Claims
- 1. In a non-aqueous process for the dyeing of a dyeable material, the improvement comprising the steps of
- (a) contacting a dyeable material with a dye composition in a non-reactive, substantially oxygen-free atmosphere, the dye composition temperature and the time of contact between the dye composition and the dyeable material being sufficient to effectuate the dyeing of the dyeable material with the dye composition being at a temperature equal to or greater than the temperature at which dye degradation occurs in an oxygen containing atmosphere, the dye composition comprising a substantially non-aqueous solvent having a boiling point of at least 100.degree. C. and a dyestuff soluable in the solvent, the solvent being selected from the group consisting of aromatic esters, cycloaliphatic diesters, and triglycerides;
- (b) removing the dye composition from contact with the dyeable material; and
- (c) recycling the dye composition removed in step (b) to contact the dyeable material in step (a).
- 2. The process as in claim 1, wherein the non-reactive atmosphere is selected from the group consisting of fluorocarbons, halogenated hydrocarbons, inert gases, low boiling alcohols, organic solvents, nitrogen, carbon dioxide, and combinations thereof.
- 3. The process as in claim 1, wherein the non-reactive atmosphere is selected from the group consisting of fluorocarbons and halogenated hydrocarbons.
- 4. The process as in claim 3, wherein the fluorocarbon is 1,1,2-trichloro-1,2,2-trifluoroethane.
- 5. The process as in claim 3, wherein the halogenated hydrocarbon is 1,1,1,trichloroethane.
- 6. The process as in claim 1, further comprising the step of preheating the dyeable material prior to contacting the dyeable material with the dye composition.
- 7. The process as in claim 6, wherein the dyeable material is preheated in a non-reactive, substantially oxygen-free atmosphere.
- 8. The process as in claim 7, wherein the non-reactive atmosphere is selected from the group consisting of fluorocrbons, halogenated hydrocarbons, inert gases, low boiling alcohols, organic solvents, nitrogen, carbon dioxide, and combinations thereof.
- 9. The process as in claim 1, further comprising the step of cooling the dyeable material after contacting the dyeable material with the dye composition.
- 10. The process as in claim 9, wherein the dyeable material is cooled in a non-reactive substantially oxygen-free atmosphere.
- 11. The process as in claim 10, wherein the non-reactive atmosphere is selected from the group consisting of fluorocarbons, halogenated hydrocarbons, inert gases, low boiling alcohols, nitrogen, carbon dioxide, and combinations thereof.
- 12. The process as in claim 1, wherein the aromatic ester is of the formula: ArCOOR.sub.2, ArCOO-R.sub.1 --OOCAr or (ArCOO).sub.z -R.sub.3, wherein R1 is alkylene of 2-8 carbon atoms of polyoxyalkylene of the formula --C.sub.r H.sub.2r (OC.sub.r H.sub.2r).sub.s, in which r is 2 or 3 and s is up to 15; R.sub.2 is substituted or unsubstituted alkyl or alkenyl of 8-30 carbon atoms; R.sub.3 is the residue of a polyhydric alcohol having z hydroxyl groups; Ar is mono- or bicyclic aryl of up to 15 carbon atom and z is 3-6.
- 13. The process as in claim 1, wherein the cycloaliphatic diester is of the formula: ##STR2## wherein R is substituted or unsubstituted straight or branched chain alkyl of 4-20 carbon atoms, polyoalkylene of the formula R'(OC.sub.x H.sub.2x).sub.n or phosphated polyoxyalkylene of the formula
- (HO).sub.2 P(.dbd.O)(OC.sub.x H.sub.2x).sub.n OC.sub.x H.sub.2x --
- or a salt thereof, wherein (C.sub.x H.sub.2x O).sub.n is (C.sub.2 H.sub.4 O).sub.n --, (C.sub.3 H.sub.6 O).sub.n -- or (C.sub.2 H.sub.4 O).sub.p --, (C.sub.3 H.sub.6 O).sub.q --; R' is H or ArCO; Ar is mono- or bicyclic aryl of up to 15 carbon atoms; x is 2 or 3; n is 2-22 and the sum of p+q is n.
- 14. The process as in claim 1, further comprising the step of rinsing the dyeable material after contact with the dye composition to remove excess dye composition from the dyeable material.
- 15. The process as in claim 14, wherein the dyeable material is rinsed in a non-reactive, substantially oxygen-free atmosphere.
- 16. The process as in claim 15, wherein the non-reactive atmosphere is a vapor in the dyeing step and a liquid in the rinse step.
- 17. The process as in claim 15, wherein the non-reactive atmosphere is selected from the group consisting of fluorocarbons, halogenated hydrocarbons, inert gases, low boiling alcohols, organic solvents, nitrogen, carbon dioxide, and combinations thereof.
- 18. The process as in claim 14, further comprising the step of drying the dyeable material after contact with the dye composition and rinsing of the dye composition.
- 19. The process as in claim 18, wherein the dyeable material is dried in a non-reactive, substantially oxygen-free atmosphere.
- 20. The process as in claim 19, wherein the non-reactive atmosphere is selected from the group consisting of fluorocarbons, halogenated hydrocarbons, inert gases, low boiling alcohols, organic solvents, nitrogen, carbon dioxide, and combinations thereof.
- 21. The process as in claim 1, wherein the dyeable material is a textile material.
- 22. The process as in claim 21, wherein the textile material is a synthetic material.
- 23. The process as in claim 22, wherein in the contacting step the dye composition is at a temperature above the glass transition temperature of the synthetic material, but below both the melting point temperature of the synthetic material and the boiling point temperature of the dye composition.
- 24. The process as in claim 22, wherein the synthetic material is selected from the group consisting of polyesters, polyamides, polyurethanes, acrylics, halogenated polyolefins, polyolefins, aramids, and epoxy plastics.
