EP4587641A1 - Multilayer product and method for producing the same - Google Patents
Multilayer product and method for producing the sameInfo
- Publication number
- EP4587641A1 EP4587641A1 EP23769309.8A EP23769309A EP4587641A1 EP 4587641 A1 EP4587641 A1 EP 4587641A1 EP 23769309 A EP23769309 A EP 23769309A EP 4587641 A1 EP4587641 A1 EP 4587641A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- multilayer product
- layer
- barrier layer
- base layer
- cellulose
- 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
-
- D—TEXTILES; PAPER
- D21—PAPER-MAKING; PRODUCTION OF CELLULOSE
- D21H—PULP COMPOSITIONS; PREPARATION THEREOF NOT COVERED BY SUBCLASSES D21C OR D21D; IMPREGNATING OR COATING OF PAPER; TREATMENT OF FINISHED PAPER NOT COVERED BY CLASS B31 OR SUBCLASS D21G; PAPER NOT OTHERWISE PROVIDED FOR
- D21H11/00—Pulp or paper, comprising cellulose or lignocellulose fibres of natural origin only
- D21H11/16—Pulp or paper, comprising cellulose or lignocellulose fibres of natural origin only modified by a particular after-treatment
- D21H11/20—Chemically or biochemically modified fibres
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B5/00—Layered products characterised by the non- homogeneity or physical structure, i.e. comprising a fibrous, filamentary, particulate or foam layer; Layered products characterised by having a layer differing constitutionally or physically in different parts
- B32B5/22—Layered products characterised by the non- homogeneity or physical structure, i.e. comprising a fibrous, filamentary, particulate or foam layer; Layered products characterised by having a layer differing constitutionally or physically in different parts characterised by the presence of two or more layers which are next to each other and are fibrous, filamentary, formed of particles or foamed
- B32B5/24—Layered products characterised by the non- homogeneity or physical structure, i.e. comprising a fibrous, filamentary, particulate or foam layer; Layered products characterised by having a layer differing constitutionally or physically in different parts characterised by the presence of two or more layers which are next to each other and are fibrous, filamentary, formed of particles or foamed one layer being a fibrous or filamentary layer
- B32B5/26—Layered products characterised by the non- homogeneity or physical structure, i.e. comprising a fibrous, filamentary, particulate or foam layer; Layered products characterised by having a layer differing constitutionally or physically in different parts characterised by the presence of two or more layers which are next to each other and are fibrous, filamentary, formed of particles or foamed one layer being a fibrous or filamentary layer another layer next to it also being fibrous or filamentary
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08J—WORKING-UP; GENERAL PROCESSES OF COMPOUNDING; AFTER-TREATMENT NOT COVERED BY SUBCLASSES C08B, C08C, C08F, C08G or C08H
- C08J5/00—Manufacture of articles or shaped materials containing macromolecular substances
- C08J5/18—Manufacture of films or sheets
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08J—WORKING-UP; GENERAL PROCESSES OF COMPOUNDING; AFTER-TREATMENT NOT COVERED BY SUBCLASSES C08B, C08C, C08F, C08G or C08H
- C08J7/00—Chemical treatment or coating of shaped articles made of macromolecular substances
- C08J7/04—Coating
- C08J7/048—Forming gas barrier coatings
-
- D—TEXTILES; PAPER
- D21—PAPER-MAKING; PRODUCTION OF CELLULOSE
- D21H—PULP COMPOSITIONS; PREPARATION THEREOF NOT COVERED BY SUBCLASSES D21C OR D21D; IMPREGNATING OR COATING OF PAPER; TREATMENT OF FINISHED PAPER NOT COVERED BY CLASS B31 OR SUBCLASS D21G; PAPER NOT OTHERWISE PROVIDED FOR
- D21H19/00—Coated paper; Coating material
- D21H19/10—Coatings without pigments
- D21H19/14—Coatings without pigments applied in a form other than the aqueous solution defined in group D21H19/12
- D21H19/34—Coatings without pigments applied in a form other than the aqueous solution defined in group D21H19/12 comprising cellulose or derivatives thereof
-
- D—TEXTILES; PAPER
- D21—PAPER-MAKING; PRODUCTION OF CELLULOSE
- D21H—PULP COMPOSITIONS; PREPARATION THEREOF NOT COVERED BY SUBCLASSES D21C OR D21D; IMPREGNATING OR COATING OF PAPER; TREATMENT OF FINISHED PAPER NOT COVERED BY CLASS B31 OR SUBCLASS D21G; PAPER NOT OTHERWISE PROVIDED FOR
