IP Library Granted Patent US 12,370,529
Granted Patent B2
US 12,370,529 · App. 18/746,623 · Granted Jul 29, 2025

Method for manufacturing a supported tantalum catalyst

Inventors: Parag Rasiklal Shah (Lafayette Hill, PA); Yatao Rachel Hu (Malvern, PA)
Assignee: ECOVYST CATALYST TECHNOLOGIES LLC
B01J23/20B01J21/08B01J35/397B01J35/40B01J35/615B01J35/635B01J35/638B01J37/0207B01J37/04B01J37/082C07C1/24C07C2521/08C07C2523/20
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Quick Facts
Patent No.
US 12,370,529
App. No.
18/746,623
Granted
Jul 29, 2025
Kind
B2
Abstract

A method for making a supported tantalum oxide catalyst precursor or catalyst with controlled Ta distribution and the resulting supported Ta catalyst. In an embodiment, the method comprises selecting a Ta-precursor with appropriate reactivity with the surface hydroxyls of the solid oxide support material to give a desired Ta distribution in the catalyst precursor or catalyst. In an embodiment the method comprises controlling the number of surface hydroxyls available on the support material to react with the Ta-precursor by thermal methods, such as calcination, to achieve the desired Ta distribution.

Claims (43)

1. A supported tantalum oxide catalyst precursor or catalyst with controlled Ta distribution made by a method selected from:

A) the method comprising providing a support comprising solid oxide or mixed oxide particles having a hydroxyl concentration;

selecting a Ta-precursor material having a reactivity that will provide a desired Ta distribution in the resulting tantalum oxide catalyst precursor particles;

contacting the solid oxide or mixed oxide particles with an organic solution containing the Ta-precursor material to form Ta-impregnated particles; and

recovering the Ta-impregnated particles to form a catalyst precursor comprising a desired Ta distribution,

wherein the method further comprises at least a chemical process to stabilize the Ta-precursor with at least one modifier in order to control the rate of reaction between the Ta-precursor and the support material;

B) the method comprising providing a support comprising solid oxide or mixed oxide particles having a hydroxyl concentration;

selecting a Ta-precursor material having a reactivity that will provide a desired Ta distribution in the resulting tantalum oxide catalyst precursor particles;

contacting the solid oxide or mixed oxide particles with an organic solution containing the Ta-precursor material to form Ta-impregnated particles; and

recovering the Ta-impregnated particles to form a catalyst precursor comprising a desired Ta distribution,

wherein the method further comprises at least a chemical process to stabilize the Ta-precursor with at least one modifier in order to control the rate of reaction between the Ta-precursor and the support material,

wherein the method further comprises calcining the catalyst precursor to form a supported tantalum oxide catalyst comprising a desired Ta distribution;

C) the method comprising providing a support comprising solid oxide or mixed oxide particles having hydroxyl groups attached thereto;

selecting a Ta-precursor material that has a desired reaction rate with said hydroxyl groups;

controlling the number of hydroxyl groups to react with said Ta-precursor by at least one thermal process;

contacting the solid oxide or mixed oxide particles having the controlled number of the hydroxyl groups with an organic solution comprising the Ta-precursor material to form Ta-impregnated particles; and

recovering the Ta-impregnated particles to form a catalyst precursor comprising a desired Ta distribution,

wherein the method further comprises at least a chemical process to stabilize the Ta-precursor with at least one modifier in order to control the rate of reaction between the Ta-precursor and the support material; or

D) the method comprising providing a support comprising solid oxide or mixed oxide particles having hydroxyl groups attached thereto;

selecting a Ta-precursor material that has a desired reaction rate with said hydroxyl groups;

controlling the number of hydroxyl groups to react with said Ta-precursor by at least one thermal process;

contacting the solid oxide or mixed oxide particles having the controlled number of the hydroxyl groups with an organic solution comprising the Ta-precursor material to form Ta-impregnated particles; and

recovering the Ta-impregnated particles to form a catalyst precursor comprising a desired Ta distribution,

wherein the method further comprises at least a chemical process to stabilize the Ta-precursor with at least one modifier in order to control the rate of reaction between the Ta-precursor and the support material,

wherein the method further comprises calcining the catalyst precursor to form a supported tantalum oxide catalyst comprising a desired Ta distribution.

