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Comparative Study on Enhancing Oil Recovery underHigh Temperature and High Salinity: Polysaccharides Versus SyntheticPolymer

机译:强化采油的对比研究高温高盐度:多糖与合成聚合物

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摘要

The synthetic water-soluble polymer, partially hydrolyzed polyacrylamide (HPAM), has been most widely used for enhanced oil recovery (EOR); however, its poor thermal stability and weak salt tolerance impede further application in high-temperature and high-salinity oil reservoirs. To address such deficiencies, three polysaccharides, xanthan gum, diutan gum, and scleroglucan, were examined in comparison with HPAM on rheological behaviors, shearing resistance, long-term thermal stability, and core flooding test. It was found that all of these three polysaccharides were less sensitive to salinity and shearing time, while HPAM showed a monotonous decrease in viscosity with increasing monovalent cations and shearing history. After 90 days of aging at 85 °C and 10.1 × 104 mg·L–1 of total dissolved solids with 1.0 × 103 mg·L–1 of Ca2+, the viscosity of diutan gum and scleroglucan solutions nearly remained unchanged; on the contrary, the viscosity of xanthan gum and HPAM solutions drops massively. Core flooding tests at 85 °C with the same initial viscosity demonstrated that allpolymers showed good transportation in porous media, and 16, 13, and11% of oil recovery were obtained by diutan gum, scleroglucan, andxanthan gum, respectively, while only 10% was obtained from HPAM.These comparative results may underpin the potential of diutan gumand scleroglucan to be used in the EOR process in HTHS oil reservoirs.
机译:合成水溶性聚合物,部分水解的聚丙烯酰胺(HPAM),已被最广泛地用于提高采油率(EOR)。但是,其热稳定性差和耐盐性差,阻碍了其在高温高盐度油藏中的进一步应用。为了解决这些缺陷,与HPAM相比,在流变行为,抗剪切性,长期热稳定性和岩心驱油试验方面,对三种多糖(黄原胶,丢丁胶和硬葡聚糖)进行了检查。发现这三种多糖均对盐度和剪切时间较不敏感,而HPAM随着单价阳离子和剪切历史的增加而显示出粘度的单调下降。在85°C老化90天后,总溶解固体为10.1×10 4 mg·L –1 ,含1.0×10 3 mg ·Ca 2 + 的L –1 ,丢丁胶和硬葡聚糖溶液的粘度几乎保持不变;相反,黄原胶和HPAM溶液的粘度大大降低。在相同初始粘度下,在85°C的岩心驱油测试表明,所有聚合物在多孔介质中显示出良好的传输性能,而16,13,地丁胶,硬葡聚糖和分别为黄原胶,而HPAM仅获得10%。这些比较结果可能会增强Diutan胶的潜力硬葡聚糖将用于HTHS油藏的EOR工艺中。

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