Thermal Decomposition and Kinetics Studies of AN, KDN and Their Mixtures with and without Catalysts

被引:15
作者
Kumar, Pratim [1 ]
Joshi, Puran C. [1 ]
Kumar, Rajiv [1 ]
机构
[1] Birla Inst Technol, Ranchi 835215, Bihar, India
来源
CENTRAL EUROPEAN JOURNAL OF ENERGETIC MATERIALS | 2017年 / 14卷 / 01期
关键词
green oxidizers; phase stabilization; thermal decomposition; thermo-kinetics; catalysts; SOL-GEL METHOD; AMMONIUM-NITRATE; POTASSIUM DINITRAMIDE; PART; COMBUSTION; MECHANISM; SALTS; PROPELLANTS; ADDITIVES; BEHAVIOR;
D O I
10.22211/cejem/68476
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Potassium dinitramide (KDN) was incorporated in ammonium nitrate (AN) crystals in AN/KDN ratio of 90/10, 75/25 and 50/50 by a co-crystallization method. These mixtures were subjected to thermal decompositional studies (DSC-TG) using a Simultaneous Thermal Analyzer (STA). The catalysts used for the present studies were: i) cupric(II) oxide (CuO) and, ii) copper-cobalt based metal oxide (Cu-Co*). For all catalytic samples, 2% by weight percent of catalyst was added to the total weight of the samples. Thermal decomposition studies were carried out for all the oxidizer samples prepared. Thermal decompositional studies were carried out at three different heating rates, i.e. 3 K/min, 5 K/min and 10 K/min, and the kinetic parameters were computed using the model free Flynn-Wall-Ozawa equation. It has been observed that 50% KDN addition resulted in complete suppression of endothermicity indicating total supression of the phase changes of AN in this temperature range. Further, it was noticed that CuO acts as a better phase stabilizer for AN as compared to Cu-Co*. However, Cu-Co* considerably increased the net exothermic decompositional heat release (J/g) of AN.
引用
收藏
页码:184 / 200
页数:17
相关论文
共 50 条
[41]   Kinetics of thermal decomposition of hexanitrohexaazaisowurtzitane [J].
Korsounskii, BL ;
Nedel'ko, VV ;
Chukanov, NV ;
Larikova, TS ;
Volk, F .
RUSSIAN CHEMICAL BULLETIN, 2000, 49 (05) :812-818
[42]   Kinetics of thermal decomposition of dolomite [J].
Olszak-Humienik, M ;
Mozejko, J .
JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 1999, 56 (02) :829-833
[43]   Kinetics of thermal decomposition of thiourea [J].
Timchenko, VP ;
Novozhilov, AL ;
Slepysheva, OA .
RUSSIAN JOURNAL OF GENERAL CHEMISTRY, 2004, 74 (07) :1046-1050
[44]   Kinetics of the Thermal Decomposition of Rhodochrosite [J].
Reyes, Ivan A. ;
Flores, Mizraim ;
Palacios, Elia G. ;
Islas, Hernan ;
Juarez, Julio C. ;
Reyes, Martin ;
Teja, Aislinn M. ;
Perez, Cristobal A. .
MINERALS, 2021, 11 (01) :1-13
[45]   Kinetics of thermal decomposition of hexanitrohexaazaisowurtzitane [J].
B. L. Korsounskii ;
V. V. Nedel'ko ;
N. V. Chukanov ;
T. S. Larikova ;
F. Volk .
Russian Chemical Bulletin, 2000, 49 :812-818
[46]   Kinetics of Thermal Decomposition of Thiourea [J].
V. P. Timchenko ;
A. L. Novozhilov ;
O. A. Slepysheva .
Russian Journal of General Chemistry, 2004, 74 :1046-1050
[47]   Kinetics of thermal decomposition of PMMA at different heating rates and in a wide temperature range [J].
Korobeinichev, O. P. ;
Paletsky, A. A. ;
Gonchikzhapov, M. B. ;
Glaznev, R. K. ;
Gerasimov, I. E. ;
Naganovsky, Y. K. ;
Shundrina, I. K. ;
Snegirev, A. Yu ;
Vinu, R. .
THERMOCHIMICA ACTA, 2019, 671 :17-25
[48]   Effect of Er(NO3)3 content on the thermal decomposition kinetics of kaolinite [J].
Yuan, Weiquan ;
Kuang, Jingzhong ;
Liu, Pengfei .
APPLIED CLAY SCIENCE, 2019, 182
[49]   Catalytic Effect of Green CuO Nanoparticles on the Thermal Decomposition Kinetics of Ammonium Perchlorate [J].
Benhammada, Abdenacer ;
Trache, Djalal ;
Chelouche, Salim ;
Mezroua, Abderrahmane .
ZEITSCHRIFT FUR ANORGANISCHE UND ALLGEMEINE CHEMIE, 2021, 647 (04) :312-325
[50]   Ammonium Nitrate Thermal Decomposition Kinetics under Nonisothermal Conditions in Open System [J].
Gorbovskiy, K. G. ;
Kazakov, A., I ;
Norov, A. M. ;
Mikhaylichenko, A., I .
THEORETICAL FOUNDATIONS OF CHEMICAL ENGINEERING, 2021, 55 (04) :742-747