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SiO2 nanoparticle-assisted low-concentration viscoelastic cationic surfactant fracturing fluid

机译:SiO2纳米粒子辅助低浓度粘弹性阳离子表面活性剂压裂液

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Attributing to its advantages including no residue, low friction and complete gel breaking, viscoelastic surfactant (VES) fracturing fluids are attracting more and more attention. However, high price and high consumption restrict the wide applications of VES. SiO2 nanoparticle-assisted VES fracturing fluid (NAVES) with low concentration is proposed in this study. The NAVES system consisting of 1% EDAA and 0.01% SiO2 maintains a shear viscosity of above 33 mPa center dot s at 70 degrees C for 2 h; in contrast, the viscosity of a 1% EDAA (VES) solution is 24 mPa center dot s at 70 degrees C for 2 h. This could be attributing to the formation of a strong dynamic network structure, in which the surfactant micelles attach to the surface of SiO2 nano-particles that are negatively charged through electrostatic interactions. The pseudo-crosslinking between the SiO2 and micelles also improves the shear resistance and relaxation time of the VES, without affecting the gel breaking performance. The NAVES system could break completely within 100 min, as reflected by the fact that its viscosity decreased to less than 3 mPa center dot s. The settling rate of quartz sand in an EDAA/SiO2 system at 25 degrees C was 0.0021 cm/s, which was lower than that of traditional VES fracturing fluid. Therefore, NAVES could serve as a low-concentration hydraulic fracturing fluid. In addition, the current study provides a cost-effective approach for hydraulic fracturing. (C) 2018 Elsevier B.V. All rights reserved.
机译:归因于其优点,包括没有残留物,低摩擦和完全凝胶破碎,粘弹性表面活性剂(Ves)压裂液被吸引越来越多的关注。但是,高价格和高消耗限制了VES的广泛应用。在本研究中提出了SiO2纳米粒子辅助Ves压裂液(Naves),其研究提出低浓度。由1%EDAA和0.01%SiO2组成的NAME系统将剪切粘度保持在33MPa中心点S的剪切粘度,在70℃下为2小时;相反,1%EDAA(VES)溶液的粘度在70℃下是24MPa中心点S 2小时。这可能归因于形成强大的动态网络结构,其中表面活性剂胶束连接到通过静电相互作用带负电荷的SiO2纳米颗粒表面。 SiO 2和胶束之间的伪交联也改善了VES的剪切电阻和弛豫时间,而不会影响凝胶破碎性能。 NAVES系统可以在100分钟内完全破裂,因此其粘度降低至小于3MPa中心点S的事实。 25摄氏度在25摄氏度下的eDAA / SiO2系统中石英砂的沉降率为0.0021厘米/秒,低于传统VES压裂液。因此,NAVES可以用作低浓度的液压压裂液。此外,目前的研究为液压压裂提供了一种经济有效的方法。 (c)2018年elestvier b.v.保留所有权利。

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