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Application of polymer integration technique for enhancing polyacrylamide (PAM) performance in high temperature and high salinity reservoirs

机译:聚合物集成技术在高温高盐度油藏中提高聚丙烯酰胺(PAM)性能的应用

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摘要

Polyacrylamides (PAM) are widely used as water-soluble polymers producing gel in oil reservoirs to assist in oil extraction from reservoirs with high levels of heterogeneity. These gels are susceptible to degradation due to hydrolysis in harsh reservoir conditions such as elevated temperature and salinity. This study uses a polymer integration technique in attempting to optimize the performance of PAM in the enhanced oil recovery process for reservoirs with high temperature and salinity. The results show that, at high temperature, hydrolysis is suppressed and gel stability is maintained via the addition of Polyvinylpyrrolidone (PVP) to PAM solutions.The optimum composition was identified as being 20/80 wt% PAM: PVP for oilfield operations at 90 °C and a moderate salinity of 43,280 ppm. The degree of hydrolysis at 30 days was suppressed from 75% to 29.9%, with associated increases in viscosity from 11 to 38.2 mPa.s and from 18 to 44.3 mPa.s corresponding to rotational speeds of 30 and 10 rpm respectively.The issue of high salinity was considered by increasing the salinity of the optimised PAM: PVP mixture to 200,000 ppm. Under these conditions the degree of hydrolysis of the optimised solution increased from 29.9 to 46.9% and viscosity decreased from 38.2 to 28.6 and from 44.3 to 40.4 mPa.s for rotational speeds of 30 and 10 rpm respectively. 2-Acrylamido-2-MethylpropaneSulfonic acid (AMPS) was added to the mix to try to improve temperature stability. It was observed that, with an optimum composition of 18/72/10 wt% PAM:PVP:AMPS, the degree of hydrolysis decreased to 22% with viscosity levels of 30.6 and 22.8 mPa.s corresponding to rotational speeds of 10 and 30 rpm respectively.
机译:聚丙烯酰胺(PAM)被广泛用作在油层中产生凝胶的水溶性聚合物,以帮助从非均质性高的油层中提取油。这些凝胶由于在苛刻的储层条件(例如高温和盐度)中的水解而易于降解。这项研究使用聚合物整合技术来尝试在高温和高盐度油藏的强化采油过程中优化PAM的性能。结果表明,在高温下,通过在PAM溶液中添加聚乙烯吡咯烷酮(PVP)可以抑制水解并保持凝胶稳定性。确定的最佳成分为20/80 wt%PAM:在90°C的油田作业中使用PVP C和43,280 ppm的中度盐度。 30天时的水解度从75%降低到29.9%,相应的粘度分别从30和10 rpm的转速分别从11增加到38.2 mPa.s和从18增加到44.3 mPa.s.通过将优化的PAM:PVP混合物的盐度提高到200,000 ppm,可以认为盐度很高。在这些条件下,当转速分别为30和10 rpm时,优化溶液的水解度从29.9%提高到46.9%,粘度从38.2降低到28.6和从44.3降低到40.4mPa.s。将2-丙烯酰胺基-2-甲基丙烷磺酸(AMPS)添加到混合物中以尝试改善温度稳定性。观察到,在18/72/10 wt%PAM:PVP:AMPS的最佳组成下,水解度降低至22%,粘度水平为30.6和22.8 mPa.s,对应于10和30 rpm的转速分别。

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