Claims
- 1. A ballast-water treatment system comprising:
an ozone generator operated by a supply of voltage; a voltage controller to regulate the supply of voltage provided to the ozone generator; and an ozone-transport system for conveying ozone from the ozone generator to a ballast tank.
- 2. The ballast-water treatment system as recited in claim 1 wherein the ozone generator comprises a plurality of ozone generation electrodes, each such ozone generation electrode being configured to use a corona discharge to convert a supply of O2-containing gas into an ozone-containing gas.
- 3. The ballast-water treatment system as recited in claim 2 wherein the plurality of ozone generation electrodes are grouped as electrode banks, each such electrode bank including a plurality of ozone generation electrodes and wherein the voltage controller includes a plurality of transformers, each such transformer connected with one of such electrode banks.
- 4. The ballast-water treatment system as recited in claim 1 farther comprising a pressure generation system configured to regulate a flow pressure such that the flow pressure is substantially ambient at an exit end of the ozone generator and has a positive pressure when reaching the ballast tank.
- 5. The ballast-water treatment system as recited in claim 4 wherein the positive pressure exceeds 20 PSI.
- 6. The ballast-water treatment system as recited in claim 4 wherein the positive pressure exceeds 35 PSI.
- 7. The ballast-water treatment system as recited in claim 4 wherein the pressure generation system comprises a plurality of pump sets connected in parallel, each such pump set including a plurality of pumps connected in series.
- 8. The ballast-water treatment system as recited in claim 7 wherein the pressure generation system further includes a cooling subsystem.
- 9. The ballast-water treatment system as recited in claim 8 wherein the cooling subsystem is a liquid cooling subsystem.
- 10. A ballast-water treatment system comprising:
an ozone generator operated by a supply of voltage; an ozone transport system for conveying ozone from the ozone generator to a ballast tank; and a pressure generation system configured to regulate a flow pressure such that the flow pressure is substantially ambient at an exit end of the ozone generator and has a positive pressure when reaching the ballast tank.
- 11. The ballast-water treatment system as recited in claim 10 wherein the positive pressure exceeds 20 PSI.
- 12. The ballast-water treatment system as recited in claim 10 wherein the positive pressure exceeds 35 PSI.
- 13. The ballast-water treatment system as recited in claim 10 wherein the pressure generation comprises a plurality of pump sets connected in parallel, each such pump set including a plurality of pumps connected in series.
- 14. The ballast-water treatment system as recited in claim 13 wherein the pressure generation system further includes a cooling subsystem.
- 15. The ballast-water treatment system as recited in claim 14 wherein the cooling subsystem is a liquid cooling subsystem.
- 16. A method for purifying ballast water, the method comprising:
providing a supply of voltage to an ozone generator to generate a flow of ozone-containing gas; regulating the supply of voltage provided to the ozone generator; and transporting the flow of ozone-containing gas from the ozone generator to a ballast tank.
- 17. The method recited in claim 16 further comprising regulating a flow pressure of the ozone-containing gas such that the flow pressure is substantially ambient at an exit end of the ozone generator and has a positive pressure when reaching the ballast tank.
- 18. The method recited in claim 17 wherein regulating a pressure of the flow of ozone comprises directing the flow of ozone through a plurality of pump sets connected in parallel, each such pump set including a plurality of pumps connected in series.
- 19. The method recited in claim 16 further comprising maintaining a temperature of the flow of ozone-containing gas below 105° F.
- 20. A method for purifying ballast water, the method comprising:
providing a supply of voltage to an ozone generator to generate a flow of ozone-containing gas; transporting the flow of ozone-containing gas from the ozone generator to a ballast tank; and regulating a flow pressure of the ozone-containing gas such that the flow pressure is substantially ambient at an exit end of the ozone generator and has a positive pressure when reaching the ballast tank.
- 21. The method recited in claim 20 wherein regulating a pressure of the flow of ozone comprises directing the flow of ozone through a plurality of pump sets connected in parallel, each such pump set including a plurality of pumps connected in series.
- 22. The method recited in claim 20 further comprising maintaining a temperature of the flow of ozone-containing gas below 105° F.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Application Serial No. 60/250,872, filed Dec. 1, 2000, the disclosure of which is incorporated herein by reference in its entirety for all purposes.
Provisional Applications (1)
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Number |
Date |
Country |
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60250872 |
Dec 2000 |
US |