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首页> 外文期刊>Journal of Molecular Liquids >Effect of internal olefin on the properties of betaine-type zwitterionic surfactants for enhanced oil recovery
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Effect of internal olefin on the properties of betaine-type zwitterionic surfactants for enhanced oil recovery

机译:内烯烃对增强储油性β-二十层表面活性剂性能的影响

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摘要

In this report, four in-house synthesized betaine-type zwitterionic surfactants containing unsaturated and saturated hydrophobic tail as well as carboxylate and hydroxy-sulfonate head groups were investigated. The two surfactants containing unsaturated tail showed excellent solubility in deionized water, sea water (57,643 ppm) and formation water (213,734 ppm). However, the other two surfactants containing saturated tail exhibited poor solubility regardless of the nature of the head group, and hence they were not evaluated further. The thermogravimetric analysis results of the surfactants containing unsaturated tail revealed excellent short-range heat stability and the major weight loss was observed above 200 degrees C. The surfactants containing unsaturated tail exhibited excellent long-range heat stability and the FTIR and NMR spectral characterization of the aged sample of surfactants in seawater for 15 days at 90 degrees C showed no change in chemical structure. The critical micelle concentration (cmc) of the surfactants decreased by increasing the salinity of the water. However, hydroxy sulfobetaine showed lower cmc value (1.78 x 10(-5) mol/L) compared to the carboxybetaine (1.88 x 10(-5) mol/L). Moreover, surface tension corresponding to cmc (gamma(cmc).) increased by increasing the salinity of the water. Rheological studies of the polymer surfactant hybrid demonstrated that the increase in the surfactant concertation in deionized water lowers the viscosity and storage modulus of the polymer; however, in sea water, the surfactant addition showed negligible effect. The betaine-type zwitterionic surfactants exhibited excellent salt tolerance, surface, and thermal properties and may be a material of choice for enhanced oil recovery in harsh condition reservoir. (C) 2018 Published by Elsevier B.V.
机译:在本报告中,研究了含有不饱和和饱和疏水性尾部的四种内部合成的甜甜液表面活性剂以及羧酸盐和羟基磺酸盐头组。含有不饱和尾部的两个表面活性剂在去离子水,海水(57,643ppm)和地层水(213,734ppm)中显示出优异的溶解度。然而,无论头部组的性质如何,含有饱和尾部的其他两个表面活性剂表现出差的溶解度,因此没有进一步评估它们。含有不饱和尾部的表面活性剂的热重分析结果显示出优异的短距离热稳定性,并且观察到高于200℃的主要体重减轻。含有不饱和尾的表面活性剂表现出优异的远程热稳定性和FTIR和NMR光谱表征在90摄氏度下海水中的表面活性剂样品在90℃下表现出化学结构的变化。通过增加水的盐度,表面活性剂的临界胶束浓度(CMC)降低。然而,与羧基脲(1.88×10(-5)mol / l)相比,羟基磺基因表现出较低的CMC值(1.78×10(-5)mol / L)。此外,通过增加水的盐度来增加对应于CMC(γ(CMC)的表面张力。聚合物表面活性剂杂种的流变研究表明,去离子水中的表面活性剂吻合的增加降低了聚合物的粘度和储存模量;然而,在海水中,表面活性剂添加显示出可忽略不计的效果。甜菜碱型两性离子表面活性剂表现出优异的耐盐性,表面和热性能,并且可以是苛刻条件储层中增强储油的选择材料。 (c)2018由elestvier b.v出版。

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