Thermal decomposition mechanism and hazard assessment of di-tert-butyl azodicarboxylate (DBAD)

被引:1
|
作者
Jia, Min [1 ]
Guo, Song [1 ]
Chen, Sining [2 ]
Gao, Shang [1 ]
Sun, Huiming [1 ]
机构
[1] Nanjing Univ Sci & Technol, Nanjing 210094, Jiangsu, Peoples R China
[2] China Acad Safety Sci & Technol, Beijing 100012, Peoples R China
基金
中国国家自然科学基金;
关键词
Di-tert-butyl azodicarboxylate (DBAD); Thermal decomposition behavior; Kinetic mechanism; Self-accelerating decomposition temperature (SADT);
D O I
10.1007/s10973-023-11992-x
中图分类号
O414.1 [热力学];
学科分类号
摘要
In this work, we used C80 Micro-calorimeter and STA-FTIR-MS instrument to analyze decomposition mechanism of DBAD and evaluated the thermal hazard by the key index on self-accelerating decomposition temperature (SADT). Based on C80 data, the heat release per unit mass of DBAD is 699.85 +/- 52.88 kJ kg(-1), and the activation energy calculated by Friedman method ranges from 28.58 to 52.03 kJ mol(-1). Besides, the thermal decomposition reaction of DBAD can be described by Zhuralev-Lesokin-Tempelman equation. In summary, the decomposition mechanism of DBAD is as follows: the C-O bond cracks firstly, separating center dot C(CH3)(3) out, then the C-C bond cracks, separating center dot CH3 out; the N=N double bond, C-N bond and C-O bond crack subsequently, separating: N-CO, center dot O-CO-N:, HO-CO-N: and center dot N=N-CO out, and these radical groups gradually decompose or oxidize into center dot CH=CHCH3, center dot O-CO/CO2, center dot COOH, etc.; finally, all these radical groups dissociate and oxidize into H2O, CO2 and N-2. The SADT calculated by Semenov model of DBAD under 25 kg standard package is 63.95 degrees C.
引用
收藏
页码:4317 / 4331
页数:15
相关论文
共 50 条
  • [1] Thermal decomposition mechanism and hazard assessment of di-tert-butyl azodicarboxylate (DBAD)
    Min Jia
    Song Guo
    Sining Chen
    Shang Gao
    Huiming Sun
    Journal of Thermal Analysis and Calorimetry, 2023, 148 : 4317 - 4331
  • [2] Di-tert-butyl Azodicarboxylate
    Dias Pires, Marina J.
    SYNLETT, 2012, (11) : 1701 - 1702
  • [3] Oxidative decomposition of di-tert-butyl azodicarboxylate and ab initio studies on fragmentation mechanism
    Chung, JH
    Lim, SH
    Sohn, CK
    Lee, WK
    BULLETIN OF THE KOREAN CHEMICAL SOCIETY, 1998, 19 (07) : 792 - 794
  • [4] KINETICS OF THE THERMAL DECOMPOSITION OF DI-TERT-BUTYL PEROXIDE
    MURAWSKI, J
    ROBERTS, JS
    SZWARC, M
    JOURNAL OF CHEMICAL PHYSICS, 1951, 19 (06): : 698 - 704
  • [5] MECHANISM OF DI-TERT-BUTYL PEROXIDE CHEMILUMINESCENT OXIDATIVE DECOMPOSITION
    SHEINSON, RS
    WILLIAMS, FW
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1975, (169): : 6 - 6
  • [6] THERMAL DECOMPOSITION OF DI-TERT-BUTYL PEROXIDE AT HIGH PRESSURE
    SHAW, DH
    PRITCHAR.HO
    CANADIAN JOURNAL OF CHEMISTRY, 1968, 46 (16): : 2721 - &
  • [7] SYNTHESIS AND THERMAL-DECOMPOSITION OF DI-TERT-BUTYL PEROXYDICARBONATE
    KOMAI, T
    MATSUYAMA, K
    BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 1985, 58 (08) : 2207 - 2211
  • [8] ISOLATION OF INITIAL STEP IN THERMAL DECOMPOSITION OF DI-TERT-BUTYL PEROXIDE
    YIP, CK
    PRITCHAR.HO
    CANADIAN JOURNAL OF CHEMISTRY, 1969, 47 (24): : 4709 - &
  • [9] Thermal Decomposition Analysis and Safety Study on Di-tert-butyl Peroxide
    Lv Jiayu
    Chen Wanghua
    Chen Liping
    Tian Yingtao
    Sun Xin
    INTERNATIONAL SYMPOSIUM ON SAFETY SCIENCE AND ENGINEERING IN CHINA, 2012, 2012, 43 : 312 - 317
  • [10] Green Thermal Analysis Technology for Evaluating the Thermal Hazard of Di-tert-butyl Peroxide
    Tseng, Jo-Ming
    Lin, Chun-Ping
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2011, 50 (16) : 9487 - 9494