Claims
- 1. A continuous process for producing melamine from urea comprising pyrolyzing urea in a reactor at a pressure at from about 1500 to 2500 psig and at a temperature at from about 670.degree. to 800.degree. F. to produce a reaction product containing liquid melamine, CO.sub.2 and NH.sub.3 ; transferring, under pressure, said reaction product as a mixed stream to a separator unit; maintaining said separator unit at substantially the same pressure and temperature as said reactor; separating said reaction product in said separator unit into CO.sub.2 and NH.sub.3 offgases containing melamine vapors and liquid melamine; simultaneously transferring
- (a) said CO.sub.2 and NH.sub.3 offgases containing melamine at a temperature and pressure substantially the same as said temperature and pressure of said separator unit to a scrubber unit and scrubbing said off-gases with molten urea to preheat said urea and cool said offgases and remove therefrom said melamine, and thereafter removing NH.sub.3 and CO.sub.2 gases from said scrubber unit at a temperature of from about 350.degree. to about 450.degree. F. and feeding said preheated molten urea containing said melamine to said reactor, and
- (b) said liquid melamine to a product cooling unit;
- and depressurizing and quenching said liquid melamine with a liquid medium which will form a gas at the temperature of said liquid melamine in said product cooling unit to produce a commercially useful solid melamine product, without washing or further purification.
- 2. The process of claim 1 wherein said melamine product has a purity of from about 96 to 99.5% melamine, and contains not more than about 1.5% melem and melam.
- 3. The process of claim 1 wherein said reactor is at a pressure of from 1700 to 2200 psig and at a temperature of from 700.degree. to 800.degree. F., said gas separator being maintained at substantially said pressure and temperature of said reactor, and said scrubber being maintained at substantially the same pressure of said reactor.
- 4. The process of claim 3 wherein said liquid for quenching said liquid melamine is anhydrous liquid ammonia.
- 5. The process of claim 4 wherein the product cooling unit is maintained at a pressure of from about 200 to 600 psig and at a temperature of from about 120.degree. to 230.degree. F.
- 6. The process of claim 5 wherein said solid melamine product has a purity of from 97.5 to 99.5% melamine and contains no more than about 0.75% melam and melem.
- 7. The process of claim 5 wherein said scrubber unit is maintained at a temperature of from about 350.degree. to 380.degree. F.
- 8. A plant-system for producing melamine from urea comprising as the essential components of said plant-system a reactor unit; a separator unit; a scrubber unit, and a product cooling unit,
- said reactor unit including: means for heating and maintaining said reactor to a temperature of from about 670.degree. F. to about 800.degree. F.; means for pressurizing said unit to from about 1500 to 2500 psig and pyrolyzing urea to produce liquid melamine, CO.sub.2 and NH.sub.3, and means for continuously transferring under said temperature and pressure conditions liquid melamine, CO.sub.2 and NH.sub.3 as a mixed stream to said separator unit;
- said separator unit including: means for maintaining said separator at substantially the same temperature and pressure as said reactor; means for receiving and separating under said temperature and pressure conditions said stream of liquid melamine, NH.sub.3 and CO.sub.2, and means for continuously transferring said CO.sub.2 and NH.sub.3 offgases containing melamine vapors to said scrubber, and means for continuously transferring said liquid melamine to said product cooling unit;
- said scrubber unit including: means for receiving molten urea; means for receiving said offgases containing said melamine from said separator unit at said temperature and pressure conditions of said separator unit; means for contacting said molten urea with said offgases containing melamine to scrub said melamine from said CO.sub.2 and NH.sub.3 gases and preheating said urea, and means for continuously transferring said molten urea containing said scrubbed melamine to said reactor;
- said product cooling unit including: means for receiving said liquid melamine from said separator unit; means for depressurizing and quenching said liquid melamine with a liquid medium which will form a gas at the temperature of said liquid melamine, and collecting said melamine without washing or further purification as a solid at from about 96 to 99.5% melamine.
- 9. The plant-system of claim 8 wherein said liquid medium for quenching said liquid melamine is liquid ammonia.
- 10. The plant-system of claim 9 wherein said product cooling unit includes a pressurized product collector tank including valve means at one end and said liquid melamine is received through said valve means by said tank.
- 11. The plant-system of claim 10 wherein said collector tank further includes a discharge end, said discharge end including valve means and a product level indicator constructed and arranged with said valve means; said tank containing a head of at least about 2 to 8 feet of solid melamine product, and means for automatically controlling the valve means in conjunction with said level indicator to continuously remove powdered melamine from the collector tank in response to said level indicator.
- 12. In a continuous high-pressure, non-catalytic process for producing melamine product by pyrolyzing urea to produce NH.sub.3, CO.sub.2 and melamine, the improvement wherein the melamine is in the liquid phase and is quenched by contacting the melamine with liquid ammonia which at the temperature of said melamine will form a gas to provide a solid melamine product, and recovering said melamine product without further washing or purification as a solid containing from about 96 to 99.5% melamine and not more than about 1.5% melem and melam.
- 13. In the process of claim 12 the further improvement wherein said melamine is liquid.
- 14. The process of claim 13 wherein said urea is pyrolyzed in a reactor maintained at a temperature of from about 700.degree. to 800.degree. F. and a pressure of from about 1700 to 2200 psig.
- 15. The process of claim 14 wherein said quenching of liquid melamine with liquid ammonia is carried out at a pressure of from about 200 to 600 psig and a temperature of from about 120.degree. to 230.degree. F.
- 16. The process of claim 15 wherein said solid melamine product has a purity of from 97.5 to 99% melamine and contains no more than about 0.75% melam or melem.
Parent Case Info
This is a continuation of application Ser. No. 568,408 filed Jan. 5, 1984, now abandoned.
US Referenced Citations (26)
Foreign Referenced Citations (3)
Number |
Date |
Country |
641643 |
Aug 1950 |
GBX |
1003277 |
Sep 1965 |
GBX |
1032326 |
Jun 1966 |
GBX |
Non-Patent Literature Citations (2)
Entry |
Atsumi Okamoto, "Total Recycle Process Melamine From Urea," Hydrocarbon Processing, Nov. 1970, pp. 156-158. |
Peter Ellwood, "Process Flowsheet, Lower Investment, Easier Operation to Make Melamine," Chemical Engineering, Oct. 19, 1970, pp. 101-103. |
Continuations (1)
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Number |
Date |
Country |
Parent |
568408 |
Jan 1984 |
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