Acid-resistant catalyst supports and catalysts
A process for preparing a catalyst comprises coating substantial internal surfaces of porous inorganic powders with titanium oxide to form titanium oxide-coated inorganic powders. After the coating, an extrudate comprising the titanium oxide-coated inorganic powders is formed and calcined to form a catalyst support. Then, the catalyst support is impregnated with a solution containing one or more salts of metal selected from the group consisting of molybdenum, cobalt, and nickel.
1. A catalyst support prepared by the process comprising:
coating substantial internal surfaces of porous inorganic powders with titanium oxide to form titanium oxide-coated inorganic powders, wherein the coating of internal surfaces comprises:
preparing a slurry of porous inorganic powders in water;
introducing portions of a solution comprising a soluble titanium oxide precursor and optionally a chelating or complexing agent and a basic solution alternately in 2 or more portions of each type into the slurry to form a mixture slurry; and
aging the mixture slurry at a pH of 4.5 to 7.0 for at least about 1 hour to form titanium oxide-coated inorganic powders,
wherein a resultant pH of the mixture slurry is maintained in a range of about 3.5 to about 6 during a period of introducing the soluble titanium oxide precursor and the basic solution, a weight ratio of the total soluble titanium oxide precursor introduced into the mixture slurry (as titanium oxide) to the porous inorganic powders is in a range of about 0.1 to about 1.0, and
wherein a Ti/Al ratio as measured by x-ray photoelectron spectroscopy of the titanium oxide-coated inorganic powders is less than about 4.5.
2. A catalyst support prepared by the process comprising:
coating substantial internal surfaces of porous inorganic powders with titanium oxide to form titanium oxide-coated inorganic powders, wherein the coating of internal surfaces comprises:
preparing an aqueous mixture slurry comprising porous inorganic powders, a soluble titanium oxide precursor, and optionally a chelating or complexing agent with a weight ratio of the soluble titanium oxide precursor (as titanium oxide) to the porous inorganic powders in a range of about 0.1 to about 1.0;
introducing a basic solution to the mixture slurry to raise pH value of the mixture slurry to a resultant pH of between about 3.5 and about 6; and
aging the mixture slurry at a pH of 4.5 to 7.0 for at least about 1 hour to form titanium oxide-coated inorganic powders,
wherein a Ti/Al ratio as measured by x-ray photoelectron spectroscopy of the titanium oxide-coated inorganic powders is less than about 4.5.
3. A catalyst support prepared by the process comprising:
coating substantial internal surfaces of porous inorganic powders with titanium oxide to form titanium oxide-coated inorganic powders, wherein the coating of internal surfaces comprises:
preparing a slurry of porous inorganic powders in water;
introducing a solution comprising a soluble titanium oxide precursor and optionally a chelating or complexing agent and a basic solution simultaneously into the slurry at a predetermined relative rate to form a mixture slurry; and
aging the mixture slurry at a pH of 4.5 to 7.0 for at least about 1 hour to form titanium oxide-coated inorganic powders,
wherein a resultant pH of the mixture slurry is maintained in a range of about 3.5 to about 6.0 during a period of introducing the soluble titanium oxide precursor and the basic solution, and
a weight ratio of the total soluble titanium oxide precursor introduced into the mixture slurry (as titanium oxide) to the porous inorganic powders is in a range of about 0.1 to about 1.0,
wherein a Ti/Al ratio as measured by x-ray photoelectron spectroscopy of the titanium oxide-coated inorganic powders is less than about 4.5.
4. A catalyst support prepared by the process comprising:
coating substantial internal surfaces of porous inorganic powders with titanium oxide to form titanium oxide-coated inorganic powders, wherein the coating of internal surfaces comprises:
impregnating with incipient wetness porous inorganic powders with a solution comprising a soluble titanium oxide precursor and optionally a chelating or complexing agent;
treating the impregnated porous inorganic powders with a basic solution; and
aging the treated porous inorganic powders at a pH of 4.5 to 7.0 for at least about 1 hour to form titanium oxide-coated inorganic powders,
wherein a weight ratio of the soluble titanium oxide precursor (as titanium oxide) to the porous inorganic powders is in a range of about 0.1 to about 1.0,
wherein a Ti/Al ratio as measured by x-ray photoelectron spectroscopy of the titanium oxide-coated inorganic powders is less than about 4.5.