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首页> 外文期刊>Advances in Natural Sciences: Nanoscience and Nanotechnology >The impact of graphene oxide particles on viscosity stabilization for diluted polymer solutions using in enhanced oil recovery at HTHP offshore reservoirs - IOPscience
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The impact of graphene oxide particles on viscosity stabilization for diluted polymer solutions using in enhanced oil recovery at HTHP offshore reservoirs - IOPscience

机译:氧化石墨烯颗粒对稀释聚合物溶液粘度稳定性的影响,以提高HTHP海上油藏的采油率-IOPscience

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Over 60% of the original oil in a place (OOIP) is retained in a reservoir after conventional methods have been exploited. Application of enhanced oil recovery (EOR) technology gives an additional chance to get out possibly about 20% more oil from the reservoir. The use of water-soluble polymers improves the water–oil mobility ratio, therefore, the displacement efficiency increased, and leads to enhanced oil recovery. High-molecular-weight polyacrylamide group is widely and successfully used in EOR. But no commercial polymer composition can be used in conditions of high temperature and hardness brine offshore reservoirs yet. To avoid the time consumption and high expense for selection and synthesis of the appropriate-structural polymer for EOR application, we attempt to find additives to enhance the thermal stability of polymer solutions. In this paper, we report the results of improved viscosity stability of diluted polymer/seawater solutions aged at reservoir conditions for 31days by adding graphite-oxide particles (GOs). In the presence of 300 ppm of GOs, the viscosity stability of 1700 ppm acrylamide-based polymer in sea water solution increases from 92 °C to 135 °C. FESEM pictures show good distribution of GOs in polymer network, which is a result of integration of functional groups in GOs surfaces and hydrophilic polymer chains.
机译:在采用常规方法后,超过60%的原地油(OOIP)被保留在储层中。增强采油率(EOR)技术的应用为从储层中抽出大约20%以上的油提供了额外的机会。水溶性聚合物的使用提高了水油流动率,因此,驱替效率提高,并提高了采油率。高分子量聚丙烯酰胺基已广泛成功地用于EOR。但是,尚不能在高温和高硬度的盐水储层条件下使用商业聚合物组合物。为了避免选择和合成用于EOR应用的适当结构的聚合物所花费的时间和高昂的费用,我们尝试寻找添加剂来增强聚合物溶液的热稳定性。在本文中,我们报告了通过添加石墨氧化物颗粒(GOs)改善了在储层条件下老化31天的稀释聚合物/海水溶液的粘度稳定性的结果。在300 ppm GOs的存在下,1700 ppm丙烯酰胺基聚合物在海水溶液中的粘度稳定性从92°C增加到135°C。 FESEM图片显示GO在聚合物网络中分布良好,这是GO表面和亲水性聚合物链中官能团整合的结果。

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