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Comparison Between A Polyacrylamide And A Hydrophobically Modified Polyacrylamide Flood In A Sandstone Core

机译:聚丙烯酰胺和疏水改性聚丙烯酰胺砂岩岩心的比较

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Polymer flooding in oil reservoirs to enhance oil recovery (EOR) has been used worldwide. However, the polymers applied, such as partially hydrolyzed polyacrylamides and xanthan gum, show a number of limitations related to their low salt tolerance and biological degradation, respectively. Therefore, the polymeric properties must be improved to maximize their application. With this goal in mind, a new class of polymers, named "hydrophobically modified water-soluble polymers", has been developed. These polymers are very similar to conventional polymers used in EOR, except that they have a small number of hydrophobic groups incorporated into the polymer backbone. At incorporation levels of less than 1 mol% these hydrophobic groups can change polymer performance. In this work, a water-soluble polymer made of acrylamide and N,N-dihexylacrylamide was obtained. After characterization of the copolymer, its performance in a porous medium was evaluated through core flood experiments in Botucatu sandstone. In the presence of sodium chloride, the amphiphilic copolymer exhibited a significant increase in viscosity at low polymer concentrations, in addition to resistance factor and residual resistance factor values higher than those of a commercial polyacrylamide. This behavior can increase oil recovery, mainly in high salinity and high-permeability reservoirs, by improving waterflood sweep efficiency.
机译:全球范围内都在油藏中进行聚合物驱,以提高采油率(EOR)。然而,所应用的聚合物,例如部分水解的聚丙烯酰胺和黄原胶,分别显示出与它们的低耐盐性和生物降解有关的许多限制。因此,必须改善聚合物性能以最大化其应用。考虑到这一目标,已经开发了一种新型的聚合物,称为“疏水改性的水溶性聚合物”。这些聚合物与用于EOR的常规聚合物非常相似,不同之处在于它们具有少量引入聚合物主链中的疏水基团。当掺入量小于1mol%时,这些疏水基团可改变聚合物性能。在该工作中,获得了由丙烯酰胺和N,N-二己基丙烯酰胺制成的水溶性聚合物。表征共聚物后,通过在Botucatu砂岩中进行岩心驱替实验,评估了其在多孔介质中的性能。在氯化钠的存在下,两亲共聚物在低聚合物浓度下表现出粘度的显着增加,此外电阻系数和残余电阻系数的值均高于市售聚丙烯酰胺。这种行为可以通过提高注水驱油效率来提高主要在高盐度和高渗透率油藏中的油采收率。

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