IP Library › Granted Patent US 9,186,598
Granted Patent B2
US 9,186,598 · App. 13/674,559 · Granted Nov 17, 2015

Pressurized vapor cycle liquid distillation

Inventors: David F. Bednarek (North Hampton, NH); Jason A. Demers (Manchester, NH); Timothy P. Duggan (Epsom, NH); James L. Jackson (Brookline, NH); Scott A. Leonard (Bedford, NH); David W. McGill (Alpharetta, GA)
Assignee: DEKA Products Limited Partnership
B01D3/00B01D1/221B01D1/28B01D1/289B01D1/2887B01D1/2893B01D3/42B01D5/006B01D5/0015B01D29/01B01D35/12B01D45/08C02F1/041C02F1/048C02F1/16F04C19/002F04C19/004F04C19/008F28D9/005F04C2270/86Y10S203/08Y10S203/21Y10T137/7764Y10T137/7848Y10T137/7903
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Quick Facts
Patent No.
US 9,186,598
App. No.
13/674,559
Granted
Nov 17, 2015
Kind
B2
Abstract

A novel pressurized vapor cycle for distilling liquids. In some embodiments, a liquid purification system is revealed, including the elements of an input for receiving untreated liquid, a vaporizer coupled to the input for transforming the liquid to vapor, a head chamber for collecting the vapor, a vapor pump with an internal drive shaft and an eccentric rotor with a rotatable housing for compressing vapor, and a condenser in communication with the vapor pump for transforming the compressed vapor into a distilled product. Other embodiments are directed toward heat management, and other process enhancements for making the system especially efficient.

Claims (54)

1. A liquid vapor distillation apparatus comprising:

an evaporative condenser for transforming the liquid to a compressed vapor and for transforming the compressed vapor into a product liquid;

a first heat exchanger;

a second heat exchanger; and

a third heat exchanger, the first heat exchanger comprising:

an intake input connected to an intake fluid line, wherein the first heat exchanger is fluidly connected to the second heat exchanger by the intake fluid line;

a first heat source input connected to a first heat source fluid line, the first heat source input connecting the first heat exchanger and the third heat exchanger, wherein the first heat source input is fluidly connected to a blowdown fluid line in the liquid vapor distillation apparatus; and

a second heat source input connected to a second heat source fluid line, wherein the second heat source input is fluidly connected to a product liquid fluid line in the liquid vapor distillation apparatus, whereby multiple heat source inputs are exchanged with the intake liquid.

2. The apparatus of claim 1 wherein at least one of the first and second heat exchangers further comprises a third heat source input fluidly connected to a steam pump drive motor.

3. The apparatus of claim 1 wherein at least one of the first and second heat exchangers further comprises a third heat source input fluidly connected to a Stirling engine generator powering the liquid vapor distillation apparatus.

4. The apparatus of claim 1 wherein at least one of the first and second heat exchangers further comprises a third heat source input fluidly connected to a Stirling engine generator.

5. The apparatus of claim 1 wherein the liquid vapor distillation apparatus further comprising:

an input for receiving untreated input liquid; and

a sump in communication with the input wherein the sump comprises at least one heating element and wherein input liquid is preheated.

6. The apparatus of claim 5 wherein the liquid vapor distillation apparatus further comprising:

a head chamber for collecting vapor from the evaporative condenser; and

a regenerative blower for compressing the vapor, the regenerative blower in communication with the head chamber.

7. The apparatus of claim 6 wherein the liquid vapor distillation apparatus further comprising a switch selected from the group consisting of a thermostatic switch, a pressure-sensing switch, a thermal transducer and a pressure transducer, for signaling completion of the heating phase and turning off the heating element.

8. The apparatus of claim 1 , wherein the first heat exchanger is a multi-channel heat exchanger.

9. The apparatus of claim 8 , wherein the first heat exchanger is a two-channel heat exchanger.

10. The apparatus of claim 8 , wherein the second heat exchanger is a multi-channel heat exchanger.

11. The apparatus of claim 10 , wherein the second heat exchanger is a two-channel heat exchanger.

12. The apparatus of claim 1 , wherein the first heat source input is a first hot water input and the first heat source fluid line is a first hot water fluid line.

13. The apparatus of claim 12 , wherein the second heat source input is a second hot water input and the second heat source fluid line is a second hot water fluid line.