- 25. The process as in claim 21, wherein the textile material is a natural material.
- 26. The process as in claim 1, wherein the dye composition is prepared and heated in a non-reactive, substantially oxygen-free atmosphere.
- 27. A non-aqueous process for the dyeing of a dyeable material comprising the steps of:
- (a) preheating the dyeable material;
- (b) contacting the preheated dyeable material with a dye composition in a non-reactive, subatantially oxygen-free atmosphere, the dye composition temperature and the time of contact between the dye composition and the dyeable material being sufficient to effectuate the dyeing of the dyeable material with the dye composition being at a temperature equal to or greater than the temperature at which dye degredation occurs in an oxygen containing atmosphere, the dye composition comprising a substantially non-aqueous solvent having a boiling point of at least 100.degree. C. and a dyestuff soluble in the solvent, the solvent being selected from the group consisting of aromatic esters, cycloaliphatic diesters, and triglycerides, the non-reactive atmosphere being selected from the group consisting of fluorocarbons and halogenated hydrocarbons;
- (c) removing the dye composition from contact with the dyeable material;
- (d) cooling the dyeable material; and
- (e) recycling the dye composition removed in step (c) to contact the dyeable material in step (b).
- 28. The process as in claim 27, wherein the dyeable material is preheated in a non-reactive, substantially oxygen-free atmosphere by passing heated fluorocarbon or halogenated hydrocarbon gas over the dyeable material.
- 29. The process as in claim 27, wherein the dyeable material is cooled in a non-reactive, substantially oxygen-free atmosphere by passing fluorocarbons or halogenated hydrocarbon in the gaseous state over the dyeable material.
- 30. The process as in claim 27, further comprising the step of rinsing the cooled dyeable material by passing fluorocarbon or halogenated hydrocarbon liquid over the dyeable material to remove excess dye composition from the dyeable material.
- 31. The process as in claim 30, further comprising the step of drying the rinsed dyeable material by passing heated fluorocarbon or halogenated hydrocarbon gas over the dyeable material.
- 32. The process as in claim 27, wherein the dyeable material is a textile material.
- 33. The process as in claim 32, wherein the textile material is a synthetic material.
- 34. The process as in claim 33, wherein the synthetic material is selected from the group consisting of polyesters, polyamides, polyurethanes, acrylics, halogenated polyolefins, polyolefins, aramids, and epoxy plastics.
- 35. The process as in claim 1, wherein the aromatic ester is of the formula: ArCOOR.sub.2, ArCOO-R.sub.1 --OOCAr or (ArCOO).sub.z --R.sub.3, wherein R.sub.1 is alkylene of 2-8 carbon atoms of polyoxyalkylene of the formula --C.sub.r H.sub.2r (OC.sub.r H.sub.2r).sub.s, in which r is 2 or 3 and s is up to 15; R.sub.2 is substituted or unsubstituted alkyl or alkenyl of 8-30 carbon atoms; R.sub.3 is the residue of a polyhydric alcohol having z hydroxyl groups; Ar is mono- or bicyclic aryl of up to 15 carbon atoms and z is 3-6.
- 36. The process as in claim 1, wherein cycloaliphatic ester is of the formula: ##STR3## wherein R is substituted or unsubstituted straight or branched chain alkyl of 4-20 carbon atoms, polyoxyalkylene of the formula R'(OC.sub.x H.sub.2x).sub.n or phosphated polyoxyalkylene of the formula
- (HO).sub.2 P(.dbd.O)(OC.sub.x H.sub.2x).sub.n OC.sub.x H.sub.2x --
- or a salt thereof, wherein (C.sub.x H.sub.2x O).sub.n is (C.sub.2 H.sub.4 O).sub.n --, (C.sub.3 H.sub.6 O).sub.n -- or (C.sub.2 H.sub.4 O).sub.p --, (C.sub.3 H.sub.6 O).sub.q --; R' is H or ArCO; Ar is mono- or bicyclic aryl of up to 15 carbon atoms; x is 2 or 3; n is 2-22 and the sum of p +q is n.
- 37. The process as in claim 27, wherein the dye composition is heated in a non-reactive, substantially oxygen-free atmosphere being selected from the group consisting of fluorocarbons and halogenated hydrocarbons.
- 38. The process as in claim 27, wherein the dyestuff is selected from the group consisting of disperse, vat, reactive, direct, acid, basic, sulfur, and pigment.
- 39. The process as in claim 38, wherein the dye composition further comprises an additive selected from the group consisting of levelers, dye carriers, and organic finishing agents.
- 40. The process as in claim 1, wherein the glyceride is vegetable oil.
- 41. The process as in claim 40, wherein the vegetable oil is corn oil.
- 42. The process as in claim 30, wherein the glyceride is vegetable oil.
- 43. The process as in claim 42, wherein the vegetable oil is corn oil.
- 44. The process as in claim 37 wherein the dye composition is at a temperature above the glass transiton temperature of the synthetic material, but below both the melting point temperature of the synthetic material and the boiling point temperature of the dye composition.
Parent Case Info
This application is a continuation, of application Ser. No. 600,103, filed Apr. 13, 1984, abandoned.
US Referenced Citations (16)
Foreign Referenced Citations (8)
Number |
Date |
Country |
159877 |
Apr 1985 |
EPX |
3520806 |
Dec 1986 |
DEX |
1386073 |
Mar 1975 |
GBX |
1386072 |
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GBX |
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Non-Patent Literature Citations (2)
Entry |
J. Lenoir in Vemcataraman's "The Chemistry of Synthetic Dyes", (Academic Press), vol. V, p. 314. |
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Continuations (1)
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Number |
Date |
Country |
Parent |
600103 |
Apr 1984 |
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