2. The supported tantalum oxide catalyst precursor or catalyst of claim 1 , wherein the controlled Ta distribution comprises an egg-shell distribution of Ta on the particle.

3. The supported tantalum oxide catalyst precursor or catalyst of claim 1 , wherein the controlled Ta distribution comprises a uniform distribution of Ta throughout the particle.

4. The supported tantalum oxide catalyst precursor or catalyst of claim 1 , which has a Ta concentration ranging from 0.1-0.6 Ta/nm 2 .

5. The supported tantalum oxide catalyst precursor or catalyst of claim 1 , which is in the form of a bead, granule or extrudate.

6. A method for producing butadiene from ethanol, said method comprising contacting ethanol with a supported tantalum oxide catalyst made by a method selected from:

A) the method comprising providing a support comprising solid oxide or mixed oxide particles having a hydroxyl concentration;

selecting a Ta-precursor material having a reactivity that will provide a desired Ta distribution in the resulting tantalum oxide catalyst precursor particles;

contacting the solid oxide or mixed oxide particles with an organic solution containing the Ta-precursor material to form Ta-impregnated particles; and

recovering the Ta-impregnated particles to form a catalyst precursor comprising a desired Ta distribution,

wherein the method further comprises at least a chemical process to stabilize the Ta-precursor with at least one modifier in order to control the rate of reaction between the Ta-precursor and the support material,

wherein the method further comprises calcining the catalyst precursor to form a supported tantalum oxide catalyst comprising a desired Ta distribution; or

B) the method comprising providing a support comprising solid oxide or mixed oxide particles having hydroxyl groups attached thereto;

selecting a Ta-precursor material that has a desired reaction rate with said hydroxyl groups;

controlling the number of hydroxyl groups to react with said Ta-precursor by at least one thermal process;

contacting the solid oxide or mixed oxide particles having the controlled number of the hydroxyl groups with an organic solution comprising the Ta-precursor material to form Ta-impregnated particles; and

recovering the Ta-impregnated particles to form a catalyst precursor comprising a desired Ta distribution,

wherein the method further comprises at least a chemical process to stabilize the Ta-precursor with at least one modifier in order to control the rate of reaction between the Ta-precursor and the support material,

wherein the method further comprises calcining the catalyst precursor to form a supported tantalum oxide catalyst comprising a desired Ta distribution.

Assignments (7)
MERGER Recorded Mar 12, 2026
From: ECOVYST US CATALYSTS LLC
To: ADVANCED MATERIALS & CATALYSTS LLC
Reel/Frame 074060/0841 →
RELEASE OF SECURITY INTEREST Recorded Jan 2, 2026
From: CITIBANK, N.A., AS ADMINISTRATIVE AGENT
To: ECOVYST CATALYST TECHNOLOGIES LLC; ECOVYST US CATALYSTS LLC
Reel/Frame 073351/0549 →
RELEASE OF SECURITY INTEREST Recorded Jan 2, 2026
From: UBS AG, STAMFORD BRANCH, AS COLLATERAL AGENT
To: ECOVYST CATALYST TECHNOLOGIES LLC; ECOVYST US CATALYSTS LLC
Reel/Frame 073351/0633 →
ABL PATENT SECURITY AGREEMENT SUPPLEMENT NO. 2 Recorded Dec 23, 2025
From: ECOVYST US CATALYSTS LLC
To: CITIBANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 074050/0133 →
TERM LOAN PATENT SECURITY AGREEMENT Recorded Dec 23, 2025
From: ECOVYST US CATALYSTS LLC
To: UBS AG, STAMFORD BRANCH, AS COLLATERAL AGENT
Reel/Frame 074050/0311 →
CONFIRMATION OF DIVISION Recorded Dec 22, 2025
From: ECOVYST CATALYST TECHNOLOGIES LLC
To: ECOVYST US CATALYSTS LLC
Reel/Frame 074023/0497 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 18, 2024
From: SHAH, PARAG RASIKLAL; HU, YATAO RACHEL
To: ECOVYST CATALYST TECHNOLOGIES LLC
Reel/Frame 067757/0641 →
Continuity (3)
Division 17587723 · Jan 28, 2022
Provisional Application 63143484 · Jan 29, 2021
Related Publication 20240335819A1 · Oct 10, 2024
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