Recyclable blister package
A blister package is provided that includes a base made from cyclic olefin copolymer (COC) and a lidding film that includes polyolefin layer(s) or a combination of polyolefin and COC layers, that allows both the lidding film and base to be recycled in a single plastic waste stream.
1. A halogen-free recyclable moisture barrier blister package comprising a lidding film and a base, the base having a plurality of base cavities each configured to hold an individual product portion, the lidding film and base being heat sealed together about a perimeter of each of the plurality of base cavities, and:
the base comprises a thermoformed sheet having one or more layers of cyclic olefin copolymer (COC) in combination with one or more layers of polyolefin;
the lidding film comprises a laminated or extruded sheet having one or more layers of polyolefin, or one or more layers of polyolefin in combination with one or more layers of COC;
wherein the lidding film and base have adjacent polyolefin layers heat sealing the lidding film around the perimeter of each base cavity;
the combination of the base and the lidding film is recyclable in a single plastic polyolefin waste stream based on the polyolefin layer(s) of the lidding film and/or the base;
the package has a moisture vapor transmission rate (MVTR) measured via a 5-week weight gain test at 40° C. and 75% relative humidity (RH) as defined in ASTM D7709 of no greater than 2 milligram per cavity per 24 hours for a standard capsule size 0 cavity;
wherein the polyolefin is polypropylene (PP) or polyethylene (PE), and the lidding film and base are recyclable in a single plastic waste stream, namely a PP or PE plastic waste stream depending on the type of polyolefin (PP or PE).
2. The blister package of claim 1 , wherein the package has a MVTR of no greater than 1 milligram per cavity per 24 hours.
3. The blister package of claim 1 , wherein both the base and the lidding film include a polyolefin surface layer comprising polypropylene (PP) or polyethylene (PE) that form a releasable heat seal to temporarily attach the lidding film to the base, with an individual product portion sealed in each cavity of the base, wherein the lidding film is configured to be grasped and peeled away from the perimeter of each base cavity so as to allow release of the individual product portion from the cavity.
4. The blister package of claim 1 , wherein the thermoformed sheet of the base is produced from a flat sheet having a moisture vapor transmission rate (MVTR) of less than 1 gram per square meter per 24 hours at 38° C. 90% RH.
5. The blister package of claim 1 , wherein the polyolefin consists essentially of polypropylene (PP), which together with the COC is recyclable in a PP plastic waste stream.
6. The blister package of claim 1 , wherein the polyolefin consists essentially of a polyethylene (PE), which together with the COC is recyclable in a PE plastic waste stream.
7. The blister package of claim 1 , wherein the adjacent polyolefin layers are PP.
8. The blister package of claim 1 , wherein the adjacent polyolefin layers are PE.
9. The blister package of claim 1 , wherein the COC layer of each cavity of the blister base is configured to be ruptured by applying a snapping force to rupture the blister base cavity, thereby allowing release of an individual product portion from the ruptured base cavity, wherein the lidding film, still adhered to the blister base after rupture of each base cavity and removal of the product portion from each ruptured base cavity, is recyclable in a single plastic waste stream.
10. The blister package of claim 1 , wherein the lidding film includes a PP layer and the lidding film and base are recyclable in a PP plastic waste stream.
11. The blister package of claim 1 , wherein the lidding film includes a PE layer and the lidding film and base are recyclable in a PE plastic waste stream.
12. The blister package of claim 1 , wherein the lidding film is a puncture resistant lidding film.
13. The blister package of claim 12 , wherein the puncture resistant lidding film includes a puncture resistant layer of bi-axially oriented PP (BOPP) or bi-axially oriented PE (BOPE).
14. The blister package of claim 12 , wherein the lidding film is configured to be peeled away from the blister base to enable release of the individual product portion from each cavity of the blister base.
15. The blister package of claim 1 , wherein the lidding film further includes one or more of a metallization, SiOx or AlOx layer configured to provide a barrier property for protecting the individual product portion sealed in each blister cavity from contamination or a reduction of shelf life, wherein the metallization, SiOx or AlOx layer has a thickness of a few angstroms so as not to preclude its inclusion in a single plastic waste stream.
16. The blister package of claim 15 , wherein the metallization, SiOx or AlOx layer is configured to provide a moisture barrier property or an oxygen barrier property.
17. The blister package of claim 1 , wherein the lidding film includes a metallization, SiOx or AlOx layer has a thickness of a few angstroms so as to be recyclable in a single plastic waste stream.
18. The blister package of claim 1 , wherein one or more layers of the lidding film and base are a barrier layer to provide a barrier property that prevents or retards access of one or more outside contaminants or substances that reduce the shelf life of the individual product portion from entering each cavity of the blister package.
19. The blister package of claim 1 , wherein the package has a moisture vapor transmission rate (MVTR) measured via a 5-week weight gain test at 40° C. and 75% relative humidity (RH) as defined in ASTM D7709 that is equal to or less than that of a comparative package having a base of PVC and PVDC material at a coating weight of 40 grams per square meter onto a PVC base having a thickness ranging from 150 micrometer to 500 micrometer and an Aluminum foil push-through lidding film.