IP Library › Granted Patent US 12,304,981
Granted Patent B2
US 12,304,981 · App. 17/669,055 · Granted May 20, 2025

Polymerization using a spiral heat exchanger

Inventors: Jay L. Reimers (Houston, TX); Kevin W. Lawson (Houston, TX); Peijun Jiang (Katy, TX); Gabor Kiss (Hampton, NJ)
Assignee: ExxonMobil Engineering & Technology Company
C08F210/16B01J8/0015B01J8/22C08F2/01C08F2/04C08F2/38C08F4/6428C08F10/02C08F10/06F25B13/00B01J2208/00141B01J2208/00548C08F2400/00C08F2500/08C08F2800/20
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Quick Facts
Patent No.
US 12,304,981
App. No.
17/669,055
Granted
May 20, 2025
Kind
B2
Abstract

This invention relates to a polymerization process for forming polymer comprising: contacting (typically in a solution or slurry phase), a monomer and a catalyst system in a reaction zone comprising at least one spiral heat exchanger and recovering polymer, wherein the monomer, the catalyst system and the polymer flow through the at least one spiral heat exchanger in a cross-flow direction relative to spirals of the at least one spiral heat exchanger.

Claims (27)

1. A polymerization process for forming polymer comprising:

contacting a monomer and a catalyst system in a reaction zone, and recovering polymer,

wherein the reaction zone comprises a recycle pump and a heat exchanger,

wherein a pressure drop across the heat exchanger is less than or equal to about 10 psi.

2. The polymerization process of claim 1 , wherein the heat exchanger is a spiral heat exchanger.

3. The polymerization process of claim 2 , wherein the monomer, the catalyst system and polymer flow through the spiral heat exchanger in a cross-flow direction relative to spirals of the spiral heat exchanger.

4. The polymerization process of claim 1 , wherein the heat exchanger removes heat at a rate of about 400 Btu/hour·cubic foot·° F.

5. The polymerization process of claim 1 , wherein the flow of the monomer, the catalyst system, and polymer is substantially laminar.

6. The polymerization process of claim 5 , wherein the Reynolds number of the flow of the monomer, the catalyst system, and polymer is about 0.1 to about 2,200.

7. The polymerization process of claim 2 , further comprising recycling at least a portion of the monomer, the catalyst system and polymer exiting the spiral heat exchanger along a recycle flow path back through the spiral heat exchanger or a second spiral heat exchanger.

8. The polymerization process of claim 2 , wherein polymer is produced with a recycle ratio of at least about 5.

9. The polymerization process of claim 8 , wherein the polymer is produced with a recycle ratio of about 5 to about 20.

10. The polymerization process of claim 1 , wherein the polymerization process is a continuous solution polymerization process.

11. A polymerization system, comprising:

a reactor comprising:

a shell;

a reactor inlet coupled to the shell;

a reactor outlet coupled to the shell, wherein the reactor outlet is in fluid communication with the reactor inlet; and

a spiral heat exchanger inside the shell in fluid communication with and positioned between the reactor inlet and the reactor outlet, wherein the spiral heat exchanger has a heat exchanger inlet and a heat exchanger outlet; and

a recycle pump in fluid communication with the reactor inlet and the reactor outlet, wherein the recycle pump is positioned to enable at least a portion of a polymerization stream exiting the heat exchanger outlet to be recycled back to the heat exchanger inlet.

12. The polymerization system of claim 11 , wherein the polymerization stream flows through the spiral heat exchanger in a cross-flow direction relative to spirals of the spiral heat exchanger.

13. A polymerization system, comprising:

a reaction zone configured to contact a monomer and a catalyst system to recover a polymer, wherein the reaction zone comprises:

a heat exchanger, wherein a pressure drop across the heat exchanger is less than or equal to about 10 psi; and

a recycle pump.

14. The polymerization system of claim 13 , wherein the heat exchanger comprises a spiral heat exchanger.

15. The polymerization system of claim 13 , wherein the heat exchanger is disposed within a shell of a reactor, and the heat exchanger is in fluid communication with and positioned between a reactor inlet and a reactor outlet.

Priority Claims (1)
EP 15197445 · Jan 19, 2016 · regional
Continuity (3)
Continuation 15759002
Provisional Application 62234518 · Sep 29, 2015
Related Publication 20220162348A1 · May 26, 2022
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