Highly efficient and stable methane dry reforming enabled by a single-site cationic Ni catalyst
Zeolite-supported nickel (Ni) catalysts have been extensively studied for the dry reforming of
methane (DRM). It is generally believed that prior to or during the reaction, Ni is reduced to a …
methane (DRM). It is generally believed that prior to or during the reaction, Ni is reduced to a …
Thermocatalytic CO 2 conversion by siliceous matter: a review
Solid siliceous (silica/silicate) materials can substantially contribute to the strategic
decarbonization and defossilization efforts based on carbon capture and utilization (CCU) …
decarbonization and defossilization efforts based on carbon capture and utilization (CCU) …
Transition Metal Carbides: Emerging CO2 Hydrogenation Catalysts, from Recent Advance to Future Exploration
L Wang, H Wang, H Huang, T Yun… - Advanced Functional …, 2024 - Wiley Online Library
Transition metal carbides (TMCs) have emerged as highly intriguing materials for CO2
hydrogenation, primarily due to their excellent ability on CO2 adsorption and activation …
hydrogenation, primarily due to their excellent ability on CO2 adsorption and activation …
Mo promoting Ni-based catalysts confined by halloysite nanotubes for dry reforming of methane: Insight of coking and H2S poisoning resistance
Dry reforming of methane (DRM) shows promise for converting greenhouse gases into
syngas but develo** stable Ni-based catalysts resistant to sintering, coking, and H 2 S …
syngas but develo** stable Ni-based catalysts resistant to sintering, coking, and H 2 S …
Dry reforming of methane for syngas production over noble metals modified M-Ni@ S-1 catalysts (M= Pt, Pd, Ru, Au)
D Liang, Y Wang, Y Wang, M Chen, X ** dry reforming of methane
Modulating the oxygen-metal interface that enables efficient and selective C–H activation
remains challenging. Herein, we present a novel MoC x O y oxygen carrier for syngas …
remains challenging. Herein, we present a novel MoC x O y oxygen carrier for syngas …
High coke resistance Ni-SiO2@ SiO2 core-shell catalyst for biogas dry reforming: Effects of Ni loading and calcination temperature
Abstract In this study, Ni-SiO 2@ SiO 2 core-shell catalysts were prepared using the
ammonia evaporated synthesis method, followed by encapsulation by a silica layer. The …
ammonia evaporated synthesis method, followed by encapsulation by a silica layer. The …