Biological/Electrolytic Conversion of Biomass to Hydrocarbons
Abstract
Hydrocarbon and hydrogen fuels and other products may be produced by a process employing a combination of fermentation and electrochemical stages. In the process, a biomass contained within a fermentation medium is fermented with an inoculum comprising a mixed culture of microorganisms derived the rumen contents of a rumen-containing animal. This inoculated medium is incubated under anaerobic conditions and for a sufficient time to produce volatile fatty acids. The resultant volatile fatty acids are then subjected to electrolysis under conditions effective to convert said volatile fatty acids to hydrocarbons and hydrogen simultaneously. The process can convert a wide range of biomass materials to a wide range of volatile fatty acid chain lengths and can convert these into a wide range of biobased fuels and biobased products.
Claims
exact text as granted — not AI-modified1 . A method for producing hydrocarbon and hydrogen fuels comprising:
a. fermenting a biomass material containing fermentation medium with an inoculum comprising a mixed culture of microorganisms derived from the rumen contents of a rumen-containing animal and incubating under anaerobic conditions and for a sufficient time to produce volatile fatty acids in said medium; b. subjecting said volatile fatty acids or their salts to electrolysis under conditions effective to convert said volatile fatty acids or their salts to hydrocarbons and hydrogen; and
further comprising concentrating said volatile fatty acids in said medium prior to said electrolysis, wherein said concentrating comprises distillation, filtration, or capacitive deionization.
2 . The method of claim 1 wherein said volatile fatty acids comprise C-2 to C-6 straight or branched chain fatty acids or salts thereof.
3 . The method of claim 2 wherein said volatile fatty acids comprise acetic acid, propionic acid, butyric acid, isobutyric acid, 2-methyl butyric acid, valeric acid, isovaleric acid, caproic acid or salts thereof.
4 . The method of claim 1 wherein said hydrocarbons comprise alkanes, alkenes, dienes, trienes or mixtures thereof.
5 . The method of claim 4 wherein said hydrocarbons comprise methane, ethane, propane, butane, pentane, hexane, heptane, octane, ethylene, propylene, butene, pentene, or isomers or mixtures thereof.
6 . The method of claim 1 wherein said fermenting is conducted without the addition of a significant amount of methane production inhibitors.
7 . The method of claim 1 wherein said time is between 1 to 4 days.
8 . The method of claim 7 wherein said time is between 2 to 3 days.
9 . The method of claim 1 wherein said biomass comprises a cellulosic biomass.
10 . The method of claim 1 wherein said biomass is selected from the group consisting of plants, plant parts, plant materials, agricultural crops, forages, grasses, aquatic plants, bagasse, corn stover, corn cobs, dried distillers grains, hay, flax straw, oat hulls, wood, sawdust, paper products, paper processing wastes, cardboard, yard or landscape waste, animal wastes, animal processing wastes, animal carcasses, and spent sausage casings.
11 . The method of claim 1 wherein said fermentation medium further comprises a glycol or alcohol.
12 . The method of claim 1 wherein said fermentation medium further comprises one or more C-8 to C-22 fatty acids, and said electrolysis converts said fatty acids or their salts to hydrocarbons and hydrogen.
13 . The method of claim 1 wherein said biomass is not subjected to chemical or enzymatic pretreatment prior to said fermenting which pretreatment would be effective to substantially increase the availability of fermentable substrates in the biomass to said microorganisms.
14 . The method of claim 1 wherein said mixed culture of microorganisms derived from the rumen contents are produced by adaptation to anaerobic growth in a biomass-containing fermentation medium.
15 . The method of claim 1 wherein said inoculum further comprises a supplemental inoculum selected from the group consisting of Clostridium kluyveri, Clostridium butyricum, Clostridium tyrobutyricum, Butyrvibrio fibrisolvens , a mixed culture of microorganisms derived from the rumen, sewage sludge, landfills, soil or aquatic environments, a mixed culture of microorganisms derived from the gut of insects, and mixtures thereof.
16 . The method of claim 1 further comprising a contacting said medium containing said volatile fatty acids with a second inoculum selected from the group consisting of Clostridium kluyveri, Clostridium butyricum, Clostridium tyrobutyricum, Butyrvibrio fibrisolvens , a mixed culture of microorganisms derived from the rumen, sewage sludge, landfills, soil or aquatic environments, a mixed culture of microorganisms derived from the gut of insects, and mixtures thereof, and incubating under anaerobic conditions and for a sufficient time to further increase the production of, or change the molar proportions of, volatile fatty acids in said medium.
17 . The method of claim 1 further comprising removing one or more of cells of said microorganisms, lignin-containing residues, or carbonates or other non-carboxylate anions from said medium prior to said electrolysis.
18 . The method of claim 17 wherein said cells, lignin-containing residues, or carbonates or other non-carboxylate anions are removed by filtration, flocculation, settling, centrifugation, precipitation or combinations thereof.
19 - 41 . (canceled)
42 . A method for producing hydrocarbon and hydrogen fuels comprising:
a. fermenting a biomass material containing fermentation medium with an inoculum comprising a mixed culture of microorganisms derived from the rumen contents of a rumen-containing animal and incubating under anaerobic conditions and for a sufficient time to produce volatile fatty acids in said medium; b. subjecting said volatile fatty acids or their salts to electrolysis under conditions effective to convert said volatile fatty acids or their salts to hydrocarbons and hydrogen; and
further comprising extracting said volatile fatty acids from said medium prior to said electrolysis, wherein said extracting comprises a liquid-liquid extraction of said medium with an alcohol followed by addition of salt.
43 . A method for producing hydrocarbon and hydrogen fuels comprising:
a. fermenting a biomass material containing fermentation medium with an inoculum comprising a mixed culture of microorganisms derived from the rumen contents of a rumen-containing animal and incubating under anaerobic conditions and for a sufficient time to produce volatile fatty acids in said medium; b. subjecting said volatile fatty acids or their salts to electrolysis under conditions effective to convert said volatile fatty acids or their salts to hydrocarbons and hydrogen;
further comprising adding glycerol to said fermentation medium to increase the production of propionic acid during said fermenting.
44 . A method for producing hydrocarbon and hydrogen fuels comprising:
a. fermenting a biomass material containing fermentation medium with an inoculum comprising a mixed culture of microorganisms derived from the rumen contents of a rumen-containing animal and incubating under anaerobic conditions and for a sufficient time to produce volatile fatty acids in said medium; b. subjecting said volatile fatty acids or their salts to electrolysis under conditions effective to convert said volatile fatty acids or their salts to hydrocarbons and hydrogen; and
further comprising adding one or more C-8 to C-22 fatty acids or their salts to said fermentation medium, and said electrolysis converts said fatty acids or their salts to hydrocarbons and hydrogen.
45 . A method for producing hydrocarbon and hydrogen fuels comprising:
a. fermenting a biomass material containing fermentation medium with an inoculum comprising a mixed culture of microorganisms derived from the rumen contents of a rumen-containing animal and incubating under anaerobic conditions and for a sufficient time to produce volatile fatty acids in said medium; b. subjecting said volatile fatty acids or their salts to electrolysis under conditions effective to convert said volatile fatty acids or their salts to hydrocarbons and hydrogen;
wherein said electrolysis is conducted using carbon or graphite anode electrodes.Join the waitlist — get patent alerts
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