Claims
- 1. A method for microbial production of an oxygenated derivative of a methane-monooxygenase substrate comprising:
(a) incubating a reconstituted lyophilized whole cell enzyme preparation of methanotrophic bacteria containing methane monooxygenase and hydrogenase in a bioreactor, said bioreactor comprising a biphasic liquid phase comprising a major amount of a non-polar non-aqueous solvent and a minor amount of a polar aqueous medium, a non-aqueous solvent circulation circuit for circulating said non-polar non-aqueous solvent through said bioreactor, and an aqueous medium circulation circuit for circulating said polar aqueous medium through said bioreactor in a counter-current manner as compared to said non-polar non-aqueous solvent; (b) continuously dissolving effective amounts of oxygen gas, hydrogen gas, and a gaseous substrate in said non-polar non-aqueous solvent, wherein said gaseous substrate is readily soluble in said non-polar non-aqueous solvent and is susceptible to oxidation by said methane monooxygenase to result in the oxygenated derivative thereof, wherein said oxygenated derivative is a polar liquid; (c) circulating said non-polar non-aqueous solvent in close proximity to said reconstituted lyophilized whole cell enzyme preparation of methanotrophic bacteria containing methane monooxygenase and hydrogenase such that said methane monooxygenase oxidizes said gaseous substrate into said oxygenated substrate; (d) circulating said polar aqueous medium in a counter-current manner through said circulating non-polar non-aqueous solvent such that said oxygenated substrate is partitioned into said polar aqueous medium; and (e) removing and recovering said oxygenated substrate from said polar aqueous medium and recycling said non-polar non-aqueous solvent and said polar aqueous medium.
- 2. The method of claim 1 wherein said oxygenated derivative is propylene oxide and said methane-monooxygenase substrate is propylene.
- 3. The method of claim 1 wherein said methanotrophic bacteria are selected from the group consisting of Methylosinus, Methyloccus, and Methylomonas, and mixtures thereof.
- 4. The method of claim 3 wherein said methanotrophic bacteria are Methylosinus trichosporium OB3b.
- 5. The method of claim 1 wherein said non-polar non-aqueous solvent comprises isooctane.
- 6. The method of claim 1 wherein said non-polar non-aqueous solvent comprises hexane.
- 7. The method of claim 1 wherein said non-polar non-aqueous solvent comprises silicone oil.
- 8. The method of claim 1 wherein said non-polar non-aqueous solvent comprises hexadecane.
- 9. The method of claim 1 wherein said non-polar non-aqueous solvent comprises a fluorocarbon.
- 10. A method for regenerating reducing equivalents in a bioreactor configured for utilizing reducing equivalents in a methane-monooxygenase-catalyzed reaction for oxidizing a substrate into an oxygenated product comprising:
(a) culturing a reconstituted lyophilized whole cell enzyme preparation of methanotrophic bacteria containing methane monooxygenase and hydrogenase in the bioreactor, said bioreactor comprising a liquid phase comprising a major amount of a non-polar non-aqueous solvent and a minor amount of a polar aqueous medium; (b) continuously dissolving an effective amount of hydrogen gas in said non-polar non-aqueous solvent, such that said hydrogen gas and NAD+are converted by the hydrogenase into NADH, thereby regenerating reducing equivalents.
- 11. The method of claim 10 wherein said oxygenated product is propylene oxide and said substrate is propylene.
- 12. The method of claim 10 wherein said methanotrophic bacteria are selected from the group consisting of Methylosinus, Methyloccus, and Methylomonas, and mixtures thereof.
- 13. The method of claim 12 wherein said methanotrophic bacteria are Methylosinus trichosporium OB3b.
- 14. A method for preparing a lyophilized preparation of methanotrophic bacteria for use as a biocatalyst comprising:
(a) culturing said methanotrophic bacteria, concentrating the resulting cells, resuspending the concentrated cells, and then chilling the resuspended cells at about 0° C.; (b) freezing the chilled cells to about −50° C. using a shell freezer; (c) further cooling the frozen cells in a liquid nitrogen bath and then freeze drying the resulting cells using a lyophilizer for a period sufficient to obtain a powdered cell preparation; and (d) storing the powdered cell preparation under refrigeration.
- 15. A method for propagating methanotrophic bacteria comprising culturing the bacteria in a liquid medium comprising a major amount of a non-aqueous polar solvent and a minor amount of a known methanotrophic bacterial growth medium.
- 16. The method of claim 15 wherein said methanotrophic bacteria are selected from the group consisting of Methylosinus, Methyloccus, and Methylomonas, and mixtures thereof.
- 17. The method of claim 16 wherein said methanotrophic bacteria are Methylosinus trichosporium OB3b.
- 18. The method of claim 1 wherein said non-polar non-aqueous solvent is a member selected from the group consisting of isooctane, hexane, silicone oil, hexadecane, fluorocarbons, and mixtures thereof.
CONTRACTUAL ORIGIN OF THE INVENTION
[0001] This invention was made with U.S. Government support under Contract No. DE-AC07-94ID13223, now Contract No. DE-AC07-99ID13727 awarded by the U.S. Department of Energy. The U.S. Government has certain rights in the invention.