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论文专著

2020

[1]     Mingxia Liu, Meiling Liu, Xiaoxia Yao, ZeRong Li, Jingbo Wang, Ningxin Tan*, Xiangyuan Li Reactions of β-hydroxypropyl radicals with O2 on the HOC3H6O• potential energy surfaces: A theoretical study”Combustion and Flame, 221 (2020) 202-217.

[2]    李象远,申屠江涛,李宜蔚,李娟琴,王静波,燃烧反应机理构建的极小反应网络方法—氢氧燃烧,高等学校化学学报,41(2020)772-779.

[3]    杨墨,王静波,李象远. RP-3航空煤油高温骨架机理构建及验证[J]. 化学研究与应用, 32(2020),106-112.

[4]      Tianhao Zhang, Yu Chen, Penghao Liu, Lingxiao Zhou, Quan Zhu*, Jianli Wang, Xiangyuan Li, Investigation on the Thermal Cracking of n-Decane under Supercritical Pressure by a Developed Online-Sampling Experimental Method, Petroleum Chemistry, 60(2020), 39-44.

[5]     Mo Yang, Zhongjun Wan, Ningxin Tan, Changhua Zhang*, Jingbo Wang*, Xiangyuan Li, An experimental and modeling study of ethylene–air combustion over a wide temperature range ”, Combustion and Flame, 221(2020), 20-40

[6]      Chengang Yang, Zongjie Quan, Yu Chen, Quan Zhu*, Jianli Wang, Xiangyuan Li, A Comprehensive Investigation of the Pyrolysis Effect on Heat Transfer Characteristics for n-Decane in the Horizon Mini-Channel, Energy & Fuels, 34 (2020), 199-210.

[7]     Linlin Wang, Ting Chen, Jun Zhang, Yi Jiao*, Jianli Wang, Quan Zhua, Xiangyuan Li*, High catalytic activity and stability quasi homogeneous alkali metal promoted Ni/SiO2 aerogel catalysts for catalytic cracking of n-decane”, Fuel, 268(2020), 117384.

[8]     Zhiliang Lei, Kuo He, Qin Huang, Zewei Bao*, Xiangyuan LiNumerical study on supercritical heat transfer of n-decane during pyrolysis in rectangular tubes , Applied Thermal Engineering170(2020), 115002.

[9]     Bo wang, Xianlong Gong, Zhiduan Zhang, Quan Zhu*, Xiangyuan Li, Investigation on Carburization during the Repeated Coking and Decoking Process, Industrial & Engineering Chemistry Research, 59(2020), 13051-13059.

[10] Xianlong Gonga, Bo Wang, Huaizhi Han, Tao Kanga, Quan Zhua*, Jianli Wang, Xiangyuan LiaPreparation of Al2O3 coating on TiN coating by polymer-assisted deposition to improve oxidation resistance in coking inhibition applicationsCeramics International46(2020), 7774-7782

[11] Xiaomei Cao, Chunming Gong, Jianwen Liu, Huimin Ma, Zerong Li, Jingbo Wang*, Xiangyuan Li, Development of a detailed pyrolysis mechanism for C1–C4 hydrocarbons under a wide range of temperature and pressureInternational Journal of Chemical Kinetics, (2020), 1-26.

[12] Yongqing Li, Xiaoxia Yao, Xiaohui Sun, Zerong Li*, Jingbo Wang, Xiangyuan Li Automatic construction of transition states and on-the-fly accurate kinetic calculations for reaction classes in automated mechanism generatorsComputational and Theoretical Chemistry, 1184(2020), 112852.

[13] Xianlong Gong, Tengxiu Zou, Songhui Deng, Quan Zhu*, Anti-coking application of TiO2-Al2O3 composite coating prepared by MOCVDTransactions of the Institute of Metal Finishing, 98(2020), 1.

[14] Chengang Yang, Zongjie Quan, Yu Chen, Quan Zhu*, Jianli Wang, and Xiangyuan Li, A Comprehensive Investigation of the Pyrolysis Effect on Heat Transfer Characteristics for n‑Decane in the Horizon Mini-ChannelEnergy Fuels 34(2020), 199−210.

[15] Jinzhe Zeng, Liqun Cao, Chihao Chin, Haishen Ren, John. Z. H. Zhang, Tong Zhu, ReacNetGenerator: an automatic reaction network generator for reactive molecular dynamics simulations, Physical Chemistry Chemical Physics, 22 (2020), 683-691.

[16] Hongyan Li, Yingli Su, Jianyi Ma, Haisheng Ren, Mechanisms and energetics for catalytic combustion from methane to methanol and methanol to formaldehyde on single site palladium oxide species supported on AL-MCM-41 silica, Chemical Physics Letters, 751(2020), 137523.