Zhang Panfeng, Ren Shaoran, Shan Yu, Zhang Liang, Liu Yizhe, Huang Lijuan, Pei Shufeng
Key Laboratory of Unconventional Oil & Gas Development, China University of Petroleum (East China), Ministry of Education No. 66, Changjiang West Road, Huangdao District Qingdao 266580 P. R. China
School of Petroleum Engineering, China University of Petroleum (East China) Qingdao 266580 P. R. China.
RSC Adv. 2019 Mar 15;9(15):8672-8683. doi: 10.1039/c9ra00237e. eCollection 2019 Mar 12.
CO switchable foams have gained increasing attention recently for their smart properties. However, their performance at high temperature and high pressure has been less documented. In this study, a long-chain viscoelastic surfactant, N1-(3-aminopropyl)-N3-octadecylpropane-1,3-diamine bicarbonate (ODPTA) has been studied as a CO foam agent for its application in CO flooding in complex and harsh reservoir conditions, and the foam performance under static and dynamic conditions was tested up to 160 °C and 10.5 MPa using a visualized foam-meter and in sand-pack flooding experiments. The viscosity of the ODPTA and conventional surfactant solutions saturated with dissolved CO was measured using a long coiled-tube viscometer at HTHP, and its effect on the high temperature-tolerance of CO foams has been analyzed. The experimental results show that CO foam generated using ODPTA is much more stable than the conventional surfactants (such as SDS and alkylphenol ethoxylates) and has high temperature-tolerance up to 160 °C, and has also exhibited excellent mobility control in CO flooding experiments. The viscosity of the ODPTA-CO bulk phase can be maintained as high as 12 mPa s under 160 °C and 10.5 MPa, which is much higher than that of the conventional surfactant solutions (similar to water). ODPTA's good foam performance with extremely high temperature-tolerance can be attributed to its high bulk phase viscosity in the brine water saturated with CO.
CO 可切换泡沫因其智能特性近来受到越来越多的关注。然而,它们在高温高压下的性能记录较少。在本研究中,一种长链粘弹性表面活性剂,N1-(3-氨丙基)-N3-十八烷基丙烷-1,3-二胺碳酸氢盐(ODPTA)被作为一种 CO 泡沫剂进行研究,用于其在复杂苛刻油藏条件下的 CO 驱油应用,并使用可视化泡沫仪在高达 160°C 和 10.5 MPa 的条件下测试了静态和动态条件下的泡沫性能,以及在填砂驱油实验中进行了测试。使用长盘管粘度计在高温高压下测量了溶解有 CO 的 ODPTA 和传统表面活性剂溶液的粘度,并分析了其对 CO 泡沫耐高温性的影响。实验结果表明,使用 ODPTA 生成的 CO 泡沫比传统表面活性剂(如 SDS 和烷基酚聚氧乙烯醚)稳定得多,具有高达 160°C 的耐高温性,并且在 CO 驱油实验中也表现出优异的流度控制。在 160°C 和 10.5 MPa 条件下,ODPTA-CO 连续相的粘度可保持高达 12 mPa·s,远高于传统表面活性剂溶液(与水相似)的粘度。ODPTA 具有良好的泡沫性能和极高的耐高温性,这可归因于其在 CO 饱和盐水中具有较高的连续相粘度。