Claims
- 1. A method of increasing the yield of 2,6-NDA which comprises:a) Dissolving the disproportionation reaction product of potassium naphthoate, comprising the dialkali salt of 2,6-NDA(K2NDA), in water to form an aqueous solution and filtering off insoluble matter from the resulting solution; b) Reacting said aqueous K2NDA solution at a CO2 pressure of about 0-200 psig and a temperature of about 0-50° C. to selectively precipitate the monopotassium salt of 2,6-NDA (KHNDA); c) Suspending said monopotassium salt in water in a weight ratio higher than 8:1, water: monosalt; and d) Heating said monopotassium salt in water at a temperature above 100° C. and at a CO2 pressure above 100 psig causing disproportionation to form 2,6-NDA and K2NDA.
- 2. The method of claim 1 wherein the monopotassium salt of 2,6-NDA (KHNDA) is suspended in water in a weight ratio of greater than 10:1, water to monosalt to about 20:1 water: monosalt.
- 3. The method of claim 1 wherein the monopotassium salt of 2,6-NDA(KHNDA) is suspended in water in a weight ratio higher than 8:1 water: monosalt.
- 4. The method of claim 1 wherein the monoalkali salt in water is heated at a temperature of from about 120-170° C.
- 5. The method of claim 4 wherein the monoalkali salt in water is heated at a temperature of from about a 140-160° C.
- 6. The method of claim 1 wherein the monoalkali salt in water is heated at a CO2 pressure of about 150 to 800 psig.
- 7. The method of claim 6 wherein the monoalkali salt in water is heated at a CO2 pressure of about 175-250 psig.
- 8. In a process for the recovery of pure 2,6-NDA from the dipotassium salt of 2,6-NDA formed by the disproportionation of potassium naphthoate by:a) Dissolving the dipotassium salt of 2,6-NDA in water and filtering off insoluble matter from the resulting solution; b) Selectively precipitating the monopotassium salt of 2,6-NDA (KHNDA) from an aqueous K2NDA solution at a CO2 pressure of about 0-200 psig and a temperature of about 0-50° C.; and c) Disproportionating the monopotassium salt to produce 2,6-NDA, the improvement which provides an improvement in yield of 20% or more which comprises: d) Suspending said monopotassium salt in water in a weight ratio of 10-20:1, water: monosalt; and e) Heating said monopotassium salt in water at a temperature of about 140-160° C. and at a CO2 pressure of about 175 to 800 psig to disproportionate the monopotassium salt (KHNDA) to 2,6-NDA and K2NDA.
- 9. The method of claim 8 wherein the CO2 pressure is from about 175-250 psig.
CROSS REFERENCE
This application is related to U.S. Application Ser. Nos. 60/151,489, 60/151,577, 60/151,607, 60/151,498, 60/151,602, 60/151,603, 60/151,529, 60/151,604, 60/151,606, 60/151,589, 60/151,497, 60/151,590, and 60/151,578, filed of even date Aug. 30, 1999.
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Provisional Applications (13)
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