- D21H21/00—Non-fibrous material added to the pulp, characterised by its function, form or properties; Paper-impregnating or coating material, characterised by its function, form or properties
- D21H21/14—Non-fibrous material added to the pulp, characterised by its function, form or properties; Paper-impregnating or coating material, characterised by its function, form or properties characterised by function or properties in or on the paper
- D21H21/16—Sizing or water-repelling agents
-
- D—TEXTILES; PAPER
- D21—PAPER-MAKING; PRODUCTION OF CELLULOSE
- D21H—PULP COMPOSITIONS; PREPARATION THEREOF NOT COVERED BY SUBCLASSES D21C OR D21D; IMPREGNATING OR COATING OF PAPER; TREATMENT OF FINISHED PAPER NOT COVERED BY CLASS B31 OR SUBCLASS D21G; PAPER NOT OTHERWISE PROVIDED FOR
- D21H21/00—Non-fibrous material added to the pulp, characterised by its function, form or properties; Paper-impregnating or coating material, characterised by its function, form or properties
- D21H21/50—Non-fibrous material added to the pulp, characterised by its function, form or properties; Paper-impregnating or coating material, characterised by its function, form or properties characterised by form
- D21H21/52—Additives of definite length or shape
- D21H21/54—Additives of definite length or shape being spherical, e.g. microcapsules, beads
-
- D—TEXTILES; PAPER
- D21—PAPER-MAKING; PRODUCTION OF CELLULOSE
- D21H—PULP COMPOSITIONS; PREPARATION THEREOF NOT COVERED BY SUBCLASSES D21C OR D21D; IMPREGNATING OR COATING OF PAPER; TREATMENT OF FINISHED PAPER NOT COVERED BY CLASS B31 OR SUBCLASS D21G; PAPER NOT OTHERWISE PROVIDED FOR
- D21H27/00—Special paper not otherwise provided for, e.g. made by multi-step processes
- D21H27/10—Packing paper
Definitions
- the present disclosure relates to a multilayer product and a method for producing the multilayer product .
- Packaging solutions that are renewable , recyclable as well as biodegradable are in need .
- Cellulose for example in the form of cellulose fibers or pulp, is a renewable and biodegradable material well suited for packaging solutions .
- plastic materials or other less environmentally friendly materials may be required e . g . as coatings to impart barrier properties to packaging materials formed mainly from cellulose .
- Such packaging materials are not fully biodegradable , and their recycling may be complicated .
- a multilayer product is disclosed .
- the multilayer product may comprise a cellulose fiber-based base layer and a barrier layer .
- the barrier layer may comprise at least 10 % (w/w) of hydrolysed cellulose fibers .
- the multilayer product may further comprise a cellulosic filmic layer .
- Figure 1A illustrates an embodiment of the multilayer product 1 in cross-sectional view
- Figure IB describes another embodiment of the multilayer product
- Figure 1C describes another embodiment of the multilayer product
- Figure ID describes yet another embodiment of the multilayer product
- Figure 2A shows the oxygen transmission rate of a cellulosic film
- Figure 2B shows the grease permeability of the cellulosic film
- Figure 3 illustrates packaging material produced by compression molding a fiber body with a cellulosic filmic layer
- Figure 4 illustrates packaging material produced by calendering a fiber body with cellulosic filmic layer
- Figure 5A illustrates apparent bulk density values for specific fiber mixtures
- Figure 5B shows tensile index values for specific fiber mixtures
- Figure 5C shows strain at break values for specific fiber mixtures .
- Figure 6 shows air permeance measurements of multilayer structures .
- a multilayer product is disclosed .
- the multilayer product may comprise a cellulose fiber-based base layer and a barrier layer .
- the barrier layer may comprise at least 10 % (w/w) of hydrolysed cellulose fibers .
- the multilayer product may further comprise a cellulosic filmic layer .
- the hydrolysed cellulose fibers are a moldable material , and when the material of the barrier layer comprising the hydrolysed cellulose fibers is densified e . g . by compressing, a material layer with low porosity may be obtained .
- the hydrolysed cellulose fibers may have surf ce-closing properties . For example , with calendering, a very dense structure may be obtained from the material of the barrier layer .
- Such a layer may have barrier properties . For example , it may be a gas ( oxygen) barrier and/or an grease barrier layer, such as an oil barrier layer .
