Claims
- 1. A process for producing glycidyl nitrate, comprising:
feeding glycerin and nitric acid to a first reaction vessel; reacting said glycerin and said nitric acid in said first reaction vessel to produce dinitroglycerin and nitric acid; withdrawing at least a portion of said dinitroglycerin and nitric acid from said first reaction vessel; feeding sodium hydroxide and said withdrawn portion of dinitroglycerin and nitric acid to a second reaction vessel; reacting said sodium hydroxide and said withdrawn portion of nitric acid in said second reaction vessel to neutralize said nitric acid; withdrawing a product from said second reaction vessel, said product comprising dinitroglycerin, water, and sodium nitrate; separating said dinitroglycerin from said water; feeding sodium hydroxide and said separated dinitroglycerin to a third reaction vessel; reacting said separated dinitroglycerin and said sodium hydroxide within said third reaction vessel to produce glycidyl nitrate and byproducts; withdrawing said glycidyl nitrate and said byproducts from said third reaction vessel; and separating said glycidyl nitrate from said byproducts.
- 2. The process of claim 1, further comprising feeding dichloromethane to said first reaction vessel.
- 3. The process of claim 1, further comprising feeding dichloromethane to said second reaction vessel.
- 4. The process of claim 1, further comprising performing said process in a continuous manner.
- 5. The process of claim 1, wherein reacting said glycerin and said nitric acid in said first reaction vessel, reacting said sodium hydroxide and said withdrawn portion of nitric acid in said second reaction vessel, and reacting said separated dinitroglycerin and said sodium hydroxide within said third reaction vessel comprises performing the reaction at a temperature ranging from about 0° C. to about 25° C.
- 6. The process of claim 1, wherein reacting said glycerin and said nitric acid in said first reaction vessel comprises performing the reaction at about 5° C.
- 7. The process of claim 1, wherein feeding glycerin and nitric acid to a first reaction vessel comprises feeding glycerin and nitric acid to a first reaction vessel at about 5° C.
- 8. The process of claim 1, wherein feeding sodium hydroxide and said withdrawn portion of dinitroglycerin and nitric acid to a second reaction vessel comprises feeding sodium hydroxide and said withdrawn portion of dinitroglycerin and nitric acid to a second reaction vessel at about 5° C.
- 9. The process of claim 1, wherein feeding said sodium hydroxide and said separated dinitroglycerin to a third reaction vessel comprises feeding said sodium hydroxide and said separated dinitroglycerin to a third reaction vessel at about 5° C.
- 10. A process for producing glycidyl nitrate, comprising:
reacting glycerin and nitric acid to produce a first product comprising nitric acid, dinitroglycerin, and water; reacting said first product and sodium hydroxide to neutralize said nitric acid and produce a second product comprising nitric acid, dinitroglycerin, water, and sodium nitrate; removing water and sodium nitrate from said second product to produce a third product; reacting said third product and sodium hydroxide to produce a fourth product comprising water, sodium hydroxide, glycidyl nitrate and sodium nitrate; and separating said glycidyl nitrate from said fourth product.
- 11. The process of claim 10, wherein said reacting glycerin and nitric acid to produce a first product comprises:
feeding glycerin to a first reaction vessel; feeding nitric acid to said first reaction vessel; and mixing said glycerin and said nitric acid within said first reaction vessel.
- 12. The process of claim 11, further comprising feeding a solvent to said first reaction vessel with said glycerin and said nitric acid.
- 13. The process of claim 12, further comprising selecting said solvent to be dichloromethane.
- 14. The process of claim 11, wherein said mixing said glycerin and said nitric acid within said first reaction vessel comprises mixing said glycerin and said nitric acid with a stirring mechanism.
- 15. The process of claim 11, further comprising mixing said glycerin and said nitric acid at about 5° C.
- 16. The process of claim 10, wherein reacting said first product and sodium hydroxide to produce a second product comprises:
feeding said first product to a second reaction vessel; feeding sodium hydroxide to said second reaction vessel; and mixing said first product and said sodium hydroxide in said second reaction vessel.
