期刊文献+

一种稠油热/化学驱用表面活性剂性能研究 被引量:12

Performance Study on One Surfactant for Heavy Oil Thermal/Chemical Flooding
下载PDF
导出
摘要 对一种热采用表面活性剂LC进行了性能评价,LC与孤岛三区原油动态界面张力在10-1mN/m数量级,与NaOH复配时则可达到超低界面张力。70℃下,LC在石英砂上的静态吸附量为3.618 5 mg/g。LC在150℃下具有很好的耐温性能,200℃下半衰期也在15天以上。LC溶液与原油质量比3∶7和2∶8混合,降粘率都在85%以上。150℃下动态驱替试验表明,采收率随着加入表面活性剂浓度的增大而增大,但是,活性剂浓度不宜太高;LC与0.5%的NaOH复配能显著提高采收率,当LC商品浓度为0.5%时,热水/碱/表面活性剂驱采收率比热水/碱驱提高10.85%,说明碱与表面活性剂具有很好的协同效应。试验表明LC可以作为稠油热采添加剂。 The Performance of one surfactant for thermal recovery was evaluated by experiment. The interiacial tension (IFT) of crude oil from Gudao third block in LC solution is 10-1mN/m,ultra—low IFT can be further achieved when NaOH was added.Static adsorption result showed that the maximum adsorption of LC on quartz sand at 70°C is 3. 6185mg/g, Besides, LC has good temperature resistance at 150°C ; even at 200°C, its half—time is longer than 15 days. When LC solution and crude oil were mixed in mass ratio of 3/7 and 2/8 at 70°C, oil viscosity can be dramatically decreased by more than 85%. Heavy oil dynamic flooding tests at 150°C indicated that oil recovery raises with the increase of LC concentration, but the concentration of surfactant should not be too high in consideration of its cost. When 0. 5wt% NaOH was compounded with 0.5wt% LC, oil recovery of hot water/alkali/surfactant flooding is 10.85% higher than that of hot water/alkali flooding, exhibiting good synergistic effect between NaOH and LC. It can be concluded that LC is a promising thermal additive in thermalrecovery of heavy oil.
出处 《石油与天然气化工》 CAS CSCD 2011年第2期175-178,100,共4页 Chemical engineering of oil & gas
基金 国家863重点项目:与蒸汽吞吐结合的表面活性剂驱油体系研究 课题编号为:2007AA06Z201
关键词 稠油 热/化学驱 表面活性剂 耐温性能 驱油试验 heavy oil thermal/chemical flooding surfactant temperature resistance oil flooding tests
  • 相关文献

参考文献10

  • 1于连东.世界稠油资源的分布及其开采技术的现状与展望[J].特种油气藏,2001,8(2):98-103. 被引量:278
  • 2Dilgre R E, Deemer A R, Owens K B. Laboratory development and field testing of steam/non--condensable gas foams for mob- ility control in heavy oil reeovery. SPE 10774,1982 SPE califo mia regional meeting, SanFraneiseo, March 24- 26,591 - 602.
  • 3檀国荣,张健,王金本.稠油低温破乳剂的研制与现场评价[J].石油与天然气化工,2009,38(2):141-144. 被引量:14
  • 4Brigham W E, et al. field experiment of improved steam drive with in situ foaming. SPERE,1989,August 239-248.
  • 5Doscher T M, et al. Analysis of five field tests steam drive addi- tives. SPE 12057, 1983,SPE Annual Technical Conference and Exhibition,San Francisco,Sept. 5-8.
  • 6Ploeg J F, Duerksen J H. Two successful steam/foam field tests, seetions 15A and 26C midway-- sunset field. SPE 13609,1985 SPE California Regional Meeting, Bakersfield, March 27- 29, 219-228.
  • 7Mohammadi S S,McCollum T J. Steam foam pilot in guadalupe field,california. SPERE. 1989 Feb. 17-28.
  • 8M P P. Keijzer,et al. Application of steam doam in the tia juana field, venezuela. SPE 14905, 1986 SPE/DOE Enhanced oil Reeovery SymPosium, Tulsa, April 20-23,327 -344.
  • 9刘永建,陈尔跃,闻守斌,刘春天.用油酸钼和石油磺酸盐强化辽河油田稠油降粘的研究[J].石油与天然气化工,2005,34(6):511-512. 被引量:25
  • 10王玉斗,陈月明,侯健,周彦煌,郭云尧.注蒸汽开采稠油用的两种表面活性剂[J].油田化学,2001,18(4):306-310. 被引量:19

二级参考文献22

  • 1凌建军,王远明,王书林,王珏.水平压裂辅助蒸汽驱开采稠油油藏的研究[J].河南石油,1996,10(3):30-34. 被引量:11
  • 2檀国荣,邹立壮,王金本,曹华,贾俊彩.稠油破乳剂TKQ的研制与性能评价[J].石油与天然气化工,2006,35(1):46-48. 被引量:3
  • 3(美)Michael Partst.世界重油资源.第十五届世界石油大会论文[M].,1997..
  • 4张锐.稠油开采技术现状与展望[M].中国石油天然气总公司石油勘探开发研究院,1998..
  • 5崔笛.利用电喷泵开采超稠油油藏效果好[J].石油知识,2000,(5).
  • 6Ramesh Varadaraj C. H.B. Aromatic sulfonic acid demulsifier for crude oils. US: 6599949B2, 2003
  • 7Zhang Liyan, Z. X. , Jacob H. Langmuir and langmuir-blodgett films of mixed asphaltene and a demulsifier. Langmuir, 2003, 19: 9730--9741
  • 8Jana V. K, L L S B S. Application of the hydrohile-lipophile con-cept to the classification of demulsifiers and bituminous froth and its components. Fuel Processing Technology, 2002,75 : 9-26
  • 9Joseph L, Stark S A. Synergies between asphaltene stabilizers and demulsifying agents giving improved demulsification of asphalteneStabilized emulsions. Energy & Fuels, 2005, 19: 1342--1345
  • 10佟曼丽,油田化学,1996年,188页

共引文献324

同被引文献159

引证文献12

二级引证文献62

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部