IP Library Granted Patent US 11,124,638
Granted Patent B2
US 11,124,638 · App. 16/489,231 · Granted Sep 21, 2021

Process for producing monovinylaromatic polymer incorporating post-consumer recycled polystyrene, monovinylaromatic polymer incorporating post-consumer recycled polystyrene and articles produced thereof

Inventors: Jose-Maria Pere (Barcelona, ES); Antonio Guinovart (Barcelona, ES); Armelle Sigwald (Nivelles, BE); Laetitia Urbanczyk (Anderlues, BE); Martine Slawinski (Nivelles, BE); Pascal Charlier (Evere, BE); Elodie Perche (Brussels, BE); Serge Eon (Waterloo, BE); Thierry Marcoux (Casteau, BE); Matthieu Adam-Berret (Thimeon, BE)
Assignee: Total Research & Technology Feluy
C08L25/06B29B17/02C08F257/02C08J11/04B29B2017/0015B29B2017/0224B29B2017/0293B29B2017/042B29K2025/06C08F2400/00C08J2325/06
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Quick Facts
Patent No.
US 11,124,638
App. No.
16/489,231
Granted
Sep 21, 2021
Kind
B2
Abstract

The invention relates to a process and an installation to produce a monovinylaromatic polymer ( 3 ) comprising post-consumer recycled polystyrene (PCR-PS) wherein the process comprises the steps of mixing the PCR-PS ( 5 ) and the monovinylaromatic monomer ( 7 ) within a dissolver ( 9 ) to dissolve the PCR-PS ( 5 ) in the monovinylaromatic monomer ( 7 ) so as to produce a polymerization mixture ( 13 ); and a step of filtering the polymerization mixture ( 13 ) that includes continuously redirecting at least a part of the stream of the filtered polymerization mixture ( 17 ) back to the dissolver ( 9 ) and mixing it with the polymerization mixture ( 13 ) so as to continuously reduce the content of insoluble material in the polymerization mixture ( 13 ) contained in the dissolver ( 9 ).

Claims (23)

1. A process to produce a monovinylaromatic polymer comprising a post-consumer recycled polystyrene (PCR-PS) wherein the process comprises the steps of:

a) providing a PCR-PS and a monovinylaromatic monomer to at least one dissolver;

b) mixing the PCR-PS and the monovinylaromatic monomer within the dissolver to dissolve the PCR-PS in the monovinylaromatic monomer so as to produce a polymerization mixture, wherein the polymerization mixture comprises insoluble material originated from the dissolved PCR-PS;

c) filtering the polymerization mixture in a filtration system in order to obtain a stream of filtered polymerization mixture;

d) ending the filtering of the polymerization mixture and recovering the filtered polymerization mixture;

further wherein the step c) of filtering the polymerization mixture includes continuously redirecting at least a part of the stream of the filtered polymerization mixture exiting the filtration system back to the dissolver and mixing it with the polymerization mixture so as to continuously reduce the content of insoluble material in the polymerization mixture contained in the dissolver.

2. The process according to claim 1 , characterized in that the step c) includes delivering at least a part of the stream of the filtered polymerization mixture exiting the filtration system at the top of the dissolver, above the surface of the polymerization mixture.

3. The process according to claim 1 , characterized in that the polymerization mixture produced in step b) has a viscosity as measured at 20° C. of at least 40 cP.

4. The process according to claim 1 , characterized in that the polymerization mixture produced in step b) comprises at least 12 wt % of PCR-PS as based on the total weight of the polymerization mixture PS.

5. The process according to claim 1 , characterized in that the step c) further includes:

a sub-step c1) of filtering the polymerization mixture obtained in step b) in a filtration system;

a sub-step c2) of providing and mixing additional PCR-PS to the filtered polymerization mixture obtained in sub-step c1) in order to increase the content of PCR-PS in the polymerization mixture, the filtering operation being interrupted in the meantime;

a sub-step c3) of filtering the polymerization mixture obtained in sub-step c2) in the filtration system;

wherein sub-steps c2) and c3) may be repeated one or more times.

6. The process according to claim 1 , characterized in that

the PCR-PS is selected to have a content of insoluble material of a size superior or equal to 100 μm, of at most 3.5 wt % as based on the total weight of the PCR-PS; and/or

the PCR-PS is subjected to a pretreatment before being provided to the dissolver in step a), wherein the pretreatment includes grinding the PCR-PS and/or washing the PCR-PS with diluted caustic soda.

7. The process according to claim 1 , characterized in that the step d) ending the filtering of the polymerization mixture when the pressure at the exit of the filter is at least 0.8 times the pressure at the entry of the filter.

8. The process according to claim 1 , characterized in that in step c) more than 70 wt % of the stream of filtered polymerization mixture ( 17 ) is redirected back to the dissolver.

9. The process according to claim 1 , characterized in that the process further comprises the steps of:

e) forming a reaction mixture from the filtered polymerization mixture recovered from step d), with the addition of a free radical initiator;

f) subjecting the reaction mixture to a free-radical polymerization in one or more polymerization reactor in order to produce a monovinylaromatic polymer comprising PCR-PS.

10. The process according to claim 1 , characterized in that the PCR-PS is selected from dairy packaging waste, EPS cut off building insulation or EPS post-consumer electronic.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2020
From: PERE, JOSE-MARIA; GUINOVART, ANTONIO; SIGWALD, ARMELLE; URBANCZYK, LAETITIA; SLAWINSKI, MARTINE; CHARLIER, PASCAL; PERCHE, ELODIE; EON, SERGE; MARCOUX, THIERRY; ADAM-BERRET, MATTHIEU
To: TOTAL RESEARCH & TECHNOLOGY FELUY
Reel/Frame 051731/0531 →
Priority Claims (1)
EP 17158333 · Feb 28, 2017 · regional
Continuity (1)
Related Publication 20200062944A1 · Feb 27, 2020