IP Library Granted Patent US 8,052,847
Granted Patent B2
US 8,052,847 · App. 11/901,247 · Granted Nov 8, 2011

System and method for removing moisture from liquid desiccant

Assignee: Niagara Blower Company
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Quick Facts
Patent No.
US 8,052,847
App. No.
11/901,247
Granted
Nov 8, 2011
Kind
B2
Abstract

A system and method for removing water from a liquid desiccant such as a glycol used to dry cooled air in order to restore the desiccant to a purity up to around 97% in a closed continuous flow process. Liquid desiccant can be sprayed into cooled air in a conditioner where it gains moisture. The wet or gained desiccant can be optionally preheated in an economizing heat exchanger and then routed into a concentrator. Desiccant pure to around 97% can be removed from the concentrator, passed through an economizing heat exchanger to provide the preheating and returned to the conditioner holding area. The concentrator can be heated by steam or other means such as natural gas to boil the wet desiccant causing mixed vapor to enter a vertical distillation column where most of the glycol condenses out on the column packing or plates and returns to the concentrator. Almost pure water vapor normally passes out of the top of the column and can be condensed in a water-cooled (or otherwise cooled) condenser and collected or discarded as liquid water. A portion of the water can be piped back into the top of the column as a reflux stream that scrubs the column packing or plates of desiccant. In this way, the desiccant can be purified to around 97%.

Claims (28)

1. A method for recovery of liquid desiccant in a closed loop comprising:

spraying liquid desiccant from a desiccant holding area into an air stream, wherein said desiccant absorbs water from said air forming wet desiccant;

removing said wet desiccant and preheating it in a heat exchanger;

moving preheated wet desiccant from said heat exchanger into a concentrator;

boiling said preheated wet desiccant in the concentrator producing a mixed vapor;

causing said mixed vapor to enter a distillation column at a bottom end, wherein water vapor exits said distillation column at a top end;

condensing said water vapor to purified water in a condenser and storing it;

spraying a portion of said purified water entering through a refluxer port into said distillation column in proximity to the top end of said column to scrub said desiccant from said column; and

returning purified desiccant from said concentrator through said heat exchanger and into a desiccant holding area.

2. The method of recovery of liquid desiccant of claim 1 wherein said desiccant is a glycol.

3. The method of recovery of liquid desiccant of claim 2 wherein said glycol is chosen from the group consisting of propylene glycol, ethylene glycol and triethylene glycol.

4. The method of recovery of liquid desiccant of claim 1 wherein said concentrator is heated with steam.

5. The method of recovery of liquid desiccant of claim 1 wherein said concentrator is heated by natural gas.

6. The method of recovery of liquid desiccant of claim 1 wherein said condenser is water cooled.

7. A system for recovery of liquid desiccant in a closed loop comprising:

a desiccant holding area from which liquid desiccant is sprayed into an air stream, wherein said desiccant absorbs water from said air forming wet desiccant;

a heat exchanger wherein said wet desiccant is preheated;

a concentrator into which preheated wet desiccant from said heat exchanger is moved and boiled producing a mixed vapor;

a distillation column receiving said mixed vapor, wherein water vapor exits said distillation column at a top end;

a condenser wherein said water vapor is condensed to purified water, and recovered desiccant is returned to said desiccant holding area through said heat exchanger;

a water storage area where said purified water is stored; and

a spray in proximity to the top end of said distillation column wherein a portion of said purified water entering a refluxer port is sprayed into the distillation column to scrub desiccant from the column.

8. The system of claim 7 wherein said concentrator is steam heated.

9. The system of claim 7 wherein said concentrator is natural gas heated.

10. The system of claim 7 wherein said desiccant is a glycol.

11. The system of claim 10 wherein said glycol is chosen from the group consisting of propylene glycol, ethylene glycol and triethylene glycol.

12. The system of claim 7 wherein said condenser is water cooled.

13. The system of claim 7 wherein said desiccant is purified up to around 97%.

Assignments (3)
MERGER Recorded Feb 4, 2019
From: ALFA LAVAL KATHABAR INC.
To: ALFA LAVAL INC.
Reel/Frame 048225/0889 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2016
From: NIAGARA BLOWER COMPANY, A NEW YORK CORPORATION
To: ALFA LAVAL KATHABAR INC., A NORTH CAROLINA CORPORATION
Reel/Frame 039817/0886 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2007
From: KOBAN, MATTHEW; ROWLAND, PHILLIP; HARVEY, MICHAEL; DEMAKOS, PETER, P.E.
To: NIAGARA BLOWER COMPANY
Reel/Frame 020162/0385 →
Continuity (1)
Related Publication 20090071812A1 · Mar 19, 2009