Claims
- 1. A system to regenerate ion exchange resin, comprising:
a first vessel comprising an ion exchange resin, at least one inlet, at least one outlet, and an interface sensor positioned to determine the ion exchange resin height; and a second vessel comprising at least one inlet fluidly connected to at least one outlet of the first vessel, and at least one outlet fluidly connected to at least one of the inlet of the first vessel and a water treatment system.
- 2. The system to regenerate ion exchange resin of claim 1, wherein the ion exchange resin comprises a cation resin and an anion resin.
- 3. The system to regenerate ion exchange resin of claim 2, wherein the at least one outlet of the first vessel comprises a cation resin outlet.
- 4. The system to regenerate ion exchange resin of claim 3, wherein the cation resin outlet is fluidly connected to at least one inlet of the second vessel.
- 5. The system to regenerate ion exchange resin of claim 2, wherein the at least one outlet of the first vessel comprises an anion resin outlet.
- 6. The system to regenerate ion exchange resin of claim 5, wherein the anion resin outlet is fluidly connected to at least one inlet of the second vessel.
- 7. The system to regenerate ion exchange resin of claim 1, wherein the at least one inlet of the first vessel comprises a mixed resin inlet.
- 8. The system to regenerate ion exchange resin of claim 1, wherein the at least one inlet of the first vessel comprises a resin-fluidizing fluid inlet.
- 9. The system to regenerate ion exchange resin of claim 1, wherein the interface sensor is connected to at least one of a valve and a pump.
- 10. The system to regenerate ion exchange resin of claim 1, wherein the interface sensor is connected to a control system that controls a resin flow.
- 11. The system to regenerate ion exchange resin of claim 1, wherein the interface sensor controls a fluid flow through at least one outlet of the first vessel.
- 12. The system to regenerate ion exchange resin of claim 1, wherein the interface sensor controls a fluid flow through at least one inlet of the first vessel.
- 13. The system to regenerate ion exchange resin of claim 1, wherein the interface sensor controls a fluid flow through at least one inlet of the second vessel.
- 14. The system to regenerate ion exchange resin of claim 1, wherein the second vessel further comprises a first regenerant fluid inlet and a second regenerant fluid inlet.
- 15. A system to purify a fluid, comprising:
a first vessel comprising an ion exchange resin, at least one inlet, at least one outlet, and an interface sensor positioned to determine the ion exchange resin height; a second vessel comprising at least one inlet fluidly connected to at least one outlet of the first vessel, and at least one outlet; and a third vessel comprising at least one inlet fluidly connected to at least one outlet of the second vessel.
- 16. The system to purify a fluid of claim 15, wherein the ion exchange resin comprises a cation resin and an anion resin.
- 17. The system to purify a fluid of claim 16, wherein the at least one outlet of the first vessel comprises a cation resin outlet.
- 18. The system to purify a fluid of claim 16, wherein the at least one outlet of the first vessel comprises an anion resin outlet.
- 19. The system to purify a fluid of claim 15, wherein the interface sensor is connected to at least one of a valve and a pump.
- 20. The system to purify a fluid of claim 15, wherein the interface sensor is connected to a control system that controls a resin flow.
- 21. The system to purify a fluid of claim 15, wherein the interface sensor controls a fluid flow through at least one outlet of the first vessel.
- 22. The system to purify a fluid of claim 15, wherein the interface sensor controls a fluid flow through at least one inlet of the first vessel.
- 23. The system to purify a fluid of claim 15, wherein at least one outlet of the second vessel is fluidly connected to at least one inlet of the first vessel.
- 24. The system to purify a fluid of claim 15, wherein the second vessel further comprises a first regenerant fluid inlet and a second regenerant fluid inlet.
- 25. The system to purify a fluid of claim 15, wherein the third vessel further comprises at least one outlet fluidly connected to at least one inlet of the first vessel.
- 26. The system to purify a fluid of claim 15, wherein the third vessel is fluidly connected to a point of entry and a point of use.
