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Experimental dataset on the dispersion stability of natural polymer non-covalently functionalized graphene nanoplatelets in high salinity brines

机译:实验数据集关于高盐水盐水中天然聚合物非共价官能化石墨烯纳米夹纳米片的分散稳定性

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摘要

The data in this article present the effective parameters of experimental ultrasonication process on the dispersion stability of graphene nanoplatelets (GNPs) grafted with a natural polymer of Gum Arabic (GA). These datasets are supporting the article “Natural Polymer Non-Covalently Grafted Graphene Nanoplatelets for Improved Oil Recovery Process: A Micromodel Evaluation” . The datasets were gained during experiments conducted at various dwell time (30, 60, 90 and 120?min) at constant power amplitude (60%) of sonication for preparing the stable GA-GNP/brine solutions aiming cost-effective and green agent solution for chemical enhanced oil recovery (C-EOR). The GA-GNPs dispersion data was verified using particle size analyser and UV–Vis measurements. The optimized time and power amplitude parameters of the sonication process were utilized for preparing stabilized samples of GA grafted GNPs in regarding to research work on Natural Polymer Non-Covalently Grafted Graphene Nanoplatelets for EOR. The dispersion stability of GA-GNPs nanofluids at reservoir conditions of high salinity and high temperatures (HSHT) was further demonstrated in the measured data through the sedimentation of nanoparticles.
机译:本文中的数据呈现了用胶(GA)的天然聚合物接枝的石墨烯纳米片(GNP)的分散稳定性上的实验超声处理的有效参数。这些数据集正在支持制品“天然聚合物非共价嫁接的石墨烯纳米烯,用于改善的采油过程:MicroModel评估”。在以恒定功率幅度(60%)在超声处理的各种停留时间(30,60,90和120.Ωmin)进行的实验期间获得数据集,用于制备稳定的GA-GNP /盐水溶液,其旨在具有成本效益和绿色剂溶液用于化学增强的溢油(C-EOR)。使用粒度分析仪和UV-VI测量来验证GA-GNPS色散数据。超声处理的优化时间和功率幅度参数用于制备关于GN接枝GNP的稳定样品,了解在天然聚合物非共价包覆的石墨烯纳米型料中的研究工作。通过纳米颗粒的沉降,进一步在测量数据中进一步证明了高盐度和高温储存条件下Ga-Gnps纳米流体的分散稳定性。

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