CO SHIFT CATALYST, CO SHIFT REACTION APPARATUS, AND METHOD FOR PURIFYING GASIFIED GAS
A CO shift catalyst according to the present invention reforms carbon monoxide (CO) in gas. The CO shift catalyst has one of molybdenum (Mo) or iron (Fe) as a main component and has an active ingredient having one of nickel (Ni) or ruthenium (Ru) as an accessory component and one or two or more kinds of oxides from among titanium (Ti), zirconium (Zr), and cerium (Ce) for supporting the active ingredient as a support. The temperature at the time of manufacturing and firing the catalyst is equal to or higher than 550° C.
1 . A CO shift catalyst which reforms carbon monoxide (CO) in gas,
has molybdenum (Mo) or iron (Fe) as a main component,
has an active ingredient having nickel (Ni) or ruthenium (Ru) as an accessory component and a complex oxide including two or more kinds from among titanium (Ti), and silica (Si), for supporting the active ingredient as a support, and formed by firing them at a temperature from 550° C. to 800° C.
2 . The CO shift catalyst according to claim 1 ,
wherein a support amount of the main component of the active ingredient is 0.1 to 25 percent by weight, and a support amount of the accessory component is 0.01 to 10 percent by weight.
3 . A CO shift reaction apparatus comprising the CO shift catalyst according to claim 1 .
4 . A method for purifying gasified gas, comprising:
a step of removing smoke and dust in gasified gas obtained by a gasification furnace by a filter;
a step of clarifying the gasified gas after removal of smoke and dust by a wet scrubber apparatus;
a step of removing carbon dioxide and hydrogen sulfide in the gasified gas after clarification; and
a step of obtaining purified gas by performing the CO shift reaction for converting CO in the gasified gas after removal of carbon dioxide and hydrogen sulfide into CO 2 by using the CO shift catalyst according to claim 1 .