Catalyst, a process for its preparation, and its use
Process for the preparation of a catalyst comprising the steps of (a) preparing a slurry comprising clay, zeolite, and quasi-crystalline boehmite, provided that the slurry does not comprise peptized quasi-crystalline boehmite, (b) adding a monovalent acid to the slurry, (c) adding a silicon source to the slurry, and (d) shaping the slurry to form particles. This process leads to a catalyst with high accessibility and high attrition resistance.
1. A process for the preparation of a catalyst comprising the steps of:
a) preparing a slurry comprising clay, zeolite, and quasi-crystalline boehmite, provided that the slurry does not comprise peptised quasi-crystalline boehmite,
b) adding a monovalent acid to the slurry,
c) preparing a silicon source by preparing a slurry of diluted water glass and H 2 SO 4 at a weight ratio of DWG/H 2 SO 4 of at least 2.0 in an amount sufficient to provide silica in an amount of 1-35 wt %, based on dry solids content and calculated as SiO 2 ,
d) adding the silicon source to the slurry of step b) less than 30 minutes before step e) and
e) shaping the mixture of step d) to form particles.
2. The process according to claim 1 wherein the slurry obtained in step a) does not comprise a silicon source selected from the group consisting of sodium silicate, potassium silicate, lithium silicate, calcium silicate, magnesium silicate, barium silicate, strontium silicate, zinc silicate, phosphorus silicate, borium silicate, polyorganosiloxanes, methyl chlorosilane, dimethyl chlorosiline, trimethyl chlorosilane, and mixtures thereof.
3. The process according to claim 1 further comprising an additional silicon source added in step d), wherein said silicon source is selected from the group consisting of sodium silicate, potassium silicate, lithium silicate, calcium silicate, magnesium silicate, barium silicate, strontium silicate, zinc silicate, phosphorus silicate, borium silicate, polyorganosiloxanes, methyl chlorosilane, dimethyl chlorosiline, trimethyl chlorosilane, and mixtures thereof.
4. The process according to claim 1 , further comprising adding a base to the mixture of step (d) prior to the shaping step of step (e).
5. The process according to claim 4 , wherein the pH of the mixture is raised by the base to be between about 3 and about 7.
6. The process according to claim 1 , wherein the solids content of the slurry is between 10-30 wt %.
7. The process according to claim 1 , wherein the solids content of the mixture after step d) is between 20-30 wt %.
8. A catalyst composition comprising clay, zeolite, and quasi-crystalline boehmite, wherein the composition is prepared by a) preparing a slurry comprising clay, zeolite, and quasi-crystalline boehmite, provided that the slurry does not comprise peptised quasi-crystalline boehmite; b) adding a monovalent acid to the slurry; c) preparing a silica source by preparing a slurry of diluted water glass and H2SO4 at a weight ratio of DWG/H 2 SO 4 of at least 2.00 in an amount sufficient to provide silica in an amount of 1-35 wt %, based on dry solids content and calculated as SiO 2 ; d) adding the silica source to the slurry of step b) less than 30 minutes before step e), and e) shaping the mixture of step d) to form particles.