Production of useful articles from waste material
View Patent ↗Disclosed is a process of using waste material comprising absorbent material and a thermoplastic material, such as from the manufacture of disposable absorbent articles, to produce useful articles. The process includes shearing the waste material, chopping the waste material, pelleting the waste material, and extruding or injection molding the pelleted material to create a useful article.
1. A method of using waste material comprising an absorbent material and a thermoplastic material in the production of a useful article comprising:
obtaining a pelleted material, wherein the pelleted material is made from a process comprising:
shearing the waste material to generate sheared material, wherein the waste material is homogenized and densified;
chopping the sheared material to generate chopped material, wherein the chopped material has reduced particle size and increased density with respect to the sheared material;
combining and mixing the chopped material with one or more other materials to form a mixed material; and
processing the mixed material to form the pelleted material; and
extruding or injection molding the pelleted material.
2. The method of claim 1 wherein the waste material comprises material from disposable absorbent articles.
3. The method of claim 1 wherein the waste material comprises a superabsorbent polymer.
4. The method of claim 3 wherein the superabsorbent polymer is selected from the group consisting of sodium acrylates, polyacrylate-containing polymers or copolymers, polyacrylamide-containing polymers or copolymers, ethylene- and maleic anhydride-containing copolymers, cross-linked carboxymethylcellulose, polyvinyl alcohol-containing polymers or copolymers, cross-linked polyethylene oxide, and starch-grafted polymers or copolymers of polyacrylonitrile.
5. The method of claim 1 wherein the waste material comprises waste material from manufacture of articles selected from the group consisting of diapers, absorbent pads, adult incontinence products, and feminine hygiene products.
6. The method of claim 1 wherein the shearing comprises maintaining temperature of the waste material below an average melting point of plastic in the waste material.
7. The method of claim 1 wherein the shearing comprises maintaining temperature of the waste material at about 5° F. to about 10° F. below an average melting point of plastic in the waste material.
8. The method of claim 1 wherein the shearing comprises introducing the waste material between stationary and rotating chilled discs.
9. The method of claim 8 further comprising maintaining temperature of the waste material below an average melting point of plastic in the waste material, wherein the temperature is controlled by adjusting a gap between the stationary disc and the rotating disc.
10. The method of claim 9 wherein the maintaining the temperature of the waste material below the average melting point of the plastic is indicated by strands of sheared material emerging from the discs that separate in pieces approximately 2 inches in length.
11. The method of claim 1 further comprising, prior to the chopping the sheared material, cooling the sheared material.
12. The method of claim 1 comprising chopping the sheared material to generate particles of chopped material of from about 0.125 inches to about 0.5 inches in size.
13. The method of claim 1 wherein the combining and mixing results in a mixed material comprising:
30% to 75% w/w cellulosic fiber;
20% to 70% w/w thermoplastic resin; and
3% to 25% w/w an ingredient selected from the group consisting of a lubricant, a mineral filler, a process aid, a pigment, and a thermosetting resin.
14. The method of claim 1 wherein the one or more other materials is selected from the group consisting of a cellulosic fiber, a thermoplastic resin, a lubricant, a mineral filler, a process aid, a pigment, and a thermosetting resin.
15. The method of claim 1 wherein the combining and mixing comprises mixing combined materials in a mixing device.
16. The method of claim 15 wherein the mixing device is a ribbon blender.
17. The method of claim 1 wherein the processing the mixed material to form pelleted material comprises processing the mixed material in a pellet mill.
18. The method of claim 1 wherein the processing generates a friable pellet.
19. The method of claim 1 comprising extruding the pelleted material.
20. The method of claim 19 further comprising, between the processing the mixed material to form the pelleted material and extruding the pelleted material, removing moisture from the pelleted material.
21. The method of claim 20 wherein the removing the moisture from the pelleted material comprises forcing air at a temperature between about 180° F. and about 200° F. through a mass of the pelleted material.
22. The method of claim 19 further comprising co-extruding a capstock with the extruded pelleted material.
23. The method of claim 1 wherein the one or more other materials comprises a material selected from the group consisting of a thermosetting resin and a cross-linking agent.
24. A method of using waste material comprising an absorbent material and a thermoplastic material in the production of a useful article comprising:
obtaining a pelleted material, wherein the pelleted material is made from a process comprising:
shearing the waste material to generate sheared material, wherein the waste material is homogenized and densified;
chopping the sheared material to generate chopped material, wherein the chopped material has reduced particle size and increased density with respect to the sheared material;
combining and mixing the chopped material with one or more other materials to form a mixed material; and
processing the mixed material to form the pelleted material, wherein the processing melts at least a portion of the thermoplastic material to encapsulate the absorbent material and thereby prevent absorption of moisture; and
extruding or injection molding the pelleted material.
25. A method of using waste material comprising an absorbent material and a thermoplastic material in the production of a useful article comprising:
shearing the waste material to generate sheared material, wherein the waste material is homogenized and densified;
chopping the sheared material to generate chopped material, wherein the chopped material has reduced particle size and increased density with respect to the sheared material;
combining and mixing the chopped material with one or more other materials to form a mixed material;
processing the mixed material to form pelleted material; and
extruding or injection molding the pelleted material.
26. The method of claim 1 comprising injection molding the pelleted material.