塔河稠油地面热改质降黏中试研究
A Pilot Study on Thermal Upgrading of Heavy Oil in Tahe Oilfield
DOI: 10.12677/JOGT.2019.416093, PDF,   
作者: 程仲富, 刘 磊, 曹 畅, 任 波, 杨祖国:中国石化西北油田分公司工程技术研究院,新疆 乌鲁木齐
关键词: 热改质塔河稠油常压渣油稳定性Thermal Upgrading Tahe Heavy Oil Atmospheric Residue Stability
摘要: 根据反应釜小试实验优化条件,确定了塔河稠油地面热改质降黏中试方案,在中试装置上对塔河稠油的热改质过程进行了考察,并与热改质小试实验进行了比较。结果表明,中试与小试减黏裂化生成油降黏率基本一致,均在97%以上,中试生焦率略高;注水虽可减少生焦(降至0.1%以内),但降黏改质效果差;综合稳定性及黏度分析,塔河稠油热改质4组中试条件中,400℃、80 min (不注水)工艺条件改质效果相对最优。
Abstract: According to the optimized condition of the batch reactor test, the pilot test scheme of thermal upgrading of heavy oil in Tahe Oilfield was chosen. Thermal upgrading process of Tahe heavy oil was investigated in a pilot plant, and it was compared with the batch reactor test. The results show that the viscosity reduction rate of the produced oil from the pilot test is in agreement with that of the batch test, which is all above 97%, and the coke yield of the pilot test is slightly higher. The coke yield can be reduced to a tolerable minimum (less than 0.1%) by water injection. However, the effect of viscosity reduction rate is poor. Through comprehensive analysis and evaluation of oil stability and its viscosity, the process condition 400˚C, 80 min (without water injection) is relatively optimal among the pilot tests.
文章引用:程仲富, 刘磊, 曹畅, 任波, 杨祖国. 塔河稠油地面热改质降黏中试研究[J]. 石油天然气学报, 2019, 41(6): 45-50. https://doi.org/10.12677/JOGT.2019.416093

参考文献

[1] 李振宇, 乔明, 任文坡. 委内瑞拉超重原油和加拿大油砂沥青加工利用现状[J]. 石油学报(石油加工), 2012, 28(3): 517-524.
[2] Martínez-Palou, R., Mosqueira, M.D.L., Zapata-Rendón, B., et al. (2011) Transportation of Heavy and Extra-Heavy Crude Oil by Pipeline: A Review. Journal of Petroleum Science and Engineering, 75, 274-282. [Google Scholar] [CrossRef
[3] 杨思远. 塔河油田稠油地面改质工艺方案及经济评价研究[J]. 油气田地面工程, 2018, 37(8): 13-16.
[4] 赵欣, 王宗贤, 柳文, 等. HRDC烃循环技术在延迟焦化装置的工业应用[J]. 炼油技术与工程, 2017, 47(4): 19-23.
[5] 焦守辉, 林祥钦, 郭爱军, 等. 劣质渣油性质对受热生焦趋势影响的研究[J]. 燃料化学学报, 2017, 45(2): 165-171.
[6] Joshi, J.B., Pandit, A.B., Kataria, K.L., et al. (2008) Petroleum Residue Upgradation via Visbreaking: A Review. Industrial & Engineering Chemistry Research, 47, 8960-8988. [Google Scholar] [CrossRef
[7] 徐先盛, 竺宝英. 渣油减粘裂化[M]. 北京: 烃加工出版社, 1986.