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代表性论文及专利:
[1] S Wang, LZ Song, XM Jiang. Catalytic effects of Fe-and Ca-based additives on gas evolution during pyrolysis of dachengzi oil shale of China. Oil Shale, 2018, 35(1):39-55. (SCI&EI)
[2] S Wang, LZ Song, XM Jiang. Prediction of gaseous products from Dachengzi oil shale pyrolysis through combined kinetic and thermodynamic simulations. Journal of Thermal Analysis and Calorimetry, 2018, 134(2):1129-1144(SCI&EI)
[3] G Xiang, S Wang, XM Jiang.Catalytic effects of shale ash with different particle sizes on characteristics of gas evolution from retorting oil shale. Journal of Thermal Analysis and Calorimetry, 2019, 138(2):1527-1540.(SCI&EI)
[4] Y Ma, JG Liu, C Fan, S Wang, et al. The experimental study on the incineration of the acrylonitrile effluent in the CFB boiler burning oil shale. Oil Shale, 2016, 33(1):58-68. (SCI&EI)
[5] J Shen, H Zhang, JX Liu, L Luo, S Wang, et al. Density functional and experimental study of NO/O2 on zigzag char. Journal of Environmental Sciences, 2020, 88:283-291.(SCI&EI)
[6] B Chen, XX Han, JH Tong, M Mu, X Jiang, S Wang, et al. Studies of fast co-pyrolysis of oil shale and wood in a bubbling fluidized bed. Energy Conversion and Management, 2020, 205:112356. (SCI&EI)
[7] S Wang, XM Jiang, XX Han, et al. Effect of retorting temperature on product yield and characteristics of non-condensable gases and shale oil obtained by retorting Huadian oil shales. Fuel Processing Technology, 2014, 121:9-15.(SCI&EI)
[8] S Wang, JX Liu, XM Jiang, et al. Effect of heating rate on products yield and characteristics of non-condensable gases and shale oil obtained by retorting Dachengzi oil shale. Oil Shale, 2013, 30(1):27-47. (SCI&EI)
[9] S Wang, XM Jiang, XX Han, et al. Effect of residence time on products yield and characteristics of shale oil and gases produced by low-temperature retorting of Dachengzi oil shale. Oil Shale, 2013, 30(4):501-516. (SCI&EI)
[10] S Wang, XM Jiang, XX Han, et al. Investigation of Chinese oil shale resources comprehensive utilization performance. Energy, 2012, 42(1):224-232. (SCI&EI)
[11] MT Niu, S Wang, XX Han, et al. Yield and characteristic of shale oil from the retorting of oil shale and fine oil-shale ash mixture. Applied Energy, 2013, 111:234-239. (SCI&EI)
[12] JH Tong, JG Liu, XX Han, S Wang, et al. Characterization of nitrogen-containing species in Huadian shale oil by electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry. Fuel, 2013, 104:365-371. (SCI&EI)
[13] JH Tong, XX Han, S Wang, et al. Evaluation of structural characteristics of Huadian oil shale kerogen using direct techniques (Soild-State 13C NMR, XPS, FT-IR, and XRD). Energy & Fuel, 2011, 25(9):4006-4013. (SCI&EI)
[14] XY Sun, WG Xiang, S Wang, et al. Investigation of coal fueled chemical looping combustion using Fe3O4 as oxygen carrier: influence of variables. Journal of Thermal Science, 2010, 19(3):266-275. (SCI)
[15] WG Xiang, S Wang, et al. Investigation of Gasification Chemical Looping Combustion Combined Cycle Performance. Energy & Fuels, 2008, 22(2):961–966. (SCI&EI)
[16] 姜秀民,刘建国,韩向新,王莎等. 油页岩回转窑干馏与循环流化床燃烧工艺. 中国发明专利,专利号 ZL 201110443734.3.
[17] 韩向新,姜秀民,刘建国,王莎. 油页岩干馏、半焦焚烧一体化系统. 中国发明专利,专利号 ZL 201010179437.8.
[18] 宋立志,葛翔,王莎,汪鸣杰. 基于富甲烷混合气的油页岩循环流化床干馏方法及系统. 中国发明专利;申请号 201811061572.5.
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