论文著作:
1、Wang J, Tang X, Li J, et al. Synergistic effect and viscosity reduction mechanism of different biomass and extra-heavy oil in aquathermolysis[J]. Fuel 2023;333:126528. (一区,IF=8.035)
2、Wang J, Tang X, Li J, et al. Sawdust biomass promotes aquathermolysis of extra-heavy oil[J]. Fuel Processing Technology 2022;238:107522. (一区,8.129)
3、Wang J, Tang X, Li J, et al. Quartz sand proppant loaded with Ni and Mo for in-situ aquathermolysis of heavy oil[J]. Fuel 2021;306:121653. (一区,IF=8.035)
4、Li J, Zhang H, Tang X, et al. Adsorptive desulfurization of dibenzothiophene over lignin-derived biochar by one-step modification of potassium hydrogen phthalate[J]. Rsc Advances, 2016,6(102): 100352-100360.(二区,IF=3.108)
5、Li J, Zhou F, Tang X, et al. Deep Desulfurization of Kerosene by Electrochemical Oxidation Generating Na2FeO4[J].Energy & Fuels, 2016, 30(10): 8091-8097. (二区,IF=3.091)
6、Li J, Xiao H, Tang X, et al. Green Carboxylic Acid-Based Deep Eutectic Solvents as Solvents for the Extractive Desulfurization[J]. Energy & Fuels, 2016,30(7): 5411-5418. (二区,IF=3.091)
7、Jing-jing Li, Xuan Wang, Xiao-dong Tang, Fang Wang, and Da-yong Qing. Effect of Transition Metal Polymers with Varying Side Alkyl Chain on Viscosity Reduction of Crude Oil and Aggregation Behavior of Asphaltene[J]. Energy & Fuels, 2015,29(12): 7771-7780. (二区,IF=2.835)
8、Xiaodong Tang,Yongfen Zhang,Jing jing Li,et al.Deep Extractive Desulfurization with Arenium Ion Deep Eutectic Solvents[J].IND ENG CHEM RES,2015,54(16):4625-4632. (二区,IF=2.567)
9、Xiao-dong Tang,Tao Hu,et al .Desolfurization of Kerosene by the Electrochemical Oxidation and Extraction Process[J].Energy&Fuels,2015,29:2097-2103. (二区,IF=3.091)
10、Li Jingjing, Zhao Qianshu,Tang Xiaodong,et al.Liquid LiquidEquilibria for the Systems: Heptane+ Benzene+Solvent(Propylene carbonate,N,NDimethylformamide or Mixtures) at temperatures from (303.2 to 323.2) [J]. J. Chem.Eng.Data,2014,59(11):3307-3313. (二区,IF=2.037)
11、Jing-jing Li, Fei Zhou , Xiao-dong Tang , Tao Hu , Jin Cheng. Experimental Study on Deep Desulfurization of MTBE by Electrochemical Oxidation and Distillation. RSC Advance, 2016,6 :4803-4809. (三区,IF=3.108)
12、Tang X D, Hu T, Li J J, et al. Deep desulfurization of condensate gasoline by electrochemical oxidation and solvent extraction[J]. Rsc Advances, 2015, 5(66):53455-53461.(三区,IF=3.289)
13、Jing-jing Li, Miao Zhou, Xiao-dong Tang, Huan Xiao & Xiao-Pu Zhang. Deep desulfurization of FCC gasoline by extraction with dicarboxylic acid-based deep eutectic solvents[J]. Petroleum Science & Technology, 2017, 35(19):1903-1909. (四区,IF=0.655)
14、Jingjing Li, Xiaodong Chen, Xiaodong Tang, Liuyang Deng & Yutao Wei. Upgrading heavy and extra-heavy crude oil by iron oil-soluble catalyst for transportation[J]. Petroleum Science & Technology, 2017, 35(11):1160-1165. (四区,IF=0.655)
15、Jing-jing Li, Na Hu, Xiao-dong Tang & Fei Zhou. Kinetics of desulfurization by electrochemical oxidation in an emulsifying electrolyte[J]. Petroleum Science & Technology, 2017, 35(12):1240-1246. (四区,IF=0.655)
16、Jing-jing Li, Guo-Jian Liang, Xiao-Dong Tang, Yu-Tao Wei & Tun Dang. The effect of low-temperature oxidation in air-assisted steam flooding process for enhancing oil recovery[J]. Petroleum Science & Technology, 2017, 35(12):1247-1252. (四区,IF=0.655)
17、Tang X, Liang G, Li J, et al. Catalytic effect of in-situ preparation of copper oxide nanoparticles on the heavy oil low-temperature oxidation process in air injection recovery[J]. Petroleum Science & Technology, 2017, 35(13):1321-1326. (四区,IF=0.655)
18、Li J J, Zhou F, Tang X D, et al. Deep desulfurization of gasoline by electrochemical oxidation–distillation[J]. Petroleum Science & Technology, 2016, 34(5):442-448. (四区,IF=0.655)
19、Li J, Wei Y, Tang X, et al. Catalytic effect of zinc naphthenate on the heavy oil low-temperature oxidation in an air injection process[J]. Petroleum Science & Technology, 2016, 34(9):813-818. (四区,IF=0.655)
20、Tang X D, Lu H, Li J J, et al. Adsorption desulfurization performance and mechanism over nanocrystalline NiO/Al2O3-1 adsorbent[J]. Russian Journal of Applied Chemistry, 2016, 89(12):2043-2049.14. (四区,IF=0.375)
21、X.-D. Tang, H. Zhu, J.-J. Li, F. Wang, D.-Y. Qing.Catalytic Aquathermolysis of Heavy Oil With Oilsoluble Multicomponent Acrylic Copolymers Combined With Cu2+. Petroleum Science and Technology, 2015, 33:1721–1727. (四区,IF=0.418)
22、唐晓东,税蕾蕾,刘亮.直馏柴油NOx-空气催化氧化脱硫研究. 催化学报,2004,(10):789-792
(四区,IF=0.945)
23、魏宇涛,唐晓东,李晶晶,等. 原油注空气氧化反应及其动力学研究进展. 化工进展(EI收录). 2016(1), 83-90.
24、唐晓东,袁骄阳,李晶晶,等.吡啶离子液体催化作用下的FCC 汽油烷基化脱硫[J].燃料化学学报.2015,4(43):442-448.
25、唐晓东,谯勤,李晶晶,等.裂解C5脱硫有机硫实验研究[J].石油学报(石油加工).2014,(4):650-655.
26、唐晓东,郭巧霞,陈亮,等. HCHO—H2SO4缩合-萃取脱除汽油中的噻吩硫化物[J].石油学报(石油加工), 2011, (4), 601-605.