Wang Zengbao, Liu Yitian, Huang Weian, Yang Xiong, Liu Ziao, Zhang Xushuo
School 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.
Gels. 2023 Mar 7;9(3):205. doi: 10.3390/gels9030205.
In view of the problems of polymer cross-linked elastic particle plugging agents commonly used in oilfields, including easy shear, poor temperature resistance, and weak plugging strength for large pores, the introduction of particles with certain rigidity and network structure, and cross-linking with a polymer monomer can improve the structural stability, temperature resistance, and plugging effect, and the preparation method is simple and low-cost. An interpenetrating polymer network (IPN) gel was prepared in a stepwise manner. The conditions of IPN synthesis were optimized. The IPN gel micromorphology was analyzed by SEM and the viscoelasticity, temperature resistance, and plugging performance were also evaluated. The optimal polymerization conditions included a temperature of 60 °C, a monomer concentration of 10.0-15.0%, a cross-linker concentration of 1.0-2.0% of monomer content, and a first network concentration of 20%. The IPN showed good fusion degree with no phase separation, which was the prerequisite for the formation of high-strength IPN, whereas particle aggregates reduced the strength. The IPN had better cross-linking strength and structural stability, with a 20-70% increase in the elastic modulus and a 25% increase in temperature resistance. It showed better plugging ability and erosion resistance, with the plugging rate reaching 98.9%. The stability of the plugging pressure after erosion was 3.8 times that of a conventional PAM-gel plugging agent. The IPN plugging agent improved the structural stability, temperature resistance, and plugging effect of the plugging agent. This paper provides a new method for improving the performance of a plugging agent in an oilfield.
针对油田常用的聚合物交联弹性颗粒堵漏剂存在易剪切、耐温性差、对大孔隙封堵强度弱等问题,引入具有一定刚性和网络结构的颗粒,并与聚合物单体交联,可提高结构稳定性、耐温性和封堵效果,且制备方法简单、成本低。采用分步方式制备了互穿聚合物网络(IPN)凝胶。优化了IPN的合成条件。通过扫描电子显微镜(SEM)分析了IPN凝胶的微观形貌,并对其粘弹性、耐温性和封堵性能进行了评价。最佳聚合条件包括温度为60℃、单体浓度为10.0 - 15.0%、交联剂浓度为单体含量的1.0 - 2.0%以及第一网络浓度为20%。IPN表现出良好的融合度,无相分离,这是形成高强度IPN的前提条件,而颗粒聚集体会降低强度。IPN具有更好的交联强度和结构稳定性,弹性模量提高20 - 70%,耐温性提高25%。它表现出更好的封堵能力和抗侵蚀性,封堵率达到98.9%。侵蚀后封堵压力的稳定性是传统聚丙烯酰胺凝胶堵漏剂的3.8倍。IPN堵漏剂提高了堵漏剂的结构稳定性、耐温性和封堵效果。本文为提高油田堵漏剂性能提供了一种新方法。