2021
DOI: 10.1016/j.apcatb.2020.119459
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Highly active and stable Ni dispersed on mesoporous CeO2-Al2O3 catalysts for production of syngas by dry reforming of methane

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Cited by 160 publications
(67 citation statements)
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References 69 publications
(86 reference statements)
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“…Since specific surface area of perovskites, fluorites and spinel is lower than that of traditional supports such as γ-alumina, silica, zeolites, etc., a lot of research was devoted to design of catalysts for fuels reforming where active components-metals or their combination with reactive oxides are loaded on high surface area supports [12,28,39,72,75,[77][78][79][80]90,[122][123][124][125][126][127][128][129][130][131][132][133]. Since acidity of supports is well known to be responsible for coking, the best results for activity and stability of Ni-loaded catalysts in fuels reforming, as expected, were obtained in the case of Mg-doped alumina [72,90,129,131,133] or MgAl2O4 [12,28,70,75,[78][79][80]123,124,126,128,129].…”
Section: Catalysts Based On High Surface Area Supportsmentioning
confidence: 99%
“…Since specific surface area of perovskites, fluorites and spinel is lower than that of traditional supports such as γ-alumina, silica, zeolites, etc., a lot of research was devoted to design of catalysts for fuels reforming where active components-metals or their combination with reactive oxides are loaded on high surface area supports [12,28,39,72,75,[77][78][79][80]90,[122][123][124][125][126][127][128][129][130][131][132][133]. Since acidity of supports is well known to be responsible for coking, the best results for activity and stability of Ni-loaded catalysts in fuels reforming, as expected, were obtained in the case of Mg-doped alumina [72,90,129,131,133] or MgAl2O4 [12,28,70,75,[78][79][80]123,124,126,128,129].…”
Section: Catalysts Based On High Surface Area Supportsmentioning
confidence: 99%
“…Modification of the catalyst with alkali metal oxides and/or rare earth metal oxides has been shown to greatly enhance catalytic stability [10,11,21,[28][29][30][31]. In addition, the appropriate macro-distribution of the catalytically active phase within the spherical or cylindrical particles of the supporting material can greatly enhance the performance of the catalyst [32][33][34].…”
Section: Introductionmentioning
confidence: 99%
“…In order to obtain the advantages of both thermochemical and photochemical conversion, photothermal synergy is a promising method to meet this requirement and is receiving more and more attention. 16,17 It can simultaneously solve the problems of low photocatalytic efficiency and strict thermocatalytic reaction conditions. For example, Han et al reported the synthesis of Pt supported on black TiO 2 for efficient photothermal catalytic dry reforming of methane.…”
Section: Introductionmentioning
confidence: 99%