- 17. The process of claim 16, further comprising feeding a solvent to said second reaction vessel.
- 18. The process of claim 17, wherein feeding said solvent to said second reaction vessel comprises feeding dichloromethane.
- 19. The process of claim 16, wherein mixing said first product and said sodium hydroxide in said second reaction vessel comprises mixing said first product and said sodium hydroxide with a stirring mechanism.
- 20. The process of claim 16, wherein mixing said first product and said sodium hydroxide in said second reaction vessel comprises mixing said first product and said sodium hydroxide at about 5° C.
- 21. The process of claim 10, wherein removing water and sodium nitrate from said second product to produce a third product comprises:
feeding said second product to a separation column; and removing water and sodium nitrate from said second product in said separation column to form a brine stream and said third product.
- 22. The process of claim 21, wherein said brine stream comprises said removed water and sodium nitrate from said second product.
- 23. The process of claim 21, wherein removing water and sodium nitrate from said second product in said separation column to form a brine stream and said third product comprises removing water and sodium nitrate from said second product in said separation column to form a brine stream and nitric acid, dinitroglycerin and sodium nitrate.
- 24. The process of claim 10, wherein separating said glycidyl nitrate from said fourth product comprises removing water, sodium hydroxide and sodium nitrate from said fourth product.
- 25. The process of claim 24, wherein removing water, sodium hydroxide and sodium nitrate from said fourth product comprises:
feeding said fourth product to a separation column; and removing said water, sodium hydroxide and sodium nitrate from said fourth product in said separation column to produce a brine stream and a fifth product comprising glycidyl nitrate and sodium nitrate.
- 26. The process of claim 25, wherein said brine stream comprises said removed water, sodium hydroxide, and sodium nitrate.
- 27. The process of claim 25, further comprising:
feeding said fifth product to a second separation column; and feeding sodium chloride to said second separation column to remove said sodium nitrate from said fifth product to produce a brine stream and glycidyl nitrate.
- 28. A method for producing glycidyl nitrate in a continuous process, comprising:
continuously feeding glycerin, dichloromethane, and nitric acid to a first reaction vessel; mixing said glycerin, dichloromethane, and nitric acid within said first reaction vessel to promote a reaction between said glycerin and said nitric acid to produce a first product; withdrawing said first product from said first reaction vessel; feeding said first product and sodium hydroxide to a second reaction vessel; mixing said first product and said sodium hydroxide within said second reaction vessel to promote a reaction between said first product and said sodium hydroxide to produce a second product; withdrawing said second product from said second reaction vessel; feeding said second product to a first separation column; separating a third product from said second product in said first separation column, wherein said third product comprises dinitroglycerine; feeding said third product and sodium hydroxide to a third reaction vessel; mixing said third product and said sodium hydroxide within said third reaction vessel to promote a reaction between said dinitroglycerin in said third product and said sodium hydroxide to produce a fourth product comprising glycidyl nitrate; withdrawing said fourth product from said third reaction vessel; feeding said fourth product to a second separation column; separating glycidyl nitrate, dichloromethane and sodium nitrate from said fourth product in said second separation column; feeding said separated glycidyl nitrate, dichloromethane and sodium nitrate to a third separation column; feeding sodium chloride to said third separation column; separating said glycidyl nitrate and said dichloromethane from said sodium nitrate and sodium chloride in said third separation column; and withdrawing said glycidyl nitrate and said dichloromethane from said third separation column as a final product.
- 29. The method of claim 28, further comprising feeding dichloromethane to said second reaction vessel.
- 30. The method of claim 28, wherein mixing said glycerin, dichloromethane, and nitric acid within said first reaction vessel to promote a reaction between said glycerin and said nitric acid to produce a first product comprises mixing said glycerin, dichloromethane, and nitric acid within said first reaction vessel to promote a reaction between said glycerin and said nitric acid to produce dichloromethane, nitric acid, dinitroglycerin, and water.