- the base layer may function as a support layer, i . e . it may provide mechanical strength to the multilayer product .
- the base layer and the barrier layer may both be formed of cellulose-based materials .
- the barrier layer may also be cellulose fiber-based .
- the cellulosic filmic layer may also be formed of cellulose- based materials .
- the entire multilayer product may be formed, or mainly formed, of cellulose-based materials .
- composition of the base layer as well as of the barrier layer may be selected such that the strength and, on the other hand, the density of the multilayer product may be optimi zed as desired .
- the composition of the barrier layer may also be selected such that desired barrier properties are obtained .
- Such a multilayer product does not necessarily need e . g . a plastic coating or other layers or coatings that are not cellulose-based .
- barrier properties have traditionally been achieved using fluorochemicals , which are harmful e . g . to the environment and the use of which may be phased out in the future . Obviating or reducing the need to use additional layers or coatings to achieve barrier properties may be highly useful e . g . for environmental reasons .
- the multilayer product according to one or more embodiments described in this specification may be biodegradable and relatively easily recyclable with existing processes . For example , up to 50 % of the cellulose fibers in the multilayer product may be recoverable in a recycling process .
- the multilayer product may be compostable .
- the multilayer product may be burned and may burn relatively cleanly .
- the barrier layer may cover the base layer at least partially, or the base layer may cover the barrier layer at least partially .
- the barrier layer and the base layer may be attached to each other, either directly or via one or more additional layers or a medium such as an adhesive .
- the barrier layer and the base layer may be at least partially superimposed, or the barrier layer and the base layer may be fully superimposed .
- the barrier layer may or may not be the outermost layer of the multi layer product . Depending on the embodiment , both sides of the barrier layer may be covered by other layers .
- the multilayer product may comprise at least two layers , e . g . two , three or more layers .
- the multilayer product may comprise at least one barrier layer .
- the multilayer product may comprise at least one base layer .
- the multilayer product may further comprise additional layers .
- the multilayer product may comprise a middle layer ( or at least one middle layer) between the base layer and the barrier layer .
- a middle layer may also be cellulose fiber-based .
- its composition may be different from the base layer and/or the barrier layer .
- the multilayer product may comprise two or more base layers and/or two or more barrier layers .
- the multilayer product may comprise a base layer and two barrier layers, the barrier layers arranged at opposite sides of the base layer.
- the multilayer product may comprise a barrier layer and two base layers, the base layers arranged at opposite sides of the barrier layer.
- the base layer may be densified and/or compressed.
- the base layer may be a densified and/or compressed layer.
- the densif ication may be performed e.g. by wet or dry calendering. Wet calendering may improve the densifying even further.
- the barrier layer may be formed by spraying the material of the barrier layer onto the base layer (or, in some embodiments, onto another additional layer) .
- the barrier layer and the base layer may be formed e.g. in a two-layer or multilayer headbox of a paper machine or board machine .
- the densif ication and/or compression may provide e.g. a certain oxygen transmission rate to the multilayer product.
- the densif ication and/or compression may provide e.g. a certain smoothness to the barrier layer.
- the multilayer product may be a moldable or molded product.
- the molded multilayer product may be e . g . a container or a receptacle , such as a cup or a plate .
- the shape of the molded multilayer product i s not particularly limited .
- the multilayer product may be flexible , or a flexible multilayer product .
- the multilayer product may alternatively be rigid, or a rigid multilayer product .
- the multilayer product may be mainly formed of cellulose-based materials .
- the presence of minor amounts of non-cellulose-based materials is not necessarily excluded in such a multilayer product .
- the multilayer product that is mainly formed of cellulose-based materials may contain at least one of e . g . an adhesive , such as glue , an additive , a color or an ink, that is not cellulose-based .
- the multilayer product may be formed entirely of cellulose-based materials .
- the term "mainly formed of cellulose-based materials” may refer to a multilayer product , at least 85 % (w/w) , or at least 95 % (w/w) , or at least 98 % (w/w) , or at least 99 % (w/w) , or 100 % (w/w) of the material of which is cellulose -based .
- the multilayer product may be biodegradable .
- the multilayer product may be biodegradable as determined by the standard OECD for testing of chemicals 301 F .
- biodegradable may, at least in some embodiments , refer to readily biodegradable as determined by the standard OECD for testing of chemicals 301 F (Manometric respiratory test) .
