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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Synthesis of superamphiphobic nanofluid as a multi-functional additive in oil-based drilling fluid, especially the stabilization performance on the water/oil interface
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Synthesis of superamphiphobic nanofluid as a multi-functional additive in oil-based drilling fluid, especially the stabilization performance on the water/oil interface

机译:以油基钻井液中的多功能添加剂合成超人参型纳米流体,尤其是水/油界面上的稳定性能

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Nanofluids, as an effect additive in oilfield chemistry, has recently attracted significant attention. In this study, the superamphiphobic nanofluid (SAN) was synthesized to be a multi-functional additive in oil based drilling fluid (OBMs). Properties characterization of SAN and its influence on OBMs were investigated. The results showed SAN possessed a spherical shape with a diameter of about 100 nm which could construct a micro-nano structure. Due to the special structure and functional groups (perfluorooctyl) on the particle surface, SAN could alter the shale surface wettability to superamphiphobic, decrease the filtration volume of OBMs, reduce the spontaneous imbibition and maintain the compressive strength of shale core. Furthermore, SAN could exist stably at the interface due to the superamphiphobic characteristic, instead of dispersing in either water or oil phase. Therefore, it enhances the stability of water/oil emulsion. By observing and analyzing the role of SAN in OBMs, it was found SAN could effectively decrease the surface free energy of shale core from 71.47 +/- 0.52 to 0.09 +/- 0.02 mN/m and interfacial tension of water/oil system from 32.8-13.5 mN/m, reduce the capillary additional pressure by 1812 Pa and reverse the capillary force from attractive to repulsive. Accordingly, the OBMs with SAN was thought to be able to be used in the drilling of unconventional oil and gas reservoir well, for the considerable stability and that less liquid would penetrate into the shale pore. So the emulsion stability was enhanced and the wellbore stability was maintained. This study might provide an avenue to solve the issues owing to OBMs during the drilling process by adding additives with superamphiphobic wettability.
机译:纳米流体作为油田化学的效果添加剂,最近引起了重大关注。在该研究中,合成超樟脑纳米流体(SAN)以是油基钻井液(OBMS)的多功能添加剂。研究了SAN的特性及其对OPMS的影响。结果表明,SAN具有直径约为100nm的球形形状,其可以构建微纳米结构。由于颗粒表面上的特殊结构和官能团(全氟辛基),SAN可以改变Superamphiphiphic的页岩表面润湿性,降低OBMS的过滤量,减少自发性吸收并保持页岩芯的抗压强度。此外,由于超人物特征,SAN可以在界面处稳定地存在,而不是分散在水或油相中。因此,它增强了水/油乳液的稳定性。通过观察和分析SAN在OBMS中的作用,它发现SAN可以从71.47 +/- 0.52到0.09 +/- 0.52至0.09 +/- 0.02 MN / m和水/油系统的界面张力,从32.8有效地降低SAN的表面自由能-13.5mn / m,减少1812Pa的毛细血管额外压力,并将毛细力从吸附的毛细管逆转。因此,认为具有SAN的OBMS能够在非常规石油和气体储层的钻井中使用,因为相当大的稳定性,较少的液体将渗透到页岩孔中。因此增强了乳液稳定性,保持井筒稳定性。本研究可以提供途径来解决钻井过程中的问题,通过添加具有超人物润湿性的添加剂。

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