- 31. The method of claim 28, wherein mixing said first product and said sodium hydroxide within said second reaction vessel to promote a reaction between said first product and said sodium hydroxide to produce a second product comprises mixing said first product and said sodium hydroxide within said second reaction vessel to promote a reaction between said first product and said sodium hydroxide to produce dichloromethane, dinitroglycerin, water, and sodium nitrate.
- 32. The method of claim 31, wherein said second product further comprises nitric acid.
- 33. The method of claim 28, wherein said method is carried out between about 0° C. and about 25° C.
- 34. A system for producing glycidyl nitrate, comprising:
a first reaction vessel for reacting glycerin and nitric acid to produce dinitroglycerin, said first reaction vessel comprising a feed input for receiving glycerin and nitric acid and an output for withdrawing a first product from said first reaction vessel; a second reaction vessel for reacting sodium hydroxide with said first product, said second reaction vessel comprising a second feed input for receiving sodium hydroxide and said first product from said output of said first reaction vessel and a second output for withdrawing a second product from said second reaction vessel; a separation column for receiving said second product and separating dinitroglycerin from said second product, said separation column comprising a column input for receiving said second product, a column output for withdrawing said separated dinitroglycerin, and a column waste stream for withdrawing products separated from said dinitroglycerin from said separation column; a third reaction vessel for reacting sodium hydroxide and said separated dinitroglycerin, said third reaction vessel comprising a third feed input for receiving said sodium hydroxide and said separated dinitroglycerin and a third output for withdrawing a third product; and a separation unit for receiving said third product and separating glycidyl nitrate from said third product, said separation unit comprising a separation unit input for receiving said third product, a separation unit output for withdrawing said separated glycidyl nitrate from said separation unit, and a separation unit waste stream for withdrawing products separated from said glycidyl nitrate from said separation unit.
- 35. The system of claim 34, wherein said separation unit comprises:
a first separation column, said first separation column comprising a first input for receiving said third product, a first output for withdrawing a separated product from said first separation column, and a first waste stream; and a second separation column, said second separation column comprising a second input for receiving said separated products from said first output, a third input for receiving sodium chloride solution, a second output for withdrawing said separated glycidyl nitrate, and a second waste stream.
- 36. The system of claim 34, further comprising a stirring mechanism for mixing the contents of at least one of said first reaction vessel, said second reaction vessel, and said third reaction vessel.
- 37. A process for producing glycidyl nitrate, comprising:
reacting glycerin and nitric acid to produce a first product comprising dinitroglycerin; and reacting said first product with a caustic to produce glycidyl nitrate and byproducts.
- 38. The process of claim 37, wherein reacting said first product with a caustic comprises reacting said first product with sodium hydroxide.
- 39. The process of claim 37, wherein reacting said first product with a caustic comprises reacting said first product with a solution of sodium hydroxide.
- 40. The process of claim 37, further comprising separating said glycidyl nitrate from said byproducts.
- 41. The process of claim 37, further comprising:
reacting said glycerin and nitric acid in the presence of a solvent; and reacting said first product with a caustic in the presence of said solvent.
- 42. The process of claim 41, wherein reacting said first product with a caustic in the presence of said solvent comprises reacting said first product with said caustic in the presence of dichloromethane.
- 43. The process of claim 37, further comprising reducing any nitric acid in said first product with a caustic.
- 44. The process of claim 37, further comprising:
separating said glycidyl nitrate from said byproducts; and polymerizing said glycidyl nitrate to produce poly(glycidyl nitrate).
- 45. A process for producing poly(glycidyl nitrate), comprising:
reacting glycerin and nitric acid to produce a first product comprising dinitroglycerin; reacting said dinitroglycerin in said first product with a caustic to produce glycidyl nitrate and byproducts; separating said glycidyl nitrate from said byproducts; and polymerizing said glycidyl nitrate to produce poly(glycidyl nitrate).
- 46. The process of claim 45, wherein reacting glycerin and nitric acid comprises reacting glycerin and nitric acid in the presence of a solvent.
- 47. The process of claim 46, wherein reacting glycerin and nitric acid in the presence of a solvent comprises reacting glycerin and nitric acid in the presence of dichloromethane.