- the readily biodegradable multilayer product may be a multilayer product for which at least 60 % biodegradability is reached within 28 days as determined by the standard OECD for testing of chemicals 301 F.
- the multilayer product may be recyclable.
- the base layer may comprise a reinforcing component.
- the reinforcing component may comprise or be e.g. cellulose fibers. Such cellulose fibers may be such that they may impart reinforcing properties to the multilayer product. For example, they may be unmodified and/or non-hydrolysed .
- the reinforcing component of the base layer may be cellulose fibers, for example unmodified and/or non-hydrolysed.
- the CED viscosity of the cellulose fibers of the base layer may be greater than 500 ml/g, e.g. in the range of about 500 to 3000 ml/g. In some embodiments, the CED viscosity of the cellulose fibers of the base layer may be e.g. in the range of 800 to 1200 ml/g, or in the range of 900 to 1100 ml/g.
- the fibers of the cellulose fibers may be natural fibers, such as lignocellulosic fibers, cellulose fibers, cellulose fiber derivatives, wood derivatives or any combinations or mixtures thereof.
- the fibers in the cellulose fibers may be natural origin fibers, such as modified natural origin fibers, and/or cellulose-based fibers.
- the fibers in the cellulose fibers may be virgin, recycled or secondary natural fibers, or any mixture or combination thereof.
- the cellulose fibers may be e.g. staple fibers.
- the cellulose fibers may be fibers derived from e.g.
- the cellulose fibers may comprise or be e.g. pulp.
- the pulp may comprise or be e.g. wood pulp (such as hardwood and/or softwood pulp) , non-wood pulp, and/or agropulp .
- the pulp may be chemical pulp, such as kraft pulp, soda, sulphate , or organosolv pulp .
- the pulp may be mechanical & thermal pulp ( TMP) , mechanical pulp (groundwood (GW) , pressure ground wood pulp ( PGW) , refiner mechanical pulp (RMP) ) , and/or chemi-thermomechanical pulp (CTMP) .
- TMP mechanical & thermal pulp
- GW groundwood
- PGW pressure ground wood pulp
- RMP refiner mechanical pulp
- CTMP chemi-thermomechanical pulp
- the pulp may, additionally or alternatively, be never dried pulp, such as never dried kraft pulp .
- the cellulose fibers or the pulp may comprise or be recycled fibers .
- the fibers in the cellulose fibers may comprise or be at least one of wood pulp, non-wood pulp, staple fibers , recycled fibers , or any mixture or combination thereof .
- the fibers in the cellulose fibers may not comprise manmade fibers and/or oil-based fibers . Staple fibers with a desired length may be combined with other types of reinforcing components , such as other types of cellulose fibers .
- non-hydrolyzed cellulose fibers may refer to cellulose fibers that are not purposefully chemically hydrolysed to a significant extent .
- the non-hydrolyzed cellulose fibers may be e . g . chemical pulp, such as Kraft pulp, and may be e . g . bleached during the production process of the chemical pulp .
- the Kraft pulping process may lead to minor hydrolysis of the cellulose fibers
- chemical pulp may still be considered to be or contain non-hydrolyzed cellulose fibers .
- the reinforcing component may be or comprise chemical pulp, such as Kraft pulp, sulphate pulp, and/or organosolv pulp ; and/or staple fibers .
- the other (e . g . cellulose fibers of the reinforcing component ) cellulose fibers may comprise or be natural fibers having a CED viscosity in the range of 500 - 3000 ml /g and/or man-made cellulos ic f ibers .
- the man-made cellulosic fibers may, at least in some embodiments, have a lower CED viscosity.
- hydrolysed cellulose fibers may be understood as referring to cellulose fibers that have been subjected to a treatment which has hydrolysed the cellulose chains of the cellulose fibers at least partially, for example as compared to comparable, non-hydrolysed cellulose fibers.
- the average length of the cellulose chains of the hydrolysed cellulose fibers may be smaller than the average length of the cellulose chains of comparable cellulose fibers that are unhydrolysed.
- Certain properties, such as CED viscosity, of the cellulose fibers may be affected by the hydrolysis.
- the hydrolysed cellulose fibers may be obtainable or obtained e.g.
- the hydrolysed cellulose fibers may be or comprise e.g. hydrolysed pulp.
- the pulp of the hydrolysed pulp may be any pulp described in this specification.
