DocumentCode
321921
Title
Reaction durability of a magnesium oxide/water chemical heat pump system
Author
Kato, Yukitaka ; Nanmoku, Wataru ; Takahashi, Fuuta ; Yoshizawa, Yoshio
Author_Institution
Res. Lab. for Nucl. Reactors, Tokyo Inst. of Technol., Japan
fYear
1997
fDate
27 Jul-1 Aug 1997
Firstpage
1246
Abstract
Magnesium oxide/water chemical heat pump system was studied experimentally to demonstrate the durability for repetitive operation. The results showed that this heat pump had a practical performance for a heat storage system from viewpoints of durability to repetitive operation and heat output. The reactivity of a reactor bed was kept during ten times of repetitive reactions except a lowering of reactivity in initial three reaction cycles. From the reactivity change during whole cycles, it was surmised that this material had enough durability for dozens of times of repetition. The system was able to store thermal energy at about 430°C and to supply thermal energy at about 85-125°C as a heat amplifier type heat pump, and the heat output power exceeded 50 W per 1 kg of initial magnesium hydroxide during 40-60 minutes. The results of experiments and simulations showed that the heat pump had enough thermal storage capacity and thermal power as a practical system
Keywords
chemical reactions; heat pumps; magnesium compounds; thermal energy storage; water; 40 to 60 min; 430 C; 50 W; 85 to 125 C; MgO-H2O; heat amplifier type heat pump; heat output; heat output power; magnesium hydroxide; magnesium oxide/water chemical heat pump system; reaction durability; reactor bed reactivity; repetitive operation; thermal energy storage; thermal power; thermal storage capacity; Chemical reactors; Chemical technology; Cogeneration; Heat pumps; Laboratories; Magnesium compounds; Magnesium oxide; Power amplifiers; Water heating; Water storage;
fLanguage
English
Publisher
ieee
Conference_Titel
Energy Conversion Engineering Conference, 1997. IECEC-97., Proceedings of the 32nd Intersociety
Conference_Location
Honolulu, HI
Print_ISBN
0-7803-4515-0
Type
conf
DOI
10.1109/IECEC.1997.661947
Filename
661947
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