Wu Qi, Gou Shaohua, Huang Jinglun, Fan Guijuan, Li Shiwei, Liu Mengyu
College of Chemistry and Chemical Engineering, Southwest Petroleum University Chengdu 610500 P. R. China
Institute of Chemical Materials, China Academy of Engineering Physics Mianyang 621900 China
RSC Adv. 2019 May 24;9(29):16406-16417. doi: 10.1039/c9ra01554j.
Herein, a hyper-branched polymer h-PMAD with, simultaneously, surface activity, an anti-polyelectrolyte effect and a hydrophobic association was prepared aqueous solution free radical polymerization, and characterized by IR, NMR, TG-DTG and SEM. The polymer h-PMAD provided excellent comprehensive properties in terms of surface activity, thickening, water solubility, rheology and aging, which were compared with studies of HPAM and the homologous linear polymer PMAD. Specifically, the IFT value was 55.40 mN m, 789.24 mPa s apparent viscosity with a dissolution time of 72 min, 97.72, 90.77 and 105.81 mPa s with Na, Ca and Mg of 20 000, 2000 and 2000 mg L, respectively. Meanwhile, the non-Newtonian shear thinning behavior had a 96.33% viscosity retention while the shear rate went from 170 s to 510 s and then returned to 170 s again and 0.12 Hz curve, with an intersection frequency of ' and ''. Also, it had 33.51% and 50.96% viscosity retention in formation and deionized water at 100 °C and a low viscosity loss in formation water at 80 °C over 4 weeks. Moreover, the h-PMAD had an EOR of 11.61%, was obviously higher than PMAD with 8.19% and HPAM with 5.88%. Most importantly, the better EOR of h-PMAD over that of PMAD testified that the hyper-branched structure provided an active carrier for copolymers with functionalized monomers to exert greater effects in displacement systems, which is of an extraordinary meaning.
在此,通过水溶液自由基聚合制备了一种同时具有表面活性、抗聚电解质效应和疏水缔合作用的超支化聚合物h-PMAD,并通过红外光谱(IR)、核磁共振(NMR)、热重-微商热重(TG-DTG)和扫描电子显微镜(SEM)对其进行了表征。将聚合物h-PMAD在表面活性、增稠、水溶性、流变学和老化方面的综合性能与部分水解聚丙烯酰胺(HPAM)和同源线性聚合物PMAD的研究结果进行了比较。具体而言,界面张力(IFT)值为55.40 mN/m,表观粘度为789.24 mPa·s,溶解时间为72 min,在20000、2000和2000 mg/L的Na、Ca和Mg存在下,表观粘度分别为97.72、90.77和105.81 mPa·s。同时,当剪切速率从170 s⁻¹变化到510 s⁻¹然后再回到170 s⁻¹时,非牛顿剪切变稀行为的粘度保留率为96.33%,在0.12 Hz曲线下,具有“和”的交叉频率。此外,在100℃下,它在地层水和去离子水中的粘度保留率分别为33.51%和50.96%,在80℃下的地层水中4周内粘度损失较低。此外,h-PMAD的采收率提高值(EOR)为11.61%,明显高于PMAD的8.19%和HPAM的5.88%。最重要的是,h-PMAD比PMAD具有更好的采收率提高值,证明超支化结构为与功能化单体的共聚物提供了一个活性载体,使其在驱替体系中发挥更大的作用,这具有非凡的意义。