Catalyst regeneration
View Patent ↗A method is disclosed for regenerating a used catalyst mixture comprising (i) an isomerization catalyst comprising magnesium oxide and (ii) a metathesis catalyst comprising an inorganic carrier and at least one of molybdenum oxide and tungsten oxide. The method comprises (a) decoking the used catalyst mixture in the presence of an oxygen-containing gas to produce a decoked catalyst mixture; and (b) contacting the decoked catalyst mixture with steam at a temperature in the range of 100 to 300° C. to produce a regenerated catalyst mixture.
1. A method for regenerating a used catalyst mixture comprising the steps of:
(a) decoking the used catalyst mixture in the presence of an oxygen-containing gas to produce a decoked catalyst mixture
wherein the used catalyst mixture comprises:
(i) an isomerization catalyst comprising magnesium oxide,
(ii) a metathesis catalyst comprising an inorganic carrier and at least one of molybdenum oxide and tungsten oxide; and,
(iii) coke and/or carbon deposits wherein the coke and/or carbon deposits are present in the pores of the used catalyst mixture or on the surface of the used catalyst mixture, and
wherein the decoked catalyst mixture contains less than 0.5 wt % carbon; and
(b) regenerating the decoked catalyst mixture by contacting the decoked catalyst mixture with steam at a temperature in the range of 100 to 300° C. to produce a regenerated catalyst mixture
wherein the used catalyst mixture is recovered from a process for making propylene from a linear butene and ethylene.
2. The method of claim 1 wherein step (b) is performed at a temperature in the range of 150 to 250° C.
3. The method of claim 1 wherein isomerization catalyst comprises 95 wt% of magnesium oxide.
4. The method of claim 1 wherein metathesis catalyst comprises tungsten oxide.
5. The method of claim 4 wherein the inorganic carrier is silica.
6. The method of claim 1 , wherein the oxygen containing gas further comprises a variable concentration of oxygen in the oxygen containing gas.
7. The method of claim 6 , wherein the variable concentration of oxygen in the oxygen containing gas has a concentration that varies during the decoking process step.
8. The method of claim 7 , wherein the catalyst mixture is in the presence of the oxygen containing gas for about three hours.
9. The method of claim 1 , wherein the regenerated isomerization catalyst retains substantially the same crushing strength as a fresh isomerization catalyst.