IP Library Granted Patent US 8,460,551
Granted Patent B2
US 8,460,551 · App. 12/787,659 · Granted Jun 11, 2013

Solar membrane distillation system and method of use

Inventors: Ibrahim A. Al-Arifi (Riyadh, SA); Hisham Taha Abdulla El-Dessouky (Riyadh, SA)
Assignee: King Abdulaziz City for Science and Technology
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Quick Facts
Patent No.
US 8,460,551
App. No.
12/787,659
Granted
Jun 11, 2013
Kind
B2
Abstract

A water distillation system includes a membrane distillation unit which produces desalinated water from feed water comprising salt water. The system also includes a primary water heater which raises a temperature of the feed water upstream of the feed water entering the membrane distillation unit. The system additionally includes an evaporative cooler which lowers a temperature of a coolant upstream of the coolant entering the membrane distillation unit.

Claims (49)

1. A water distillation system, comprising:

a membrane distillation unit which produces desalinated water from feed water comprising salt water;

a primary water heater which raises a temperature of the feed water upstream of the feed water entering the membrane distillation unit; and

an evaporative cooler which lowers a temperature of a coolant upstream of the coolant entering the membrane distillation unit,

wherein the evaporative cooler comprises at least one tube through which the coolant flows,

the evaporative cooler sprays salt water on an outer surface of the at least one tube, and

the evaporative cooler forces dry, unsaturated air to flow over the salt water on the outer surface of the at least one tube such that a portion of the salt water evaporates and lowers the temperature of the coolant inside the at least one tube.

2. The system of claim 1 , wherein the primary water heater comprises a solar water heater.

3. The system of claim 1 , further comprising a feed water pre-heater structured to:

lower the temperature of a coolant after the coolant has exited the membrane distillation unit; and

raise the temperature of a feed water prior to the feed water entering the primary water heater.

4. The system of claim 3 , wherein:

the feed water pre-heater is upstream of the primary water heater;

the feed water pre-heater is downstream of the membrane distillation unit; and

the feed water pre-heater is upstream of the evaporative cooler.

5. The system of claim 4 , wherein the feed water pre-heater comprises nano tubes as heat exchange elements.

6. The system of claim 1 , wherein the evaporative cooler comprises nano tubes as heat exchange elements.

7. The system of claim 6 , wherein the nano tubes comprise carbon nano tubes.

8. The system of claim 1 , wherein the membrane distillation unit comprises a semi-permeable membrane which permits the passage of water vapor and prevents the passage of liquid water.

9. The system of claim 8 , wherein:

the feed water passes through a first portion of the membrane distillation unit on a first side of the membrane;

the coolant passes through a second portion of the membrane distillation unit on a second side of the membrane opposite the first side;

a temperature gradient between the feed water and the coolant causes water vapor to pass from the feed water through the membrane to an external surface of the membrane.

10. A water distillation system, comprising:

a membrane distillation unit which produces desalinated water from feed water comprising salt water;

a primary water heater comprising a solar water heater;

a feed water pre-heater which: (i) lowers a temperature of a coolant after the coolant has exited the membrane distillation unit and (ii) raises a temperature of the feed water prior to the feed water entering the primary water heater; and

an evaporative cooler which further lowers the temperature of the coolant downstream of the feed water pre-heater and upstream of the membrane distillation unit,

wherein the primary water heater further raises the temperature of the feed water downstream of the feed water pre-heater and upstream of the membrane distillation unit, and

the evaporative cooler comprises at least one tube through which the coolant flows,

the evaporative cooler sprays salt water on an outer surface of the at least one tube, and

the evaporative cooler forces dry, unsaturated air to flow over the salt water on the outer surface of the at least one tube such that a portion of the salt water evaporates and lowers the temperature of the coolant inside the at least one tube.

11. The system of claim 10 , wherein at least one of the evaporative cooler and the feed water pre-heater comprises nano tubes as heat exchange elements.

12. The system of claim 11 , wherein the nano tubes comprise carbon nano tubes.

13. The system of claim 10 , wherein the membrane distillation unit comprises a semi-permeable membrane which permits the passage of water vapor and prevents the passage of liquid water.

14. A water distillation system, comprising:

a membrane distillation unit which produces desalinated water from feed water comprising salt water;

a primary water heater comprising a solar water heater;

a feed water pre-heater which: (i) lowers a temperature of a coolant after the coolant has exited the membrane distillation unit and (ii) raises a temperature of the feed water prior to the feed water entering the primary water heater; and

an evaporative cooler which further lowers the temperature of the coolant downstream of the feed water pre-heater and upstream of the membrane distillation unit,

wherein the primary water heater further raises the temperature of the feed water downstream of the feed water pre-heater and upstream of the membrane distillation unit;

the membrane distillation unit comprises a feed water inlet and a brine outlet, a coolant inlet and a coolant outlet, and a desalinated water outlet;

the evaporative cooler comprises at least one tube through which the coolant flows;

the evaporative cooler sprays salt water on an outer surface of the at least one tube; and

the evaporative cooler forces dry, unsaturated air to flow over the salt water on the outer surface of the at least one tube such that a portion of the salt water evaporates and lowers the temperature of the coolant inside the at least one tube.

15. The system of claim 14 , further comprising a valve downstream of the brine outlet of the membrane distillation unit, wherein the valve is configured to discharge a portion of rejected brine and route another portion of brine to an inlet of the primary water heater.

16. The system of claim 15 , wherein:

the portion of rejected brine is based on an allowable salt concentration in the system; and

the other portion of brine is mixed with the feed water from the feed water pre-heater and fed to the primary water heater.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 26, 2010
From: AL-ARIFI, IBRAHIM A.; EL-DESSOUKY, HISHAM TAHA ABDULLA
To: TECHNOLOGY DEVELOPMENT CENTER, KING ABDULAZIZ CITY FOR SCIENCE AND TECHNOLOGY
Reel/Frame 024443/0879 →
Continuity (1)
Related Publication 20110290725A1 · Dec 1, 2011