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Recent advancements in sorption technology for solar thermal energy storage applications

机译:太阳能热存储应用吸附技术的最新进展

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摘要

Sorption thermal energy storage (STES) technology, belonging to the wider class of thermochemical TES, represents a promising alternative to common sensible and latent TESs, especially for applications at low-medium temperature (i.e. below 130 degrees C). The interest towards this technology is confirmed by the huge amount of research and development activities ongoing, represented by scientific publications as well as funded projects and international working groups.In such a context, the present paper reports about the most recent activities in the STES field. Particularly, it focuses on the analysis of innovative sorbent materials currently under development, comprising liquid absorption, physical adsorption, chemical reactions in pure salts and composite sorbents. Analysis of critical issues like achievable storage density, stability and corrosiveness were reported for each sorbent material.Furthermore, prototypes recently developed for each of the sorbent classes above reported were presented, highlighting the achievable performance, with particular attention towards the TES density attained under typical working conditions for heat and cold storage applications, both with open and closed TES systems.Finally, the most recent international activities focusing on the further development of STES, to help achieving higher Technology Readiness Level (TRL) were reported. These mainly comprise funded R&D projects and international working groups supported by intergovernmental organizations and research and innovations alliances.
机译:吸附热能存储(STES)技术属于更广泛的热化学TES类,它是常见的感性和潜伏TES的有希望的替代品,尤其是在中低温(即低于130摄氏度)的应用中。对科学技术的兴趣被正在进行的大量研究和开发活动所证实,以科学出版物,受资助的项目和国际工作组为代表。 。特别是,它专注于分析目前正在开发的创新吸附剂材料,包括液体吸收,物理吸附,纯盐中的化学反应和复合吸附剂。报告对每种吸附剂材料的关键问题进行了分析,例如可达到的存储密度,稳定性和腐蚀性。此外,还介绍了针对上述每种吸附剂最近开发的原型,突出了可实现的性能,并特别关注了典型条件下获得的TES密度。最后,据报道,最近的国际活动侧重于STES的进一步发展,以帮助实现更高的技术准备水平(TRL)。这些主要包括由政府间组织和研究与创新联盟支持的资助的研发项目和国际工作组。

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