- 27. A method to regenerate a spent ion exchange resin mixture, comprising:
providing a first vessel and a second vessel; providing a spent ion exchange resin mixture in the first vessel; separating the spent ion exchange resin mixture in the first vessel into a first spent resin and a second spent resin; transferring the first spent resin to the second vessel; regenerating the first spent resin in the second vessel to produce a first regenerated resin; transferring the first regenerated resin to the first vessel; transferring the second spent resin to the second vessel; and regenerating the second spent resin in the second vessel to produce a second regenerated resin.
- 28. The method to regenerate a spent ion exchange resin mixture of claim 27, wherein the step of separating the spent ion exchange resin mixture comprises separating the spent ion exchange resin mixture into a first spent resin having a degree of separation greater than about 99% and a second spent resin having a degree of separation greater than about 99%.
- 29. The method to regenerate a spent ion exchange resin mixture of claim 27, further comprising the step of transferring the first regenerated resin to the second vessel after the step of regenerating the second spent resin in the second vessel.
- 30. The method to regenerate a spent ion exchange resin mixture of claim 29, further comprising the step of mixing the first regenerated resin and the second regenerated resin together to form a regenerated ion exchange resin mixture.
- 31. The method to regenerate a spent ion exchange resin mixture of claim 27, wherein the step of transferring the second spent resin to the second vessel comprises transferring the se con d spent resin to t he second vessel until a predetermined volume has been measured.
- 32. A method to regenerate a spent ion exchange resin mixture, comprising:
providing a first vessel, a second vessel, and a third vessel; providing a spent ion exchange resin mixture in the third vessel; transferring the spent ion exchange resin mixture from the third vessel to the first vessel; separating the spent ion exchange resin mixture in the first vessel into a first spent resin and a second spent resin; transferring the first spent resin to the second vessel; regenerating the first spent resin in the second vessel to produce a first regenerated resin; transferring the first regenerated resin to the first vessel; transferring the second spent resin to the second vessel; and regenerating the second spent resin in the second vessel to produce a second regenerated resin.
- 33. The method to regenerate a spent ion exchange resin mixture of claim 31, wherein the step of separating the spent ion exchange resin mixture comprises separating the spent ion exchange resin mixture into a first spent resin having a degree of separation greater than about 99% and a second spent resin having a degree of separation greater than about 99%.
- 34. The method to regenerate a spent ion exchange resin mixture of claim 32, further comprising the step of transferring the first regenerated resin to the second vessel after the step of regenerating the second spent resin in the second vessel.
- 35. The method to regenerate a spent ion exchange resin mixture of claim 34, further comprising the step of mixing the first regenerated resin and the second regenerated resin together to form a regenerated ion exchange resin mixture.
- 36. The method to regenerate a spent ion exchange resin mixture of claim 35, further comprising the step of transferring the regenerated ion exchange resin mixture to the third vessel.
- 37. The method to regenerate a spent ion exchange resin mixture of claim 32, wherein the step of transferring the second spent resin to the second vessel comprises transferring the second spent resin to the second vessel until a predetermined volume has been measured.
- 38. The method to regenerate a spent ion exchange resin mixture of claim 32, further comprising the step of providing a second regenerated ion exchange resin mixture in the second vessel.
- 39. The method to regenerate a spent ion exchange resin mixture of claim 38, further comprising the step of transferring the second regenerated ion exchange resin mixture to the third vessel.
- 40. The method to regenerate a spent ion exchange resin mixture of claim 39, further comprising the step of passing a fluid across the second regenerated ion exchange resin simultaneously with the step of regenerating the first resin in the second vessel.
- 41. The method to regenerate a spent ion exchange resin mixture of claim 39, further comprising the step of passing a fluid across the second regenerated ion exchange resin simultaneously with the step of regenerating the second resin in the second vessel.
RELATED APPLICATIONS
[0001] This non-provisional application claims the benefit under Title 35, U.S. C. §119(e) of co-pending U.S. provisional application serial No. 60/234,896, filed Sep. 25, 2000, incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60234896 |
Sep 2000 |
US |