Li Lin, Sun Yue, Jin Xiao, Wang Zizhao, Dong Yunbo, Dai Caili, Zhao Mingwei, Wu Yining
Shandong Key Laboratory of Oilfield Chemistry, Department of Petroleum Engineering, China University of Petroleum (East China), Qingdao 266580, China.
Key Laboratory of Unconventional Oil & Gas Development (China University of Petroleum (East China)), Ministry of Education, Qingdao 266580, China.
ACS Omega. 2023 May 31;8(23):21341-21350. doi: 10.1021/acsomega.3c03054. eCollection 2023 Jun 13.
Irreversible colloidal asphaltene adsorption layers are formed on formation rock surfaces due to long-term contact with crude oil, and large amounts of crude oil adhere to these oil-wet layers to form residual oil films. This oil film is difficult to peel off due to the strong oil-solid interface effect, which seriously restricts further improvement in oil recovery. In this paper, the novel anionic-nonionic surfactant sodium laurate ethanolamide sulfonate (HLDEA) exhibiting strong wetting control was synthesized by introducing sulfonic acid groups into the nonionic surfactant laurate diethanolamide (LDEA) molecule through the Williamson etherification reaction. The introduction of the sulfonic acid groups greatly improved the salt tolerance and the absolute value of the zeta potential of the sand particles. The experimental results showed that HLDEA altered the wettability of the rock surface from oleophilic to strongly hydrophilic, and the underwater contact angle increased substantially from 54.7 to 155.9°. In addition, compared with LDEA, HLDEA exhibited excellent salt tolerance and enhanced oil recovery performance (the oil recovery was improved by 19.24% at 2.6 × 10 mg/L salinity). Based on nanomechanical experimental results, HLDEA was efficiently adsorbed on the core surfaces and regulated microwetting. Moreover, HLDEA effectively reduced the adhesion force between the alkane chains and the core surface, which facilitated residual oil stripping and oil displacement. This new anionic-nonionic surfactant affording great oil-solid interface wetting control has practical significance for the efficient development of residual oil.
由于与原油长期接触,在储层岩石表面形成了不可逆的胶体沥青质吸附层,大量原油附着在这些亲油层上形成残余油膜。由于油 - 固界面作用强烈,该油膜难以剥离,严重制约了原油采收率的进一步提高。本文通过威廉姆森醚化反应将磺酸基团引入非离子表面活性剂月桂酸二乙醇酰胺(LDEA)分子中,合成了具有强润湿性调控能力的新型阴离子 - 非离子表面活性剂月桂酸乙醇酰胺磺酸钠(HLDEA)。磺酸基团的引入大大提高了砂粒的耐盐性和zeta电位绝对值。实验结果表明,HLDEA使岩石表面润湿性从亲油转变为强亲水,水下接触角从54.7°大幅增加到155.9°。此外,与LDEA相比,HLDEA表现出优异的耐盐性和提高原油采收率的性能(在2.6×10 mg/L盐度下,原油采收率提高了19.24%)。基于纳米力学实验结果,HLDEA能有效吸附在岩心表面并调控微观润湿性。而且,HLDEA有效降低了烷烃链与岩心表面之间的粘附力,有利于残余油的剥离和驱替。这种新型阴离子 - 非离子表面活性剂对残余油的高效开发具有实际意义。