Hydroprocessing catalyst prepared with waste catalyst fines and its use
View Patent ↗A hydroprocessing catalyst composition that comprises a shaped support that is formed from a mixture of inorganic oxide powder and catalyst fines and wherein the shaped support has incorporated therein at least one metal component, a chelating agent and a polar additive. The hydroprocessing catalyst composition is prepared by incorporating into the shaped support a metal component, a chelating agent and a polar additive. The hydroprocessing catalyst composition has particular application in the catalytic hydroprocessing of petroleum derived feedstocks.
1. A hydroprocessing catalyst composition, comprising: a shaped support formed from a mixture comprising an inorganic oxide powder and catalyst fines in an amount in the range upwardly to about 50 wt %; at least one metal component incorporated into said shaped support; a chelating agent; and a polar additive; wherein the fraction of the total pore volume of said shaped support that is contained in macropores exceeds 10% and at least 75% of the available pore volume of said shaped support is filled with said polar additive.
2. A hydroprocessing catalyst composition as recited in claim 1 , wherein said chelating agent is selected from the group of compounds consisting of aminocarboxylic acids, polyamines, aminoalcohols, oximes, and polyethyleneimines.
3. A hydroprocessing catalyst composition as recited in claim 2 , wherein said polar additive is a heterocompound having polarity and a dipole moment of at least 0.45.
4. A hydroprocessing catalyst composition as recited in claim 3 , wherein said at least one metal component comprises a Group 9 or Group 10 metal component selected from the group consisting of cobalt and nickel present in an amount in the range of from 0.5 wt. % to 20 wt. %, and a Group 6 metal component selected from the group consisting of molybdenum and tungsten present in an amount in the range of from 5 wt. % to 50 wt. %, wherein the weight percents are based on the weight of the dry shaped support with the metal component as the element regardless of its actual form.
5. A hydroprocessing catalyst composition as recited in claim 4 , wherein said inorganic oxide powder of said shaped support is a porous refractory oxide selected from the group of refractory oxides consisting of silica, alumina, titania, zirconia, silica-alumina, silica-titania, silica-zirconia, titania-alumina, zirconia-alumina, silica-titania and combinations of two or more thereof; and wherein said shaped support has a surface area (as determined by the BET method) in the range of from 50 m 2 /g to 450 m 2 /g, a mean pore diameter in the range of from 50 to 200 angstroms (Å), and a total pore volume exceeding 0.55 cc/g.
6. A hydroprocessing process, comprising: contacting under hydroprocessing reaction conditions the composition of claim 1 with a hydrocarbon feedstock.
7. A composition made by the method comprising:
forming a shaped support comprising an inorganic oxide powder and catalyst fines, wherein said catalyst fines are present in said shaped support in an amount in the range up to 50 wt % of said shaped support, wherein the fraction of the total pore volume of the shaped support that is contained in macropores exceeds 10%, and wherein said shaped support is dried and calcined;
incorporating a chelating agent and a metal-containing solution into said shaped support to provide a chelant treated metal-incorporated support;
drying said chelant treated metal-incorporated support so as to provide a dried chelant treated metal-incorporated support having a volatiles content in the range of from 1 to 20 wt % LOI thereby creating an available pore volume; and
incorporating a polar additive into said dried chelant treated metal-incorporated support in an amount such that at least 75% of the available pore volume of said dried chelant treated metal-incorporated support is filled with said polar additive, to thereby provide an additive impregnated composition.