Would you explect RDX dust from an explosion to react with diphenylamine to produce a deep blue dye? RDX equation: C3H6N6O6 (s) -> 3CO (g) + 3H2O (g) + 3N2 (g) Because virtually all explosives and propellants use nitrogen based oxidizers, chemical identification can be straight forward.  Diphenylamine, (C6H5)2NH, will react with nitrate or nitrite (or other oxidizers) in the residue to form diphenylbenzidine blue.

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Would you explect RDX dust from an explosion to react with diphenylamine to produce a deep blue dye?

RDX equation:

C3H6N6O6 (s) -> 3CO (g) + 3H2O (g) + 3N2 (g)

Because virtually all explosives and propellants use nitrogen based oxidizers, chemical identification can be straight forward.  Diphenylamine, (C6H5)2NH, will react with nitrate or nitrite (or other oxidizers) in the residue to form diphenylbenzidine blue. 

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Would you explect RDX dust from an explosion to react with diphenylamine to produce a deep blue dye?

 

RDX equation:

 

C3H6N6O6 (s) -> 3CO (g) + 3H2O (g) + 3N2 (g)

 

Because virtually all explosives and propellants use nitrogen based oxidizers, chemical identification can be straight forward. Diphenylamine, (C6H5)2NH, will react with nitrate or nitrite (or other oxidizers) in the residue to form diphenylbenzidine blue. 

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