CO2 Utilization in Methane Reforming Using La-doped SBA-16 Catalysts Prepared via pH Adjustment Method
Articolo
Data di Pubblicazione:
2022
Abstract:
In this work, lanthanum-combined silica mesoporous (SBA-16) supported Ni-based catalysts are synthesized and
examined for synthesis gas (syngas) production in the dry methane reforming (DMR) process. The pH-adjusted
hydrothermal technique has been used to modify the mesoporous silica-based support, which has been then
impregnated by Ni particles. The pH value had a substantial impact on creating well-ordered mesostructures and
lanthanum ion replacement inside the SBA-16 structure. Therefore, at the ideal pH of 3.80, a zeolite-like mesostructure
of Si-La has been produced. Thus, La2O3 species have been inserted in the SBA-16 structure, favoring a
larger dispersion of impregnated Ni particles of lower dimensions. In addition to the pH modification during the
synthesis step, the effects of lanthanum loading and Ni weight percentage variation on the catalytic performance
as well as the physicochemical analyses of the catalysts have been also explored. The calcined catalysts have been
tested in the DMR process in the temperature range of 600-750 oC. Furthermore, the coke resistance, activity,
and structural changes of optimal catalysts have been studied over 11 h. The results showed that the 15Ni/40La-
SBA16(3.80) catalyst performs the best structural characteristics and catalytic activity.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
pH adjustment method; Catalysis; Hydrogen Production; Lanthanum promoter SBA-16; Dry Methane Reforming
Elenco autori:
Iulianelli, Adolfo
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