Claims
- 1. A method for extracting and recovering nitramine oxidizers from class 1.1 solid propellants using liquid ammonia solvent within a closed system provided with piping and valve means, and temperature and pressure monitoring means for said closed system for controlling demilitarization at a predetermined temperature and pressure wherein a class 1.1 solid propellant demilitarization cycle, as defined under (A) below, is employed in combination with a method for further separation and recovery of nitramine oxidizers and separation and recovery of ammonium perchlorate, when present, with degraded nitroglycerin and other plasticizers, as defined under (B) below, said class 1.1 solid propellant demilitarization cycle comprising a first, second, third, and fourth operation cycle,
- (A) said class 1.1 propellant demilitarization cycle comprising:
- (i) completing said first operation cycle to remove said class 1.1 solid propellant contained within a pressure vessel by ablating or machining to comminute said propellant to a suitable particle size to form a slurry of said liquid ammonia solvent and said propellant, said pressure vessel having an upper section and a lower section, said first operation cycle comprising:
- (a) introducing liquid ammonia solvent through high pressure nozzles with sufficient pressure to ablate said class 1.1 solid propellant contained in said pressure vessel to comminute and achieve particle size reduction to about 1/4 inch or less, as required, for efficient propellant ingredient extraction;
- (b) continuously forming said propellant slurry in said pressure vessel; and,
- (c) continuously transferring said propellant slurry to an extractor/separator vessel to achieve separation of said propellant ingredients of solubles in a liquid ammonia solvent phase and insolubles in a sediment solids portion;
- (ii) completing said second operation cycle to solubilize and to extract liquid ammonia soluble class 1.1 solid propellant ingredients from said propellant slurry as a supernatant while monitoring and maintaining temperature control by venting ammonia vapor to achieve adiabatic cooling of said liquid ammonia solvent and while monitoring plasticizer degradation products employing liquid chromatography procedures and to retain liquid ammonia solvent insoluble class 1.1 solid propellant ingredients in a lower section of said pressure vessel as sediment solids, said second operation cycle comprising:
- (a) removing said sediment solids comprised of binders, inert ballistic additives, and solid metal fuel ingredients from said lower section of said pressure vessel; and,
- (b) transferring supernatant of liquid ammonia solvent containing said extracted liquid ammonia solvent soluble class 1.1 solid propellant ingredients to an evaporator for oxidizer recovery and ammonia solvent vapor recovery;
- (iii) completing said third operation cycle by evaporation of said liquid ammonia solvent containing said extracted ammonia solvent soluble class 1.1 solid propellant ingredients, said third operation cycle comprising:
- (a) recovering, filtering and drying said ammonia solvent vapor for compressing to liquid ammonia for reuse in said closed system by pressure pump(s);
- (b) recovering all liquid ammonia solvent soluble class 1.1 solid propellant ingredients for further separation and recovery of said nitramine oxidizers, and for further separation and recovery of ammonium perchlorate, when present, from degraded nitroglycerin and other plasticizers, said recovered propellant ingredients consisting of mixtures of nitramine oxidizers, ammonium perchlorate when present in said class 1.1 solid propellant, energetic nitratoester plasticizers and their possible chemical degradation products, and chemical stabilizers; and
- (iv) completing said fourth operation cycle by filtering, drying, and compression of said recovered ammonia solvent vapor for reuse, said fourth operation cycle comprising:
- (a) compressing said recovered, filtered, and dried ammonia solvent vapor to liquid ammonia for solvent liquefaction and recycling; and,
- (b) returning liquid ammonia with high pressure and low pressure pumps to said closed system for further use in said demilitarization cycle;
- (B) said method for further separation and recovery of said nitramine oxidizers and separation and recovery of ammonium perchlorate when present from degraded nitroglycerin and other plasticizers comprising:
- (i) treating said liquid ammonia soluble class 1.1 solid propellant ingredients recovered, as defined under 1(A), (iii), (b), by washing with an alcohol selected from the group consisting of methanol, ethanol, and isopropanol to recover said nitramine oxidizers and impurities as insolubles and retaining solubles in solution, said solubles in solution comprising degraded nitroglycerin, other plasticizers, and ammonium perchlorate when present and if desired to be separated and retained for performing additional steps defined under (B), (iv), and (v), hereinbelow;
- (ii) adding acetone/water and/or cyclohexanone/water solution to said insolubles;
- (iii) recrystallizing and recovering said nitramine oxidizers;
- (iv) washing said solubles with said alcohol to achieve multiple solvating conditions for said solubles; and
- (v) performing an optional separating procedure when ammonium perchlorate is present and desired to be recovered from said wash solubles, said optional separating procedures selected from Soxhlet extraction employing butanol and antisolvent procedure employing an aliphatic, cyclic or aromatic hydrocarbon as an antisolvent for recovering ammonium perchlorate.
- 2. The method for extracting and recovering nitramine oxidizers from class 1.1 solid propellants using liquid ammonia solvent within said closed system as defined in claim 1 wherein said propellant demilitarization is performed at ambient temperature and at a pressure of about 114 psig to result in degradation of nitroglycerin in about 15 minutes and wherein a temperature increase of about 5.degree. C. to about 10.degree. C. resulting from reaction of nitroglycerin with liquid ammonia solvent is controllable by said venting ammonia vapor to achieve adiabatic cooling of said liquid ammonia solvent.
- 3. The method for extracting recovering nitramine oxidizers from class 1.1 solid propellants using liquid ammonia solvent within said closed system as defined in claim 1 wherein said liquid ammonia solvent is employed in excess of the solubility ratio of 100:6 for the nitramine oxidizer cyclotetramethylenetetranitramine, said liquid ammonia solvent excess being adequate for complete nitramine recovery and for efficient heat transfer.
DEDICATORY CLAUSE
The invention described herein may be manufactured, used, and licensed by or for the Government for governmental purposes without the payment to be of any royalties thereon.
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Number |
Name |
Date |
Kind |
H273 |
Melvin et al. |
May 1987 |
|
H305 |
Mitchell et al. |
Jul 1987 |
|
4854982 |
Melvin et al. |
Aug 1989 |
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Melvin |
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