Fei Guiqiang, Liu Banghua
College of Chemistry and Chemical Engineering, Shaanxi University of Science & Technology, Xi'an 710021, China.
Polymers (Basel). 2025 Aug 21;17(16):2257. doi: 10.3390/polym17162257.
To stimulate the progress of clean fracturing fluid systems, an innovative erucyl ultra-long-chain gemini surfactant (EUCGS) was devised and manufactured during the course of this study. The target product was successfully prepared via a two-step reaction involving erucyl primary amine, 3-bromopropionyl chloride, and 1,3-bis(dimethylamino)propanediol, with an overall yield of 78.6%. FT-IR and H NMR characterization confirmed the presence of C ultra-long chains, cis double bonds, amide bonds, and quaternary ammonium headgroups in the product structure. Performance tests showed that EUCGS exhibited an extremely low critical micelle concentration (CMC = 0.018 mmol/L) and excellent ability to reduce surface tension (γCMC = 30.0 mN/m). Rheological property studies indicated that EUCGS solutions gradually exhibited significant non-Newtonian fluid characteristics with increasing concentration, and wormlike micelles with a network structure could self-assemble at a concentration of 1.0 mmol/L. Dynamic rheological tests revealed that the solutions showed typical Maxwell fluid behavior and significant shear-thinning properties, which originated from the orientation and disruption of the wormlike micelle network structure under shear stress. In the presence of 225 mmol/L NaCl, the apparent viscosity of a 20 mmol/L EUCGS solution increased from 86 mPa·s to 256 mPa·s. A temperature resistance evaluation showed that EUCGS solutions had a good temperature resistance at high shear rates and 100 °C. The performance evaluation of fracturing fluids indicates that the proppant settling rate (0.25 cm/min) of the EUCGS-FFS system at 90 °C is significantly superior to that of the conventional system. It features the low dosage and high efficiency of the breaker, with the final core damage rate being only 0.9%. The results demonstrate that the EUCGS achieves a synergistic optimization of high-efficiency interfacial activity, controllable rheological properties, and excellent thermal-salt stability through precise molecular structure design, providing a new material choice for the development of intelligent responsive clean fracturing fluids.
为推动清洁压裂液体系的发展,本研究过程中设计并制备了一种创新型芥酸超长链双子表面活性剂(EUCGS)。通过芥酸伯胺、3-溴丙酰氯和1,3-双(二甲氨基)丙二醇的两步反应成功制备了目标产物,总收率为78.6%。傅里叶变换红外光谱(FT-IR)和核磁共振氢谱(H NMR)表征证实产物结构中存在超长碳链、顺式双键、酰胺键和季铵头基。性能测试表明,EUCGS表现出极低的临界胶束浓度(CMC = 0.018 mmol/L)和优异的降低表面张力能力(γCMC = 30.0 mN/m)。流变性能研究表明,随着浓度增加,EUCGS溶液逐渐呈现出显著的非牛顿流体特性,在浓度为1.0 mmol/L时可自组装形成具有网络结构的蠕虫状胶束。动态流变测试表明,溶液表现出典型的麦克斯韦流体行为和显著的剪切变稀特性,这源于蠕虫状胶束网络结构在剪切应力下的取向和破坏。在存在225 mmol/L NaCl的情况下,20 mmol/L EUCGS溶液的表观粘度从86 mPa·s增加到256 mPa·s。耐温性评估表明,EUCGS溶液在高剪切速率和100℃下具有良好的耐温性。压裂液性能评价表明,EUCGS-FFS体系在90℃时的支撑剂沉降速率(0.25 cm/min)明显优于传统体系。它具有破胶剂用量低、效率高的特点,最终岩心伤害率仅为0.9%。结果表明,EUCGS通过精确的分子结构设计实现了高效界面活性、可控流变性能和优异热盐稳定性的协同优化,为智能响应型清洁压裂液的开发提供了新的材料选择。