Claims
- 1. A gas conversion system for removing carbon dioxide from gases comprising:
a duct through which the gases are circulated, the duct having a port for introducing a reaction agent into the duct to the gases; and an electron beam emitter positioned relative to the duct for directing an electron beam into the duct and causing components of the carbon dioxide and the reaction agent to react to remove carbon dioxide from the gases and release oxygen.
- 2. The system of claim 1 in which the carbon dioxide is within air.
- 3. The system of claim 2 further comprising an air circulator for circulating the air.
- 4. The system of claim 3 in which the air is circulated within an enclosed environment.
- 5. The system of claim 1 in which the reaction agent is water.
- 6. The system of claim 1 further comprising a separator for separating solids from the gases which are formed by reaction of the components of the carbon dioxide and the reaction agent.
- 7. An air treatment system for removing carbon dioxide from air comprising:
an air circulator for circulating the air; a duct through which the air is circulated, the duct having a port for introducing a reaction agent into the duct to the air; and an electron beam emitter positioned relative to the duct for directing an electron beam into the duct and causing components of the carbon dioxide and the reaction agent to react to remove carbon dioxide from the air and release oxygen.
- 8. An air circulation system comprising:
a duct through which air is circulated, the duct having a port for introducing a reaction agent into the duct to the air; and an electron beam emitter positioned relative to the duct for directing an electron beam into the duct and causing components of the carbon dioxide and the reaction agent to react to remove carbon dioxide from the air and release oxygen.
- 9. A gas conversion system for removing NOx and SOx from gases comprising:
a duct through which the gases flow, the duct having a port for introducing a reaction agent into the duct to the gases; and first and second electron beam emitters mounted to the duct opposite from each other for directing opposed electron beams into the duct and causing components of the NOX, SOX and reaction agent to react to remove NOX and SOX from the gases.
- 10. The gas conversion system of claim 9 in which the reaction agent is ammonia.
- 11. A treatment system for removing a compound comprising:
a duct through which gases flow, said compound being mixed with the gases, the duct having a port for introducing a reaction agent into the duct to the gases; and first and second electron beam emitters mounted to the duct opposite from each other for directing opposed electron beams into the duct and causing components of the compound and reaction agent to react to remove the compound from the gases.
- 12. An electron beam treatment system comprising:
a duct through which a substance to be treated flows; and first and second electron beam emitters mounted to the duct opposite from each other for directing opposed electron beams into the duct to treat the substance.
- 13. An electron beam treatment system comprising:
an electron beam emitter for generating an electron beam through an exit window; and a reaction chamber mounted to the electron beam emitter for receiving the electron beam from the electron beam emitter, the reaction chamber having a nozzle for directing a substance towards the exit window for treatment and an outlet adjacent to the nozzle for receiving the treated substance.
- 14. A method of forming a gas conversion system for removing carbon dioxide from gases comprising:
providing a duct through which the gases are circulated, the duct having a port for introducing a reaction agent into the duct to the gases; and positioning an electron beam emitter relative to the duct for directing an electron beam into the duct and causing components of the carbon dioxide and the reaction agent to react to remove carbon dioxide from the gases and release oxygen.
- 15. The method of claim 14 in which the carbon dioxide is within air, the method further comprising providing an air circulator for circulating the air.
- 16. The method of claim 15 further comprising employing water as the reaction agent.
- 17. The method of claim 14 further comprising positioning a separator downstream from the electron beam emitter for separating solids from the gases which are formed by reaction of the components of the carbon dioxide and the reaction agent.
- 18. A method of removing carbon dioxide from gases comprising:
introducing a reaction agent to the gases; and treating the reaction agent and the gases with an electron beam, the electron beam causing components of the carbon dioxide and the reaction agent to react to remove carbon dioxide from the gases and release oxygen.
- 19. The method of claim 18 in which the carbon dioxide is within air, the method further comprising circulating the air through the electron beam.
- 20. The method of claim 19 further comprising circulating the air with an air circulator.
- 21. The method of claim 20 further comprising circulating the air within an enclosed environment.
- 22. The method of claim 20 further comprising the step of introducing water as the reaction agent.
- 23. The method of claim 18 further comprising removing solids from the gases which are formed by reaction of the components of the carbon dioxide and the reaction agent.
- 24. A method of removing carbon dioxide from air in an air circulation system comprising:
circulating the air through a duct; introducing a reaction agent to the air; and treating the reaction agent and the air with an electron beam, the electron beam causing components of the carbon dioxide and the reaction agent to react to remove carbon dioxide from the air and release oxygen.
- 25. A method of removing NOX and SOX from gases comprising:
flowing the gases through a duct; introducing a reaction agent to the gases; and treating the reaction agent and the gases with opposed electron beams from first and second electron beam emitters and causing components of the NOX, SOX and reaction agent to react to remove NOX and SOX from the gases, the first and second electron beam emitters being mounted to the duct opposite from each other.
- 26. The method of claim 25 further comprising introducing ammonia as the reaction agent.
- 27. A method of removing a compound comprising:
flowing gases through a duct, said compound being mixed with the gases; introducing a reaction agent to the gases; and treating the reaction agent and the compound with opposed electron beams from first and second electron beam emitters and causing components of the compound and reaction agent to react to remove the compound from the gases.
- 28. A method of treating a substance comprising:
flowing the substance through a duct; and treating the substance with opposed electron beams from first and second electron beam emitters mounted to the duct opposite from each other.
- 29. A method of treating a substance comprising:
directing an electron beam from an electron beam emitter into a reaction chamber; and directing the substance towards the electron beam for treatment with a nozzle and receiving the treated substance with an outlet adjacent to the nozzle.
RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application No. 60/213,358, filed on Jun. 20, 2000, and U.S. Provisional Application No. 60/214,577, filed on Jun. 28, 2000. The entire teachings of the above applications are incorporated herein by reference.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60213358 |
Jun 2000 |
US |
|
60214577 |
Jun 2000 |
US |