Optimizing LaNiO3 Perovskite as Catalyst Precursor for the Revalorization of Biogas by Dry Reforming of Methane

The Dry Reforming of Methane (DRM) is an efficient route to produce syngas (which is the feedstock for the production of synthetic fuels via the Fischer–Tropsch process) or hydrogen from methane and carbon dioxide. This work evaluates several nickel-based perovskite-type mixed oxides (LaxNiO3, La0.8Ni0.9M0.1O3 (M = Co, Fe and Mn) and La0.8Ni1−yCoyO3) as precursors of the active phase (Ni) for the DRM reaction. Although La0.8NiO3 yields slightly smaller Ni particles after reduction, it promotes the accumulation of a significant amount of carbonaceous material during DRM. Partial Ni substitution with Co, Fe and Mn improves redox stability, with the La0.8Ni0.75Co0.25O3 formulation being the most effective for removing the carbonaceous deposits under a 25% CH4, 25% CO2 (50% He) reactant atmosphere. However, when this formulation is used as a catalyst precursor for DRM under more realistic conditions (i.e., employing a feed that simulates real biogas), CH4 conversion and H2 yield decrease, and the carbon accumulated increases due to the greater influence of the parallel reactions. As a positive sign for future applications or research, under these conditions, the addition of 0.5% O2 to the feed and the use of a CO2 regeneration step decreased the amount of carbonaceous material deposited.

Authors

Institutions

Publication Details

Journal
Molecules
Published
2026-09-16
DOI
https://doi.org/10.3390/molecules31183284
Primary Topic
Catalysts for Methane Reforming
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Optimizing LaNiO3 Perovskite as Catalyst Precursor for the Revalorization of Biogas by Dry Reforming of Methane

Antonella Glisenti, María José Illán Gómez, Álvaro Díaz-Verde, Jonathan Cavazzani
Molecules
Catalysts for Methane Reforming
article

Optimizing LaNiO3 Perovskite as Catalyst Precursor for the Revalorization of Biogas by Dry Reforming of Methane

Antonella Glisenti, María José Illán Gómez, Álvaro Díaz-Verde, Jonathan Cavazzani
article en

Abstract

The Dry Reforming of Methane (DRM) is an efficient route to produce syngas (which is the feedstock for the production of synthetic fuels via the Fischer–Tropsch process) or hydrogen from methane and carbon dioxide. This work evaluates several nickel-based perovskite-type mixed oxides (LaxNiO3, La0.8Ni0.9M0.1O3 (M = Co, Fe and Mn) and La0.8Ni1−yCoyO3) as precursors of the active phase (Ni) for the DRM reaction. Although La0.8NiO3 yields slightly smaller Ni particles after reduction, it promotes the accumulation of a significant amount of carbonaceous material during DRM. Partial Ni substitution with Co, Fe and Mn improves redox stability, with the La0.8Ni0.75Co0.25O3 formulation being the most effective for removing the carbonaceous deposits under a 25% CH4, 25% CO2 (50% He) reactant atmosphere. However, when this formulation is used as a catalyst precursor for DRM under more realistic conditions (i.e., employing a feed that simulates real biogas), CH4 conversion and H2 yield decrease, and the carbon accumulated increases due to the greater influence of the parallel reactions. As a positive sign for future applications or research, under these conditions, the addition of 0.5% O2 to the feed and the use of a CO2 regeneration step decreased the amount of carbonaceous material deposited.

MoleculesVol. 31(18)
University of Alicante (ES), University of Padua (IT), Institute of Condensed Matter Chemistry and Technologies for Energy (IT)
Openalex Percentile: Top 31%
Catalysts for Methane Reforming
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.

Optimizing LaNiO3 Perovskite as Catalyst Precursor for the Revalorization of Biogas by Dry Reforming of Methane — Antonella Glisenti, María José Illán Gómez, et al. · Molecules (2026) | TGRS Research Map | TGRS