Hydroprocessing catalyst having an organic additive with overlaid metals and method of making and using such catalyst
A highly active hydroprocessing catalyst that comprises a doped support impregnated with at lease one hydrogenation metal component and filled with an organic additive blend. The catalyst is made by providing a doped support particle followed by impregnating the doped support particle with a metal impregnation solution to provide a metal-impregnated doped support particle. The metal-impregnated doped support particle is dried but not calcined and impregnated with an organic additive blend component.
1. A method of making a hydroprocessing catalyst, the method comprises:
providing a doped support particle, comprising a dopant and an inorganic oxide;
impregnating the doped support particle with a metal impregnation solution, comprising at least one hydrogenation metal component, to provide a metal-impregnated doped support particle;
drying the metal-impregnated doped support particle to provide a dried particle;
impregnating the dried particle with an organic additive blend, comprising an acetate compound and an unsaturated fatty amine compound;
wherein the dopant is selected from the group of compounds consisting of nickel compounds, cobalt compounds, chromium compounds, boron compounds, and combinations thereof;
wherein the acetate compound is selected from the group consisting of alkyl acetates, ethoxy alkyl acetates, methoxy alkyl acetates, and alkoxy alkoxy alkyl acetates; and
wherein the unsaturated fatty amine compound is selected from the group consisting of unsaturated fatty amine compounds containing from 8 to 22 carbon atoms per molecule.
2. The method as recited in claim 1 , wherein the dopant is either nickel or boron and the doped support particle comprises from 0.01 wt. % to 5 wt. % of the dopant.
3. The method as recited in claim 2 , wherein the organic additive blend has a weight ratio unsaturated fatty amine compound-to-acetate compound in the range from 30/70 to 90/10.
4. The method as recited in claim 3 , wherein the acetate compound is butyl carbitol acetate and the unsaturated fatty amine compound is oleylamine.
5. The method as recited in claim 4 , wherein the drying step provides the dried particle having an LOI in the range up to 25 wt. %.
6. The method as recited in claim 5 , wherein the amount of the organic additive blend impregnated into the dried particle fills at least 75 vol. % of its available pore volume; and
wherein the weight of the organic additive blend impregnated into the dried particle provides a weight ratio of the organic additive blend per dried particle in the range of from 1/8 to 1/2.
7. The method as recited in claim 6 , wherein the impregnating of the doped support particle with an overlay of at least one hydrogenation metal includes molybdenum and either nickel or cobalt and provides an amount of nickel or cobalt in the hydroprocessing catalyst in the range of from 0.5 to 20 wt. %, and molybdenum in the range of from 5 to 50 wt. %, with the wt. % based on the metal as the element regardless of its actual form and the dry doped support particle, excluding the organic additive blend.
8. A hydroprocessing catalyst, comprising a doped support particle, comprising an inorganic oxide and from 0.01 to 5 wt. % nickel or boron or both; a metal overlayer of at least one hydrogenation metal component; and an impregnated organic additive blend, comprising an acetate compound and an unsaturated fatty amine; wherein the acetate compound is selected from the group consisting of alkyl acetates, ethoxy alkyl acetates, methoxy alkyl acetates and alkoxy alkoxy alkyl acetates; and wherein the unsaturated fatty amine compound is selected from the group consisting of unsaturated fatty amine compounds containing from 8 to 22 carbon atoms per molecule.
9. The hydroprocessing catalyst as recited in claim 8 , wherein the at least one hydrogenation metal is selected from the group consisting of Group VIII metals of nickel and cobalt and Group VI metals of chromium, molybdenum, and tungsten.
10. The hydroprocessing catalyst as recited in claim 9 , wherein the overlaid at least one hydrogenation metal includes molybdenum and either nickel or cobalt, wherein the nickel or cobalt is present in the hydroprocessing catalyst in an amount in the range of from 0.5 to 20 wt. % and the molybdenum is present in the hydroprocessing catalyst in the amount in the range of from 5 to 50 wt. %, with the wt. % based the metal as the element regardless of its actual form and the dry overlaid doped support particle, excluding the organic additive blend.
11. The hydroprocessing catalyst as recited in claim 10 , wherein the organic additive blend has a weight ratio of unsaturated fatty amine compound-to-acetate compound in the range from 30/70 to 90/10.
12. The hydroprocessing catalyst as recited in claim 11 , further comprises a weight ratio of the organic additive blend to the doped support particle overlaid with the metal overlayer, on a dry basis, in the range of from 1/8 to 1/2.
13. The hydroprocessing catalyst as recited in claim 12 , wherein the acetate compound is butyl carbitol acetate and the unsaturated fatty amine compound is oleylamine.
14. A process, comprising: contacting under hydroprocessing conditions a hydrocarbon feedstock with the catalyst of claim 8 .
15. The catalyst prepared by the method of claim 1 .