[1] |
Wang Qing (王擎), Wang Xudong (王旭东), Jia Chunxia (贾春霞), Liu Hongpeng (刘洪鹏). Study on reaction mechanism of co-combustion of oil shale semi-coke and corn stalks by the absolute reaction rate theory [J]. Proceedings of the CSEE (中国电机工程学报), 2013, 3 (35): 28-35.
|
[2] |
Shi Guoquan (施国泉). Oil Shale and Shale Oil (油页岩与页岩油) [M]. Beijing: China Petrochemical Press, 2009: 1-2.
|
[3] |
Wang Q, Sun B Z, Hu A J, Bai J R, Li S H. Pyrolysis characteristics of Huadian oil shales [J]. Oil Shale, 2007, 24 (2): 147-157.
|
[4] |
Wang Z J, Deng S H, Gu Q, Zhang Y M, Cui X J, Wang H Y. Pyrolysis kinetic study of Huadian oil shale, spent oil shale and their mixtures by thermogravimetric analysis [J]. Fuel Processing Technology, 2013, 110: 103-108.
|
[5] |
Han X X, Jiang X M, Wang H, Cui Z G. Study on design of Huadian oil shale-fired circulating fluidized bed boiler [J]. Fuel Processing Technology, 2006, 87 (4): 289-295.
|
[6] |
Qian Jialin (钱家麟), Yin Liang (尹亮). Oil Shale—Petroleum Alternative (油页岩——石油的补充能源) [M]. Beijing: China Petrochemical Press, 2008: 30-34.
|
[7] |
Geng Cengceng (耿层层), Li Shuyuan (李术元), He Jilai (何继来). Determination and identification of oxygen-containing compounds in Longkou shale oil [J]. Journal of Fuel Chemistry and Technology (燃料化学学报), 2012, 40 (5): 538-544.
|
[8] |
Karabacak M, Sinha L, Prasad O, Asiri A M, Cinar M, Shukla V K. FT-IR, FT-Raman, NMR, UV and quantum chemical studies on monomeric and dimeric conformations of 3, 5-dimethyl-4- methoxybenzoic acid [J]. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2014, 123: 352-362.
|
[9] |
Wang P F, Jin L J, Liu J H, Zhu S W, Hu H Q. Analysis of coal tar derived from pyrolysis at different atmospheres [J]. Fuel, 2013, 104: 14-21.
|
[10] |
Li Xinjing (李新景), Lu Songnian (卢松年). High temperature gas chromatography and the analysis of petroleum [J]. Advance in Earth Sciences (地球科学进展), 1999, 14 (2): 193-196.
|
[11] |
Guo Shuhua (郭淑华), Ruan Zhu (阮竹), Zhou Xiaohong (周小虹), Ni Yuan (倪渊). Research on shale oil composition (Ⅱ): Identification of Maoming shale oil (Acta Petrolei Sinica: Petroleum Processing Section (石油学报: 石油加工), 1995, 11 (4): 53-61.
|
[12] |
Guo Shuhua (郭淑华), Ruan Zhu (阮竹). Research on shale oil composition (Ⅲ): Structural parameters calculation of fraction (>350℃) of shale oil [J]. Acta Petrolei Sinica: Petroleum Processing Section (石油学报: 石油加工), 1996, 12 (1): 113-118.
|
[13] |
Tao Shu (陶树), Tang Dazhen (汤达祯), Li Jingjing (李靖靖), Xu Hao (许浩), Chen Zhenlong (陈贞龙), Zhou Chuanyi (周传祎). Application of step-by-step pyrolysis gas chromatography in evaluating the process property of oil shale [J]. Journal of Xi'an University of Science and Technology (西安科技大学学报), 2010, 30 (1): 97-101.
|
[14] |
Ru X, Cheng Z Q, Song L H, Wang H Y, Feng L J. Experimental and computational studies on the average molecular structure of Chinese Huadian oil shale kerogen [J]. Journal of Molecular Structure, 2012, 1030: 10-18.
|
[15] |
Tong J H, Han X X, Wang S, Jiang X M. Evaluation of structural characteristics of Huadian oil shale kerogen using direct techniques (Solid-state 13C NMR, XPS, FT-IR, and XRD) [J]. Energy & Fuels, 2011, 25 (9): 4006-4013.
|
[16] |
Wang Jianing (王加宁), Tian Yuzeng (田玉增), Guan Yafeng (关亚风), Tian Huiyuan (田会元), Lin Min (林民), Liu Changshan (刘长山). Class separation and characterization of shale oil by thin-layer chromatography and capillary gas chromatography-mass spectrometry [J]. Chinese Journal of Chromatography (色谱), 1992, 10 (6): 339-341.
|
[17] |
Sun Y H, Bai F T, Liu B C, Liu Y M, Guo M Y, Guo W, Wang Q W, Lü X S, Yang F, Yang Y. Characterization of the oil shale products derived via topochemical reaction method [J]. Fuel, 2014, 115: 338-346.
|
[18] |
Kong Weiwei (孔维伟). Compositional analysis of coal tar and shale oil[D]. Dalian: Dalian University of Technology, 2013.
|
[19] |
Huang Y R, Han X X, Jiang X M. Comparison of fast pyrolysis characteristics of Huadian oil shale from different mines using Curie-point pyrolysis-GC/MS [J]. Fuel Processing Technology, 2014, 128: 456-460.
|
[20] |
Li Jingjing (李婧婧), Tang Dazhen (汤达祯), Xu Hao (许浩), Wang Dongying (王东营), Tao Shu (陶树), Zhou Chuanyi (周传祎), Gao Guanfeng (高冠峰). Pyrolysis-gas chromatography of the oil shale in Lucaogou formation, Dahuangshan, Southern Junggar Basin [J]. Petroleum Exploration and Development (石油勘探与开发), 2008, 35 (6): 674-679.
|
[21] |
Wang Qing (王擎), Shi Juxin (石聚欣), Chi Mingshu (迟铭书), Huang Zongyue (黄宗越), Sui Yi (隋义). Pyrolysis behavior of Huadian oil shale based on 13C NMR technology [J]. Chemical Industry and Engineering Progress (化工进展), 2014, 33 (9): 2321-2325.
|
[22] |
Liang Wenjie (梁文杰). Heavy Oil Chemistry (重质油化学) [M]. Dongying: University of Petroleum Press, 2000: 69-78.
|
[23] |
Li Q Y, Han X X, Liu Q Q, Jiang X M. Thermal decomposition of Huadian oil shale (Ⅰ): Critical organic intermediates [J]. Fuel, 2014, 121: 109-116.
|
[24] |
Wang Qing (王擎), Ge Jiangxin (戈建新), Jia Chunxia (贾春霞), Xu Xiaofei (许晓飞), Liu Hongpeng (刘洪鹏). Influence of retorting end temperature on chemical structure of oil-sand oil [J]. CIESC Journal (化工学报), 2013, 64 (11): 4216-4222.
|
[25] |
Luo Yuran (罗渝然). Handbook of Chemical-bond Energy (化学键能数据手册) [M]. Beijing: Science Press, 2005: 100-103.
|
[26] |
Shi L, Liu Q Y, Guo X J, Wu W Z, Liu Z Y. Pyrolysis behavior and bonding information of coal—a TGA study [J]. Fuel Processing Technology, 2013, 108: 125-132.
|