Investigation of an N-Butyl-N-(2-Nitroxyethyl)Nitramine (BuNENA) Process: Identification of Process Intermediates, By-Products and Reaction Pathways

A process for N‐butyl‐N‐(2‐nitroxyethyl)nitramine (BuNENA) was investigated: Step 1 involves N‐butyl‐ethanolamine addition to 98% HNO3 to form a salt mixture; Step 2 is addition of acetic anhydride/acetyl chloride catalyst to the salt mixture. A number of potential intermediates, by‐products, and de...

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Veröffentlicht in:Propellants, explosives, pyrotechnics explosives, pyrotechnics, 2006-04, Vol.31 (2), p.124-130
Hauptverfasser: Sitzmann, Michael E., Trivedi, Nirupam J., Skahan, Patrick B., Kenar, James A., Nock, Lori A., Stern, Alfred G.
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Sprache:eng
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Zusammenfassung:A process for N‐butyl‐N‐(2‐nitroxyethyl)nitramine (BuNENA) was investigated: Step 1 involves N‐butyl‐ethanolamine addition to 98% HNO3 to form a salt mixture; Step 2 is addition of acetic anhydride/acetyl chloride catalyst to the salt mixture. A number of potential intermediates, by‐products, and decomposition products from this process were identified/synthesized for use as analytical standards. BuNENA process reaction pathways/mechanisms were elucidated, including the nature of the amine salt solution formed in Step 1. In addition, potential pathways that could account for by‐product formation were elaborated. A study of the consumption of acetyl nitrate in Step 2 was undertaken to prevent its build‐up.
ISSN:0721-3115
1521-4087
DOI:10.1002/prep.200600018