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Catalytic Steam Reforming of Ethanol to Produce Hydrogen: Modern and Efficient Catalyst Modification Strategies - El‐Salamony - 2023 - ChemistrySelect - Wiley Online Library
Molecules | Free Full-Text | CO2 Recycling to Dimethyl Ether: State-of-the-Art and Perspectives
Catalytic Steam Reforming of Bio-Oil-Derived Acetic Acid over CeO2-ZnO Supported Ni Nanoparticle Catalysts | ACS Omega
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Catalytic Steam Reforming of Ethanol to Produce Hydrogen: Modern and Efficient Catalyst Modification Strategies - El‐Salamony - 2023 - ChemistrySelect - Wiley Online Library
Catalytic and electrocatalytic performance of Sr(Ti0.3Fe0.7Ru0.07)O3-δ for applications in solid oxide fuel cells supplied with ethanol steam reforming mixtures - ScienceDirect
Kinetic modeling and reactor design of the direct synthesis of dimethyl ether for CO2 valorization. A review - ScienceDirect
ChemEngineering | Free Full-Text | Catalytic Steam Reforming of Biomass-Derived Oxygenates for H2 Production: A Review on Ni-Based Catalysts
Controlled selectivity for ethanol steam reforming reaction over doped CeO2 surfaces: The role of gallium - ScienceDirect
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Catalysts | Free Full-Text | Recent Progress in the Steam Reforming of Bio-Oil for Hydrogen Production: A Review of Operating Parameters, Catalytic Systems and Technological Innovations
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Catalytic Conversion of Ethanol to Liquid Hydrocarbons by Tin-Promoted Raney Nickel Supported on Alumina | ACS Applied Energy Materials
Enhancing the surface area stability of the cerium oxide reverse water gas shift nanocatalyst via reverse microemulsion synthesis - ScienceDirect
Hydrogen Production Reactions from Carbon Feedstocks: Fossil Fuels and Biomass | Chemical Reviews
Hydrogen Production from Catalytic Steam Reforming of Bio‐Oils: A Critical Review - Zhao - 2020 - Chemical Engineering & Technology - Wiley Online Library
The effect of adsorbed oxygen species on carbon-resistance of Ni-Zr catalyst modified by Al and Mn for dry reforming of methane - ScienceDirect
Hydrogen Production from Catalytic Steam Reforming of Bio‐Oils: A Critical Review - Zhao - 2020 - Chemical Engineering & Technology - Wiley Online Library