Gold-supporting catalyst
The invention provides a gold-supporting catalyst comprising gold nanoparticles and a carrier consisting of porous ceramic obtained by firing a mixture comprising an aluminum compound, a lime component, and a plastic clay containing 1% by mass or less of feldspars and quartz, wherein the gold nanoparticles are supported in an amount of 0.01 to 10 parts by mass on the carrier based on 100 parts by mass of the carrier.
1. A gold-supporting catalyst comprising
gold nanoparticles and
a carrier consisting of porous ceramic obtained by firing a mixture comprising an aluminum compound, a lime component, and a plastic clay containing 1% by mass or less of feldspars and quartz, the porous ceramic having a BET specific surface area of 43 m 2 /g or less,
wherein the gold nanoparticles are supported in an amount of 0.01 to 10 parts by mass on the carrier based on 100 parts by mass of the carrier.
2. The gold-supporting catalyst according to claim 1 ,
wherein an average diameter of the gold nanoparticles is 10 nm or less.
3. The gold-supporting catalyst according to claim 1 ,
wherein the aluminum compound is at least one member selected from the group consisting of aluminum hydroxide, aluminum hydrate, aluminum carbonate, and ammonium dawsonite (NH 4 AlCO 3 (OH) 2 ).
4. A method of using the gold-supporting catalyst of claim 1 comprising introducing a CO-containing gas into the gold-supporting catalyst in an atmosphere of a relative humidity of 0.1 to 100% and a temperature of −100 to 300° C.