Oxidation Decomposition Mechanism of HFO-1234ze(E) Based on ReaxFF Molecular Dynamic Simulation

被引:0
|
作者
Xin, Li-Yong [1 ]
Liu, Chao [1 ]
Li, Qi-Bin [1 ]
Huo, Er-Guang [2 ]
机构
[1] Key laboratory of low-grade Energy Utilization Technologies and Systems, Ministry of Education, School of Energy and Power Engineering, Chongqing University, Chongqing,400044, China
[2] School of Physical Science and Technology, Suzhou University of Science and Technology, Suzhou,215009, China
关键词
Oxidation;
D O I
暂无
中图分类号
学科分类号
摘要
The oxidation decomposition mechanism of HFO-1234ze(E) was studied by Density functional theory (DFT) and ReaxFF simulations. The initial reaction and main products of HFO- 1234ze(E) were analyzed. The effect of temperature and the number of HFO-1234ze(E) on the oxidation decomposition was explored. The initial reaction is mainly the homolytic reaction of HFO-1234ze(E). The radicals generated in the initial reaction stage mainly are F, H and CF3 radicals. O2 mainly reacts with the radicals generated by the initial reaction. The main products of oxidation decomposition for HFO-1234ze(E) are HF, CO, CO2, COF and COF2, which are consistent with the experimental results in the reference. Increasing the temperature will promote the generation of CF3 radicals and CO molecules, but inhibit the generation of COF radicals. Increasing the initial number of HFO-1234ze(E) has no significant effect on the proportion of consumed HFO-1234ze(E) to the initial number, but the number of HF produced is proportional to the initial number of HFO- 1234ze(E). This study will help to understand mechanism of oxidation decomposition of working fluids HFO from the molecular scale. © 2021, Science Press. All right reserved.
引用
收藏
页码:2780 / 2786
相关论文
共 50 条
  • [21] HFO-1234ze(E)与七氟丙烷混合灭火作用研究
    江伟
    范治国
    中国人民警察大学学报, 2025, 41 (02) : 72 - 77
  • [22] Study of partial discharge characteristics in HFO-1234ze(E)/N2 mixtures
    Jia, Zongkai
    Chen, Qingguo
    Lin, Lin
    Wang, Xinyu
    PLASMA SCIENCE & TECHNOLOGY, 2020, 22 (11)
  • [23] HFO-1234ze(E)在不同湿度下燃烧极限实验研究
    郭智恺
    谢品赞
    吴佳萍
    浙江化工, 2016, 47 (03) : 1 - 3+8
  • [24] HFO-1234ze(E)对庚烷火焰抑制作用研究
    尹怡璇
    杨克
    纪虹
    舒中俊
    消防科学与技术, 2023, 42 (09) : 1192 - 1196
  • [25] Study of partial discharge characteristics in HFO-1234ze(E)/N2 mixtures
    贾宗凯
    陈庆国
    林林
    王新宇
    Plasma Science and Technology, 2020, (11) : 60 - 67
  • [26] A NEW MEDICAL PROPELLANT HFO-1234ZE(E): REDUCING THE ENVIRONMENTAL IMPACT OF INHALED MEDICINES
    Hargreaves, C.
    Budgen, N.
    Whiting, A.
    Lachacz, K.
    Sommerville, M.
    Archbell, J.
    Joshi, V.
    THORAX, 2022, 77 : A38 - A39
  • [27] HFO-1234ze(E)及其与R134a的混合物
    周子成
    制冷, 2014, 33 (04) : 31 - 38
  • [28] Study on the adsorption characteristics of Maxsorb III/HFO-1234ze(E) pair for adsorption refrigeration applications
    Ye, Lei
    Islam, Md. Amirul
    Rupam, Tahmid Hasan
    Jahan, Israt
    Saha, Bidyut Baran
    INTERNATIONAL JOURNAL OF REFRIGERATION, 2023, 146 : 248 - 260
  • [29] Partial-Discharge-Induced Decomposition and By-Products Properties of Eco-Friendly Insulating Gas HFO-1234ze(E)
    Tian, Shuangshuang
    Li, Xiaohan
    Zhang, Ying
    Zhang, Xiaoxing
    Jiang, Yuandong
    Liu, Peng
    Zhang, Wei
    Yu, Min
    Yuan, Zian
    IEEE TRANSACTIONS ON DIELECTRICS AND ELECTRICAL INSULATION, 2024, 31 (03) : 1447 - 1454
  • [30] 新型制冷剂HFO-1234ze(E)及HFO-1234yf的对比及研究进展
    陈志祥
    张琼
    董慧滋
    李娇
    丁江生
    制冷技术, 2018, 38 (05) : 70 - 77