UPM Institutional Repository

A Comprehensive kinetic study on key reactions in monomethylhydrazine combustion and model development


Citation

Ren, Xuan and Zhao, Yilin and Zhu, Yuxiang and He, Ruining and Bai, Xin and Gao, Yuke and Hin, Taufiq Yap Yun and Qin, Fei and Zhou, Chong Wen and Curran, Henry J. and Li, Yang (2026) A Comprehensive kinetic study on key reactions in monomethylhydrazine combustion and model development. Combustion and Flame, 289. art. no. 115016. pp. 1-12. ISSN 0010-2180; eISSN: 1556-2921

Abstract

Monomethylhydrazine (MMH, CH3NHNH2) is a widely used hypergolic fuel in aerospace propulsion due to its high reactivity and storability. However, its combustion chemistry is not completely understood, particularly at varying temperature and oxidizer conditions. This study systematically investigates the ab initio kinetics of key reactions involved in the combustion of MMH. First, a bond dissociation energy analysis was performed to identify the key species involved. Three representative reaction classes in combustion, H-atom abstraction and decomposition and isomerization, were investigated at the CCSD(T)/CBS//M06–2X/6–311++G(d,p) level of theory. The kinetic information was analysed, including potential energy surface, barrier height, reaction enthalpy, and rate constant. The computed kinetic and thermodynamic parameters were fully incorporated into a new reaction kinetic model describing MMH combustion. This model includes 188 species and 1325 reactions, incorporating the MMH decomposition model (Diévart_2020), the nitrogen chemistry (Glarborg_2018) and the C0–C2 (C3Mech 4.0_2025). The ignition characteristics at room temperature and combustion behavior at high temperature in the MMH/NO2 system were investigated based on the developed model. Sensitivity and flux analyses were conducted to identify the dominant reactions governing the reactivity of the system. In addition, the thermodynamic and kinetic data reported in this study are also applicable to the development of reaction models for other C–N based fuels, such as unsymmetrical dimethylhydrazine (UDMH, (CH3)2NNH2), dimethylamine (CH3NHCH3), and methylamine (CH3NH2).


Download File

[img] Text
125896.pdf - Published Version
Restricted to Repository staff only

Download (9MB)

Additional Metadata

Item Type: Article
Subject: Chemistry (all)
Subject: Chemical Engineering (all)
Subject: Fuel Technology
Divisions: Faculty of Science
DOI Number: https://doi.org/10.1016/j.combustflame.2026.115016
Publisher: Elsevier Inc.
Keywords: Ab initio kinetics; Combustion chemistry; Kinetic mechanism; Monomethylhydrazine
Sustainable Development Goals (SDGs): SDG 9: Industry, Innovation and Infrastructure, SDG 7: Affordable and Clean Energy, SDG 12: Responsible Consumption and Production
Depositing User: Ms. Siti Radziah Mohamed@mahmod
Date Deposited: 30 Jul 2026 00:11
Last Modified: 30 Jul 2026 00:11
Altmetrics: https://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.1016/j.combustflame.2026.115016
URI: http://psasir.upm.edu.my/id/eprint/125896
Statistic Details: View Download Statistic

Actions (login required)

View Item View Item