- the hydrolysed cellulose fibers may have a CED viscosity in the range of 50 to 500 ml/g, or 50 to 400 ml/g. In some embodiments, the hydrolysed cellulose fibers may have a CED viscosity in the range of 120 to 300 ml/g, or in the range of 140 to 200 ml/g.
- CED viscosity may be understood as referring to limiting viscosity number in cupri- ethylenediamine (CED) solution.
- the CED viscosity may be measured e.g. according to the standard ISO 5351:2010.
- the hydrolysed cellulose fibers may have a degree of polymerization (DP) in the range of about 100 to 700, or in the range of about 120 to 300.
- the degree of polymerization may be measured e.g. using the standard ISO 5351 : 2010 (en) .
- the hydrolysed cellulose fibers may, in some embodiments, be obtainable by a pretreatment or modification, for example a with a surface modification, saponification of cellulose esters, or phosphorylation.
- the hydrolysed cellulose fibers may have traces of processes causing e.g. changes in the surface chemistry.
- the base layer may formed of a densified cellulose fiber mixture.
- FIG. 1A describes an embodiment of the multilayer product 1 in cross-sectional view .
- the multilayer product 1 comprises a cellulose fiber-based base layer 2 and a barrier layer 3 .
- the barrier layer 3 covers the base layer 2 at least partially, or as shown in Fig . 1A, entirely .
- the multi layer product 1 further comprises a coating 4 .
- the coating 4 may be a cellulosic filmic layer .
- the coating or cellulosic filmic layer 4 is arranged on the barrier layer 3 . It covers the barrier layer 3 at least partially, or as shown in Fig . 1A, entirely .
- the coating 4 could alternatively or additionally be arranged on the base layer 2 .
- Figure 1C describes yet another embodiment of the multilayer product 1.
- the multilayer product 1 is similar to the one depicted in Fig. IB, except that the multilayer product 1 comprises four layers: two base layers 2 and 2' , a barrier layer 3, and a cellulosic filmic layer 4.
- the base layers 2 and 2' are arranged on opposite sides of the barrier layer 3.
- the cellulosic filmic layer 4 is the outermost layer. It is arranged on one of the base layers 4.
- Figure ID describes yet another embodiment of the multilayer product 1.
- the multilayer product 1 is similar to the one depicted in Fig. 1A, except that the multilayer product 1 further comprises an adhesive layer 5 between the base layer 2 and the barrier layer 3.
- the adhesive layer 5, extending between the base layer 2 and the barrier layer 3, may attach the base layer 2 and the barrier layer 3 to each other.
- the adhesive in the adhesive layer 5 may be e.g. any adhesive described in this specification.
- the adhesive layer 5 could also be included e.g. in multilayer products as shown in any one of Figs. 1A to 1C.
- exemplary embodiments shown in Figs. 1A to ID are flat or sheet-like, and may be moldable or molded into a desired shape.
- the oxygen transmission rate (OTR) and grease permeability of a cellulosic film were measured.
- Cellulosic films were prepared by regenerating alkaline cellulose dope in citric acid, with or without plasticizer, and dried the produced films at 180 °C and 410 kPa for 3 min. Oxygen transmission rate and fat permeability of the films were measured.
- Oxygen transmission rate of the cellulosic film at 23°C and 50% relative humidity is shown in Fig. 2A and grease permeability at 40°C in Fig. 2B.
- the coating of the fiber composition (fiber body, i.e. a base layer) with a cellulosic filmic layer was assessed.
- the cellulosic filmic layer was applied directly by sandwiching the structures in a compression molding process. Initially the base layer and filmic layer were conditioned at appropriate humidity chamber and compression molding was done at 80°C with 410 kp pressure for 20 mins or 95 °C with 650 kp pressure for 20 min. The pre-conditioning of the base layer and the film and application pressure and temperature can be adjusted depending on the needs.
- Packaging material produced by compression molding a base layer with a cellulosic filmic layer is shown in Fig. 3.
- a fiber composition fiber body, i.e. a base layer
- cellulosic film applied by calendering process
- the base layer and/or film was/were conditioned at appropriate humidity chamber and calendaring was done at 80°C with 500 kp pressure or 100 °C with 6000 kp pressure.
- the pre-conditioning of the base layer and the film and application pressure and temperature can be adjusted depending on the needs .
- Fig. 4 illustrates packaging material produced by calendering a base layer with cellulosic film.