- 48. The process of claim 45, wherein reacting said dinitroglycerin with a caustic comprises reacting said dinitroglycerin with a caustic in the presence of a solvent.
- 49. The process of claim 48, wherein reacting said dinitroglycerin with a caustic in the presence of a solvent comprises reacting said dinitroglycerin with a caustic in the presence of dichloromethane.
- 50. The process of claim 45, further comprising neutralizing any nitric acid in said first product with a sodium hydroxide solution.
- 51. The process of claim 45, wherein reacting said dinitroglycerin in said first product with a caustic comprises reacting said dinitroglycerin in said first product with sodium hydroxide.
- 52. The process of claim 45, wherein reacting said dinitroglycerin in said first product with a caustic comprises reacting said dinitroglycerin in said first product with a solution of sodium hydroxide.
- 53. A process for producing poly(glycidyl nitrate), comprising:
reacting glycerin and nitric acid in the presence of a solvent to produce a first product comprising dinitroglycerin; reacting said dinitroglycerin with caustic in the presence of said solvent to produce glycidyl nitrate and byproducts; separating said byproducts from said glycidyl nitrate and said solvent; and polymerizing said glycidyl nitrate in the presence of said solvent to produce poly(glycidyl nitrate).
- 54. The process of claim 53, wherein reacting glycerin and nitric acid in the presence of a solvent comprises reacting glycerin and nitric acid in the presence of dichloromethane.
- 55. The process of claim 53, wherein reacting glycerin and nitric acid in the presence of a solvent to produce a first product comprising dinitroglycerin comprises reacting glycerin and nitric acid in the presence of a solvent to produce 1,3-dinitroglycerin.
- 56. The process of claim 53, wherein reacting said dinitroglycerin with caustic comprises reacting said dinitroglycerin with sodium hydroxide.
- 57. The process of claim 53, wherein reacting said dinitroglycerin with caustic comprises reacting said dinitroglycerin with a solution of sodium hydroxide.
- 58. The process of claim 53, wherein reacting glycerin and nitric acid in the presence of a solvent to produce a first product comprising dinitroglycerin and reacting said dinitroglycerin with caustic in the presence of said solvent to produce glycidyl nitrate and byproducts comprises performing the reactions at a temperature from about 0° C. to about 25° C.
- 59. A process for producing glycidyl nitrate, comprising:
feeding glycerin and nitric acid to a first reaction vessel; reacting said glycerin and said nitric acid in said first reaction vessel to produce dinitroglycerin and nitric acid; withdrawing at least a portion of said dinitroglycerin and at least a portion of said nitric acid from said first reaction vessel; feeding sodium hydroxide and said withdrawn portions of dinitroglycerin and nitric acid to a second reaction vessel; reacting said sodium hydroxide and said withdrawn portions of dinitroglycerin and nitric acid in said second reaction vessel; withdrawing a product comprising dinitroglycerin, water, sodium nitrate, and glycidyl nitrate from said second reaction vessel; and separating said glycidyl nitrate from said product.
- 60. The process of claim 59, further comprising feeding dichloromethane to said first reaction vessel.
- 61. The process of claim 60, wherein said separating said glycidyl nitrate from said product comprises separating glycidyl nitrate and dichloromethane from said product.
- 62. The process of claim 59, further comprising combining dichloromethane with said product prior to said separating said glycidyl nitrate from said product.
- 63. The process of claim 59, further comprising performing said process in a continuous manner.
- 64. The process of claim 59, wherein reacting said glycerin and said nitric acid in said first reaction vessel and reacting said sodium hydroxide and said withdrawn portions of dinitroglycerin and nitric acid in said second reaction vessel comprises performing the reactions at a temperature from about 0° C. to about 25° C.
- 65. The process of claim 59, wherein reacting said glycerin and said nitric acid in said first reaction vessel and reacting said sodium hydroxide and said withdrawn portions of dinitroglycerin and nitric acid in said second reaction vessel comprises performing the reactions at about 5° C.
- 66. A process for producing glycidyl nitrate, comprising:
reacting glycerin and nitric acid to produce a first product comprising nitric acid and dinitroglycerin; reacting said first product and sodium hydroxide to produce a second product comprising dinitroglycerin and glycidyl nitrate; and separating said glycidyl nitrate from said second product.
