首页> 外文会议>SPE Annual Technical Conference and Exhibition >CO2/Water Foams Stabilized with Cationic or Zwitterionic Surfactants at Temperatures up to 120 °C in High Salinity Brine
【24h】

CO2/Water Foams Stabilized with Cationic or Zwitterionic Surfactants at Temperatures up to 120 °C in High Salinity Brine

机译:CO2 /水泡沫稳定在高达120°C的温度下阳离子或两性离子表面活性剂稳定在高盐度盐水中

获取原文

摘要

Stabilization of CO2 in water(C/W)foams with surfactants at high temperatures and high salinities is challenging,due to limited solubility of surfactants in aqueous phase,foamability and thermal stability.The apparent viscosities of C/W foams has been raised to up to 35 cP with viscoelastic aqueous phases formed with a diamine surfactant,C16-18N(CH3)C3N(CH3)2(Duomeen TTM),or a zwitterionic surfactant,cetyl betaine,at 120 °C in 22% total-dissolved-solids(TDS)brine.Duomeen TTM is switchable from the nonionic(unprotonated amine)state,where it is soluble in CO2,to the cationic(protonated amine)state in an aqueous phase under pH ~6.Therefore,it may be injected in either the aqueous phase or the CO2 phase.The formation of viscoelastic phases with both surfactants lowers the minimum pressure gradient(MPG),and strengthens the lamella against drainage and Ostwald ripening by making the external aqueous phase more viscous,leading to stable foam even at very high foam quality.Both surfactants were shown to have excellent thermal stability and to form unstable emulsions when mixed with oil(dodecane).The core flood results showed that strong foam could be easily generated with both surfactants at a superficial velocity of 4 ft/day.The oil/water(O/W)partition coefficient of Duomeen TTM was very sensitive to pH,while that of cetyl betaine was constant over a wide range of pH.The ability to stabilize C/W foams at high temperature and salinity conditions with a single thermally stable surfactant is of great benefit to a wide range of applications including EOR,CO2 sequestration and hydraulic fracturing.
机译:由于表面活性剂在水相,发泡性和热稳定性的限制,具有高温和高盐度的水(C / W)泡沫的稳定性是挑战性的.C / W泡沫的表观粘度已经提升到UP 35cc与粘弹性水相,形成二胺表面活性剂,C16-18N(CH3)C3N(CH 3)2(二元TTM)或两性离子表面活性剂,十六谷甜菜碱,在120℃下以22%的总溶解固体( TDS)盐水。Duomeen TTM可从非离子(未普促的胺)状态切换,其中它可溶于CO 2,在pH〜6的水相中溶于阳离子(质子化胺)状态。因此,可以在其中注射水相或CO 2相。使用两个表面活性剂的形成粘弹性相的形成降低了最小的压力梯度(MPG),并通过使外部水相更高的外部水相来强化薄片抗引流和骨瓦尔德,即使在非常高的情况下导致稳定的泡沫泡沫质量。从表面活性剂加湿E显示出具有优异的热稳定性,并在与油混合时形成不稳定的乳液(十二烷)。核心泛洪结果表明,在4英尺/天的浅表速度下,表面活性剂可以容易地产生强泡沫。油/水( O / W)Duomeen TTM的分配系数对pH非常敏感,而十六烷基甜菜碱在宽范围内恒定恒定。在高温和盐度条件下稳定C / W泡沫的能力,具有单一的热稳定的表面活性剂是对各种应用有很大的益处,包括EOR,CO2隔离和液压压裂。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号