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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Performance analysis of a solid-gas thermochemical composite sorption system for thermal energy storage and energy upgrade
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Performance analysis of a solid-gas thermochemical composite sorption system for thermal energy storage and energy upgrade

机译:固液热化学复合吸附系统的性能分析热能储能和能量升级

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Solid-gas thermochemical sorption heat storage has attracted considerable interest in recent years due to high energy density and the ability of long-term storage duration. Operation principle of thermochemical sorption heat storage system is based on reversible solid-gas chemical reaction by storing thermal energy in the form of chemical potential. The comparison of thermochemical adsorption and resorption heat storage cycle has been firstly made. Then, the thermochemical composite sorption heat storage cycle is presented for the effective utilization of the low-grade thermal energy. As a novel thermochemical sorption heat storage cycle, thermochemical composite sorption heat storage has integrated the merits of both thermochemical adsorption and resorption heat storage cycle. Furthermore, the performance of a thermochemical composite sorption heat storage system is analyzed by employing MnCl2-SrCl2-NH3 working pair. Theoretical analysis showed that thermochemical composite sorption heat storage cycle is effective for integrating energy storage and energy upgrade of low-grade thermal energy. It can not only decrease the heat input temperature of external heat source during the heat storage stage, but also upgrade significantly the temperature level of stored thermal energy during the heat release stage. As a result, thermal energy temperature can be upgraded from 81 degrees C to 170 degrees C via thermochemical composite sorption heat storage cycle. Therefore, it is very beneficial to enlarge the application temperature range and realize the high-efficient utilization of low-grade thermal energy.
机译:由于高能密度和长期储存持续时间的能力,近年来,固体气体热化学吸附热量吸引了相当大的兴趣。热化学吸附储热系统的操作原理是基于可逆的固体气体化学反应,以化学势的形式储存热能。首先进行了热化学吸附和吸收储热循环的比较。然后,提供了热化学复合吸附储热循环,用于有效利用低级热能。作为一种新型热化学吸附储热循环,热化学复合吸附热存储器综合了热化学吸附和吸收储热循环的优点。此外,通过采用MnCl2-Srcl2-NH3工作对分析热化学复合吸附储热系统的性能。理论分析表明,热化学复合吸附储热循环对于集成低级热能的能量储存和能量升级是有效的。它不仅可以在蓄热阶段期间降低外部热源的热量输入温度,而且还升级了热释放阶段期间储存热能的温度水平。结果,通过热化学复合吸附蓄热循环可以从81℃升高到170℃的热能温度。因此,扩大应用温度范围并实现低级热能的高效利用是非常有益的。

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