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Nanoparticle Stabilized Solvent-Based Emulsion for Enhanced Heavy Oil Recovery

机译:纳米粒子稳定化溶剂基乳液,提高重油回收

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The objective of this study is to develop a solvent-based Pickering emulsion stabilized by silica nanoparticle for enhanced heavy oil recovery. Unlike the light oil, the recovery of heavy oil is quite challenging because of its high viscosity. To reduce the viscosity of heavy crude oil, solvent-based Pickering emulsion is explored to improve the recovery of heavy oil. The approach is to use solvent-in-water emulsion stabilized by nanoparticle which is more economical as compared to thermal or solvent-based enhanced oil recovery (EOR) methods. In this work, the solvent-in-water Pickering emulsion has been prepared by homogenizing the mixture with the help of homogenizer at 13000 rpm for 3 minutes. It can be inferred from the experimental results that the use of nanoparticle has helped to improve the stability of solvent-based Pickering emulsion for a longer period of time as compared to conventional surfactant based emulsions due to irreversible adsorption of silica nanoparticle at the oil-water interface. The silica nanoparticle of 15 nm size is used to make the Pickering emulsion. The colloidal stability and surface charge of the nanoparticle is evaluated by zeta potential. Silica nanoparticle is expected to improve the rheological stability of solvent- based emulsion and provides favorable mobility. Hence, these solvent-based emulsion flooding can provide high displacement efficiencies like miscible solvent flooding and better sweep efficiency like polymer flooding and helps to improve the enhanced heavy oil recovery. The novelty of the nanoparticle stabilized solvent-based Pickering emulsion is that it can sustain harsh reservoir conditions and remains very stable for a longer period of time as compared to other EOR techniques. The droplet size of these emulsions is few micron in size so that it can easily flow through the pore throat size of the formation reservoir and helps in improving the enhanced heavy oil recovery.
机译:本研究的目的是开发由二氧化硅纳米粒子稳定的溶剂的溶剂乳液,以提高重油回收。与轻油不同,由于其高粘度,重油的回收是非常具有挑战性的。为了降低重原油的粘度,探讨了溶剂类的旋转乳液,以改善重油的回收率。该方法是使用纳米颗粒稳定溶剂 - 水乳液,其与热或溶剂的增强的油回收(EOR)方法相比更经济。在这项工作中,通过在13000rpm的均质器的帮助下均化混合物3分钟,通过将混合物均化制备溶剂溶剂酸乳液。与常规表面活性剂基乳液相比,可以从实验结果推断使用纳米颗粒的使用有助于改善溶剂基溶解乳液的稳定性较长的时间较长的时间较长的时间,这是由于油水在油水上不可逆转地吸附的硅纳米粒子界面。 15nm尺寸的二氧化硅纳米粒子用于制作皮克林乳液。通过Zeta电位评估纳米颗粒的胶体稳定性和表面电荷。预期二氧化硅纳米粒子可提高溶剂的乳液的流变稳定性,并提供有利的迁移率。因此,这些溶剂基乳液洪水可以提供高偏移效率,如混溶性溶剂洪水,更好的扫描效率,如聚合物泛滥,有助于提高增强的重油回收。纳米颗粒稳定化溶剂基乳液的新奇是它可以维持苛刻的储层条件,与其他EOR技术相比,较长时间仍然非常稳定。这些乳液的液滴尺寸的尺寸尺寸很小,因此它可以容易地流过地层储层的孔喉部尺寸,并有助于改善增强的重油回收。

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