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Porous silicon carbide (SiC): a chance for improving catalysts or just another active-phase carrier?
There is an obvious gap between efforts dedicated to the control of chemicophysical and
morphological properties of catalyst active phases and the attention paid to the search of …
morphological properties of catalyst active phases and the attention paid to the search of …
[PDF][PDF] Advances in nanostructured silicon carbide photocatalysts
Industrialization undoubtedly boosts economic development and improves the standard of
living; however, it also leads to some serious problems, including the energy crisis …
living; however, it also leads to some serious problems, including the energy crisis …
Silicon carbide in catalysis: from inert bed filler to catalytic support and multifunctional material
Silicon carbide (SiC) or carborundum has unparalleled thermal stability and conductivity
compared with many other materials. This feature together with its unique photoelectrical …
compared with many other materials. This feature together with its unique photoelectrical …
[HTML][HTML] Integrated CO2 capture and methanation on Ru/CeO2-MgO combined materials: Morphology effect from CeO2 support
Integrated CO 2 capture and methanation (ICCM) is attracting more attention to promote the
reduction of CO 2 emission. This work developed and applied a set of combined materials …
reduction of CO 2 emission. This work developed and applied a set of combined materials …
Sustainable hydrogen and ammonia technologies with nonthermal plasma catalysis: mechanistic insights and technoeconomic analysis
The search for novel catalytic processes is essential to combat climate change by tap**
into sustainable hydrogen technologies, which rely on low-carbon H2 production and …
into sustainable hydrogen technologies, which rely on low-carbon H2 production and …
High-dispersed CeOx species on mesopores silica to accelerate Ni-catalysed CO2 methanation at low temperatures
CO 2 methanation is a key step in the power-to-gas technology for storing and distributing
renewable energy as energy vectors. Due to thermodynamic constraints, highly active …
renewable energy as energy vectors. Due to thermodynamic constraints, highly active …
Exploring the influence of nickel precursors on constructing efficient Ni-based CO2 methanation catalysts assisted with in-situ technologies
In this work, a series of Ni-based CO 2 methanation catalysts were prepared with different
nickel salt precursors. The Ni-AA catalyst with nickel acetylacetonate precursor displayed …
nickel salt precursors. The Ni-AA catalyst with nickel acetylacetonate precursor displayed …
Design and preparation of salt hydrate/graphene oxide@ SiO2/SiC composites for efficient solar thermal utilization
Efficient solar thermal utilization has attracted extensive attention because it effectively
alleviates carbon dioxide emissions and environmental pollution. Phase-change material …
alleviates carbon dioxide emissions and environmental pollution. Phase-change material …
Catalytic combustion of lean methane over MnCo2O4/SiC catalysts: Enhanced activity and sulfur resistance
The simultaneous control of catalytic activity and sulfur resistance is a challenging task for
non-noble metal catalysts in the domain of heterogenous catalysis. Herein, by dispersing …
non-noble metal catalysts in the domain of heterogenous catalysis. Herein, by dispersing …
Exploring the oxidation behavior of undiluted and diluted iron particles for energy storage: Mössbauer spectroscopic analysis and kinetic modeling
Iron is an abundant and non-toxic element that holds great potential as energy carrier for
large-scale and long-term energy storage. While from a general viewpoint iron oxidation is …
large-scale and long-term energy storage. While from a general viewpoint iron oxidation is …