首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Nanofluid of graphene-based amphiphilic Janus nanosheets for tertiary or enhanced oil recovery: High performance at low concentration
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Nanofluid of graphene-based amphiphilic Janus nanosheets for tertiary or enhanced oil recovery: High performance at low concentration

机译:基于石墨烯的两亲性Janus纳米片的纳米流体可用于三次采油或提高采油量:低浓度下的高性能

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摘要

The current simple nanofluid flooding method for tertiary or enhanced oil recovery is inefficient, especially when used with low nanoparticle concentration. We have designed and produced a nanofluid of graphene-based amphiphilic nanosheets that is very effective at low concentration. Our nanosheets spontaneously approached the oil–water interface and reduced the interfacial tension in a saline environment (4 wt % NaCl and 1 wt % CaCl2), regardless of the solid surface wettability. A climbing film appeared and grew at moderate hydrodynamic condition to encapsulate the oil phase. With strong hydrodynamic power input, a solid-like interfacial film formed and was able to return to its original form even after being seriously disturbed. The film rapidly separated oil and water phases for slug-like oil displacement. The unique behavior of our nanosheet nanofluid tripled the best performance of conventional nanofluid flooding methods under similar conditions.
机译:当前用于三次采油或提高采油率的简单纳米流体驱油方法效率低下,尤其是在纳米颗粒浓度较低的情况下。我们设计并生产了一种纳米流体的石墨烯基两亲纳米片,在低浓度下非常有效。我们的纳米片自发地接近油水界面,并在盐碱环境(4 wt%NaCl和1 wt%CaCl2)下降低了界面张力,无论固体表面是否可湿。出现了攀爬膜,并在中等流体动力条件下生长,以包裹油相。在强大的水动力输入下,形成了固态界面膜,即使受到严重干扰也能恢复其原始形状。该膜可快速分离油相和水相,从而形成块状油。在相似的条件下,我们的纳米片纳米流体的独特性能使常规纳米流体驱油方法的最佳性能提高了三倍。

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