首页> 外文期刊>Journal of Petroleum Exploration and Production Technology >Evaluating rheological properties and recovery performance of polymeric anionic surfactant (PSURFC) synthesized from non-edible seed oil on heavy crude recovery
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Evaluating rheological properties and recovery performance of polymeric anionic surfactant (PSURFC) synthesized from non-edible seed oil on heavy crude recovery

机译:评价由非食用种子油合成的聚合物阴离子表面活性剂(PSURFC)的流变性质和采收性能对重质原油采收率的影响

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This research focuses on heavy crude recovery using the dual recovery process of macromolecules formulated from environmentally friendly seed oil and polymer (Xanthan gum) with both hydrophobic and hydrophilic properties. The inexpensive, non-toxic polymeric surfactant (PSURFC) is synthesized through free radical polymerization technique involving novel non-edible seed oil surfactant and xanthan gum. Rheology shows a shear-thinning behavior at room temperature indicates an improvement in the rheology on surfactant addition to the mixture. As a macromolecule, PSURFC combines dual oil recovery nature in a single component thereby influencing interfacial tension (IFT) and mobility ratio simultaneously. Its performance during enhanced oil recovery (EOR) was evaluated through core flooding, scanning electron microscopy (SEM), IFT and rheology. EOR was conducted using OFITE?’s reservoir permeability tester (RPT) as the core flooding apparatus on five set of Berea sandstone core samples. Its implementation in EOR improved oil recovery when compared with water flooding, surfactant and polymer flooding. Sequel to the conventional water flooding, efficiency of PSURFC gave additional recoveries of 54%, 60% and 70% of the initial oil in place. This result validates the ability of polymeric surfactant to effectively mobilize residual oil under typical sandstone reservoir conditions.
机译:这项研究的重点是使用由具有疏水和亲水特性的环保种子油和聚合物(黄原胶)配制的大分子的双重回收工艺进行重质原油的回收。这种廉价,无毒的聚合物表面活性剂(PSURFC)是通过自由基聚合技术合成的,该技术涉及新型的非食用种子油表面活性剂和黄原胶。流变学表明在室温下剪切稀化行为表明在向混合物中添加表面活性剂后流变学有所改善。作为一种大分子,PSURFC将双重采油特性结合在一个单一组分中,从而同时影响界面张力(IFT)和迁移率。通过岩心驱油,扫描电子显微镜(SEM),IFT和流变学评估了其在提高采收率(EOR)期间的性能。使用OFITE的储层渗透率测试仪(RPT)作为岩心驱油设备对五套Berea砂岩岩心样品进行了EOR。与注水,表面活性剂和聚合物驱相比,它在EOR中的实施提高了石油采收率。与传统的注水技术相继,PSURFC的效率使原先采出的石油增加了54%,60%和70%的采收率。该结果证实了聚合物表面活性剂在典型的砂岩储层条件下有效地动员残余油的能力。

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