- Pulp 1 refers to hydrolyzed kraft conifer pulp fiber with CED of 166 ml /g
- Pulp 2 refers to hydrolyzed kraft conifer fiber with a CED viscosity of 200 ml /g
- Formulation x : y represents the dry weight fiber mixture with kraft conifer pulp fibers : Pulp 1 or Pulp 2 .
- 60 : 40 represents to the formulation having 60 % of kraft conifer pulp fibers with 40 % of Pulp 1 or Pulp 2 .
- the physical-mechanical properties of the formulations are shown in Figs . 5A, 5B and 5C, respectively .
- Fig . 5A illustrates apparent bulk density values for specific fiber mixtures .
- Fig . 5B shows tensile index values for specific fiber mixtures .
- Multilayered sheets were produced as a combination of two or three layers by combining base conifer layer with Pulp 1 in different combinations .
- two layered sheets were produced by layering conifer base layer with Pulp 1 layer .
- the Pulp 1 layer was sandwiched between two conifer layers .
- the air permeances of resulting multilayered structures were measured based on I SO 5636-3 and are shown in Fig . 6 . It is obvious to a person skil led in the art that with the advancement of technology, the basic idea may be implemented in various ways . The embodiments are thus not limited to the examples described above ; instead they may vary within the scope of the claims .
- the embodiments described hereinbefore may be used in any combination with each other . Several of the embodiments may be combined together to form a further embodiment .
- a process , a product , or a use disclosed herein, may comprise at least one of the embodiments described hereinbefore .
- the benefits and advantages described above may relate to one embodiment or may relate to several embodiments .
- the embodiments are not limited to those that solve any or all of the stated problems or those that have any or all of the stated benefits and advantages .
- reference to ' an ' item refers to one or more of those items .
- the term "comprising" is used in this specification to mean including the feature ( s ) or act ( s ) followed thereafter, without excluding the presence of one or more additional features or acts .
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- Chemical & Material Sciences (AREA)
- Engineering & Computer Science (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Medicinal Chemistry (AREA)
- Polymers & Plastics (AREA)
- Organic Chemistry (AREA)
- Health & Medical Sciences (AREA)
- Manufacturing & Machinery (AREA)
- Materials Engineering (AREA)
- Life Sciences & Earth Sciences (AREA)
- Biochemistry (AREA)
- Laminated Bodies (AREA)
- Paper (AREA)
- Wrappers (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| FI20225793A FI131979B1 (en) | 2022-09-13 | 2022-09-13 | Multilayer product and method for producing the same |
| PCT/FI2023/050503 WO2024056939A1 (en) | 2022-09-13 | 2023-09-04 | Multilayer product and method for producing the same |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4587641A1 true EP4587641A1 (en) | 2025-07-23 |
Family
ID=88060598
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP23769309.8A Pending EP4587641A1 (en) | 2022-09-13 | 2023-09-04 | Multilayer product and method for producing the same |
Country Status (5)
| Country | Link |
|---|---|
| EP (1) | EP4587641A1 (en) |
| JP (1) | JP2025531080A (en) |
| CN (1) | CN119855957A (en) |
| FI (1) | FI131979B1 (en) |
| WO (1) | WO2024056939A1 (en) |
Family Cites Families (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| SE542054C2 (en) * | 2017-12-22 | 2020-02-18 | Stora Enso Oyj | Multilayer film comprising microfibrillated cellulose and a method of manufacturing a multilayer film |
| JP2022115529A (en) * | 2021-01-28 | 2022-08-09 | 東洋製罐グループホールディングス株式会社 | PAPER CONTAINER WITH BARRIER PROPERTIES AND METHOD FOR MANUFACTURING THE SAME |
-
2022
- 2022-09-13 FI FI20225793A patent/FI131979B1/en active
-
2023
- 2023-09-04 CN CN202380065287.3A patent/CN119855957A/en active Pending
- 2023-09-04 JP JP2025513679A patent/JP2025531080A/en active Pending
- 2023-09-04 WO PCT/FI2023/050503 patent/WO2024056939A1/en not_active Ceased
- 2023-09-04 EP EP23769309.8A patent/EP4587641A1/en active Pending
Also Published As
| Publication number | Publication date |
|---|---|
| CN119855957A (en) | 2025-04-18 |
| FI20225793A1 (en) | 2024-03-14 |
| FI131979B1 (en) | 2026-03-23 |
| WO2024056939A1 (en) | 2024-03-21 |
| JP2025531080A (en) | 2025-09-19 |
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