IP Library › Granted Patent US 11,235,985
Granted Patent B2
US 11,235,985 · App. 16/960,689 · Granted Feb 1, 2022

Method for obtaining distillate from non-potable water as well as a device for obtaining distillate from non-potable water

Inventors: Jiajun Cen (Zwolle, NL); Wilhelmus Franciscus Johannes Janssen (Maastricht, NL); Leon Awerbuch (Winchester, MA)
Assignee: DESOLENATOR B.V.
C02F1/14B01D1/0035B01D1/0082B01D1/28B01D3/06B01D3/146C02F1/008C02F1/041C02F1/06H02S40/38H02S40/44C02F2103/08C02F2201/009
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Quick Facts
Patent No.
US 11,235,985
App. No.
16/960,689
Granted
Feb 1, 2022
Kind
B2
Abstract

The present disclosure relates to a method and device for obtaining distillate from non-potable water. The method comprises the steps of utilizing solar power from a solar power system to produce electricity and steam, utilizing the electricity and the steam in a water treatment device to convert the non-potable water into distillate and concentrate, transporting at least a part of the distillate to consumers for use. The method and device provide multiple effect distillation (MED) combined with vapour compression (VC) being able to work 24 hours a day only on solar energy.

Claims (36)

1. A method for obtaining distillate from non-potable water comprising the following steps:

utilizing solar power from a solar power system to produce electricity and heated water,

converting the heated water into steam,

utilizing at least the steam in a water treatment device to convert the non-potable water into distillate and concentrate,

transporting a part of the distillate to consumers for use,

transporting a second part of the distillate generated in the water treatment device to a first distillate storage tank,

transporting the second part of the distillate generated in the water treatment device from the first distillate storage tank to the solar power system,

the solar power system comprises photovoltaic panels to generate electricity from solar power, whereby solar thermal energy is being used to heat the second part of the distillate being transported from the first distillate storage tank along the heated photovoltaic panels, while the photovoltaic panels are being cooled through heat transfer from the photovoltaic panels to the second part of the distillate,

transporting the heated second part of the distillate from the solar power system to a second distillate storage tank,

transporting the heated second part of the distillate from the second distillate storage tank to a steam generator for generating steam,

utilizing the steam in the water treatment device to convert further non-potable water into the distillate and the concentrate.

2. The method according to claim 1 , wherein during periods of solar activity the second distillate storage tank is being filled so that also in periods of substantially no solar activity heated distillate is available to be transported from the second distillate storage tank to the steam generator.

3. The method according to claim 1 , wherein the steam generator comprises a flash tank, wherein the heated second part of the distillate is at least partly converted into steam.

4. The method according to claim 3 , wherein the heated second part of the distillate not converted in the flash tank into steam is transported to the first distillate storage tank.

5. The method according to claim 1 , wherein the water treatment device comprises multiple-effect distillation (MED) technology.

6. The method according to claim 1 , wherein steam leaving an outlet of the water treatment device is compressed by a compressor, wherein the compressed steam is transported back into an inlet of the water treatment device.

7. The method according to claim 1 , wherein the electricity is at least partly stored in a battery so that else in periods of substantially no solar activity electricity is available.

8. The method according to claim 1 , wherein the electricity operates valves, pumps and/or electric components positioned between the water treatment device and the first distillate storage tank, the first distillate storage tank and the solar power system, the solar power system and the second distillate storage tank, the second distillate storage tank and the steam generator, and/or the steam generator and the water treatment device.

9. The method according to claim 1 , wherein the steps are controlled by a controller operable by electricity produced by the solar power system.

10. The method according to claim 1 , wherein the method is used while off grid.

11. A device for obtaining distillate from non-potable water comprising:

a solar power system to produce electricity and heated water from solar power,

a steam generator for converting the heated water into steam,

a water treatment device to convert the non-potable water into distillate and concentrate utilizing at least the steam from the steam generator,

a first distillate storage tank for storing a part of the distillate being generated in the water treatment device, wherein the first distillate storage tank is in fluid connection with the water treatment device and with the solar power system,

wherein the solar power system comprises photovoltaic panels to generate electricity from solar power and means to guide the part of the distillate along the photovoltaic panels,

a second distillate storage tank for storing the part of the distillate generated in the water treatment device and heated in the solar power system, wherein the second distillate storage tank is in fluid connection with the solar power system,

a steam generator for generating steam, wherein the steam generator is in fluid connection with the second distillate storage tank and the water treatment device.

12. The device according claim 11 , wherein the steam generator comprises a flash tank to convert the heated second part of the distillate into steam.

13. The device according to claim 12 , wherein the steam generator is in fluid connection with the first distillate storage tank.

14. The device according to claim 11 , wherein the water treatment device is a multiple-effect distillation (MED) device.

15. The device according to claim 14 , wherein the device comprises a compressor connected on one side to an outlet of the water treatment device and connected on another side to an inlet of the water treatment device.

16. The device according to claim 11 , wherein the device comprises a battery for storing electricity generated by the solar power system.

17. The device according to claim 11 , wherein the device comprises valves, pumps and/or electric components positioned between the water treatment device and the first distillate storage tank, the first distillate storage tank and the solar power system, the solar power system and the second distillate storage tank, the second distillate storage tank and the steam generator and/or the steam generator and the treatment device which valves, pumps and/or electric components being operated by electricity produced by the solar power system.

18. The device according claim 11 , wherein the device comprises a controller to control the water treatment device, the first distillate storage tank, the solar power system, the second distillate storage tank and/or the steam generator.

19. The device according to claim 18 , wherein the controller controls the filling of the second tank during periods of solar activity so that also in periods of substantially no solar activity heated water is available to be transported from the second distillate storage tank to the steam generator.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2020
From: CEN, JIAJUN; JANSSEN, WILHELMUS FRANCISCUS J; AWERBUCH, LEON
To: DESOLENATOR B.V.
Reel/Frame 054356/0440 →
Priority Claims (1)
NL 2020402 · Feb 8, 2018 · national
Continuity (1)
Related Publication 20200385287A1 · Dec 10, 2020
Cited By (5)
US 12,421,136 US 12,428,317 US 12,441,631 US 12,441,632 US 12,710,200