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Use of Modified Inorganic Particles as Aldehyde Scavenger and Curing Agent, in Particular in Wood Based Panels

Dicke, Rene ; Rot, Katarina
2012
Online Patent

Titel:
Use of Modified Inorganic Particles as Aldehyde Scavenger and Curing Agent, in Particular in Wood Based Panels
Autor/in / Beteiligte Person: Dicke, Rene ; Rot, Katarina
Link:
Veröffentlichung: 2012
Medientyp: Patent
Sonstiges:
  • Nachgewiesen in: USPTO Patent Applications
  • Sprachen: English
  • Document Number: 20120329906
  • Publication Date: December 27, 2012
  • Appl. No: 13/583089
  • Application Filed: March 08, 2011
  • Assignees: BOREALIS AGROLINZ MELAMINE GMBH (Linz, AT)
  • Claim: 1-6. (canceled)
  • Claim: 7. A composition for use as an adhesive, comprising at least one modified inorganic particle or a mixture of at least one modified inorganic particle and at least one non-modified inorganic particle selected from the group consisting of montmorillonite, bentonite, kaolinite, muscovite, hectorite, fluorohectorite, canemite, revdite, grumantite, ilerite, saponite, beidelite, nontronite, stevensite, laponite, taneolite, vermiculite, halloysite, volkonskoite, magadite, rectorite, halloysite, kenyaite, sauconite, borofluorophlogopites and synthetic sheet silicates, at least one aldehyde based resin selected from a group consisting of melamine-urea-formaldehyde-resins (MUF), urea-formaldehyde-resins (UF) and phenol containing resins, and at least one hydrophobic agent and/or a solvent.
  • Claim: 8. The composition according to claim 7, wherein the composition comprises: 1 to 30 wt % of at least one modified inorganic particle or a mixture of at least one modified inorganic particle and at least one non-modified inorganic particle 50 to 70 wt % of at least one aldehyde based resin, 0.5 to 10 wt % hydrophobic agents, 0 to 10 wt % of at least one hardener, and 0 to 50 wt % of a solvent, in particular water and/or alcohols.
  • Claim: 9. (canceled)
  • Claim: 10. The composition according to claim 7, wherein the hardener is an ammonium salt of an acid.
  • Claim: 11. he composition according to claim 7, wherein the hydrophobic agents are selected from a group consisting of paraffin, waxes, C10-C30 fatty acid derivatives, and water dispersion of paraffin and waxes.
  • Claim: 12. Wood based panels comprising at least one composition according to claim 7.
  • Claim: 13. A method of scavenging an aldehyde in an aldehyde based resin, comprising adding 1 to 30 wt % of at least one modified inorganic particle or a mixture of at least one modified inorganic particle and at least one non-modified inorganic particle to a dispersion of at least one aldehyde based resin in a solvent, wherein the at least one modified inorganic particle is modified by cation exchange and is a sheet silicate or clay of the type consisting of montmorillonite, bentonite, kaolinite, muscovite, hectorite, fluorohectorite, canemite, revdite, grumantite, ilerite, saponite, beidelite, nontronite, stevensite, laponite, taneolite, vermiculite, halloysite, volkonskoite, magadite, rectorite, halloysite, kenyaite, sauconite, borofluorophlogopites and synthetic sheet silicates.
  • Claim: 14. A method for curing an aldehyde based resin, comprising adding 1 to 30 wt % of at least one modified inorganic particle or a mixture of at least one modified inorganic particle and at least one non-modified inorganic particle to a dispersion of at least one aldehyde based resin in a solvent, wherein the at least one modified inorganic particle is modified by cation exchange and is a sheet silicate or clay at the type consisting of montmorillonite, bentonite, kaolinite, muscovite, hectorite, fluorohectorite, canemite, revdite, grumantite, ilerite, saponite, beidelite, nontronite, stevensite, laponite, taneolite, vermiculite, halloysite, volkonskoite, magadite, rectorite, halloysite, kenyaite, sauconite, borofluorophlogopites and synthetic sheet silicates.
  • Claim: 15. (canceled)
  • Claim: 16. The method according to claim 13, wherein the at least one inorganic particle is modified by cation exchange using at least one cation selected from the group consisting of H+, NH4+, Al3+, Fe3+, Sn2+, Mg2+, Li, Mn2+, melamine derivatives, thiourea, thiourea derivates, urea, urea derivatives, guanidine, guanidine derivatives, cyanamide, dicyandiamide, sulfonamides, aniline, alkyl and aryl amines, alkyl and aryl amides, proteins, and amino acids intercalated into the layered structure of the inorganic particle.
