Selective hydrogenation catalyst comprising an extruded support

US10737243B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10737243-B2
Application numberUS-201716306042-A
CountryUS
Kind codeB2
Filing dateApr 24, 2017
Priority dateMay 30, 2016
Publication dateAug 11, 2020
Grant dateAug 11, 2020

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A catalyst comprising palladium, a porous support comprising at least one refractory oxide selected from the group constituted by silica, alumina and silica-alumina, the palladium content in the catalyst being in the range 0.01% to 2% by weight with respect to the total catalyst weight, at least 80% by weight of the palladium being distributed in a crust at the periphery of said support, the thickness of said crust being in the range 20 to 100 μm, characterized in that said support is in the form of an extrudate and in that said support comprises a specific surface area in the range 165 to 250 m2/g.

First claim

Opening claim text (preview).

The invention claimed is: 1. A catalyst comprising palladium, a porous support comprising at least one refractory oxide selected from the group consisting of silica, alumina and silica-alumina, the palladium content in the catalyst is in the range of 0.01% to 2% by weight with respect to the total catalyst weight, at least 80% by weight of the palladium being distributed in a crust at the periphery of said support, the thickness of said crust being in the range of 20 to 100 μm, wherein said support is in the form of an extrudate and comprises a specific surface area in the range of 165 to 250 m 2 /g and wherein said porous support comprises a section comprising n number of lobes, wherein n is an integer 3 or 4. 2. The catalyst as claimed in claim 1 , wherein said porous support is in the form of an extrudate comprising a length h in the range of 2 to 10 mm. 3. The catalyst as claimed in claim 1 , wherein n is 3. 4. The catalyst as claimed in claim 1 , wherein n is 4. 5. The catalyst as claimed in claim 1 , wherein the specific surface area of said support is in the range of 180 to 220 m 2 /g. 6. The catalyst as claimed in claim 1 , wherein said porous support is alumina. 7. The catalyst as claimed in claim 1 , wherein the metallic dispersion D of the palladium is in the range of 20% to 70%. 8. The catalyst as claimed in claim 1 , wherein the support has a pore diameter in the range of 2 to 50 nm. 9. The catalyst as claimed in claim 1 , which further comprises silver at a content in the range of 0.02% to 3% by weight of silver with respect to the total catalyst weight. 10. The catalyst as claimed in claim 9 , wherein at least 80% by weight of the silver is distributed in the crust at the periphery of the support. 11. The catalyst as claimed in claim 9 , wherein the local silver content at each point along the grain diameter varies in the same manner as the local palladium content. 12. The catalyst as claimed in claim 1 , which comprises at least one metal selected from the group consisting of alkalis and alkaline-earths. 13. The catalyst as claimed in claim 1 , wherein the palladium content in the catalyst is in the range of 0.05% to 1% by weight, with respect to the total catalyst weight. 14. The catalyst as claimed in claim 1 , wherein the thickness of the crust is in the range of 25 to 90 μm. 15. The catalyst as claimed in claim 1 , wherein the support has a specific surface area in the range of 180 to 250 m 2 /g. 16. A process for preparing the catalyst as claimed in claim 1 , comprising a) preparing an aqueous solution of palladium oxide or palladium hydroxide; b) impregnating said solution onto a porous support in the form of an extrudate with a specific surface area in the range of 165 to 250 m 2 /g; c) optionally, submitting the impregnated porous support obtained from step b) to a maturation in order to obtain a catalyst precursor; d) drying the catalyst precursor obtained from step b) or c) at a temperature in the range of 70° C. to 200° C.; e) calcining the catalyst precursor obtained from step d) at a temperature in the range of 300° C. to 500° C.; f) optionally, submitting the dried catalyst obtained from step e) to a reduction treatment by contact with a reducing gas. 17. The process as claimed in claim 16 , in which in step a), a colloidal suspension of palladium oxide or palladium hydroxide is prepared in an aqueous phase. 18. A selective hydrogenation process comprising bringing a feed into contact with the catalyst as claimed in claim 1 and hydrogenating said feed, which is a feed of C3 cuts, C4 cuts, or C5 cuts from steam cracking and/or catalytic cracking or steam cracked gasolines. 19. The selective hydrogenation process according to claim 18 , wherein in the catalyst the number of lobes n is 3. 20. The selective hydrogenation process according to claim 18 , wherein in the catalyst the number of lobes n is 4.

Assignees

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Classifications

  • Cylinders or rings · CPC title

  • Indexing scheme associated with group B01J35/00, related to the analysis techniques used to determine the catalysts form or properties · CPC title

  • characterised by their shape or configuration · CPC title

  • characterised by dimensions, e.g. grain size (in a colloidal state B01J35/23; crystallite size B01J35/77) · CPC title

  • by hydrogenation · CPC title

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What does patent US10737243B2 cover?
A catalyst comprising palladium, a porous support comprising at least one refractory oxide selected from the group constituted by silica, alumina and silica-alumina, the palladium content in the catalyst being in the range 0.01% to 2% by weight with respect to the total catalyst weight, at least 80% by weight of the palladium being distributed in a crust at the periphery of said support, the th…
Who is the assignee on this patent?
Ifp Energies Now
What technology area does this patent fall under?
Primary CPC classification B01J23/44. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Aug 11 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 7 related publications on this page (citations in our corpus or others sharing the same primary CPC).