Hydrodeoxygenation catalyst
A hydrodeoxygenation catalyst comprises a metal catalyst, an acid promoter, and a support. The metal catalyst is selected from platinum, palladium, ruthenium, rhenium rhodium, osmium, iridium, nickel, cobalt, molybdenum, copper, tin, or mixtures thereof. The support is a promoted-zirconium material including texture promoters and acid promoters. The hydrodeoxygenation catalyst may be used for hydrodeoxygenation (HDO) of sugar or sugar alcohol in an aqueous solution. In one embodiment the HDO catalyst may be used for HDO of fatty acids such as fatty acid methyl esters (FAME), triglycerols (in plant oil and animal fat), pyrolysis oil, or lignin. The hydrodeoxygenation catalyst for fatty acid process does not require the use of an acid promoter, it is optional.
1. A hydrodeoxygenation catalyst comprising a metal catalyst, an acid promoter, and a support; wherein the metal catalyst is selected from platinum, palladium, or mixtures thereof; wherein the acid promoter comprises niobium; and wherein the support is a chromium-promoted zirconium material.
2. The hydrodeoxygenation catalyst of claim 1 , wherein the acid promoter additionally comprises tungsten, molybdenum, cerium, manganese, vanadium, rhenium, or tantalum.
3. The hydrodeoxygenation catalyst of claim 2 , wherein the acid promoter additionally comprises tungsten, or molybdenum.
4. The hydrodeoxygenation catalyst of claim 2 , wherein the metal catalyst is about 0.01% to about 20% by weight of the hydrodeoxygenation catalyst.
5. The hydrodeoxygenation catalyst of claim 2 , wherein the chromium-promoted zirconium material is formed by calcination at a temperature about 300° C. or more.
6. A hydrodeoxygenation process comprising mixing an aqueous solution comprising a sugar or sugar alcohol with a hydrodeoxygenation catalyst in a hydrogen atmosphere above atmospheric pressure; wherein the hydrodeoxygenation catalyst comprising a metal catalyst, an acid promoter, and a support; wherein the metal catalyst is selected from platinum, palladium, or mixtures thereof; wherein the acid promoter comprises niobium; and wherein the support is a chromium-promoted zirconium material.
7. The hydrodeoxygenation process of claim 6 , wherein the acid promoter additionally comprises tungsten, or molybdenum.
8. The hydrodeoxygenation process of claim 6 , wherein the hydrogen atmosphere has a pressure of at least 25 bar.
9. The hydrodeoxygenation process of claim 6 , wherein the temperature is from about 220° C. to about 300° C.
10. A hydrodeoxygenation process comprising mixing fatty acid methyl esters, triglycerols, pyrolysis oil, or lignin, with a hydrodeoxygenation catalyst in a hydrogen atmosphere above atmospheric pressure; wherein the hydrodeoxygenation catalyst comprises a metal catalyst, an acid promoter, and a support; wherein the metal catalyst is selected from platinum, palladium, or mixtures thereof; wherein the acid promoter comprises niobium; and wherein the support is a chromium-promoted zirconium material.
11. The hydrodeoxygenation process of claim 10 , wherein the acid promoter additionally comprises tungsten, molybdenum, cerium, manganese, vanadium, rhenium, or tantalum.
12. The hydrodeoxygenation process of claim 10 , wherein the hydrodeoxygenation catalyst comprises about 0.01% by weight to about 20% by weight of the metal catalyst.
13. The hydrodeoxygenation process of claim 11 , wherein the acid promoter is about 0.1% to about 99% by weight of the support.
14. The hydrodeoxygenation process of claim 10 , wherein the temperature is from about 250° C. to about 400° C.