[1] L. Ma, X.Y. Yin, H. Sun, B.S. Fu, Present status of oil shale resource utilization in the world and its development prospects, Glob. Geol. 31(4) (2012) 772-777.[2] Z.J. Liu, R. Liu, Oil shale resource state and evaluating system, Earth Sci. Front. 12(3) (2005) 315-323.[3] S. Siramard, L.X. Lin, C. Zhang, D.G. Lai, S. Cheng, G.W. Xu, Oil shale pyrolysis in indirectly heated fixed bed with internals under reduced pressure, Fuel Process. Technol. 148(2016) 248-255.[4] P.A. Bozkurt, O. Tosun, M. Canel, The synergistic effect of co-pyrolysis of oil shale and low density polyethylene mixtures and characterization of pyrolysis liquid, J. Energy Inst. 90(3) (2017) 355-362.[5] Y. Tian, M.Y. Li, D.G. Lai, Z.H. Chen, S.Q. Gao, G.W. Xu, Characteristics of oil shale pyrolysis in a two-stage fluidized bed, Chin. J. Chem. Eng. 26(2018) 407-414.[6] D.L. Shi, X.Y. Wei, X. Fan, Z.M. Zong, B. Chen, Y.P. Zhao, Y.G. Wang, J.P. Cao, Characterizations of the extracts from Geting bituminous coal by spectrometries, Energy Fuel 27(2013) 3709-3717.[7] P. Li, Z.M. Zong, F.J. Liu, Y.G. Wang, X.Y. Wei, X. Fan, Y.P. Zhao, W. Zhao, Sequential extraction and characterization of liquefaction residue from Shenmu-Fugu subbituminous coal, Fuel Process. Technol. 136(2015) 1-7.[8] J.L. Zhu, X. Fan, X.Y. Wei, S.Z. Wang, T.G. Zhu, C.C. Zhou, Y.P. Zhao, R.Y. Wang, Y. Lu, L. Chen, C.Y. You, Molecular characterization of heteroatomic compounds in a high-temperature coal tar using three mass spectrometers, Fuel Process. Technol. 138(2015) 65-73.[9] H.F. Shui, Y. Zhou, H.P. Li, Z.C. Wang, Z.P. Lei, S.B. Ren, C.X. Pan, W.W. Wang, Thermal dissolution of Shenfu coal in different solvents, Fuel 108(2013) 385-390.[10] Z.K. Li, X.Y. Wei, H.L. Yan, X.Y. Yu, Z.M. Zong, Characterization of soluble portions from thermal dissolution of Zhaotong lignite in cyclohexane and methanol, Fuel Process. Technol. 151(2016) 131-138.[11] C.X. Pan, H.L. Liu, Q. Liu, H.F. Shui, Z.C. Wang, Z.P. Lei, S.G. Kang, X.Y. Wei, Oxidative depolymerization of Shenfu subbituminous coal and its thermal dissolution insoluble fraction, Fuel Process. Technol. 155(2017) 168-173.[12] S. Li, Z.M. Zong, Z.K. Li, S.K. Wang, Z. Yang, M.L. Xu, C. Shi, X.Y. Wei, Y.G. Wang, Sequential thermal dissolution and alkanolyses of extraction residue from Xinghe lignite, Fuel Process. Technol. 167(2017) 425-430.[13] L. Tiikma, I. Johannes, H. Luik, A. Zaidentsal, N. Vink, Thermal dissolution of Estonian oil shale, J. Anal. Appl. Pyrolysis 85(1) (2009) 502-507.[14] Y.N. Wang, X.Y. Wei, Z.K. Li, H.L. Yan, T.M. Wang, Y.Y. Zhang, Z.M. Zong, F.Y. Ma, J.M. Liu, Extraction and thermal dissolution of Piliqing subbituminous coal, Fuel 200(2017) 282-289.[15] Z.K. Li, X.Y. Wei, H.L. Yan, Z.M. Zong, Insight into the structural features of Zhaotong lignite using multiple techniques, Fuel 153(2015) 176-182.