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dc.contributor.author Fernández, AG
dc.contributor.author Pineda, F
dc.contributor.author Fuentealba, E
dc.contributor.author Jullian, D
dc.contributor.author Mallco, A
dc.contributor.author Walczak, M
dc.date.accessioned 2024-01-17T15:54:11Z
dc.date.available 2024-01-17T15:54:11Z
dc.date.issued 2022
dc.identifier.uri https://repositorio.uoh.cl/handle/611/396
dc.description.abstract The next generation of solar thermal plants will increase the operating temperatures; thus, new structural materials with better performance than the currently used should be required. Alumina forming alloys (AFA) are an alternative since they have been reported as highly resistant to corrosive environments, including molten salts. In this study, two AFA (OC4 and HR224) were exposed to a ternary lithium-containing nitrate molten salt mixture (57 wt.% KNO3-30 wt.% LiNO3-13 wt.% NaNO3) at 550 degrees C for 1000 h to determine their corrosion compatibility through gravimetric and complementary techniques. The mass gain results revealed a good performance of both alloys, allowing them to be recommended for use in solar thermal plants. However, HR224 showed lower weight change attributed to a thin layer of non-porous and continuous corrosion products composed of nickel oxide and aluminum-nickel spinel, which act as protective compounds. On the contrary, OC4 showed a thick multi-layer structure of highly porous, rough, and irregular corrosion products composed mainly of iron oxides and spinels.
dc.description.sponsorship CONICYT/FONDAP Solar Energy Research Center SERC-Chile(Comision Nacional de Investigacion Cientifica y Tecnologica (CONICYT)CONICYT FONDAP)
dc.description.sponsorship Fondequip
dc.description.sponsorship Conicyt/Anid
dc.relation.uri http://dx.doi.org/10.1016/j.est.2022.103988
dc.subject Corrosion
dc.subject Alumina forming alloys
dc.subject Lithium containing molten salts
dc.subject Solar thermal plants
dc.title Compatibility of alumina forming alloys with LiNO3-containing molten salts for solar thermal plants
dc.type Artículo
uoh.revista JOURNAL OF ENERGY STORAGE
dc.identifier.doi 10.1016/j.est.2022.103988
dc.citation.volume 48
dc.identifier.orcid Pineda, Fabiola/0000-0002-1508-7327
uoh.indizacion Web of Science


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