In situ catalytic upgrading of heavy crude oil through low-temperature oxidation

被引:0
作者
Hu Jia [1 ]
Peng-Gang Liu [1 ]
Wan-Fen Pu [1 ]
Xian-Ping Ma [2 ]
Jie Zhang [2 ]
Lu Gan [1 ]
机构
[1] State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University
[2] Oil Production Technology Institute of Dagang Oilfield, CNPC
基金
中国国家自然科学基金;
关键词
In situ catalytic oxidation; Heavy oil; Upgrading; Low-temperature oxidation; Mechanism;
D O I
暂无
中图分类号
TE624.4 [];
学科分类号
081705 ;
摘要
The low-temperature catalytic oxidation of heavy crude oil(Xinjiang Oilfield,China) was studied using three types of catalysts including oil-soluble,watersoluble,and dispersed catalysts.According to primary screening,oil-soluble catalysts,copper naphthenate and manganese naphthenate,are more attractive,and were selected to further investigate their catalytic performance in in situ upgrading of heavy oil.The heavy oil compositions and molecular structures were characterized by column chromatography,elemental analysis,and Fourier transform infrared spectrometry before and after reaction.An Arrhenius kinetics model was introduced to calculate the rheological activation energy of heavy oil from the viscosity-temperature characteristics.Results show that the two oil-soluble catalysts can crack part of heavy components into light components,decrease the heteroatom content,and achieve the transition of reaction mode from oxygen addition to bond scission.The calculated rheological activation energy of heavy oil from the fitted Arrhenius model is consistent with physical properties of heavy oil(oil viscosity and contents of heavy fractions).It is found that the temperature,oil composition,and internal molecular structures are the main factors affecting its flow ability.Oil-soluble catalyst-assisted air injection or air huff-n-puff injection is a promising in situ catalytic upgrading method for improving heavy oil recovery.
引用
收藏
页码:476 / 488
页数:13
相关论文
共 24 条
[1]   塔河稠油催化降黏机理研究 [J].
黄娟 ;
李本高 ;
秦冰 ;
雷斌 .
石油炼制与化工, 2014, 45 (05) :16-20
[2]  
原油组分低温氧化机理和反应活性实验研究[J]. 陈振亚,牛保伦,汤灵芝,张亮,黄海东,任韶然.燃料化学学报. 2013(11)
[3]   轻质油藏注空气低温高压氧化实验研究 [J].
李一波 ;
蒲万芬 ;
王爱香 ;
李英强 ;
刘寅飞 ;
黄弋炯 .
石油钻采工艺, 2012, 34 (06) :90-92
[4]  
基于油藏实际的稠油层内水热催化裂解机理研究[J]. 许洪星,蒲春生,吴飞鹏.燃料化学学报. 2012(10)
[5]   稠油体系的微观结构及流变性分析 [J].
朱静 ;
李传宪 ;
辛培刚 ;
许东 .
西安石油大学学报(自然科学版), 2012, 27 (02) :54-57+120
[6]   空气低温氧化体系对稠油组成的影响 [J].
唐晓东 ;
苏旭 ;
崔盈贤 ;
杨凯 ;
郑存川 .
西南石油大学学报(自然科学版), 2011, 33 (04) :149-152+200
[7]  
稠油催化裂解前后咔唑类化合物的变化及其催化降黏机理的研究[J]. 陈艳玲,李佩,王元庆,贺静.燃料化学学报. 2011(04)
[8]   稠油粘温特性及流变特性分析 [J].
朱静 ;
李传宪 ;
辛培刚 .
石油化工高等学校学报, 2011, 24 (02) :66-68+72
[9]   稠油中胶质稳定分散沥青质的作用研究 [J].
程亮 ;
李纪晖 ;
孙晨 .
西安石油大学学报(自然科学版), 2011, 26 (01) :64-70+120
[10]   稠油胶质特性及其对沥青质吸附行为研究 [J].
叶仲斌 ;
程亮 ;
向问陶 ;
刘义刚 ;
李纪晖 .
西南石油大学学报(自然科学版), 2010, 32 (06) :147-154+196