热能储存
化学
吸热过程
差示扫描量热法
脱水
发热
化学反应
脱水反应
放热反应
热力学
物理化学
有机化学
吸附
生物化学
物理
作者
Mitushiro Kubota,Satoshi Matsumoto,Hitoki Matsuda,Hong Yu Huang,Zhao He,Xi Yang
出处
期刊:Advanced Materials Research
日期:2014-06-18
卷期号:953-954: 757-760
被引量:27
标识
DOI:10.4028/www.scientific.net/amr.953-954.757
摘要
There is a great demand on promotion of heat utilization below 373 K to establish highly-efficient energy system, because such heat is enormously unused and discharged from every process. Towards this demand, we have focused on chemical heat storage due to its high heat storage density. In this study, the promising inorganic hydrates were investigated for low-temperature heat storage with the differential scanning calorimetry. Consequently, it is found that lithium hydroxide monohydrate dehydrates at 337 K with endothermic heat of 1,440 kJ/kg-LiOH・H 2 O. Due to its high storage density and the simplicity of dehydration reaction, LiOH/LiOH・H 2 O reaction was chose as the most promising reaction for chemical heat storage below 373 K. From the chemical equilibrium calculation, this reaction system is found to be more suitable for chemical heat storage than chemical heat pump. Fundamental study of dehydration behavior of LiOH・H 2 O was also performed with a thermogravimetric analyzer, and the apparent activation energy of dehydration of LiOH・H 2 O was determined to be 51.7 kJ/mol in the conversion ranges of 0.4-0.7.
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