Research on oxidation mechanism of hydrogen/syngas-methanol and its application on engine performance prediction

被引:6
|
作者
Wang, Yongjian [1 ]
Long, Wuqiang [1 ]
Tian, Hua [1 ]
Dong, Pengbo [1 ]
Lu, Mingfei [1 ]
Tang, Yuanyou [1 ]
Wang, Yang [1 ]
Zhang, Weiqi [1 ]
机构
[1] Dalian Univ Technol, Inst Internal Combust Engines, Dalian 116024, Peoples R China
关键词
Hydrogen/Syngas-methanol mixture; Oxidation mechanism; Methanol engine with Hydrogen/Syngas addition; Comprehensive thermal efficiency; Engine with methanol reformer; LAMINAR BURNING VELOCITIES; KINETIC MECHANISM; IGNITION DELAY; NATURAL-GAS; COMBUSTION CHARACTERISTICS; COLD START; SI ENGINE; EMISSIONS; PRESSURE; SYNGAS;
D O I
10.1016/j.fuel.2024.131211
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
As a kind of promising additive fuel for spark ignition methanol engine, hydrogen/CO-rich syngas, produced by reforming methanol has attracted considerable attention because of its positive effects on engine combustion. In the current study, a chemical mechanism for hydrogen-methanol and syngas-methanol combustion was developed to predict the engine performance. The kinetic mechanisms, includes 39 species and 193 elementary reactions after reducing and optimizing the detailed chemical mechanism (Burke et al., 2016). It was proved that this mechanism can well predict the ignition delay time, laminar burning velocity and the typical species evolution of hydrogen-methanol and syngas-methanol mixtures. Moreover, the differences between the effects of hydrogen and syngas additions on the ignition delay and laminar burning velocity were analyzed quantitively. Based on the mechanism and bench test data, computational investigations on the knock and combustion characteristics of methanol, hydrogen/methanol and syngas/methanol stoichiometric operation engines were conducted. In order to further improve the comprehensive thermal efficiency, the engine operation scheme accompanied with a methanol-reformer was proposed, and the syngas blending ratio can reach 0.076 within the knock limitation. In this way, the corresponding comprehensive thermal efficiency of the system is increased by 1.96% compared with the original methanol engine.
引用
收藏
页数:21
相关论文
共 50 条
  • [22] Prediction of engine performance and exhaust emissions for gasoline and methanol using artificial neural network
    Cay, Yusuf
    Korkmaz, Ibrahim
    Cicek, Adem
    Kara, Fuat
    ENERGY, 2013, 50 : 177 - 186
  • [23] Mechanism of hydrogen sulfide oxidation-II: Application.
    Capitani, JF
    Di Toro, DM
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2000, 219 : U629 - U629
  • [24] Electrodeposition of PdCu alloy and its application in methanol electro-oxidation
    Hsieh, Ming-Wei
    Whang, Thou-Jen
    APPLIED SURFACE SCIENCE, 2013, 270 : 252 - 259
  • [25] Research on Reaction Mechanism of Mine Gas Partial Oxidation into Methanol in Acetic Acid
    Xu, Feng
    Zhu, Lihua
    Bi, Yewu
    Hou, Fengcai
    RESEARCH JOURNAL OF CHEMISTRY AND ENVIRONMENT, 2012, 16 : 122 - 126
  • [26] PERFORMANCE PREDICTION AND EARLY DESIGN CODE FOR AXIAL TURBINES AND ITS APPLICATION IN RESEARCH AND PREDESIGN
    Krumme, Alexander
    PROCEEDINGS OF THE ASME TURBO EXPO: TURBINE TECHNICAL CONFERENCE AND EXPOSITION, 2016, VOL 2C, 2016,
  • [27] Research of test and evaluation system for methanol fuel and its application
    Qi, Hong-Yuan
    Yan, Zhi-Guo
    Yang, You-Wen
    Neiranji Gongcheng/Chinese Internal Combustion Engine Engineering, 2015, 36 (02): : 30 - 37
  • [28] MECHANISM OF CHEMICAL DIFFUSION IN SOLIDS AND ITS APPLICATION TO OXIDATION
    KUENZLY, JD
    OXIDATION OF METALS, 1971, 3 (04): : 357 - &
  • [29] MECHANISM OF CHEMICAL DIFFUSION IN SOLIDS AND ITS APPLICATION TO OXIDATION
    ARKHAROV, VI
    BALANAEV.NA
    BOGOSLOV.VN
    STAFEEVA, NM
    OXIDATION OF METALS, 1971, 3 (03): : 251 - &
  • [30] Synthesis of Graphene Supported Nanocatalyst and Its Electrocatalytic Performance for Methanol Oxidation
    Lu, Xinhua
    PROCEEDINGS OF THE 2018 3RD INTERNATIONAL WORKSHOP ON MATERIALS ENGINEERING AND COMPUTER SCIENCES (IWMECS 2018), 2018, 78 : 130 - 133