EP4605465A1 - Process for lowering the melt flow rate of a recycled polymer composition - Google Patents
Process for lowering the melt flow rate of a recycled polymer compositionInfo
- Publication number
- EP4605465A1 EP4605465A1 EP23773315.9A EP23773315A EP4605465A1 EP 4605465 A1 EP4605465 A1 EP 4605465A1 EP 23773315 A EP23773315 A EP 23773315A EP 4605465 A1 EP4605465 A1 EP 4605465A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- polymer
- composition
- recycled
- process according
- polar
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08L—COMPOSITIONS OF MACROMOLECULAR COMPOUNDS
- C08L23/00—Compositions of homopolymers or copolymers of unsaturated aliphatic hydrocarbons having only one carbon-to-carbon double bond; Compositions of derivatives of such polymers
- C08L23/02—Compositions of homopolymers or copolymers of unsaturated aliphatic hydrocarbons having only one carbon-to-carbon double bond; Compositions of derivatives of such polymers not modified by chemical after-treatment
- C08L23/10—Homopolymers or copolymers of propene
- C08L23/12—Polypropene
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08L—COMPOSITIONS OF MACROMOLECULAR COMPOUNDS
- C08L2203/00—Applications
- C08L2203/16—Applications used for films
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08L—COMPOSITIONS OF MACROMOLECULAR COMPOUNDS
- C08L2205/00—Polymer mixtures characterised by other features
- C08L2205/03—Polymer mixtures characterised by other features containing three or more polymers in a blend
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08L—COMPOSITIONS OF MACROMOLECULAR COMPOUNDS
- C08L2207/00—Properties characterising the ingredient of the composition
- C08L2207/20—Recycled plastic
Definitions
- an object of the present disclosure is a process for lowering the melt flow rate of a recycled polymer composition comprising at least 50 wt% of a recycled polypropylene composition, and at least 5 wt% of a polar polymer, said process comprising: a) providing recycled polymer composition comprising at least 50 wt% of a recycled polypropylene composition, and at least 5 wt% of a polar polymer; b) adding to the composition from 2 wt% to 10 wt% based on the weight of the total composition of a polyepoxides resin; c) melting the composition comprising component a) and b) and d) recover the final polymer; wherein the polar polymer is selected from the group consisting of polyamide, polycarbonate, poly(, ethyl methacrylate), Acrylonitrile, butadiene, styrene terpolymer and ethylene vinyl alcohol polymer (EVOH).
- the polar polymer is selected from the group consisting
- the recycled polymer composition comprises at least 7 wt% preferably at least 10 wt%, more preferably at least 15 wt% of the polar polymer. Preferred range is from 5 wt% to 25 wt%.
- a polar polymer is defined as a polymer containing polar groups such as alcohol (-OH), ether (-O-), carboxylic acid (-COOH), amine (-NH2), nitrile (-CN), thiol (-SH) groups.
- Examples of polar polymer can be polyamide, polycarbonate, poly(, ethyl methacrylate), Acrylonitrile, butadiene, styrene terpolymer, ethylene vinyl alcohol polymer (EVOH).
- the polar polymer is EVOH.
- the polyeproxydes resin are preferably added in a range from 4.0 wt% to 9.0wt%; more preferably from 6.0 wt% to 8.5 wt%.
- the polyeproxydes resin has a relatively low epoxy functionality.
- the epoxy functionality may be quantified as “epoxy equivalent weight.”
- the epoxy equivalent weight reflects the amount of resin that contains one molecule of an epoxy group, and it may be calculated by dividing the number average molecular weight of the modifier by the number of epoxy groups in the molecule.
- the poly epoxide of the present disclosure typically has a number average molecular weight from 7500 to 250000 grams per mole, preferably from 15000 to 150000 grams per mole, and more preferably from 20000 to 100000 grams per mole, with a poly dispersity index typically ranging from 2.5 to 7.
- the poly epoxide may contain less than 50, in some embodiments from 5 to 45, and in some embodiments, from 15 to 40 epoxy groups.
- the epoxy equivalent weight may be from 100 to 15000 grams per mole, preferably from 200 to 10000 grams per mole, and more preferably from about 500 to about 7000 grams per mole.
- suitable epoxy-functional (meth)acrylic monomers may include, but are not limited to, those containing 1,2-epoxy groups, such as glycidyl acrylate and glycidyl methacrylate.
- suitable epoxy-functional monomers include allyl glycidyl ether, glycidyl ethacrylate, and glycidyl itoconate.
- Suitable poly epoxide is commercially available from Arkema under the name
- LOTADER® AX8950 or AX8900 has a melt flow rate of 70 to 100 g/10 min and has a glycidyl methacrylate monomer content of 7 wt. % to 11 wt. %, a methyl acrylate monomer content of 13 wt. % to 17 wt. %, and an ethylene monomer content of 72 wt. % to 80 wt. %.
- ELVALOY® PTW Another suitable polyepoxide is commercially available from DuPont under the name ELVALOY® PTW, which is a terpolymer of ethylene, butyl acrylate, and glycidyl methacrylate and has a melt flow rate of 12 g/10 min.
- the Melt Flow Rate of the recycled polypropylene composition, starting material of the process ranges from 10 g/10 min to 150 g/10 min; preferably from 20 g/10 min to 100 g/10 min, more preferably from 25 g/10 min to 80 g/10 min.
- the final polymer obtainable with the process of the present disclosure is a recycled polypropylene composition having an high MFRDetermined according to the method ISO 1133 (230° C, 2.16 kg).
