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AuthorKumar, Anand
AuthorAl-Marri, Mohammed J.
AuthorEbrahimi, Parisa
Available date2025-07-30T09:20:14Z
Publication Date2024-12-25
Publication NameGas Science and Engineering
Identifierhttp://dx.doi.org/10.1016/j.jgsce.2024.205530
CitationEbrahimi, P., Kumar, A., & Al-Marri, M. J. (2025). Impact of magnesium substitution on the structural stability and catalytic performance of LaNiO₃ perovskites for methane dry reforming. Gas Science and Engineering, 134, 205530.
ISSN2949-9097
URIhttps://www.sciencedirect.com/science/article/pii/S2949908924003261
URIhttp://hdl.handle.net/10576/66669
AbstractMg-doped LaNiO3 perovskite nanoparticles, denoted as LaNixMg1-xO3 (0 ≤x ≤ 1), were prepared via the solution combustion technique and evaluated for dry reforming of methane. The results suggest that at 750 °C, a nickel content 0.57 achieved optimal conversion rates of 86% for CO2 and 77% for CH4, as determined by the Design of Experiment (DOE) analysis. These findings were subsequently experimentally confirmed through the synthesis of LaNi0.5Mg0.5O3. The TPR analysis revealed that partially substituting Ni with Mg raised the reduction peak temperatures, indicating a more stable perovskite structure that is harder to reduce compared to LaNiO3. Notably, all catalysts, except LaMgO3, demonstrated high activity for generating syngas in the DRM reaction, the replacement of Ni with Mg did not significantly enhance the catalytic efficiency of LaNi0.5Mg0.5O3; however, the samples showed enhanced stability with the inclusion of Mg. The XRD patterns of the synthesized LaNixMg1-xO3 solids indicated that with higher concentrations of Mg, the development of the perovskite phase was hindered; instead, spinel (La2NiO4) and oxide phases (MgO and NiO) appeared on the surface of the sample.
SponsorThis research was funded by NPRP grant (NPRP14S-0302-210011) from the Qatar National Research Fund (a member of Qatar Foundation). Open Access funding provided by the Qatar National Library (QNL).
Languageen
PublisherElsevier
SubjectDry-reforming of methane
Carbon deposition
Perovskites
Cation substitution
TitleImpact of magnesium substitution on the structural stability and catalytic performance of LaNiO₃ perovskites for methane dry reforming
TypeArticle
Volume Number134
Open Access user License http://creativecommons.org/licenses/by/4.0/
ESSN2949-9089
dc.accessType Open Access


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