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Reaction of calcium chloride and magnesium chloride and their mixed salts with ethanol for thermal energy storage

机译:氯化钙和氯化镁的反应及其混合盐与乙醇热能储存

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The use of thermochemical energy storage systems increasingly gains interest in order to meet the energy targets of the European renewable energy directive. In this study the suitability of calcium chloride, magnesium chloride and mixed salt ethanolates as heat storage materials for practical implementation was determined by investigating specific thermodynamic properties and estimating the materials' lifetime at various operating conditions. It was proven that the reaction of the before mentioned metal salts with ethanol depends on the applied ethanol vapour pressure. The ethanol sorption increased in the following order: MgCl2 < CaCl2 < 2CaCl2~*MgCl The enthalpies followed the same sequence. Over-stoichiometric ethanol uptake, in particular for CaCl2 and 2CaCl2~*MgCl2 with increasing C2HsOH vapour pressure, was observed. However, the reaction systems CaCl2-C2H5OH and 2CaCl2~*MgCl2-C2HsOH showed the best sorption properties and cycle stability and thus have a great potential for low-grade thermal energy storage as well as cold storage due to their low reaction temperatures in comparison with salt-water-systems. In general, physically mixing of single salts from the same family with different chemical properties leads to superior thermal behaviour with higher heat storage capacities and material stabilities.
机译:使用热化学能量存储系统越来越受到兴趣,以满足欧洲可再生能源指令的能量目标。在这项研究中,通过在各种操作条件下研究特定的热力学性能并估算材料寿命,确定氯化钙,氯化镁和混合盐含量作为实际实施的储热材料的适用性。据证明,上述金属盐与乙醇的反应取决于施加的乙醇蒸气压。乙醇吸附以下列顺序增加:MgCl 2

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