenge in solar thermal applications. Phase change materials (PCMs) have gained prominence due to their unique ability to store and release thermal energy through phase transition. The advantageous characteristic of PCMs is their low melting point, facilitating efficient heat storage and retrieval through latent heat of vaporization. This comprehensive review focuses on selecting suitable PCMs for diverse applications, considering their melting point and thermal properties. PCMs with high heat capacity and excellent solar radiation absorption are favored in solar applications, especially for systems requiring large thermal energy storage capacities. This review article underscores the importance of PCMs in low-temperature (0-120 °C) solar thermal applications such as solar desalination, solar water heaters, solar cookers, solar dryers, solar air heaters, and solar chimneys, emphasizing their role in practical heat storage and release. By carefully selecting PCMs based on melting point and thermal properties, the performance and efficiency of solar thermal systems can be optimized, contributing to a greener and more sustainable future.

摘要

太阳能被广泛认为是一种可再生且环保的能源。热能的高效存储是太阳能热应用中的一项关键挑战。相变材料(PCM)因其通过相变存储和释放热能的独特能力而备受关注。PCM的有利特性是其熔点低,便于通过汽化潜热进行高效的热量存储和回收。这篇综述着重考虑熔点和热性能,为不同应用选择合适的PCM。具有高热容量和出色太阳辐射吸收能力的PCM在太阳能应用中受到青睐,特别是对于需要大容量热能存储的系统。这篇综述文章强调了PCM在低温(0 - 120°C)太阳能热应用中的重要性,如太阳能海水淡化、太阳能热水器、太阳能炊具、太阳能干燥器、太阳能空气加热器和太阳能烟囱等,强调了它们在实际热量存储和释放中的作用。通过根据熔点和热性能仔细选择PCM,可以优化太阳能热系统的性能和效率,为更绿色、更可持续的未来做出贡献。

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