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Practical Application Study of Highly Active CO2 Methanation Catalysts Prepared Using the Polygonal Barrel-Sputtering Method: Immobilization of Catalyst Particles
by
Nakajima Hironori
, Sone Yoshitsugu
, Inoue Mitsuhiro
, Sato Motohiko
, Abe, Takayuki
, Shima Asuka
in
Aluminum oxide
/ Atmospheric pressure
/ Barrel plating
/ Carbon dioxide
/ Catalysis
/ Catalysts
/ Gases
/ High temperature
/ Hydrogen
/ Immobilization
/ Methanation
/ Microscopy
/ Plates
/ Polygons
/ Sputtering
2022
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Practical Application Study of Highly Active CO2 Methanation Catalysts Prepared Using the Polygonal Barrel-Sputtering Method: Immobilization of Catalyst Particles
by
Nakajima Hironori
, Sone Yoshitsugu
, Inoue Mitsuhiro
, Sato Motohiko
, Abe, Takayuki
, Shima Asuka
in
Aluminum oxide
/ Atmospheric pressure
/ Barrel plating
/ Carbon dioxide
/ Catalysis
/ Catalysts
/ Gases
/ High temperature
/ Hydrogen
/ Immobilization
/ Methanation
/ Microscopy
/ Plates
/ Polygons
/ Sputtering
2022
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Practical Application Study of Highly Active CO2 Methanation Catalysts Prepared Using the Polygonal Barrel-Sputtering Method: Immobilization of Catalyst Particles
by
Nakajima Hironori
, Sone Yoshitsugu
, Inoue Mitsuhiro
, Sato Motohiko
, Abe, Takayuki
, Shima Asuka
in
Aluminum oxide
/ Atmospheric pressure
/ Barrel plating
/ Carbon dioxide
/ Catalysis
/ Catalysts
/ Gases
/ High temperature
/ Hydrogen
/ Immobilization
/ Methanation
/ Microscopy
/ Plates
/ Polygons
/ Sputtering
2022
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Practical Application Study of Highly Active CO2 Methanation Catalysts Prepared Using the Polygonal Barrel-Sputtering Method: Immobilization of Catalyst Particles
Journal Article
Practical Application Study of Highly Active CO2 Methanation Catalysts Prepared Using the Polygonal Barrel-Sputtering Method: Immobilization of Catalyst Particles
2022
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Overview
This study investigated immobilization (without binders and high-temperature heating) of highly active CO2 methanation catalyst particles, prepared by the polygonal barrel-sputtering method, onto porous Al2O3 plates. The catalyst particles were fixed uniformly and firmly on the plates and retained their high CO2 methanation performance.Graphic Abstract
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