- the MFR Determined according to the method ISO 1133 (230° C, 2.16 kg) of the recycled polypropylene composition obtainable with the process of the present disclosure depends from the starting MFRinit.
- the MFR that can be obtained ranges from MFRinit /1.2 to MFRinit /5.0; preferably ranges from MFRinit/1.9 to MFRinit/4.0. More preferably the MFR ranges from 1.3 g/10 min to 8.0 g/lOmin; even more preferably ranges from 1.5 g/10 min to 5.8 g/10min;.
- Intrinsic Viscosity [0018] The sample is dissolved by tetrahydronaphthalene at 135 °C and then it is poured into the capillary viscometer.
- the viscometer tube (Ubbelohde type) is surrounded by a cylindrical glass jacket; this setup allows temperature control with a circulating thermostated liquid.
- the downward passage of the meniscus is timed by a photoelectric device.
- the passage of the meniscus in front of the upper lamp starts the counter which has a quartz crystal oscillator.
- the meniscus stops the counter as it passes the lower lamp and the efflux time is registered: this is converted into a value of intrinsic viscosity through Haze (on 1 mm plaque)
- 5x5 cm specimens are cut molded plaques of 1 mm thick and the haze value is measured using a Gardner photometric unit connected to a Hazemeter type UX-10 or an equivalent instrument having G.E. 1209 light source with filter "C". Reference samples of known haze are used for calibrating the instrument.
- the plaques to be tested are produced according to the following method.
- 13 C NMR spectra were acquired on a Bruker AV-600 spectrometer equipped with cry oprobe, operating at 160.91 MHz in the Fourier transform mode at 120 °C.
- the peak of the SPP carbon (nomenclature according to “Monomer Sequence Distribution in Ethylene-Propylene Rubber Measured by 13 C NMR. 3. Use of Reaction Probability Mode ” C. J. Carman, R. A. Harrington and C. E. Wilkes, Macromolecules, 1977, 10, 536) was used as an internal reference at 29.9 ppm.
- the samples were dissolved in 1 , 1 ,2,2-tetrachloroethane- d2 at 120 °C with a 8 % wt/v concentration. Each spectrum was acquired with a 90° pulse, and 15 seconds of delay between pulses and CPD to remove 1 H- 13 C coupling. 512 transients were stored in 32K data points using a spectral window of 9000 Hz.
- Films with a thickness of 50 micron are prepared by extruding each composition in a a single screw Collin extruder (length/diameter ratio of screw 1 :25) at a film drawing speed of 7 m/min and a melt temperature do 210-250 °C.
- the determination of the number of gels per m 2 is carried out by visually detecting the number of gels of a sample film projected by a projector on a white wall-chart with a magnificated scale. Film pieces of 130 x 7.5 cm are cut from a cast film at least 30 minutes after extrusion (die temperature in the range from 250° to 290°C, chill rolls temperature 20°C). The cast film is prepared as above described.
- LOTADER AX8900 has a melt flow rate of 70 to 100 g/10 min a glycidyl methacrylate monomer content of 7 wt. % to 11 wt. %, a methyl acrylate monomer content of 13 wt. % to 17 wt. %, and an ethylene monomer content of 72 wt. % to 80 wt. %.
- the compositions are reported on table 2.
Landscapes
- Chemical & Material Sciences (AREA)
- Health & Medical Sciences (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Medicinal Chemistry (AREA)
- Polymers & Plastics (AREA)
- Organic Chemistry (AREA)
- Compositions Of Macromolecular Compounds (AREA)
- Addition Polymer Or Copolymer, Post-Treatments, Or Chemical Modifications (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP22202287 | 2022-10-18 | ||
| PCT/EP2023/076194 WO2024083440A1 (en) | 2022-10-18 | 2023-09-22 | Process for lowering the melt flow rate of a recycled polymer composition |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4605465A1 true EP4605465A1 (en) | 2025-08-27 |
Family
ID=84358536
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP23773315.9A Pending EP4605465A1 (en) | 2022-10-18 | 2023-09-22 | Process for lowering the melt flow rate of a recycled polymer composition |
Country Status (3)
| Country | Link |
|---|---|
| EP (1) | EP4605465A1 (en) |
| CN (1) | CN119968431A (en) |
| WO (1) | WO2024083440A1 (en) |
Family Cites Families (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4758629A (en) * | 1986-05-28 | 1988-07-19 | E. I. Du Pont De Nemours And Company | Thermoplastic compositions of crystalline polyolefin and ethylene-containing copolymer |
| CN104804391A (en) * | 2015-04-19 | 2015-07-29 | 青岛承天伟业机械制造有限公司 | Agricultural plastic film |
-
2023
- 2023-09-22 WO PCT/EP2023/076194 patent/WO2024083440A1/en not_active Ceased
- 2023-09-22 EP EP23773315.9A patent/EP4605465A1/en active Pending
- 2023-09-22 CN CN202380066776.0A patent/CN119968431A/en active Pending
Also Published As
| Publication number | Publication date |
|---|---|
| CN119968431A (en) | 2025-05-09 |
| WO2024083440A1 (en) | 2024-04-25 |
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Legal Events
| Date | Code | Title | Description |
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| STAA | Information on the status of an ep patent application or granted ep patent |
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| PUAI | Public reference made under article 153(3) epc to a published international application that has entered the european phase |
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| STAA | Information on the status of an ep patent application or granted ep patent |
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| 17P | Request for examination filed |
Effective date: 20250428 |
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