IP Library Granted Patent US 9,834,454
Granted Patent B2
US 9,834,454 · App. 13/693,932 · Granted Dec 5, 2017

Hybrid solar desalination system

Inventors: Sergey Frolov (Murray Hill, NJ); Michael Cyrus (Summit, NJ); Allan James Bruce (Scotch Plains, NJ)
Assignee: Sunlight Photonics Inc.
C02F1/14B01D1/0047B01D1/14B01D3/007B01D3/16B01D3/343B01D5/0027C02F2103/08Y02W10/37
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Quick Facts
Patent No.
US 9,834,454
App. No.
13/693,932
Granted
Dec 5, 2017
Kind
B2
Abstract

A hydro-thermal exchange unit (HTEU) for desalinating feed water in accordance with a humidification-dehumidification includes feed water, fresh water and gas conduit circuits for transporting feed water, fresh water, and gas, respectively. The unit also includes an evaporator through which a portion of the feed water conduit and the gas conduit pass. The evaporator causes evaporation of a portion of the feed water to produce vapor that is transported through the gas conduit. The unit also includes a condenser through which a portion of the gas conduit and the fresh water conduit pass. The condenser has input and output ports for coupling the gas and fresh water conduit circuits. The condenser extracts moisture from the vapor transported therethrough by the gas conduit. The extracted moisture is discharged through the fresh water conduit. The unit also includes a heat exchanger through which a portion of the fresh water conduit and the feed water conduit pass to thereby extract residual heat from the fresh water such that the residual heat heats the feed water.

Claims (30)

1. A desalination system, comprising:

a plurality of serially coupled Hydro-Thermal Exchange Units (HTEUs) for desalinating saline feed water in accordance with a humidification-dehumidification process, said plurality of HTEUs including an upstream-most HTEU and a downstream-most HTEU, each of the HTEUs including:

saline feed water, fresh water and gas conduit circuits for transporting saline feed water, fresh water, and gas, respectively;

an evaporator through which a portion of the saline feed water conduit circuit and the gas conduit circuit pass,

said evaporator causing evaporation of a portion of the saline feed water in the saline feed water conduit circuit to produce vapor that is transported through the gas conduit circuit;

a solar collector arranged to supply solar energy to a portion of the fresh water conduit circuit for heating the fresh water therein;

a condenser through which a portion of the gas conduit circuit and the fresh water conduit circuit pass, said condenser having input and output ports for coupling said gas and fresh water conduit circuits;

said condenser extracting moisture from the vapor transported therethrough by the gas conduit circuit, wherein the extracted moisture is discharged through the fresh water conduit circuit; and

a heat exchanger through which a portion of the fresh water conduit circuit and the saline feed water conduit circuit pass to thereby extract residual heat from the fresh water such that the residual heat heats said portion of the saline feed water that subsequently passes through the evaporator.

2. The desalination system of claim 1 , wherein the gas conduit circuit is a closed loop circuit.

3. The desalination system of claim 1 , wherein the fresh water conduit circuit is a partially closed looped circuit.

4. The desalination system of claim 1 , wherein the fresh water conduit circuit further comprises a splitter unit for discharging excess fresh water.

5. The desalination system of claim 1 , further comprising a heating unit for heating feed water in the saline feed water conduit circuit prior to entering the evaporator.

6. The desalination system of claim 1 , wherein the evaporator, condenser and heat exchanger are configured in a closed star configuration.

7. The desalination system of claim 1 , wherein the evaporator, condenser and heat exchanger are configured in an open star configuration.

8. The desalination system of claim 7 , wherein each HTEU in the desalination system further comprises a second heat exchanger for extracting residual heat from outgoing feed water and outgoing fresh water such that the residual heat heats incoming feed water.

9. The desalination system of claim 1 further comprising a heating unit for heating a portion of the feed water received from the downstream-most HTEU, wherein the heating unit has a feed water output conduit connected to an input feed water conduit of the evaporator of the upstream-most HTEU.

10. The desalination system of claim 9 wherein the heating unit includes a solar collector.

11. The desalination system of claim 10 wherein the solar collector is a flat-plate collector.

12. The desalination system of claim 9 wherein the heating unit includes a photovoltaic module.

13. The desalination system of claim 9 wherein the heating unit includes an evacuated tube collector.

14. The desalination system of claim 1 wherein the gas transported by the gas conduit circuit is selected from the group consisting of argon, nitrogen and carbon dioxide.

15. A desalination system, comprising:

a hydro-thermal exchange unit (HTEU) for desalinating feed water in accordance with a humidification-dehumidification process, said HTEU including:

feed water, fresh water and gas conduit circuits for transporting feed water, fresh water, and gas, respectively;

an evaporator through which a portion of the feed water conduit circuit and the gas conduit circuit pass, said evaporator causing evaporation of a portion of the feed water to produce vapor that is transported through the gas conduit circuit;

a condenser through which a portion of the gas conduit circuit and the fresh water conduit circuit pass, said condenser extracting moisture from the vapor transported therethrough by the gas conduit circuit, wherein the extracted moisture is discharged through the fresh water conduit circuit;

a thermal energy source which provides thermal energy to the fresh water in the fresh water conduit circuit; and

a heat exchanger through which a portion of the fresh water conduit circuit and the feed water conduit circuit pass to thereby extract residual heat from the fresh water such that the residual heat heats said portion of the feed water that subsequently passes through the evaporator, the thermal energy source heating the fresh water prior to the fresh water passing through the heat exchanger.

16. The desalination system of claim 15 , wherein the thermal energy source includes a solar collector.

Assignments (7)
CHANGE OF NAME Recorded May 17, 2019
From: SUNLIGHT PHOTONICS INC.
To: SUNLIGHT AEROSPACE INC.
Reel/Frame 049217/0818 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 2, 2017
From: FROLOV, SERGEY; CYRUS, MICHAEL; BRUCE, ALLAN JAMES
To: SUNLIGHT PHOTONICS INC.
Reel/Frame 044017/0248 →
CORRECTIVE ASSIGNMENT TO CORRECT THE INCORRECT SERIAL NO. 13/856,592 PREVIOUSLY RECORDED AT REEL: 034961 FRAME: 0933. ASSIGNOR(S) HEREBY CONFIRMS THE RELEASE OF SECURITY INTEREST. Recorded Feb 26, 2015
From: VENEARTH FUND, LLC
To: SUNLIGHT PHOTONICS INC.
Reel/Frame 035110/0526 →
RELEASE OF SECURITY INTEREST Recorded Feb 13, 2015
From: VENEARTH FUND, LLC
To: SUNLIGHT PHOTONICS INC.
Reel/Frame 034961/0933 →
AMENDMENT NO. 5 TO PATENT AND TRADEMARK SECURITY AGREEMENT Recorded Jan 17, 2014
From: SUNLIGHT PHOTONICS INC.
To: VENEARTH FUND, LLC
Reel/Frame 032087/0659 →
AMENDMENT NO. 4 TO PATENT AND TRADEMARK SECURITY AGREEMENT Recorded Jul 29, 2013
From: SUNLIGHT PHOTONICS INC.
To: VENEARTH FUND, LLC
Reel/Frame 030918/0922 →
AMENDMENT NO. 3 TO PATENT AND TRADEMARK SECURITY AGREEMENT Recorded Feb 22, 2013
From: SUNLIGHT PHOTONICS INC.
To: VENEARTH FUND, LLC
Reel/Frame 029855/0507 →
Continuity (2)
Continuation 12770892 · Apr 30, 2010
Related Publication 20130118887A1 · May 16, 2013