five

Ab Inito Chemical Kinetics Modeling of Liquid-phase Reactions of Monomethylhydrazine and Nitrogen Tetroxide

收藏
Figshare2025-04-23 更新2026-04-28 收录
下载链接:
https://figshare.com/articles/dataset/Ab_Inito_Chemical_Kinetics_Modeling_of_Liquid-phase_Reactions_of_Monomethylhydrazine_and_Nitrogen_Tetroxide/28850108
下载链接
链接失效反馈
官方服务:
资源简介:
Monomethylhydrazine (MMH) and nitrogen tetroxide (NTO) have been utilized as hypergolic bipropellants in spacecraft engines for many years, but the liquid-phase MMH/NTO reaction mechanism remains underexplored. This theoretical study investigates the liquid-phase reactions between MMH and NTO. By employing an implicit solvent model and conducting high-accuracy quantum chemical calculations at the CCSD(T)/CBS//M06–2X/6–311++G(d,p)/SMD theoretical level, we obtained the reaction paths for the isomerization reactions of NTO, for the reactions between MMH and t-ONONO2, and for the reactions between MMH and NO2. The corresponding reaction pathways in the gas phase were also computed for comparison at the CCSD(T)/CBS//M06–2X/6–311++G(d,p) theoretical level. The results indicate that the energy barriers for the liquid-phase reactions are lower than their gas-phase counterparts due to the solvent effects. The rate constants were calculated using the transition state theory. We established a kinetic model and applied it to simulate the early stage of the liquid-phase MMH/NTO reactions under premixed and adiabatic conditions. The results indicate that the required time for temperature rising from the initial temperature (−13 °C) to the boiling point temperature of MMH (87.5 °C) is approximately 0.05 μs, consistent with previous experimental observations in drop tests. In addition, the kinetic analysis revealed that the reaction steps N2O4 → t-ONONO2 and CH3NHNH2 + t-ONONO2 → CH3NH2 + N2O + HNO3 play critical roles in triggering the subsequent reactions, thereby dictating the rate of temperature rise. This work not only provides a new kinetic model for liquid-phase MMH/NTO reactions but also clarifies the role of liquid-phase reactions in the hypergolic ignition of MMH/NTO.
创建时间:
2025-04-23
5,000+
优质数据集
54 个
任务类型
进入经典数据集
二维码
社区交流群

面向社区/商业的数据集话题

二维码
科研交流群

面向高校/科研机构的开源数据集话题

数据驱动未来

携手共赢发展

商业合作