IP Library Granted Patent US 10,577,243
Granted Patent B2
US 10,577,243 · App. 15/343,778 · Granted Mar 3, 2020

Reforming catalyst

Inventors: Matthew S. Ide (Raritan, NJ); John F. Brody (Bound Brook, NJ); Jianxin Wu (Clinton, NJ); Joshua W. Allen (Raritan, NJ); Frank Hershkowitz (Basking Ridge, NJ); Arsam Behkish (Flemington, NJ); Anastasios I. Skoulidas (Pittstown, NJ)
Assignee: EXXONMOBIL RESEARCH AND ENGINEERING COMPANY
C01B3/40B01J8/0438B01J8/0442B01J8/0492B01J8/0496B01J23/10B01J23/464B01J23/63B01J23/83B01J23/894B01J35/0066B01J35/04B01J35/1014B01J35/1019B01J37/0215B01J37/08B01J38/02B01J37/0009B01J37/0036B01J37/0201B01J37/0228B01J37/088B01J2208/00309B01J2523/00C01B3/46C01B2203/0233C01B2203/0238C01B2203/0283C01B2203/0811C01B2203/1023C01B2203/1047C01B2203/1064C01B2203/1082C01B2203/1235C01B2203/1241C01B2203/1623C01B2203/1695
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Quick Facts
Patent No.
US 10,577,243
App. No.
15/343,778
Granted
Mar 3, 2020
Kind
B2
Abstract

A reforming catalyst with improved surface area is provided by using high surface area alumina doped with a stabilizer metal as a catalyst support. The surface area of the catalyst can be higher than a typical reforming catalyst, and the surface area can also be maintained under high temperature operation. This can allow use of the catalyst for reforming in a higher temperature environment while maintaining a higher surface area, which can allow for improved dispersion and/or activity of an active metal such as rhodium on the catalyst support. The catalyst can be suitable for production of syngas from natural gas or other hydrocarbon-containing feeds.

Claims (11)

1. A catalyst comprising about 0.1 wt % to about 10.0 wt % of a Group VIII metal, a Group IX metal, or a combination thereof on a lanthanum-stabilized alumina support, the lanthanum-stabilized alumina support having a thermally stable surface area of about 10 m 2 /g to about 60 m 2 /g and having an X-ray diffraction pattern after calcination at about 1200° C. as shown in FIG. 3 ,

wherein the lanthanum-stabilized alumina support has been calcined at a temperature below about 800° C. to reduce or minimize conversion of the alumina support to a lower surface area phase.

2. The catalyst of claim 1 , wherein the Group VIII metal, Group IX metal, or combination thereof has a dispersion value of at least 0.20.

3. The catalyst of claim 1 , wherein the Group VIII metal, Group IX metal, or combination thereof comprises Rh, Ni, Co, Pd, Pt, or a combination thereof.

4. The catalyst of claim 1 , wherein the lanthanum-stabilized alumina support has a thermally stable surface area of about 20 m 2 /g to about 60 m 2 /g.

5. The catalyst of claim 1 , wherein the lanthanum-stabilized alumina support comprises theta-alumina.

6. The catalyst of claim 1 , the catalyst being deposited on a surface of a monolith having an average wetted surface area per unit volume that ranges from about 50 ft −1 to about 3000 ft −1 .

7. The catalyst of claim 6 , wherein the monolith comprises alumina, zirconia, silicon carbide, or a combination thereof.

8. A catalyst comprising about 0.1 wt % to about 10.0 wt % of a Group VIII metal, a Group IX metal, or a combination thereof on a lanthanum-stabilized theta-alumina support, wherein said support comprises about 3 to about 5 wt. % lanthanum and has an X-ray diffraction pattern after calcination at about 1200° C. as shown in FIG. 3

wherein the lanthanum-stabilized theta-alumina support has been calcined at a temperature below about 800° C. to reduce or minimize conversion of the alumina support to a lower surface area phase.

9. The catalyst of claim 8 , wherein the Group VIII metal, Group IX metal, or combination thereof (i) comprises Rh, Ni, Co, Pd, Pt, or a combination thereof, (ii) has a dispersion value of at least 0.20, or (iii) both (i) and (ii).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2017
From: IDE, MATTHEW S.; BRODY, JOHN F.; HERSHKOWITZ, FRANK; BEHKISH, ARSAM; WU, JIANXIN; ALLEN, JOSHUA W.; SHARMA, ARUN K.; SKOULIDAS, ANASTASIOS I.
To: EXXONMOBIL RESEARCH AND ENGINEERING COMPANY
Reel/Frame 041184/0079 →
Continuity (2)
Provisional Application 62256860 · Nov 18, 2015
Related Publication 20170137285A1 · May 18, 2017