Claims
- 1. A catalyst composition prepared by heating one or more nickel-containing hydrotalcite-like precursor compound to a temperature in the range of about 800.degree. C. to about 1050.degree. C., the catalyst composition comprising a hybrid phase component wherein a M.sup.2+ O component and a M.sup.2+ Al.sub.2 O.sub.4 spinel component are in a crystallite, and wherein the M.sup.2+ O component and the M.sup.2+ Al.sub.2 O.sub.4 spinel component are joined within the crystallite through an epitaxial interface, and where M.sup.2+ is a metal ion having a valence of 2+ and comprises Ni.sup.2+.
- 2. The catalyst composition of claim 1 wherein M.sup.2+ is Ni.sup.2+ or a mixture of Ni.sup.2+ and Mg.sup.2+.
- 3. The catalyst composition of claim 1 wherein the hydrotalcite-like compounds have formula:
- �M.sup.2+.sub.(1-x) M.sub.x.sup.3+ (OH).sub.2 !.sup.x+ A.sub.x/n.sup.n- .cndot.mH.sub.2 O,
- wherein M.sup.2+ is at least a mixture of Ni.sup.2+ and Cu.sup.2+, M.sup.3+ is at least Al.sup.3+, x is about 0.1 to about 0.5, A is an anion with negative charge n, and m is 0 or a positive number.
- 4. The catalyst composition of claim 1 wherein the crystallites comprising the hybrid phase are about 5 nanometers to about 400 nanometers in size.
- 5. The catalyst composition of claim 1 wherein the crystallites comprising the hybrid phase are about 5 nanometers to about 100 nanometers in size.
- 6. The catalyst composition of claim 1 wherein the hydrotalcite-like compounds have formula:
- �M.sup.2+.sub.(1-x) M.sup.3+.sub.x (OH).sub.2 !.sup.x+ (A.sub.x/n.sup.n-).cndot.mH.sub.2 O
- wherein M.sup.2+ is at least a mixture of Ni.sup.2+ and Mg.sup.2+, M.sup.3+ is at least Al.sup.3+, x is about 0.1 to about 0.5, A is an anion with negative charge n, and m is 0 or a positive number.
- 7. The catalyst composition of claim 6 wherein the crystallites comprising the hybrid phase are about 5 nanometers to about 100 nanometers in size.
- 8. A reforming catalyst prepared by heating one or more nickel-containing hydrotalcite-like precursor 1050.degree. C. under reforming conditions, the catalyst comprising metal particles of about 1 to about 1000 nanometers in size and comprising at least nickel in the zero oxidation state, the external surface area of the metal particles being mostly surrounded by spinel crystallites, the spinel crystallites comprising M.sub.2.sup.3+ O.sub.3 or M.sup.2+ M.sub.2.sup.3+ O.sub.4 or a mixture thereof where M.sup.2+ is a metal in the 2+ oxidation state, and M.sup.3+ is a metal in the 3+ oxidation state.
- 9. The catalyst composition of claim 8 wherein M.sup.2+ is Ni.sup.2+ or a mixture of Ni.sup.2+ and Mg.sup.2+.
- 10. The catalyst composition of claim 8 wherein the hydrotalcite-like compounds have formula:
- �M.sup.2+.sub.(1-x) M.sub.x.sup.3+ (OH).sub.2 !.sup.x+ A.sub.x/n.sup.n- .cndot.mH.sub.2 O,
- wherein M.sup.2+ is at least a mixture of Ni.sup.2+ and Cu.sup.2+, M.sup.3+ is at least Al.sup.3+, x is about 0.1 to about 0.5, A is an anion with negative charge n, and m is 0 or a positive number.
- 11. The catalyst composition of claim 10 wherein the crystallites are about 5 nanometers to about 100 nanometers in size.
- 12. The catalyst composition of claim 8 wherein the hydrotalcite-like compounds have formula:
- �M.sup.2+.sub.(1-x) M.sup.3+.sub.x (OH).sub.2 !.sup.x+ (A.sub.x/n.sup.n-).cndot.mH.sub.2 O
- wherein M.sup.2+ is at least a mixture of Ni.sup.2+ and Mg.sup.2+, M.sup.3+ is at least Al.sup.3+, x is about 0.1 to about 0.5, A is an anion with negative charge n, and m is 0 or a positive number.
- 13. The catalyst composition of claim 12 wherein the crystallites are about 5 nanometers to about 100 nanometers in size.
Parent Case Info
This is a divisional of application Ser. No. 08/353,052, filed Dec. 9, 1994, now U.S. Pat. No. 5,591,238, which is a Divisional of Ser. No. 08/110,104 filed Aug. 20, 1993, now. U.S. Pat. No. 5,399,537 which, in turn, is a Continuation-in-Part of Ser. No. 07/993,419 filed Dec. 21, 1992, now abandoned.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
3436358 |
Thygesen |
Apr 1969 |
|
4233186 |
Duprez et al. |
Nov 1980 |
|
5399537 |
Bhattacharyya et al. |
Mar 1995 |
|
Non-Patent Literature Citations (1)
Entry |
Hawley, Gessner G., The Condensed Chemical Dictionary, 1981, p. 777. |
Divisions (2)
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Number |
Date |
Country |
Parent |
353052 |
Dec 1994 |
|
Parent |
110104 |
Aug 1993 |
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Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
993419 |
Dec 1992 |
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