14. A water vapor distillation apparatus comprising:

an input for receiving an untreated input water;

a sump in communication with the input wherein the sump comprising at least one heating element and wherein the input water is preheated;

an evaporative condenser coupled to the sump for transforming the water to a compressed vapor and for transforming the compressed vapor into a product water;

a head chamber for collecting a vapor from the evaporative condenser;

a regenerative blower for compressing the vapor, the regenerative blower in communication with the head chamber;

a first two-channel heat exchanger;

a second two-channel heat exchanger; and

a third two-channel heat exchanger, the first two-channel heat exchanger comprising:

an intake input connected to an intake water fluid line, wherein the first two-channel heat exchanger is fluidly connected to the second two-channel heat exchanger by the intake water fluid line;

a first heat source input connected to a first heat source fluid line, the first heat source input connecting the first two-channel heat exchanger and the third two-channel heat exchanger, wherein the first heat source input is fluidly connected to a blowdown water fluid line in the water vapor distillation apparatus; and

a second heat source input connected to a second heat source fluid line, wherein the second heat source input is fluidly connected to a product water fluid line in the water vapor distillation apparatus, whereby multiple heat source inputs are exchanged with the intake water.

15. The apparatus of claim 14 wherein the water vapor distillation apparatus further comprising a switch selected from the group consisting of a thermostatic switch, a pressure-sensing switch, a thermal transducer and a pressure transducer, for signaling completion of the heating phase and turning off the heating element.

16. The apparatus of claim 14 wherein at least one of the first and second heat exchangers further comprises a third heat source input fluidly connected to a steam pump drive motor.

17. The apparatus of claim 14 wherein at least one of the first and second heat exchangers further comprises a third heat source input fluidly connected to a Stirling engine generator powering the water vapor distillation apparatus.

18. The apparatus of claim 14 wherein at least one of the first and second heat exchanger further comprises a third heat source input fluidly connected to a Stirling engine generator.

19. A water vapor distillation apparatus comprising:

an input for receiving an untreated input water;

a sump in communication with the input;

an evaporative condenser coupled to the sump for transforming the water to a compressed vapor and for transforming the compressed vapor into a product water;

a regenerative blower for compressing the vapor, the regenerative blower in communication with the head chamber;

a first two-channel heat exchanger;

a second two-channel heat exchanger; and

a third two-channel heat exchanger, the first heat exchanger comprising:

an intake input connected to the input, wherein the first heat exchanger is fluidly connected to the second heat exchanger by the input;

a first heat source input connected to a first heat source fluid line, the first heat source input connecting the first two-channel heat exchanger and the third two-channel heat exchanger, wherein the first heat source input is fluidly connected to a blowdown water fluid line in the water vapor distillation apparatus; and

a second heat source input connected to a second heat source fluid line, wherein the second heat source input is fluidly connected to a product water fluid line in the water vapor distillation apparatus, whereby multiple heat source inputs are exchanged with the untreated input water.

20. The apparatus of claim 19 wherein at least one of the first and second the heat exchangers further comprises a third heat source input fluidly connected to a steam pump drive motor.

21. The apparatus of claim 19 wherein at least one of the first and second heat exchangers further comprises a third heat source input fluidly connected to a Stirling engine generator powering the water vapor distillation apparatus.

22. The apparatus of claim 19 wherein at least one of the first and second heat exchangers further comprises a third heat source input fluidly connected to a Stirling engine generator.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2013
From: DUGGAN, TIMOTHY P.
To: DEKA PRODUCTS LIMITED PARTNERSHIP
Reel/Frame 031417/0886 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2013
From: MCGILL, DAVID W.
To: DEKA PRODUCTS LIMITED PARTNERSHIP
Reel/Frame 031418/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2013
From: BEDNAREK, DAVID F.
To: DEKA PRODUCTS LIMITED PARTNERSHIP
Reel/Frame 031418/0025 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2013
From: LEONARD, SCOTT A.
To: DEKA PRODUCTS LIMITED PARTNERSHIP
Reel/Frame 031418/0075 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2013
From: JACKSON, JAMES L.
To: DEKA PRODUCTS LIMITED PARTNERSHIP
Reel/Frame 031418/0121 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2013
From: DEMERS, JASON A.
To: DEKA PRODUCTS LIMITED PARTNERSHIP
Reel/Frame 031418/0163 →
Continuity (6)
Continuation 11927823 · Oct 30, 2007
Division 10713617 · Nov 13, 2003
Provisional Application 60425820 · Nov 13, 2002
Provisional Application 60490615 · Jul 28, 2003
Provisional Application 60518782 · Nov 10, 2003
Related Publication 20130292241A1 · Nov 7, 2013