Claims
- 1. A coated monolith substrate comprising a wash coat applied to a monolith substrate wherein the coated monolith substrate has a surface area ranging from 0.1 to 25 m2/gram as measured by adsorption of N2 or Kr using the BET method.
- 2. The coated monolith substrate of claim 1 wherein the monolith substrate is formed from a material selected from the group consisting of cordierite, a carbon composite, mullite, clay, magnesia, talc, zirconia, spinel, alumina, silica, ceria, titania, tungsten, chromium, stainless steel and nickel.
- 3. The coated monolith substrate of claim 1 wherein the wash coat is formed from a furfuryl alcohol-containing polymer forming solution or a prepolymer containing polymerized units of furfuryl alcohol.
- 4. The monolith substrate of claim 3 wherein the furfuryl alcohol-containing polymer forming solution or a prepolymer containing polymerized units of furfuryl alcohol is derived from a furfuryl alcohol/pyrrole/polyethylene glycol methyl ether solution.
- 5. The coated monolith substrate of claim 1 wherein the wash coat is formed from silica, alumina, zirconia, titania, ceria and mixtures thereof.
- 6. The coated monolith substrate of claim 1 wherein the monolith substrate is a honeycomb having from 100 to 800 cells per square inch.
- 7. A monolith catalyst comprising a catalytic metal deposited onto a coated monolith substrate comprising a wash coat applied to a monolith substrate wherein the monolith catalyst has a surface area ranging from 0.1 to 25 m2/gram as measured by adsorption of N2 or Kr using the BET method.
- 8. The monolith catalyst of claim 7 wherein the monolith substrate is formed from a material selected from the group consisting of cordierite, a carbon composite, mullite, clay, magnesia, talc, zirconia, spinel, alumina, silica, ceria, titania, tungsten, chromium, stainless steel and nickel.
- 9. The monolith catalyst of claim 7 wherein the wash coat is formed from a furfuryl alcohol containing polymer forming solution or a prepolymer containing polymerized units of furfuryl alcohol.
- 10. The monolith catalyst of claim 9 wherein the furfuryl alcohol containing polymer forming solution or a prepolymer containing polymerized units of furfuryl alcohol is derived from a furfuryl alcohol/pyrrole/polyethylene glycol methyl ether solution.
- 11. The monolith catalyst of claim 8 wherein the wash coat is formed from silica, alumina, zirconia, titania, ceria and mixtures thereof.
- 12. The monolith catalyst of claim 11 wherein the monolith substrate is a honeycomb having from 100 to 800 cells per square inch.
- 13. The monolith catalyst of claim 8 wherein the catalytic metal is selected from Groups 7, 8, 9, 10 and 11 of the Periodic Table according to the International Union of Pure and Applied Chemistry.
- 14. The monolith catalyst of claim 13 wherein the catalytic metal is selected from the group consisting of rhodium, cobalt, nickel, palladium, platinum, copper, ruthenium and rhenium.
- 15. A process for producing a coated monolith substrate having a surface area ranging from 0.1 to 25 m2/gram as measured by adsorption of N2 or Kr using the BET method suitable for use in forming a monolith catalyst comprising the steps of:
applying a wash coat comprising a furfuryl alcohol-containing polymer forming solution or a prepolymer containing polymerized units of furfuryl alcohol to a monolith substrate to form a coated monolith substrate precursor; drying the coated monolith substrate precursor to form a dried coated monolith substrate precursor and, heating the dried coated monolith substrate precursor to a temperature from 200° to 350° C. for a time ranging from 0.1 to 3 hrs to form the coated monolith substrate having a surface area ranging from 0.1 to 25 m2/gram as measured by adsorption of N2 or Kr using the BET method.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. Ser. No. 09/867,959 having a filing date of May 30, 2001, entitled, “Polymer Network/Carbon Layer on Monolith Support and Monolith Catalytic Reactor”, which is a continuation-in-part of U.S. Ser. No. 09/839,699 having a filing date of Apr. 20, 2001, entitled “Hydrogenation With Monolith Reactor Under Conditions Of Immiscible Liquid Phases”, the specifications and claims which are incorporated herein by reference and made a part of this application.
STATEMENT REGARDING FEDERALLY SPONSORED RESEARCH OR DEVELOPMENT
[0002] The subject matter presented in this patent application was funded in part by the United States Department of Energy (DOE) under Cooperative Agreement No. DE-FC02-00CH11018. The DOE may possess certain rights under the claims appended hereto.
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
09867959 |
May 2001 |
US |
Child |
10002250 |
Oct 2001 |
US |
Parent |
09839699 |
Apr 2001 |
US |
Child |
09867959 |
May 2001 |
US |