- 67. The process of claim 66, wherein said reacting glycerin and nitric acid to produce a first product comprises:
feeding glycerin to a first reaction vessel; feeding nitric acid to a first reaction vessel; and reacting said glycerin and said nitric acid within said first reaction vessel.
- 68. The process of claim 67, further comprising feeding a solvent to said first reaction vessel.
- 69. The process of claim 68, wherein said feeding a solvent to said first reaction vessel comprises feeding dichloromethane to said first reaction vessel.
- 70. The process of claim 67, wherein said reacting said glycerin and said nitric acid within said first reaction vessel comprises reacting said glycerin and said nitric acid at a temperature between about 0° C. and about 25° C.
- 71. The process of claim 66, wherein reacting said first product and sodium hydroxide to produce a second product comprises:
feeding said first product to a second reaction vessel; feeding sodium hydroxide to said second reaction vessel; and reacting said first product and said sodium hydroxide in said second reaction vessel.
- 72. The process of claim 71, wherein said feeding sodium hydroxide to said second reaction vessel comprises feeding a sodium hydroxide solution to said second reaction vessel.
- 73. The process of claim 66, wherein said separating said glycidyl nitrate from said second product comprises feeding said second product to a separation column to remove said glycidyl nitrate.
- 74. The process of claim 73, further comprising feeding dichloromethane to said separation column with said second product.
- 75. The process of claim 74, further comprising removing said glycidyl nitrate and dichloromethane using said separation column.
- 76. A method for producing glycidyl nitrate in a continuous process, comprising:
continuously feeding glycerin, dichloromethane and nitric acid to a first reaction vessel; reacting said glycerin and said nitric acid in said first reaction vessel to form a first product comprising dinitroglycerin; withdrawing said first product from said first reaction vessel; feeding said first product and sodium hydroxide to a second reaction vessel; reacting said first product and said sodium hydroxide in said second reaction vessel to form a second product comprising glycidyl nitrate; withdrawing said second product from said second reaction vessel; feeding said second product to a separation column; and separating said glycidyl nitrate from said second product in said separation column.
- 77. The method of claim 76, further comprising feeding dichloromethane to said first reaction vessel.
- 78. The method of claim 76, wherein said feeding said second product to a separation column comprises:
combining said second product with dichloromethane; and feeding said combined second product and dichloromethane to said separation column.
- 79. The method of claim 76, wherein reacting said glycerin and said nitric acid in said first reaction vessel and reacting said first product and said sodium hydroxide in said second reaction vessel comprises performing the reactions at a temperature between about 0° C. and about 25° C.
- 80. A system for producing glycidyl nitrate, comprising:
a first reaction vessel for reacting glycerin and nitric acid to produce dinitroglycerin, said first reaction vessel comprising a feed input for receiving glycerin and nitric acid and an output for withdrawing a first product from said first reaction vessel; a second reaction vessel for reacting sodium hydroxide with said first product to produce a second product, said second product comprising glycidyl nitrate, said second reaction vessel comprising a second feed input for receiving sodium hydroxide and said first product from said output of said first reaction vessel and a second output for withdrawing said second product from said second reaction vessel; and a separation apparatus for receiving said second product and separating dinitroglycerin from said second product, said separation apparatus comprising an input for receiving said second product, an output for withdrawing said separated dinitroglycerin, and a waste stream for withdrawing products separated from said dinitroglycerin from said separation apparatus.
- 81. The system of claim 80, wherein said separation apparatus is one of a separation column, a decanter, a centrifuge, a weir tank, a static separator, and a bucket.
- 82. The system of claim 80, further comprising a stirring mechanism for mixing the contents of at least one of said first reaction vessel and said second reaction vessel,.
GOVERNMENT LICENSE RIGHTS
[0001] The U.S. Government has a paid-up license in this invention and the right in limited circumstances to require the patent owner to license others on reasonable terms as provided for by the terms of Contract F04611-99-C-0010.