TY - JOUR
T1 - Thermal decomposition reaction kinetics of 1-amino-1, 2, 3-triazolium nitrate
AU - Du, Xu Jie
AU - Li, Xiao Dong
AU - Yang, Rong Jie
AU - Li, Yu Chuan
AU - Pang, Si Ping
PY - 2013
Y1 - 2013
N2 - The thermal decomposition kinetics of 1-amino-1, 2, 3-triazolium nitrate [(ATZ) (NO3)] was investigated by non-isothermal TG-DTG at various heating rates (2, 5, 10, 15, and 20°C · min-1). The result showed that the thermal decomposition of (ATZ) (NO3) consisted of two mass-loss stages. Kinetic triplets of the two stages were described by a three-step method. First, the Kissinger and Ozawa methods were used to calculate the apparent activation energies (E) and pre-exponential factors (A) of the two decomposition stages. Second, two calculation methods (Šatava-Šesták and Achar methods) were used to obtain several probable decomposition mechanism functions. Third, three judgment methods (Šatava, double-extrapolation, and Popescu methods) were used to confirm the most probable decomposition mechanism functions. Reaction models of the two stages both are random-into-nuclear and random-growth mechanisms with n=3/2 for the first stage and n=1/3, m=3 for the second stage. The kinetic equations for the two decomposition stages of (ATZ) (NO3) may be expressed as da/dt=1013.60 × e-128970/RT (1-α) [-ln (1-α)]-1/2 and dα/dt=1011.40 × e-117370/RT (1-α) [-ln (1-α)]2/3. Mathematical expressions for the kinetic compensation effect were derived as A=0.1213E-1.8946 and lgA=0.1149E-2.5426.
AB - The thermal decomposition kinetics of 1-amino-1, 2, 3-triazolium nitrate [(ATZ) (NO3)] was investigated by non-isothermal TG-DTG at various heating rates (2, 5, 10, 15, and 20°C · min-1). The result showed that the thermal decomposition of (ATZ) (NO3) consisted of two mass-loss stages. Kinetic triplets of the two stages were described by a three-step method. First, the Kissinger and Ozawa methods were used to calculate the apparent activation energies (E) and pre-exponential factors (A) of the two decomposition stages. Second, two calculation methods (Šatava-Šesták and Achar methods) were used to obtain several probable decomposition mechanism functions. Third, three judgment methods (Šatava, double-extrapolation, and Popescu methods) were used to confirm the most probable decomposition mechanism functions. Reaction models of the two stages both are random-into-nuclear and random-growth mechanisms with n=3/2 for the first stage and n=1/3, m=3 for the second stage. The kinetic equations for the two decomposition stages of (ATZ) (NO3) may be expressed as da/dt=1013.60 × e-128970/RT (1-α) [-ln (1-α)]-1/2 and dα/dt=1011.40 × e-117370/RT (1-α) [-ln (1-α)]2/3. Mathematical expressions for the kinetic compensation effect were derived as A=0.1213E-1.8946 and lgA=0.1149E-2.5426.
KW - 1-amino-1, 2, 3-triazolium nitrate
KW - Compensating effect
KW - Non-isothermal kinetics
KW - Physical chemistry
KW - TG
KW - Thermal decomposition
UR - http://www.scopus.com/inward/record.url?scp=84890821664&partnerID=8YFLogxK
M3 - Article
AN - SCOPUS:84890821664
SN - 1007-7812
VL - 36
SP - 22-28+48
JO - Huozhayao Xuebao/Chinese Journal of Explosives and Propellants
JF - Huozhayao Xuebao/Chinese Journal of Explosives and Propellants
IS - 5
ER -