Decomposition Pathways for Aqueous Hydroxylammonium Nitrate Solutions: a DFT Study

被引:14
作者
Izato, Yu-ichiro [1 ]
Koshi, Mitsuo [1 ]
Miyake, Atsumi [1 ]
机构
[1] Yokohama Natl Univ, Hodogaya Ku, 79-7 Tokiwadai, Yokohama, Kanagawa 2408501, Japan
来源
CENTRAL EUROPEAN JOURNAL OF ENERGETIC MATERIALS | 2017年 / 14卷 / 04期
关键词
hydroxylamine nitrate; reaction pathway; liquid-phase reaction; density functional theory; THERMAL-DECOMPOSITION; COMBUSTION CHARACTERISTICS; HAN; EQUILIBRIA; CONTINUUM; KINETICS; MODEL;
D O I
10.22211/cejem/71193
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Hydroxylammmonium nitrate (hydroxylamine nitrate, HAN) is one of the most promising candidates as a replacement for commonly used liquid mono-propellants such as hydrazine. The reaction pathways involved in the initial and the catalytic decomposition of HAN in aqueous solution were determined using quantum chemistry calculations incorporating solvent effects. Optimized structures were obtained for the reactants, products and transition states at the omega B97XD/6-311++G(d,p)/SCRF = (solvent = water) level of theory and the total electron energies of these structures were calculated at the CBS-QB3 level of theory. In the initial decomposition, the ion-neutral NH3OH+-HNO3 reaction, the neutral-neutral NH3O-HNO3 reaction and the HNO3 self-decomposition pathway s were all found to have reasonable energy barriers, with values of 91.7 kJ/mol, 88.7 kJ/mol and 89.8 kJ/mol, respectively. The overall reaction resulting from any of these pathways can be written as: HAN -> HONO + HNO + H2O. The ionic reaction is dominant during the initial decomposition of HAN in aqueous solution because NH3OH+ and NO3- are the major species in such solutions. We also developed six catalytic mechanisms and each of these schemes provided the same global reaction: NH2OH + HONO -> N2O + 2H(2)O. The t-ONONO2, oxidizing scheme is the most plausible based on the energy barrier results.
引用
收藏
页码:888 / 916
页数:29
相关论文
共 31 条
  • [1] Computational Study of the Thermochemistry of N2O5 and the Kinetics of the Reaction N2O5 + H2O → 2 HNO3
    Alecu, I. M.
    Marshall, Paul
    [J]. JOURNAL OF PHYSICAL CHEMISTRY A, 2014, 118 (48) : 11405 - 11416
  • [2] Chemical engineering study for hydroxylammonium nitrate monopropellant decomposition over monolith and grain metal-based catalysts
    Amrousse, Rachid
    Katsumi, Toshiyuki
    Bachar, Ahmed
    Brahmi, Rachid
    Bensitel, Mohamed
    Hori, Keiichi
    [J]. REACTION KINETICS MECHANISMS AND CATALYSIS, 2014, 111 (01) : 71 - 88
  • [3] [Anonymous], P 27 JANNAF COMB SUB
  • [4] Apollo F.B., 2010, IHI ENG REV, V43, P22
  • [5] Long-range corrected hybrid density functionals with damped atom-atom dispersion corrections
    Chai, Jeng-Da
    Head-Gordon, Martin
    [J]. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2008, 10 (44) : 6615 - 6620
  • [6] Chang Y. P., 2001, P AIAA ASME SAE ASEE
  • [7] New developments in the polarizable continuum model for quantum mechanical and classical calculations on molecules in solution
    Cossi, M
    Scalmani, G
    Rega, N
    Barone, V
    [J]. JOURNAL OF CHEMICAL PHYSICS, 2002, 117 (01) : 43 - 54
  • [8] Thermal and catalytic decomposition of HNF and HAN liquid ionic as propellants
    Courthéoux, L
    Amariei, D
    Rossignol, S
    Kappenstein, C
    [J]. APPLIED CATALYSIS B-ENVIRONMENTAL, 2006, 62 (3-4) : 217 - 225
  • [9] Stability of hydroxylamine isomers in aqueous solution: Ab initio study using continuum, cluster-continuum and Shells Theory of Solvation
    de Lima, Guilherme Ferreira
    Pliego, Josefredo R., Jr.
    Duarte, Helio Anderson
    [J]. CHEMICAL PHYSICS LETTERS, 2011, 518 : 61 - 64
  • [10] A theoretical analysis of the acid-base equilibria of hydroxylamine in aqueous solution
    Fernandez, M. I.
    Canle, M.
    Garcia, M. V.
    Santaballa, J. A.
    [J]. CHEMICAL PHYSICS LETTERS, 2010, 490 (4-6) : 159 - 164