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Solid-gas thermochemical sorption thermal battery for solar cooling and heating energy storage and heat transformer

机译:用于太阳能制冷和储热的固体气体热化学吸附热电池以及热转换器

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摘要

Thermal energy storage plays a vital role in the sustainable utilization of solar energy for heating and cooling applications due to its inherent instability and discontinuity. An advanced high-performance solid gas thermochemical sorption thermal battery is developed for solar cooling and heating energy storage and heat transformer. Solar thermal energy is stored in the form of bond energy during the charging phase and the stored energy is released in the form of heat and cold energy during the discharging phase based on the energy conversion between thermal energy and bond energy of sorption potential during the solid gas sorption process of working pair. The heat and cold energy storage densities are as high as 1300-1600 kJ/kg and 640-720 kJ/kg respectively when the sorption thermal battery using working pair of SrCl2-NH3 works as short-term and long-term seasonal energy storage. Moreover, the working temperature of stored energy can be effectively upgraded by using the sorption thermal battery. It appears that the proposed sorption thermal battery is an effective method for the short-term and long-term storage of solar thermal energy, and it has distinct advantages of combined cold and heat storage, high energy density, integrated energy storage and energy upgrade in comparison with conventional energy storage methods. (C) 2015 Elsevier Ltd. All rights reserved.
机译:由于其固有的不稳定性和不连续性,热能存储在用于加热和冷却应用的太阳能的可持续利用中起着至关重要的作用。开发了一种先进的高性能固体气体热化学吸附热电池,用于太阳能冷却和加热能量存储和热转换器。太阳能热能在充电阶段以键能的形式存储,而存储的能量则基于固体过程中热能和吸附势的键能之间的能量转换以放电和热能形式释放。工作对的气体吸附过程。当使用工作对的SrCl2-NH3的吸附式热电池作为短期和长期季节性储能时,热和冷储能密度分别高达1300-1600 kJ / kg和640-720 kJ / kg。此外,通过使用吸附式热电池可以有效地提高储能的工作温度。看来,提出的吸附式热电池是短期和长期储存太阳能热能的有效方法,它具有冷热结合,高能量密度,综合能量储存和能量升级的明显优势。与常规储能方法的比较。 (C)2015 Elsevier Ltd.保留所有权利。

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