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Recovery potential of biopolymer (B-P) formulation from Solanum tuberosum (waste) starch for enhancing recovery from oil reservoirs

机译:来自Solanum Tuberosum(废物)淀粉的生物聚合物(B-P)制剂的恢复电位,用于增强油藏的恢复

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Enhanced Oil Recovery (EOR)is a researching area targeted at mobilizing reservoir trapped oil. Several applications of EOR technology provides an added possibility to squeeze out more oil from the reservoir, perhaps about 20%. However, need for innovation in production at a cost effective method and environmentally friendly is required. Polymer flooding is one of the best EOR methods, and is primarily employed to increase oil recovery by sweep improvement. The aim of this research work is primarily the designing of a specific biopolymer product with emphasis on polymer in-situ rheology and polymer flow performance examined in Enhanced oil recovery. This research involves the injection of potato peel (Solanum tuberosum) derived bio-polymer solution at different concentrations by performing simultaneous experiments at ambient conditions using a reservoir permeability testing equipment (RPT). In this novel polymer formulation, Solanum tuberosum (waste) Starch (most abundant, naturally occurring biodegradable polymers) was hydrolyzed chemically. Experimental results show that viscosity of B-P solution increases at every increment of polymer quantity reducing the mobility ratio. Several runs of flooding experiments were achieved the Reservoir permeability tester (RPT). The incremental oil recoveries vary 52%, 60%, to 74% of original oil in place (OOIP) subject to the polymer concentration.
机译:增强的石油恢复(EOR)是针对动员储层捕获的油的研究区。 EOR技术的几种应用提供了挤出更多来自储存器的油,也许大约20%。但是,需要以经济高效的方法和环境友好生产的生产。聚合物洪水是最佳的EOR方法之一,主要用于通过扫描改善来增加石油回收。该研究工作的目的主要是在增强的采油中,重点设计具有强调聚合物原位流变学和聚合物流动性能的特定生物聚合物产品。该研究涉及通过使用储层渗透性检测设备(RPT)在环境条件下进行同时实验,在不同浓度下注射薯皮(Solanum Tuberosum)衍生生物聚合物溶液。在这种新型聚合物配方中,化学溶液(废物)淀粉(最丰富,天然存在的可生物降解的聚合物)化学水解。实验结果表明,B-P溶液的粘度以降低迁移率的每增加增量增加。储层渗透性测试仪(RPT)达到了几次洪水实验。增量油回收率的52%,60%,达74%的原油(OoIP)受到聚合物浓度的影响。

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