Multi-purpose renewable fuel for isolating contaminants and storing energy
View Patent ↗Techniques, systems, apparatus and material are disclosed for generating multi-purpose H 2 -dense fuel for isolating contaminants and storing energy. In one aspect, a method of producing a renewable multi-purpose biomaterial for isolating a hazardous contaminant from an environment and storing energy includes dissociating biomass waste using a thermochemical reaction to produce at least one of hydrocarbon and alcohol by applying waste heat recovered from an external heat source. The method includes dissociating the at least one of hydrocarbon and alcohol to generate carbon and hydrogen. Carbon dioxide emitted from an industrial process is harvested and reacted with the hydrogen to generate the hydrogen-dense fuel. A hazardous contaminant is dissolved in the hydrogen-dense fuel operating as a solvent to generate a liquid mixture that isolates the hazardous contaminant from the environment. The hazardous contaminant includes at least one of a carbon donor and a hydrogen donor.
1. An energy-dense liquid mixture that reduces vapor pressure or availability of vapor pressure of a previously hazardous contaminant, the liquid mixture produced by a method comprising:
dissociating biomass waste using an aerobic reaction to produce hydrogen and at least one of hydrocarbon and alcohol by applying waste heat recovered from an external heat source;
dissociating the at least one of hydrocarbon and alcohol to generate carbon and hydrogen;
harvesting carbon dioxide emitted from an industrial process;
reacting the harvested carbon dioxide with hydrogen from dissociating the biomass waste and from dissociating the at least one of hydrocarbon and alcohol to generate a hydrogen-dense fuel; and
dissolving a hazardous contaminant in the hydrogen-dense fuel with the hydrogen-dense fuel operating as a solvent, the hazardous contaminant comprising at least one of a carbon donor and a hydrogen donor.
2. The energy-dense liquid mixture of claim 1 , wherein dissociating the biomass waste comprises producing one or more carbon donors in addition to the hydrogen and at least one of hydrocarbon and alcohol.
3. The energy-dense liquid mixture of claim 2 , wherein the method comprises reacting the one or more carbon donors with the hydrogen produced from the biomass waste to generate hydrogen-dense alcohol.
4. The energy-dense liquid mixture of claim 3 , wherein the method comprises reacting the one or more carbon donors with water to generate additional alcohol.
5. The energy-dense liquid mixture of claim 1 , wherein the hydrocarbon comprises methane, and the alcohol comprises methanol.
6. The energy-dense liquid mixture of claim 1 , wherein the method further comprises filtering at least one of a halogen and a carcinogen from the hazardous contaminant.
7. An energy-dense liquid mixture that reduces vapor pressure or availability of vapor pressure of a previously hazardous contaminant, the liquid mixture produced by a method comprising:
dissociating biomass waste using an aerobic reaction to produce at least one of hydrocarbon and alcohol by applying waste heat recovered from an external heat source;
dissociating the at least one of hydrocarbon and alcohol to generate carbon and hydrogen;
harvesting carbon dioxide emitted from an industrial process;
reacting the harvested carbon dioxide with the hydrogen to generate a hydrogen-dense fuel; and
dissolving a hazardous contaminant in the hydrogen-dense fuel with the hydrogen-dense fuel operating as a solvent, the hazardous contaminant comprising at least one of colloidal carbon, fat, carbohydrate, sugar, rejected waste material from a polymer plant, carbon dioxide from exhaust of an industrial process, dust from coal, dust from grain, dust from polymer processing, and distilled solids from ethanol plant waste stream.
8. The energy-dense liquid mixture of claim 7 , wherein dissociating the biomass waste comprises producing hydrogen in addition to the at least one of hydrocarbon and alcohol.
9. The energy-dense liquid mixture of claim 8 , wherein dissociating the biomass waste comprises producing one or more carbon donors in addition to the hydrogen and at least one of hydrocarbon and alcohol.
10. The energy-dense liquid mixture of claim 9 , wherein the method comprises reacting the one or more carbon donors with the hydrogen produced from the biomass waste to generate hydrogen-dense alcohol.
11. The energy-dense liquid mixture of claim 10 , wherein the method comprises reacting the one or more carbon donors with water to generate additional alcohol.
12. The energy-dense liquid mixture of claim 7 , wherein the hydrocarbon comprises methane, and the alcohol comprises methanol.
13. The energy-dense liquid mixture of claim 7 , wherein the method further comprises filtering at least one of a halogen and a carcinogen from the hazardous contaminant.
14. An energy-dense liquid mixture that reduces vapor pressure or availability of vapor pressure of a previously hazardous contaminant, the liquid mixture produced by a method comprising:
dissociating biomass waste using an aerobic reaction to produce at least one of hydrocarbon and alcohol by applying waste heat recovered from an external heat source;
dissociating the at least one of hydrocarbon and alcohol to generate carbon and hydrogen;
harvesting carbon dioxide emitted from an industrial process;
reacting the harvested carbon dioxide with the hydrogen to generate a hydrogen-dense fuel;
filtering at least one of a halogen and a carcinogen from a hazardous contaminant; and
dissolving the hazardous contaminant in the hydrogen-dense fuel with the hydrogen-dense fuel operating as a solvent, the hazardous contaminant comprising at least one of a carbon donor and a hydrogen donor.
15. The energy-dense liquid mixture of claim 14 , wherein dissociating the biomass waste comprises producing hydrogen in addition to the at least one of hydrocarbon and alcohol.
16. The energy-dense liquid mixture of claim 15 , wherein dissociating the biomass waste comprises producing one or more carbon donors in addition to the hydrogen and at least one of hydrocarbon and alcohol.
17. The energy-dense liquid mixture of claim 16 , wherein the method comprises reacting the one or more carbon donors with the hydrogen produced from the biomass waste to generate hydrogen-dense alcohol.
18. The energy-dense liquid mixture of claim 17 , wherein the method comprises reacting the one or more carbon donors with water to generate additional alcohol.
19. The energy-dense liquid mixture of claim 14 , wherein the hydrocarbon comprises methane, and the alcohol comprises methanol.
20. The energy-dense liquid mixture of claim 14 , wherein the hazardous contaminant comprises at least one of colloidal carbon, fat, carbohydrate, sugar, rejected waste material from a polymer plant, carbon dioxide from exhaust of an industrial process, dust from coal, dust from grain, dust from polymer processing, and distilled solids from ethanol plant waste stream.