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Spectral Study of Effects of Aluminium Nanoparticles on Fast Reaction of Nitromethane |
WU Jing-He1,2;YE Song1,2;HU Dong2;YANG Xiang-Dong1 |
1Institute of Atomic and Molecular Physics, Sichuan University, Chengdu 6100652National Key Laboratory for Shock Wave and Detonation Physics Research, Institute of Fluid Physics, China Academy of Engineering Physics, Mianyang 621900 |
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Cite this article: |
WU Jing-He, YE Song, HU Dong et al 2008 Chin. Phys. Lett. 25 1138-1141 |
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Abstract Fast reactions between nitromethane and aluminium nanoparticles are studied using transient spectral methods. In comparison with species produced by pure nitromethane, the emergence time for species produced by nitromethane after addition of 1g of aluminium nanoparticles decreases by 46-58% and the emission intensity increases by 13-100%. The results demonstrate that aluminium nanoparticles have positive effect on accelerating the decomposition rate of nitromethane and that the explosion efficiency of nitromethane is greatly improved. Fast reactions carried out between nitromethane and aluminium nanoparticles in different environments (CO2, H2O and O2) reveal that O2 and an appropriate amount of H2O improve the explosion efficiency of nitromethane, whereas CO2 has the weakest effect on improving this parameter. The investigations provide insights into the process occurring in actual systems involving propellants and fuel--air explosives.
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Keywords:
81.07.Wx
33.20.Kf
47.40.Nm
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Received: 12 December 2007
Published: 27 February 2008
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