ULTRA HIGH TEMPERATURE SHIFT CATALYST WITH LOW METHANATION
A water gas shift catalyst for use at temperatures above about 450° C. up to about 900° C. or so comprising a partially reducible transition metal oxide without an active metal added thereto.
1 . A water gas shift catalyst comprising a partially reducible transition metal oxide that remains an oxide during a water gas shift reaction at temperatures from about 450° C. to about 900° C.
2 . The water gas shift catalyst of claim 1 wherein the partially reducible transition metal oxide is selected from the group consisting of cerium, neodymium, praseodymium, gadolinium, and manganese.
3 . The water gas shift catalyst of claim 1 wherein the partially reducible transition metal comprises cerium.
4 . The water gas shift catalyst of claim 1 wherein the partially reducible transition metal oxide is combined with a metal oxide selected from the group consisting of zirconia, lanthana, praseodymium oxide, neodymium oxide, yttria, titania, silica, samarium oxide, tungsten oxide, molybdenum oxide, calcium oxide, chromium oxide, magnesium oxide, barium oxide, strontium oxide, and mixtures thereof.
5 . The water gas shift catalyst of claim 1 wherein the catalyst does not include an active metal deposited upon or combined with the partially reducible transition metal oxide.
6 . The water gas shift catalyst of claim 5 wherein the active metal that is not included with the partially reducible transition metal oxide is selected from the group consisting of precious metals, rhenium, iron, chromium, copper, cobalt, nickel, molybdenum, zinc and tungsten.
7 . The water gas shift catalyst of claim 1 , wherein the catalyst does not include an active precious metal selected from the group consisting of platinum, palladium, rhodium, ruthenium, iridium, osmium, silver, gold and mixtures thereof.
8 . The water gas shift catalyst of claim 1 wherein the partially reducible transition metal oxide comprises ceria, which is combined with zirconia.
9 . The water gas shift catalyst of claim 8 wherein the catalyst further comprises praseodymium oxide and/or neodymium oxide.
10 . The water gas shift catalyst of claim 1 further comprising an alkali or alkaline earth metal dopant.
11 . The water gas shift catalyst of claim 10 , wherein the dopant is selected from the group of consisting of sodium, potassium, cesium, and rubidium oxides and mixtures thereof.
12 . The water gas shift catalyst of claim 10 , wherein the alkali or alkaline earth dopant comprises from about 0.1 to about 10% of the catalyst, by weight.
13 . A water gas shift process comprising preparing a feed stream containing carbon monoxide and steam and passing that feed stream over a water gas shift catalyst comprising a partially reducible transition metal oxide, wherein the metal oxide remains an oxide during the water gas shift reaction, at a pressure above about 50 psi, (3.4 bar) and at a temperature of about 450° C. up to about 900° C.
14 . The process of claim 13 wherein the quantity of carbon monoxide is between about 1 and 15% and a molar steam to dry gas ratio is from about 0.1 to about 5.
15 . The process of claim 14 wherein the water gas shift catalyst does not include an active metal deposited or combined with the partially reducible transition metal oxide.
16 . The process of claim 13 wherein the catalyst does not include a precious metal selected from the group consisting of platinum, palladium, rhodium, ruthenium, iridium, osmium, silver, gold and mixtures thereof.
17 . The process of claim 13 wherein the partially reducible transition metal oxide is selected from the group consisting of cerium, neodymium, praseodymium, gadolinium, and manganese.
18 . The process of claim 13 wherein the partially reducible transition metal comprises cerium.