Lai Nanjun, Nie Xintong, Zheng Xu, Zhao Wensen, Zhao Xubin, Wang Yong
School of Chemistry and Chemical Engineering, Southwest Petroleum University, Chengdu, Sichuan 610500, China.
Oil and Gas Field Applied Chemistry Key Laboratory of Sichuan Province, Southwest Petroleum University, Chengdu, Sichuan 610500, China.
ACS Omega. 2020 Nov 9;5(45):29300-29311. doi: 10.1021/acsomega.0c04084. eCollection 2020 Nov 17.
Acrylamide and dimethyl diallyl ammonium chloride were used as monomers to synthesize a polyelectrolyte molecular deposition film (PMDF) injection agent for solving the problem of high injection pressure of water wells in low-permeability reservoirs. The structure of the PMDF injection agent was determined through IR and H nuclear magnetic resonance (NMR). The performance evaluation results show a change of wettability from hydrophilic to neutral wetting with the contact angle changing from 22.32 to 73.31° because of agent injection. It can also change the negative ζ-potential on the surface of the sand to a positive value. For comparison, core displacement experiments involving the commercial Gemini surfactant DF-G reveal that the effects of the depressurization of PMDF are more obvious than those of DF-G. The adsorption stability of the former is better than that of the latter. Especially, under a high-speed water flow of 30 pore volume (PV) injection, the depressurization rate of PMDF is still as high as 43.59%. Finally, the oil-water relative permeability curves and core nuclear magnetic resonance (NMR) experiments demonstrate that the PMDF treatment can reduce the irreducible water saturation, which indicated that the porosity of the flowable part of the core increased and the swept volume was increased. The suitable range of PMDF according to NMR pore-radius distribution within a low-permeability reservoir: the flowable partial pore required the throat radius greater than 0.01 μm.
以丙烯酰胺和二甲基二烯丙基氯化铵为单体,合成了一种聚电解质分子沉积膜(PMDF)注入剂,以解决低渗透油藏水井注入压力高的问题。通过红外光谱(IR)和氢核磁共振(NMR)确定了PMDF注入剂的结构。性能评价结果表明,注入该剂后,润湿性由亲水性变为中性湿润,接触角从22.32°变为73.31°。它还能将砂表面的负ζ电位变为正值。为作比较,涉及商用双子表面活性剂DF-G的岩心驱替实验表明,PMDF的降压效果比DF-G更明显。前者的吸附稳定性优于后者。特别是,在注入30倍孔隙体积(PV)的高速水流下,PMDF的降压率仍高达43.59%。最后,油水相对渗透率曲线和岩心核磁共振(NMR)实验表明,PMDF处理可降低束缚水饱和度,这表明岩心可流动部分的孔隙度增加,波及体积增大。根据低渗透油藏内NMR孔径分布,PMDF的适用范围为:可流动部分孔隙的喉道半径需大于0.01μm。