By A. A. Rodionov, I. N. Bocharov, B. P. Zhukov (auth.), Dr. Horst H. Krause (eds.)
A very entire survey of alternative ways followed by means of japanese and Western nations for the disposal of surplus ammunition. Incineration and different recommendations for the disposal of excessive explosives, gun and rocket propellants are brought and mentioned in terms of environmental and protection necessities. Proposals for and examples of the re-use of army explosives in advertisement functions are given. subject matters mentioned variety from the conversion of vigorous structures into chemical uncooked fabrics to the recent improvement of vigorous structures with designated gains for advertisement use (such as generating man made diamonds by means of detonation, self-propagating high-temperature synthesis, fireplace extinguishing, etc.).
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Extra info for Conversion Concepts for Commercial Applications and Disposal Technologies of Energetic Systems
Example text
35 cu. m of gases is generated (CO, Hz, CH4, NH3, nitrogen oxides). A dedicated installation for chemical absorption ofNH3 and nitrogen oxides has been developed. 3. DISPOSAL BY FIRING METHOD This method consists in firing projectiles at bullet-catcher in form of a water tank. The firing is done by means of weapons withdrawn from use. This is both practical and economic method. g. of incendiary type. Long years of experience have shown that the most economic and convenient from organisational point of view is the thermal method using electric ovens.
This task is being conducted at Sandia National Laboratories (SNL) in Livermore, California. Initial testing on several colored smoke/dye compositions using SCWO technology has resulted in high destruction removal efficiencies (DRE). A contract has been awarded to Foster Wheeler Corporation to design, construct, debug/proveout, and operate a 100 gallon per hour production prototype unit. Finally, an effort is being conducted at Pine Bluff Arsenal, Pine Bluff, Arkansas to evaluate the recycle/reuse of the red phosphorus/butyl rubber composition from the United Kingdom L8A1 smoke grenade to the newer version L8A3 grenade.
Slurry preparation The High Explosive fillings are washed out the munitions by means of a water jet technique. The explosives are milled under water till a particle size of 50-1000 m is reached. The propellants are treated in the same way, but the water/propellant slurry is stored separately. The sensitive (mostly inorganic) explosives from the igniter and the fuze are also separated from the metal parts with the water jet and collected for chemical conversion. Both the High Explosive slurry and the propellant slurry are transformed into the desired concentration of 10-50% explosive.