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储能系统技术 ★ 5.0

基于熔盐相变材料在中高温可持续热能储存中的性能与应用研究进展

A review of the performance and application of molten salt-based phase change materials in sustainable thermal energy storage at medium and high temperatures

作者 Huihui Wang · Jun Liu · Ying Wang · Yuqiong Zhao · Guojie Zhang
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 389 卷
技术分类 储能系统技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 The research progress of molten salt PCMs at medium temperature was reviewed.
语言:

中文摘要

摘要 随着能源需求的增长和环境污染问题的加剧,对可持续热能储存技术提出了更高的要求。研究表明,熔盐相变材料(MSPCMs)作为热能储存(TES)的一种有前景的替代方案,能够有效缓解能源供需不平衡的问题。这类盐类通常具备较高的能量存储密度、易于获取以及对环境影响较小等一系列优良特性。然而,由于其导热系数(TC)较低以及在相变过程中存在泄漏问题,熔盐材料在工业和商业领域的广泛应用受到显著限制。基于此,本文系统综述了熔盐复合相变材料(CPCMs)的合成方法及其能量转换特性,并探讨了固体废弃物资源化综合利用的可行性。同时,深入分析了此类相变材料(PCMs)在多个应用领域中的潜在用途。研究还讨论了基于熔盐的CPCMs对封装材料所引发的腐蚀行为。研究结果表明,由固体废弃物制备的以及形态稳定的复合相变材料(SSCPCMs)的发展为解决上述挑战提供了极具前景的技术路径。然而,必须指出的是,传统的能量转换材料主要以有机物为主,而针对熔盐CPCMs的研究仍处于初级阶段,目前的应用主要集中于光热转换和磁热转换领域。此外,尽管涂层技术显著提升了碳钢在硝酸盐熔盐环境中的抗腐蚀性能,但仍迫切需要进一步探索更为高效且可靠的防腐策略与材料体系。综上所述,本综述为MSPCMs未来的发展方向提供了有价值的见解,并强调了持续深入开展该领域研究的必要性,以满足可持续热能储存系统的发展需求。

English Abstract

Abstract Growing energy demand and environmental pollution issues are placing greater demands on sustainable thermal energy storage. Research indicates that molten salt phase change materials (MSPCMs) represent a promising alternative for thermal energy storage (TES), effectively addressing the energy supply-demand imbalance. These salts typically have a range of excellent properties, such as high energy storage density, easy availability, and minimal environmental impact. Nevertheless, the widespread application of molten salts is considerably constrained in both industrial and commercial contexts due to their low thermal conductivity (TC) and leakage problems during phase transitions. Based on this, this paper provides a comprehensive examination of the synthesis and energy conversion characteristics of molten salt composite phase change materials (CPCMs), along with the integrated utilization of solid waste materials. Additionally, the potential applications of these phase change materials (PCMs) across various domains are thoroughly explored. The study also addresses the corrosion behavior of encapsulation materials induced by molten salt-based CPCMs. The findings indicate that the development of solid waste-derived and Shape-stabilized CPCMs (SSCPCMs) offers promising solutions to mitigate these challenges. Nevertheless, it is important to acknowledge that conventional energy conversion materials are predominantly organic, and research into molten salt CPCMs remains in its nascent stages, with current applications mainly limited to photothermal and magnetocaloric energy conversion. Furthermore, while coatings technology significantly enhances the corrosion resistance of carbon steel in molten nitrate environments, there remains an urgent need for further investigation into more effective corrosion protection strategies and materials. In conclusion, this review provides valuable insights into the prospective advancement of MSPCMs and underscores the necessity for continued research in this domain to fulfill the requirements of sustainable TES systems.
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SunView 深度解读

该熔盐相变储能技术对阳光电源ST系列储能系统和PowerTitan产品具有重要参考价值。熔盐材料的高能量密度特性可启发中高温储能方案设计,特别是在大规模工商业储能场景中,结合我司PCS热管理系统优化。固废基复合相变材料的防泄漏技术可借鉴应用于电池热管理,提升ST系列产品在极端温度环境下的可靠性。同时,光热转换应用与我司光伏逆变器系统存在协同潜力,可探索光伏-热储能一体化解决方案,增强能源利用效率和系统经济性。