[1] Petkov K, Stratiev D. Residue upgrading: Challenges and perspectives[J]. Hydrocarbon Processing, 2009, 88(9): 93-96. [2] 任文坡, 李雪静. 渣油加氢技术应用现状及发展前景[J]. 化工进展, 2013, 32(5): 1006-1011. [3] 刘元东, 郜亮, 温朗友, 等. 浆态床重油改质技术新进展[J]. 化工进展, 2010, 29(9): 1589-1595. [4] Castañeda L C, Muñoz J A D, Ancheyta J. Combined process schemes for upgrading of heavy petroleum[J]. Fuel, 2012, 100: 110-127 [5] Meena Marafi, Anthony Stanislaus. Handbook of Spent Hydroprocessing Catalysts: Regeneration, Rejuvenation, Reclamation, Environment and Safety[M]. New York: Elsevier, 2010: 35-48. [6] 江波. 渣油加氢技术进展[J]. 中外能源, 2012, 17(9): 64-67. [7] 李浩, 范传宏, 刘凯祥. 渣油加氢工艺及工程技术探讨[J]. 石油炼制与化工, 2012, 43(6): 31-38. [8] Ancheyta, Jorge. Modeling of Processes and Reactors for Upgrading of Heavy Petroleum[M]. CRC Press, Taylor & Francis Group, 2013: 45-64. [9] 边钢月, 张福琴. 渣油加氢技术进展[J]. 石油科技论坛, 2011(6): 13-18. [10] 姚国欣. 渣油深度转化技术工业应用的现状、进展和前景[J]. 石化技术与应用, 2012, 30(1): 3-7. [11] 方向晨. 国内外渣油加氢处理技术发展现状及分析[J]. 化工进展, 2011, 30(1): 95-104. [12] 卜蔚达. 重油加氢技术特点和发展趋势[J]. 化学工程与装备, 2010(3): 113-115. [13] 刘慧娟, 周华群, 郭绪强, 等. 劣质残渣油的加工和应用技术进展[J]. 中外能源, 2012, 17(2) : 74-75. [14] Ronald Birkhoff, Matti Nurminen. Refining Processes Handbook. Hydrocarbon processing[M]. Gulf Publishing Company, 2006: 195-201. [15] 石亚华. 石油加工过程中的脱硫[M]. 北京: 中国石化出版社, 2009: 428-430. [16] Threlkel Rich, Dillon Chris, Singh Udayshankar G. Increase flexibility to upgrade residuum using recent advances in RDS/VRDS-RFCC process and catalyst technology[J]. Journal of the Japan Petroleum Institute, 2010, 53(2): 65-74. [17] Jean Pau, Margotin. Conversion options for clean fuel production[C]// Refining Challenges & Way Forward, New Delhi, April 16-17, 2012 [18] Shishtari Jalil M. Raising the performance bar for atmospheric resid hydroconversion units[C]//NPRA Annual Meeting, Amsterdam, The Netherlands, 2005, AM-05-54 [19] Moyse B M. Ring-shaped catalysts make the grade[J]. Petroleum Technology Quarterly Catalysis, 2010, 15(2): 28. [20] Sumanth A, Gavin M, Kris P, et al. Impact of flow distribution and mixing on catalyst utilization and radial temperature spreads in hydroprocessing reactors[C]//AFPM: AFPM Annual Meeting. San Antonio, 2013: AM-13-13. [21] Kressmann S, Guillaume D, et al. A new generation of hydroconversion and hydrodesulfurization catalysts[C]//14th Annual Saudi-Japanese Symposium, Catalysts in Petroleum Refining and Petrochemicals, Saudi Arabia, 2004. [22] 夏恩冬, 吕倩, 董春明, 等. 固定床渣油加氢处理催化剂发展现状[J]. 精细石油化工进展, 2014(2): 45-49. [23] Arora A, Mukherjee U. Refinery configurations for maximising middle distillates[J]. Petroleum Technology Quarterly, 2011, 16(4): 75-83. [24] Ujjal Muckherjee, Terry Mayer, Bharat Srinivasan. Hydroprocessing Revamp Configuration[J]. Petroleum Technology Quarterly, 2005, 10(2): 49-56. [25] Mario Baldassari, Ujjal Mukherjee. LC-MAX and other LC-Fining process enhancements to extend conversion and on-stream factor[C]//US: AFPM Annual Meeting, San Diego, CA, 2012. [26] Wisdom L, Duddy J, Morel F. Debottlenecking a delayed coker to improve overall liquid yield and selectivity towards dieselfuel[C]//US: AFPM Annual Meeting in San Diego, California, 2012. [27] Colyar J J. Ebullated-bed reactor technology[C]//30th Anniversary of IFP's CEDI""Rene Navarre"" Industrial Development center, Sept, 41-49, 1997, Lyon. [28] Sigrid Spieler, Art Dahlbert, Ujjal Mukherjee. Upgrading Residuum to Finished Products In Integrated Hydroprocessing Platforms Solutions and Challenges[C]//NPRA Annual Meeting, AM-06-64. [29] David Wadsworth. LC-Fining Options for Heavy Oil Upgrading[C]//NPRA Annual Meeting, AM-08-33. [30] Gary Sieli, Nash Gupta. Delayed Coking and LC-Fining Technology-A Winning Combination[C]//2008 ERTC Coking and Gasification conference, Rome, Italy. [31] Reynolds B E, Bachtel R W, Yagi K. Chevron's on stream catalyst replacement(OCRTM)provides enhanced flexibility to residue Hydrotreaters[C]//NPRA Annual Meeting, San Antonio, 1992, AM-92-61. [32] Ohan S Rana, Vicente sámano, Jorge Ancheyta, et al. A review of recent advances on process technologies for upgrading of heavy oils and residua[J]. Fuel, 2007, 86: 1216-1231. [33] Ancheyta Jorge, Speight James G. Hydroprocessing of Heavy Oils and Residua[M]. Florida: CRC Press, 2007: 261-277. [34] Zhang S, Liu D, Deng W, et al. A review of slurry-phase hydrocracking heavyoil technology[J]. Energy Fuels, 2007, 21(6): 3057-62. [35] 吴青. 悬浮床加氢裂化-劣质重油直接深度高效转化技术[J]. 炼油技术与工程, 2014, 44(2): 2-8. [36] Giuseppe Bellussi, Giacomo Rispoli. Hydroconversion of heavy residues in slurry reactors: Developmentsand perspectives[J]. Journal of Catalysis, 2013: 189-200. [37] Gerald Parkinson. A“perfect storm” for US[J]. Petroleum Refining Industry& Chemical Engineering, 2010, 117(5): 21-24. [38] Dan G, Mark V W, Paul Z, et al. Upgrading residues to maximize distillate yields with the UOP UniflexTM process[C]//NPRA Annual Meeting, San Antonio, USA, 2009. [39] Farshid D, Renolds B. Integrated in-line pretreatment and heavy oil upgrading process: US, 2007/0138058 A1[P]. 2007-06-21. [40] Castañeda Luis C, Muñoz José A D, Ancheyta Jorge. Current situation of emerging technologies for upgrading of heavy oils[J]. Catalysis Today, 2014, 220-222: 248-273. |