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Experimental Study of Hydration/Dehydration Behaviors of Metal Sulfates M(2)(SO(4))(3) (M = Sc, Yb, Y, Dy, Al, Ga, Fe, In) in Search of New Low-Temperature Thermochemical Heat Storage Materials
[Image: see text] To identify potential low-temperature thermochemical heat storage (TCHS) materials, hydration/dehydration reactions of M(2)(SO(4))(3) (M = Sc, Yb, Y, Dy, Al, Ga, Fe, In) are investigated by thermogravimetry (TG). These materials have the same rhombohedral crystal structure, and one...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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American Chemical Society
2020
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7301361/ https://www.ncbi.nlm.nih.gov/pubmed/32566816 http://dx.doi.org/10.1021/acsomega.9b04308 |
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author | Shizume, Kunihiko Hatada, Naoyuki Uda, Tetsuya |
author_facet | Shizume, Kunihiko Hatada, Naoyuki Uda, Tetsuya |
author_sort | Shizume, Kunihiko |
collection | PubMed |
description | [Image: see text] To identify potential low-temperature thermochemical heat storage (TCHS) materials, hydration/dehydration reactions of M(2)(SO(4))(3) (M = Sc, Yb, Y, Dy, Al, Ga, Fe, In) are investigated by thermogravimetry (TG). These materials have the same rhombohedral crystal structure, and one of them, rhombohedral Y(2)(SO(4))(3), has been recently proposed as a promising material. All M(2)(SO(4))(3)·xH(2)O hydrate/dehydrate reversibly between 30 and 200 °C at a relatively low p(H(2)O) (=0.02 atm). Among them, rare-earth (RE) sulfates RE(2)(SO(4))(3)·xH(2)O (RE = Sc, Yb, Y, Dy) show narrower thermal hystereses (less than 50 °C), indicating that they have faster reaction rates than the other sulfates M(2)(SO(4))(3)·xH(2)O (M = Al, Ga, Fe, In). As for the heat storage density, Y(2)(SO(4))(3)·xH(2)O is most promising due to the largest mass change (>10 mass % anhydrous basis) during the reactions. This is larger than that of the existing candidate CaSO(4)·0.5H(2)O (6.6 mass % anhydrous basis). Regarding the reaction temperature of the water insertion into rhombohedral RE(2)(SO(4))(3) (RE = Yb, Y, Dy) to form RE(2)(SO(4))(3)·H(2)O, it increases as the ionic radius of RE(3+) becomes larger. Since such a relationship is also observed in β-RE(2)(SO(4))(3)·xH(2)O, RE(OH)(3,) and REPO(4)·xH(2)O, this empirical knowledge should be useful to expect the dehydration/hydration reaction temperatures of the RE compounds. |
format | Online Article Text |
id | pubmed-7301361 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | American Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-73013612020-06-19 Experimental Study of Hydration/Dehydration Behaviors of Metal Sulfates M(2)(SO(4))(3) (M = Sc, Yb, Y, Dy, Al, Ga, Fe, In) in Search of New Low-Temperature Thermochemical Heat Storage Materials Shizume, Kunihiko Hatada, Naoyuki Uda, Tetsuya ACS Omega [Image: see text] To identify potential low-temperature thermochemical heat storage (TCHS) materials, hydration/dehydration reactions of M(2)(SO(4))(3) (M = Sc, Yb, Y, Dy, Al, Ga, Fe, In) are investigated by thermogravimetry (TG). These materials have the same rhombohedral crystal structure, and one of them, rhombohedral Y(2)(SO(4))(3), has been recently proposed as a promising material. All M(2)(SO(4))(3)·xH(2)O hydrate/dehydrate reversibly between 30 and 200 °C at a relatively low p(H(2)O) (=0.02 atm). Among them, rare-earth (RE) sulfates RE(2)(SO(4))(3)·xH(2)O (RE = Sc, Yb, Y, Dy) show narrower thermal hystereses (less than 50 °C), indicating that they have faster reaction rates than the other sulfates M(2)(SO(4))(3)·xH(2)O (M = Al, Ga, Fe, In). As for the heat storage density, Y(2)(SO(4))(3)·xH(2)O is most promising due to the largest mass change (>10 mass % anhydrous basis) during the reactions. This is larger than that of the existing candidate CaSO(4)·0.5H(2)O (6.6 mass % anhydrous basis). Regarding the reaction temperature of the water insertion into rhombohedral RE(2)(SO(4))(3) (RE = Yb, Y, Dy) to form RE(2)(SO(4))(3)·H(2)O, it increases as the ionic radius of RE(3+) becomes larger. Since such a relationship is also observed in β-RE(2)(SO(4))(3)·xH(2)O, RE(OH)(3,) and REPO(4)·xH(2)O, this empirical knowledge should be useful to expect the dehydration/hydration reaction temperatures of the RE compounds. American Chemical Society 2020-06-02 /pmc/articles/PMC7301361/ /pubmed/32566816 http://dx.doi.org/10.1021/acsomega.9b04308 Text en Copyright © 2020 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes. |
spellingShingle | Shizume, Kunihiko Hatada, Naoyuki Uda, Tetsuya Experimental Study of Hydration/Dehydration Behaviors of Metal Sulfates M(2)(SO(4))(3) (M = Sc, Yb, Y, Dy, Al, Ga, Fe, In) in Search of New Low-Temperature Thermochemical Heat Storage Materials |
title | Experimental Study of Hydration/Dehydration Behaviors
of Metal Sulfates M(2)(SO(4))(3) (M = Sc,
Yb, Y, Dy, Al, Ga, Fe, In) in Search of New Low-Temperature Thermochemical
Heat Storage Materials |
title_full | Experimental Study of Hydration/Dehydration Behaviors
of Metal Sulfates M(2)(SO(4))(3) (M = Sc,
Yb, Y, Dy, Al, Ga, Fe, In) in Search of New Low-Temperature Thermochemical
Heat Storage Materials |
title_fullStr | Experimental Study of Hydration/Dehydration Behaviors
of Metal Sulfates M(2)(SO(4))(3) (M = Sc,
Yb, Y, Dy, Al, Ga, Fe, In) in Search of New Low-Temperature Thermochemical
Heat Storage Materials |
title_full_unstemmed | Experimental Study of Hydration/Dehydration Behaviors
of Metal Sulfates M(2)(SO(4))(3) (M = Sc,
Yb, Y, Dy, Al, Ga, Fe, In) in Search of New Low-Temperature Thermochemical
Heat Storage Materials |
title_short | Experimental Study of Hydration/Dehydration Behaviors
of Metal Sulfates M(2)(SO(4))(3) (M = Sc,
Yb, Y, Dy, Al, Ga, Fe, In) in Search of New Low-Temperature Thermochemical
Heat Storage Materials |
title_sort | experimental study of hydration/dehydration behaviors
of metal sulfates m(2)(so(4))(3) (m = sc,
yb, y, dy, al, ga, fe, in) in search of new low-temperature thermochemical
heat storage materials |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7301361/ https://www.ncbi.nlm.nih.gov/pubmed/32566816 http://dx.doi.org/10.1021/acsomega.9b04308 |
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