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Development of sorption thermal battery for low-grade waste heat recovery and combined cold and heat energy storage

机译:用于低等级废热回收以及冷热能联合存储的吸附式热电池的开发

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A promising compact sorption thermal battery is developed for low-grade waste heat recovery and combined cold and heat energy storage. Thermal energy is stored in the form of bond energy of sorption potential during the charging phase and the stored thermal energy is released in the form of heat energy and cold energy during the discharging phase. The operating principle and conceptual design of sorption thermal battery based on solid gas sorption processes is firstly introduced, and then the working performance of sorption thermal battery using consolidated composite sorbent of expanded graphite/manganese chloride is investigated. Experimental verification showed that sorption thermal battery is an effective method to achieve combined deep-freezing cold and heat energy storage, and its working temperature can be easily adjusted by changing system pressure. The cold and heat energy densities are as high as 600 kJ/kg and 1498 kJ/kg, respectively. Moreover, energy densities of different energy storage methods and sorption working pairs are compared and analyzed. It appears that sorption thermal battery is a promising compact high-performance energy storage technology for waste heat recovery and renewable energy utilization due to its distinct advantage of high energy density and broad range of working temperature. (C) 2016 Elsevier Ltd. All rights reserved.
机译:开发了一种有前途的紧凑型吸附式热电池,用于低等级废热回收以及冷热能的联合存储。在充电阶段,热能以吸附势能的键能形式存储,而在放电阶段,所存储的热能以热能和冷能形式释放。首先介绍了基于固体气体吸附过程的吸附式热电池的工作原理和概念设计,然后研究了膨胀石墨/氯化锰固结复合吸附剂对吸附式热电池的工作性能。实验验证表明,吸附式热电池是一种实现深冷和热能联合存储的有效方法,并且可以通过改变系统压力轻松调节其工作温度。冷和热能密度分别高达600 kJ / kg和1498 kJ / kg。此外,比较和分析了不同能量存储方法和吸附工作对的能量密度。吸附式热电池由于其高能量密度和宽广的工作温度范围的独特优势,似乎是一种用于废热回收和可再生能源利用的有前途的紧凑型高性能储能技术。 (C)2016 Elsevier Ltd.保留所有权利。

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