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Method to determine the kinetic parameters of the autocatalytic decomposition reaction and critical rate of temperature rise of thermal explosion of energetic materials from DSC curves

  • Rong Zu Hu
  • , Feng Qi Zhao
  • , Hong Xu Gao
  • , Er Gang Yao
  • , Hai Zhang
  • , Yao Wang
  • , Xiang Yu Chang
  • , Hong An Zhao
  • Xi'an Modern Chemistry Research Institute
  • Northwest University China
  • Xi'an Jiaotong University

Research output: Contribution to journalArticlepeer-review

5 Scopus citations

Abstract

To evaluate the thermal safety of energetic materials (EMs) using the critical rate of temperature rise of thermal explosion (dT/dt)Tb and obtain basic data used to calculate (dT/dt)Tb, nine expressions to calculate (dT/dt)Tb for EMs were derived from Semenov thermal explosion theory and nine autocatalytic reaction rate equations, dα/dt=Aexp(-E/RT)α(1-α) (I), dα/dt=Aexp(-E/RT)(1-α)n(1+Kcatα) (II), dα/dt=Aexp(-E/RT) [αa-(1-α)n] (III), dα/dt=A1exp(-Ea1/RT) (1-α) + A2exp(-Ea2/RT) α(1-α) (IV), dα/dt= A1exp(-Ea1/RT) (1-α)m + A2exp(-Ea2/RT)αn(1-α)p (V), dα/dt=Aexp(-E/RT) (1-α) (VI), dα/dt=Aexp(-E/RT) · (1-α)n (VII), dα/dt=A1exp(-Ea1/RT)+A2exp(-Ea2/RT)(1-α) (VIII) and dα/dt=A1exp(-Ea1/RT)+A2exp(-Ea2/RT)α· (1-α) (IX), using reasonable hypotheses. A method to determine the kinetic parameters in the nine autocatalytic decomposition reaction rate equations and (dT/dt)Tb of EMs when autocatalytic decomposition converts into thermal explosion from difference scanning calorimetry (DSC) curves at different heating rates (β) was presented. The onset temperature (Te0) corresponding to heating rate β →0, the critical temperature of thermal explosion (Tb) and the conversion degree (αb) corresponding to Tb used in the calculation of (dT/dt)Tb were obtained from analysis of DSC curves. The kinetic parameters of the autocatalytic decomposition reactions in Eqs.(I) and (VI), and Eqs.(II)-(V), (VII)-(IX) were estimated by the linear least-squares method and trust region approach, respectively. The values of (dT/dt)Tb for EMs were obtained from basic DSC data. Results show that (1) under non-isothermal DSC conditions, the autocatalytic decomposition reaction of nitrocotton (NC) (13.54% N) can be described by the apparent empiric-order equation dα/dt=1015.82exp(-170020/RT) (1-α)1.11 +1015.82exp(-157140/RT)α1.51(1-α)2.51, and (2) the value of (dT/dt)Tb for NC (13.54% N) when autocatalytic decomposition converts into thermal explosion is 0.103 K·s-1.

Original languageEnglish
Pages (from-to)1623-1631
Number of pages9
JournalWuli Huaxue Xuebao/ Acta Physico - Chimica Sinica
Volume29
Issue number8
DOIs
StatePublished - 9 Jul 2013

Keywords

  • Critical rate of temperature rise
  • Nitrocotton
  • Non-isothermal DSC
  • Thermal explosion
  • Trust region approach

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