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Study of a Novel Gemini Viscoelastic Surfactant with High Performance in Clean Fracturing Fluid Application

机译:新型高性能双子弹粘弹性表面活性剂在清洁压裂液中的应用研究

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摘要

Gemini surfactant, as a functionally flexible polymer-like material in the aqueous solution, has attracted increased attention in reservoir stimulation of hydraulic fracturing in recent decades. A new Gemini cationic viscoelastic surfactant named JS-N-JS, which has a secondary amine spacer group and two ultra-long hydrophobic tails, was synthesized from erucamidopropyl dimethylamine, diethanolamine, and thionyl chloride as a thickener for hydraulic fracturing fluid. Compared with some Gemini cationic surfactant with methylene spacer, JS-N-JS showed a lower critical micellar concentration (CMC) and higher surface activity due to the hydrogen bond formed between the secondary amine and water molecule intends to reduce electrostatic repulsion, which is more beneficial to be the fracturing fluid thickener. Moreover, the performance of JS-N-JS solution can be further improved by salts of potassium chloride (KCl) or sodium salicylate (NaSal), while organic salt behaved better according to the measurements. The SEM observation confirmed that JS-N-JS/NaSal system owned a tighter network microstructure, and JS-N-JS/NaSal system exhibited a distinct superior viscoelasticity system at a sweep frequency of 0.1–10 Hz. As a fracturing fluid, the solution with a formula of 30 mmol JS-N-JS and 100 mmol NaSal was evaluated according to the petroleum industrial standard and presented excellent viscoelastic properties, the viscosity of which can maintain above 70 mPa·s for 110 min under a shear rate of 170 s−1 at 120 °C. Meanwhile, the drag reducing rate of the formula could reach above 70% with the increase of shear rate. Finally, the viscous fracturing fluid can be broken into the water-like fluid in 1.2 h after being fully exposed to hydrocarbons and the water-like fluid presented a low damage to the tight sand reservoirs according to the core flooding experiments, in which the permeability recovery rate can reach 85.05%. These results fully demonstrate that the JS-N-JS solution fully meets the requirement of the industrial application of hydraulic fracturing.
机译:在近几十年来,作为水溶液中功能性柔性聚合物状材料的双子表面活性剂在水力压裂的储层增产中引起了越来越多的关注。一种新的Gemini阳离子粘弹性表面活性剂,称为JS-N-JS,具有仲胺间隔基和两个超长疏水尾巴,是由二十碳五烯丙基丙基二甲胺,二乙醇胺和亚硫酰氯作为水力压裂液的增稠剂合成的。与某些带有亚甲基间隔基的Gemini阳离子表面活性剂相比,JS-N-JS显示出较低的临界胶束浓度(CMC)和较高的表面活性,这是由于仲胺与水分子之间形成的氢键旨在减少静电排斥,这更加有利于成为压裂液增稠剂。此外,通过氯化钾(KCl)或水杨酸钠(NaSal)的盐可以进一步改善JS-N-JS溶液的性能,而有机盐的性能则更好。 SEM观察证实,JS-N-JS / NaSal系统具有更紧密的网络微观结构,而JS-N-JS / NaSal系统在0.1–10 Hz的扫描频率下表现出明显的优越的粘弹性系统。作为压裂液,根据石油工业标准对分子式为30 mmol JS-N-JS和100 mmol NaSal的溶液进行了评估,并显示出优异的粘弹性,其黏度可以在70 mPa·s以上保持110分钟。在120°C下170 s -1 的剪切速率下。同时,随着剪切速率的增加,减阻率可达到70%以上。最后,根据岩心驱油实验,粘性压裂液在完全暴露于碳氢化合物后的1.2h内可以分解为水状液,对致密砂岩油藏的破坏程度较小。回收率可达到85.05%。这些结果充分表明,JS-N-JS解决方案完全可以满足水力压裂工业应用的要求。

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