IP Library Granted Patent US 9,006,500
Granted Patent B2
US 9,006,500 · App. 14/232,009 · Granted Apr 14, 2015

Hydrate inhibitor recovery process

Inventors: Kolbjørn Moen (Oslo, NO); Jon Even Vale (Gjettum, NO); Geir Vingelven (Høvik, NO)
Assignee: Aker Process Systems AS
C07C29/76B01D1/225F26B17/20B01D21/262F26B21/14F26B25/006
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Quick Facts
Patent No.
US 9,006,500
App. No.
14/232,009
Granted
Apr 14, 2015
Kind
B2
Abstract

A system and method for recovery of hydrate inhibitor from a fluid comprising hydrate inhibitor, water, mineral salt ions and salt particles is disclosed. Wherein, the system comprises: —an indirectly heated paddle dryer with a fluid inlet, at least one vapor outlet and a dry salt outlet —a vapor separation unit in fluid communication with the at least one vapor outlet for separation of the vapor to recover the hydrate inhibitor.

Claims (16)

1. A method for recovering a hydrate inhibitor from a fluid comprising water, the hydrate inhibitor, mineral salt ions and salt particles, wherein the hydrate inhibitor is mono-ethylene glycol (MEG) or glycol with other substituents, and the method comprises

evaporating water and the hydrate inhibitor from the fluid with an indirectly heated paddle dryer, thereby obtaining vapor and a dry solid salt residue; and

recovering the hydrate inhibitor from the vapor.

2. The method according to claim 1 , wherein the method further comprises increasing a concentration of salt particles in the fluid by centrifugation prior to the evaporation, whereby a separate liquid stream is obtained.

3. The method according to claim 2 , wherein the hydrate inhibitor is recovered from the separate liquid stream.

4. The method according to claim 2 , wherein the method further comprises combining the separated liquid with the vapor to achieve a combined stream, and recovering the hydrate inhibitor from the combined stream.

5. The method according to claim 1 , wherein the recovering is obtained by a combination of water separation, evaporation and condensation.

6. The method according to claim 1 , wherein the method further comprises sweeping with an inert sweep gas stream over the fluid in the indirectly heated paddle dryer during the evaporation.

7. The method according to claim 6 , wherein the inert sweep gas is separated from the vapor, heated and recycled as sweep gas.

8. The method according to claim 6 , wherein the inert sweep gas stream before entering the paddle dryer is heat exchanged with the vapor.

9. The method according to claim 1 , wherein the method further comprises cooling the dry solid salt residue.

10. The method according to claim 1 , wherein a maximum temperature of the hydrate inhibitor is kept below a degeneration temperature of the hydrate inhibitor.

11. The method according to claim 10 , wherein the hydrate inhibitor is MEG and the maximum temperature is kept below 220° C.

12. The method according to claim 1 , wherein the method is performed continuously.

13. The method according to claim 11 , wherein the maximum temperature is kept below 200° C.

14. The method according to claim 13 , wherein the maximum temperature is kept below 180° C.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 22, 2022
From: NOV PROCESS & FLOW TECHNOLOGIES AS
To: GRANT PRIDECO, INC.
Reel/Frame 063723/0209 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2019
From: FJORDS PROCESSING AS
To: NOV PROCESS & FLOW TECHNOLOGIES AS
Reel/Frame 049331/0604 →
CHANGE OF NAME Recorded Oct 4, 2017
From: AKER PROCESS SYSTEMS AS
To: FJORDS PROCESSING AS
Reel/Frame 044132/0253 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 14, 2014
From: MOEN, KOLBJORN; VALE, JON EVEN; VINGELVEN, GEIR
To: AKER PROCESS SYSTEMS AS
Reel/Frame 032665/0167 →
Priority Claims (1)
NO 20111047 · Jul 20, 2011 · national
Continuity (1)
Related Publication 20140256990A1 · Sep 11, 2014