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Dual function materials (Ru+Na2O/Al2O3) for direct air capture of CO2 and in situ catalytic methanation: The impact of realistic ambient conditions - ScienceDirect

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Dual function materials (Ru+Na2O/Al2O3) for direct air capture of CO2 and  in situ catalytic methanation: The impact of realistic ambient conditions -  ScienceDirect

Mechanistic assessment of dual function materials, composed of Ru-Ni, Na2O/ Al2O3 and Pt-Ni, Na2O/Al2O3, for CO2 capture and methanation by in-situ DRIFTS - ScienceDirect

Dual function materials (Ru+Na2O/Al2O3) for direct air capture of CO2 and  in situ catalytic methanation: The impact of realistic ambient conditions -  ScienceDirect

PDF) Intrinsic kinetics of CO2 methanation on low-loaded Ni/Al2O3 catalyst: Mechanism, model discrimination and parameter estimation

Dual function materials (Ru+Na2O/Al2O3) for direct air capture of CO2 and  in situ catalytic methanation: The impact of realistic ambient conditions -  ScienceDirect

Investigation of the effect of cobalt on the Ni–Al2O3 catalyst prepared by the mechanochemical method for CO2 methanation

Dual function materials (Ru+Na2O/Al2O3) for direct air capture of CO2 and  in situ catalytic methanation: The impact of realistic ambient conditions -  ScienceDirect

Nanomaterials, Free Full-Text

Dual function materials (Ru+Na2O/Al2O3) for direct air capture of CO2 and  in situ catalytic methanation: The impact of realistic ambient conditions -  ScienceDirect

CO2 Methanation over Supported Ru/Al2O3 Catalysts: Mechanistic Studies by In situ Infrared Spectroscopy - Zheng - 2016 - ChemistrySelect - Wiley Online Library

Dual function materials (Ru+Na2O/Al2O3) for direct air capture of CO2 and  in situ catalytic methanation: The impact of realistic ambient conditions -  ScienceDirect

PDF) Applicability of LaNiO3-derived catalysts as dual function materials for CO2 capture and in-situ conversion to methane

Dual function materials (Ru+Na2O/Al2O3) for direct air capture of CO2 and  in situ catalytic methanation: The impact of realistic ambient conditions -  ScienceDirect

The role of construction materials by accelerated carbonation in mitigation of CO2 considering the current climate status: a proposal for a new cement production model

Dual function materials (Ru+Na2O/Al2O3) for direct air capture of CO2 and  in situ catalytic methanation: The impact of realistic ambient conditions -  ScienceDirect

Sensitivity study of integrated carbon capture and methanation process using dual function materials - ScienceDirect

Dual function materials (Ru+Na2O/Al2O3) for direct air capture of CO2 and  in situ catalytic methanation: The impact of realistic ambient conditions -  ScienceDirect

PDF) Aging studies on dual function materials Ru/Ni-Na/Ca-Al2O3 for CO2 adsorption and hydrogenation to CH4

Dual function materials (Ru+Na2O/Al2O3) for direct air capture of CO2 and  in situ catalytic methanation: The impact of realistic ambient conditions -  ScienceDirect

Mechanistic assessment of dual function materials, composed of Ru-Ni, Na2O/ Al2O3 and Pt-Ni, Na2O/Al2O3, for CO2 capture and methanation by in-situ DRIFTS - ScienceDirect

Dual function materials (Ru+Na2O/Al2O3) for direct air capture of CO2 and  in situ catalytic methanation: The impact of realistic ambient conditions -  ScienceDirect

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