Analysis of asphaltene structure and its effects on the coking behavior in the process of hydrothermal cracking
- Corresponding author: MA Feng-yun, ma_fy@126.com
Citation:
HONG Kun, MA Feng-yun, ZHONG Mei, LIU Jing-mei, MO Wen-long. Analysis of asphaltene structure and its effects on the coking behavior in the process of hydrothermal cracking[J]. Journal of Fuel Chemistry and Technology,
;2016, 44(3): 357-365.
ZHANG Shou-zeng, YUE Shu-fan, SHEN Jia-zhen, QIAO Chun-qin. Composition studies of vacuum residues from DaQing, ShengLi and RenQiu crudes[J]. Pet Process Petrochem, 1982(1):24-33.
ZHOU Xiao-long, CHEN Shao-zhou, CHANG Ke-yi. Seperation and structure analysis of vacuum residue composition[J]. J East China Univ Sci Technol, 1995,6(21):649-653.
SONG An-tai. Coking characterization of TaHe residue and the countermeasures for coking processing[J]. Pet Refin Eng, 2004,34(7):6-9.
SUN Yu-dong, YANG Chao-he, HAN Zhong-xiang. Influence of asphaltene content on yield and properties of hydrotreated residue[J]. J Fuel Chem Technol, 2012,40(5):545-549.
YEN T F. The colloidal aspect of a macrostructure of petroleum asphalt[J]. Fuel Sci Technol Int, 1992,10(4/6):723-733.
MURGICH J, RODRGUEZ J M, ARAY Y. Molecular recognization and molecular mechanics of micelles of some model asphaltenes and resin[J]. Energy Fuels, 1996,10:68-76. doi: 10.1021/ef950112p
RAVEY J C. Asphaltene macro structure by small angle neutron scattering[J]. Fuel, 1988,67(8):1560-1567.
LIU Y C, SHEU E Y. Fractal structure of asphaltene in toluene[J]. Fuel, 1988,67(8):1352-1356.
MARUSKA H P, RAO M L. The role of polar species in the aggregation of asphaltenes[J]. Fuel Sci Technol Int, 1987,5(2):119-168. doi: 10.1080/08843758708915850
KELLOMEFIKI A. Molar polarization and dipole moments of but8imens[J]. Fuel, 1991,70(9):1103-1104. doi: 10.1016/0016-2361(91)90267-E
LI Sheng-hua, LIU Chen-guang, QUE Guo-he, LIANG Wen-jie, ZHU Ya-jie. Occurrence of the second liquid phase in the thermal reaction systems of vacuum residua[J]. J Fuel Chem Technol, 1996,24(6):473-479.
LI Sheng-hua, LIU Chen-guang, QUE Guo-he, LIANG Wen-jie, ZHU Ya-jie. Occurrence of the second liquid phases in the thermal reaction system of vacuum residua-Second liquid phase and its characterization[J]. J Fuel Chem Technol, 1997,25(1):1-6.
LI Sheng-hua, LIU Chen-guang, QUE Guo-he, LIANG Wen-jie, ZHU Ya-jie. Formation mechanisms of seconf liquid phases in thermal reaction systems of vacuum residua[J]. J Fuel Chem Technol, 1998,26(5):423-430.
LI Sheng-hua, LIU Chen-guang, QUE Guo-he, LIANG Wen-jie, ZHU Ya-jie. Relations between second liquid phases and coke in thermal reaction systems of vacuum residue[J]. J Fuel Chem Technol, 1998,26(1):1-6.
CHEN Shi-feng, YANG Chao-he. Studies of initial coke formation on residual hydroconversion catalyst[J]. J Fuel Chem Technol, 2001,29(5):395-399.
KOKAL L S, SAYYEGH G S. Asphaltenes: The cholesterol of petroleum[C]. Bahrain: Middle east oil show, SPE29787, 1995: 169-181.
GAWEL I, BOCIARSKA D, BISKU P. Effect of asphaltenes on hydroprocessing of heavy oils and residua[J]. Appl Catal A: Gen, 2005,295(1):89-94. doi: 10.1016/j.apcata.2005.08.001
SUN Yu-dong. Influence of residue composition on hydrotreating reaction performance and properties of catalyst[D]. Shanghai: East China University of Science and Technology, 2011.
SH/T 0509-92(1998). Test method for separation of asphalt into four fractions[S]. 1998.
LIANG Wen-jie. Heavy Oil Chemistry[M]. Beijing: Press of Petroleum University, 2000: 49-80.
SUN Y D, YANG C H, ZHAO H, SHAN H, SHEN B X. Influence of asphaltene on the residue hydrotreating reaction[J]. Energy Fuels, 2010,24:5008-5011. doi: 10.1021/ef1005385
WANG Qing, GE Jian-xin, JIA Chun-xia, XU Xiao-fei, LIU Hong-peng. Influence of restorting end temperature on chemical structure of oil-sand oil[J]. J Chem Ind Eng, 2012,64(11):4216-4222.
SADYKOV B R, STARIKOV V P, SADYKOV R K, KALABIN G. Determination of the fractional composition of merchantable oil using quantitative 1H-NMR spectra[J]. Petrol Chem, 2012,52(1):22-27. doi: 10.1134/S0965544112010094
ZHANG An-gui, WANG Gang, BI Yan-tao, XU Chun-ming, GAO Jin-sen. Structural changes of the bitumen from inner Mongolia oil sand during thermal conversion[J]. Acta Pet Sin (Pet Process Sect), 2011,27(3):434-440.
MEI Yuan-fei, ZHAO Xin, SUN Wan-fu, QIAO Ai-xin, TANG Jun. The spectra analysis of Ili coal tar[J]. J Shihezi Univ Nat Sci Ed, 2011,29(3):384-389.
AYARAJ C, AMARJEET S S, GURPREET S K. Chemical structure of bitumen-derived asphaltenes by nuclear magnetic resonance spectroscopy and X-ray diffractometry[J]. Fuel, 1996,75(8):999-1008. doi: 10.1016/0016-2361(96)00023-3
MOHAMMAD N S, MOHAMMAD F A, JOHN S. Use of X-ray fiffraction in assessing the aging pattern of asphalt fractions[J]. Fuel, 2002,81:51-58. doi: 10.1016/S0016-2361(01)00116-8
WU Le-le, DENG Wen-an, LI Zhuan, ZHANG Ying-hong, WANG Xiao-jie. Properties of coal tar heavy fraction and its relevance to coking in hydrocracking[J]. J Fuel Chem Technol, 2014,42(8):938-944.
SOBKOWIAK M, REISSER E, GIVEN P, PAINTER P. Determination of aromatic and aliphatic CH groups in coal by FT-IR, study of coal extracts[J]. Fuel, 1984,63:1245-1252. doi: 10.1016/0016-2361(84)90433-2
LIU Yong-jun. Microstructure characterization of asphaltenes from atmospheric residue before and after hydroprocessing[J]. J Fuel Chem Technol, 2012,40(9):1086-1091. doi: 10.1016/S1872-5813(12)60039-5
YU Shuang-lin, SHAN Hong-hong, ZHANG Long-li, SUN Yu-dong, YANG Chao-he. Collodial stability of atmospheric residue hydrotreating production[J]. J China Pet Univ Nat Sci Ed, 2010,34(1):139-143.
ZHANG Long-li, ZHANG Shi-jie, YANG Guo-hua, JIANG Yun, QUE Guo-he. Colloid stability of atmospheric residual oil during thermal reaction[J]. Acta Pet Sin (Pet Process Sect), 2003,19(2):82-87.
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