  • Claim: 17. The method according to claim 13, wherein a mixture of at least one inorganic particle having a layered structure and modified by cation exchange and at least one non-modified inorganic particle having a layered structure is added to the aldehyde based resin in the solvent.
  • Claim: 18. The method according to claim 13, wherein the at least one by cation exchange modified inorganic particle comprises at least one aminoplast as an outer coat and at least one polyfunctional C1-C30 amino compound selected from the group consisting of melamine, melamine derivatives, urea, urea derivatives, guanidine, guanidine derivatives, cyanamide, dicyandiamide, sulfonamides, aniline, alkyl and aryl amines, alkyl and aryl amides, proteins and amino acids intercalated into the layered structure of the inorganic particle.
  • Claim: 19. The method according to claim 13, wherein the at least one modified inorganic particle or a mixture of at least one modified inorganic particle and at least one non-modified inorganic particle is further mixed with at least one hydrophobic agent and/or at least one hardener.
  • Claim: 20. The method according to claim 14, wherein the at least one inorganic particle is modified by cation exchange using at least one cation selected from the group consisting of H+, NH4+, Al3+, Fe3+, Sn2+, Mg2+, Li+, Mn2+, melamine derivatives, thiourea, thiourea derivates, urea, urea derivatives, guanidine, guanidine derivatives, cyanamide, dicyandiamide, sulfonamides, aniline, alkyl and aryl amines, alkyl and aryl amides, proteins, and amino acids intercalated into the layered structure of the inorganic particle.
  • Claim: 21. The method according to claim 14, wherein a mixture of at least one inorganic particle having a layered structure and modified by cation exchange and at least one non-modified inorganic particle having a layered structure is added to the aldehyde based resin in the solvent.
  • Claim: 22. The method according to claim 14, wherein the at least one by cation exchange modified inorganic particle comprises at least one aminoplast as an outer coat and at least one polyfunctional C1-C30 amino compound selected from the group consisting of melamine, melamine derivatives, urea, urea derivatives, guanidine, guanidine derivatives, cyanamide, dicyandiamide, sulfonamides, aniline, alkyl and aryl amines, alkyl and aryl amides, proteins and amino acids intercalated into the layered structure of the inorganic particle.
  • Claim: 23. The method according to claim 14, wherein the at least one modified inorganic particle or a mixture of at least one modified inorganic particle and at least one non-modified inorganic particle is further mixed with at least one hydrophobic agent and/or at least one hardener.
  • Claim: 24. The method according to claim 13, wherein the aldehyde is formaldehyde.
  • Claim: 25. The method according to claim 13, wherein the resin is a formaldehyde based resin.
  • Claim: 26. The method according to claim 14, where the resin is a formaldehyde based resin.
  • Claim: 27. The method according to claim 25, wherein the formaldehyde based resin is an aminoplast based resin.
  • Claim: 28. The method according to claim 26, wherein the formaldehyde based resin is an aminoplast based resin.
  • Claim: 29. The method according to claim 13, wherein the at least one modified inorganic particle or mixture of at least one modified inorganic particle and a non-modified inorganic particle is added to the aldehyde-based resin in the solvent in an amount of 3 to 15 wt %.
  • Claim: 30. The method according to claim 14, wherein the at least one modified inorganic particle or mixture of at least one modified inorganic particle and a non-modified inorganic particle is added to the aldehyde based resin in an amount of 3 to 15 wt %.
  • Claim: 31. The composition of claim 7, wherein the at least one modified inorganic particle is modified by cation exchange using at least one cation from the group consisting of H+, NH4+, Al3+, Fe3+, Sn2+, Mg2+, Li+, Mn2+, melamine derivatives, thiourea, thiourea derivates, urea, urea derivatives, guanidine, guanidine derivatives, cyanamide, dicyandiamide, sulfonamides, aniline, alkyl and aryl amines, alkyl and aryl amides, proteins, amino acids intercalated into the layered structure of the inorganic particle.
  • Current U.S. Class: 523/205
  • Current International Class: 09

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