Calorimetric examination of suitability of calcium, cobalt and nickel nitrate hydrates for thermal energy storage
ČlánekOtevřený přístuppeer-reviewedpostprint (accepted version)Datum publikování
2020
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Springer
Abstrakt
Selected nitrate hydrates were characterized using X-ray diffraction, helium pycnometer, Calvet-type calorimeter and simultaneous thermogravimetry coupled with differential scanning calorimeter. Melting and crystallization of all studied nitrate hydrates were observed by differential scanning calorimeter, and the supercooling (difference between melting temperature and crystallization temperature) was found to be more than 80, 14 and 37 degrees C for calcium nitrate tetrahydrate, cobalt and nickel nitrate hexahydrates, respectively. Those salts were mixed with selected nucleating agents to suppress supercooling and then tested under repeating of heating-cooling cycles. Calcium nitrate tetrahydrate showed reversible liquid-solid process with addition of CaO, Ca(OH)(2), BaO, Ba(OH)(2)center dot 8H(2)O, graphite and graphene, but the supercooling remains too high, and the enthalpy change significantly decreased. In the case of cobalt nitrate hexahydrate, the CaO, Ba(OH)(2)center dot 8H(2)O and graphite are the most effective nucleating agent in amount of 1 mass%. The supercooling of nickel nitrate hexahydrate was effectively reduced by addition of CaO, Sr(OH)(2) and graphite. The cobalt and nickel nitrates were tested with combination of two nucleating agents (1:1). The best results were obtained for composites with addition of 1 mass% of nucleating agent mixture consisting of both graphite and Ba(OH)(2)center dot 8H(2)O for cobalt nitrate hexahydrate, and CaO with Mg(OH)(2) for nickel nitrate hexahydrate.
Rozsah stran
p. 275-287
ISSN
1388-6150
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Zdrojový dokument
Journal of Thermal Analysis and Calorimetry, volume 142, issue: 1
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https://link.springer.com/article/10.1007%2Fs10973-020-09435-y
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open access (CC BY-NC-ND 4.0)
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calcium nitrate tetrahydrate, cobalt nitrate hexahydrate, nickel nitrate hexahydrate, dehydration, phase-change materials, DSC, nucleating agent, supercooling, dusičnan vápenatý tetrahydrát, dusičnan kobaltnatý hexahydrát, dusičnan nikelnatý hexahydrát, dehydratace, látky s fázovou změnou, DSC, nukleační činidlo, podchlazení