[16] J. Zhang, N. Zheng, J. Wang, Two-stage hydrogasification of different rank coals with a focus on relationships between yields of products and coal properties or structures, Appl. Energy 173(2016) 438-447.[17] Q. Wang, Y. Hou, W. Wu, Z. Yu, S.H. Ren, Q.Y. Liu, Z.Y. Liu, A study on the structure of Yilan oil shale kerogen based on its alkali-oxygen oxidation yields of benzene carboxylic acids, 13C NMR and XPS, Fuel Process. Technol. 166(2017) 30-40.[18] J. Wang, Y. He, H. Li, J.D. Yu, W.N. Xie, H. W, The molecular structure of Inner Mongolia lignite utilizing XRD, solid state 13C NMR, HRTEM and XPS techniques, Fuel 203(2017) 764-773.[19] C. Lievens, D.H. Ci, Y. Bai, L.G. Ma, R. Zhang, J.Y. Chen, Q.Q. Gai, Y.H. Long, X.F. Guo, A study of slow pyrolysis of one low rank coal via pyrolysis-GC/MS, Fuel Process. Technol. 116(2013) 85-93.[20] S.K. Wang, X.Y. Wei, Y.G. Wang, Z.K. Li, Y.X. Chen, D.D. Xu, Q.Q. Teng, W.T. Li, X.X. Liu, M.Y. Zhou, Z.M. Zong, Compositional features of extracts from Shenmu char powder, J. Fuel Chem. Technol. 44(1) (2016) 1-6.[21] N.E. Moustafa, J.T. Andersson, Analysis of polycyclic aromatic sulfur heterocycles in Egyptian petroleum condensate and volatile oils by gas chromatography with atomic emission detection, Fuel Process. Technol. 92(2011) 547-555.[22] H.X. Ni, C.S. Hsu, P. Lee, J. Wright, R. Chen, C.M. Xu, Q. Shi, Supercritical carbon dioxide extraction of petroleum on kieselguhr, Fuel 141(2015) 74-81.[23] N.E. Moustafa, K.E.K.F. Mahmoud, A novel capped Pd nano-particle GC-MS technique for the identification of terpenoid sulfoxides in petroleum condensates, Fuel Process. Technol. 156(2017) 376-384.[24] B. Chen, X.X. Han, Q.Y. Li, X.M. Jiang, Study of the thermal conversions of organic carbon of Huadian oil shale during pyrolysis, Energy Convers. Manag. 127(2016) 284-292.[25] Z.R. Zhang, J.K. Volkman, H. Lu, C.B. Zhai, Sources of organic matter in the Eocene Maoming oil shale in SE China as shown by stepwise pyrolysis of asphaltene, Org. Geochem. 112(2017) 119-126.[26] J.H. Tong, X.X. Han, S. Wang, X.M. Jiang, Evaluation of structural characteristics of Huadian oil shale kerogen using direct techniques (solid-state 13C NMR, XPS, FT-IR, and XRD), Energy Fuel 25(2011) 4006-4013.[27] Y.G. Wang, X.Y. Wei, R.L. Xie, F.J. Liu, P. Li, Z.M. Zong, Structural characterization of typical organic species in Jincheng No. 15 anthracite, Energy Fuel 29(2015) 595-601.[28] H.Y. Lu, X.Y. Wei, R. Yu, Y.L. Peng, X.Z. Qi, L.M. Qie, Q. Wei, J. Lv, Z.M. Zong, W. Zhao, Y.P. Zhao, Z.H. Ni, L. Wu, Sequential thermal dissolution of Huolinguole lignite in methanol and ethanol, Energy Fuel 25(2011) 2741-2745.[29] A.L. Burlingame, P.A. Haug, H.K. Schnoes, B.R. Simoneit, Fatty acids derived from the Green River Formation Oil Shale by extractions and oxidations-A review, Adv. Org. Geochem. 1968(1969) 85-129. |