[1] 李振宇,黄格省. 推动我国能源生产革命的途径分析[J]. 化工进展,2015,34(10):3521-3529. [2] 张庆军,刘文洁,王鑫,等. 国外渣油加氢技术研究进展[J]. 化工进展,2015,34(8):2988-3002. [3] BALDASSARI M,MUKHERJEE U. Maximum value addition with LC-MAX and VRSH Technologies[C]. US:AFPM,2015. [4] ANCHEYTA J,SPEIGHT J G. Hydroprocessing of heavy oils and residua[M]. Boca Raton:CRC Press,2007. [5] 李立权,方向晨,高跃,等. 工业示范装置沸腾床渣油加氢技术STRONG的工程开发[J]. 炼油技术与工程,2014,44(6):13-17. [6] 王建明,江林. 减压渣油悬浮床加氢裂化技术——当代炼油工业的前沿技术[J]. 中外能源,2010,15(6):63-76. [7] 李雪静,任文坡. 国内外渣油悬浮床加氢裂化技术进展[J]. 石化技术,2012,19(1):65-70. [8] 姚国欣. 委内瑞拉超重原油和加拿大油砂沥青加工现状及发展前景[J]. 中外能源,2012,17(1):3-21. [9] 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):1006-1013,1144. [10] 刘建锟,杨涛,蒋立敬,等. 沸腾床与催化裂化组合工艺研究[J]. 现代化工,2013,33(10):104-107. [11] 刘建锟,杨涛,贾丽,等. 掺炼催化循环油的沸腾床与催化裂化组合技术开发[J]. 现代化工,2015,35(1):140-144. [12] 刘建锟,杨涛,方向晨,等. 沸腾床渣油加氢-焦化组合工艺探讨[J]. 石油学报(石油加工),2015,31(3):663-669. [13] 杨涛,刘建锟,耿新国. 沸腾床-固定床组合渣油加氢处理技术研究[J]. 炼油技术与工程,2015,45(5):24-27. [14] VAIDYANATHAN S,KOPPEL P,TURINI K. Vacuum bottoms upgrading: add hydrogen,reject carbon,or do both? [R]. US:AFPM,2015. [15] KADIEV K, KHADZHIEV S, WADSWORTH D M. An efficient solution to the conversion of heavy hydrocarbon residue[C]// Russia:21st World Petroleum Congress,Block 2:Refining, Transportation and Petrochemistry,2014. [16] MARZIEH Shekarriz, JAMSHID Zarkesh, FOROUZAN Hajialiakbari,et al. Nanoemulsion concept to enhance deep slurry hydrocracking process[C]// Russia: 21st World Petroleum Congress,Block 2:Refining,Transportation and Petrochemistry, 2014. [17] JUÁREZ E M,GARCÍA F J O, HERNÁNDEZ P S. Hydrocracking of vacuum residue by homogeneous catalysis[J]. Fuel,2014,135:51-54. [18] HUR Y G,KIM M S,LEE D W,et al. Hydrocracking of vacuum residue into lighter fuel oils using nanosheet-structured WS2 catalyst[J]. Fuel,2014,137:237-244. |