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AuthorTakalkar, Gorakshnath
AuthorBhosale, Rahul R.
AuthorAlMomani, Fares
AuthorRashid, Suliman
AuthorShakoor, R. A.
Available date2020-08-18T08:15:20Z
Publication Date2020-09-01
Publication NameJournal of Materials Science
Identifierhttp://dx.doi.org/10.1007/s10853-020-04794-1
CitationTakalkar, G., Bhosale, R.R., AlMomani, F. et al. Ni incorporation in MgFe2O4 for improved CO2-splitting activity during solar fuel production. J Mater Sci 55, 11086–11094 (2020). https://doi.org/10.1007/s10853-020-04794-1
ISSN00222461
URIhttps://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85085308314&origin=inward
URIhttp://hdl.handle.net/10576/15545
AbstractEfficacy of the sol–gel derived Ni-doped Mg-ferrites for an enhanced CO2 splitting activity is investigated. The results allied with the characterization indicate the formation of nominally phase pure Ni-doped Mg-ferrites with a coarser particle morphology. Ni-doped Mg-ferrites are further tested for multiple thermal reduction as well as CO2 splitting steps by using a thermogravimetric analyzer. The results associated with the thermogravimetric analysis confirmed that most of the Ni-doped Mg-ferrites attained a steady TR aptitude after crossing the 5th or 6th cycle. Likewise, the CS capability of all the Ni-doped Mg-ferrites accomplished consistency after 4th cycle (except for Ni0.11Mg0.88Fe2.01O4.005). The Ni0.90Mg0.11Fe2.04O4.070 showed the highest amount of O2 release (117.1 μmol/g cycle) and CO production (210.3 μmol/g cycle) in ten consecutive thermochemical cycles. Besides, Ni0.29Mg0.72Fe1.98O3.980 indicated better re-oxidation aptitude (nCO/nO2 ratio = 1.89) when compared with other Ni-doped Mg-ferrites.
Languageen
PublisherSpringer
Subjectthermogravimetric analyzer
solar fuel production
re-oxidation
TitleNi incorporation in MgFe2O4 for improved CO splitting activity during solar fuel production
TypeArticle
Pagination11086–11094
Issue Number25
Volume Number55


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