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Comparative dataset on the characterization of natural polymers and nanocomposites for enhanced oil recovery

机译:对比较数据集在天然聚合物和纳米复合材料的表征中提高储油

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摘要

Polymer flooding is one of the most effective processes to improve crude oil recovery. However, the capacity of natural polymers to displace crude oil is determined by their rheological behaviour in the face of prevailing reservoir conditions. Poor rheological stability of water-soluble polymers challenges their application in harsh reservoir conditions, making it important to investigate the characteristics of polymers and their corresponding nanocomposites for use in enhanced oil recovery (EOR). The main objective of this work is to conduct characterization tests for three polymers (Gum Arabic, Xanthan Gum and Guar Gum) and three nanoparticles (silica, alumina and cupric), and to investigate the viscosity profile of the polymers under different conditions of temperature, salinity, nanoparticle weight percentage and polymer weight percentage. SEM was used to characterize the nanoparticles while FTIR and TGA were used to characterize the polymers. All viscosity measurements were conducted using an OFITE Viscometer. The SEM, FTIR and TGA results are presented in figures while the viscosity results are presented as raw data in tables. The data should be used to support oil recovery experiments, economic analysis of the use of polymers and nanocomposites in EOR and the study of adsorption and permeability impairment in core flooding tests.
机译:聚合物洪水是提高原油回收的最有效的过程之一。然而,天然聚合物使原油的能力取决于它们在普遍的储层条件下的流变行为确定。水溶性聚合物的流变稳定性较差攻击其在苛刻的储层条件下的应用,从而探讨了聚合物的特性及其相应的纳米复合材料用于增强的储存(EOR)。这项工作的主要目的是对三种聚合物(牙龈阿拉伯,黄原胶和瓜尔胶)和三个纳米颗粒(二氧化硅,氧化铝和铜)进行表征测试,并在不同的温度条件下研究聚合物的粘度曲线,盐度,纳米颗粒重量百分比和聚合物重量百分比。 SEM用于表征纳米颗粒,而FTIR和TGA用于表征聚合物。使用粘度计进行所有粘度测量。 SEM,FTIR和TGA结果显示在图中,而粘度结果呈现为表中的原始数据。该数据应用于支持石油恢复实验,对EOR中使用聚合物和纳米复合材料的经济分析及其在核心泛滥试验中的吸附和渗透性损伤研究。

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