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Oil-Tolerant Nonionic Worm-like Micellar Solution

机译:耐油非离子蠕虫样胶束溶液

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The goal of this work is to study the effect of crude oil on worm-like micelles and identify any oil-tolerant systems. A new class of nonionic surfactants was synthesized that forms viscous worm-like micelles under a wide range of temperature and salinity conditions. Aqueous stability, rheology, cryogenic transmission electron microscopy imaging, and dynamic-light-scattering measurements were performed to understand properties, shape, and size of the micelles formed using these surfactants under different temperatures and salinity conditions and in the presence of hydrocarbons. These micellar solutions maintained high viscosity in the presence of small amounts (up to 8 vol %) of crude oils and pure hydrocarbons. Similar experiments were performed with conventional surfactant systems that were known to form worm-like micelles; they did not show oil tolerance. Larger alkanes and viscous crude oils affect the viscosity and transformation of cylindrical micelles less. These new surfactants are useful for oil and gas operations such as hydraulic fracturing, conformance control, and mobility control as they form viscous worm-like micelles in the presence of small amounts of crude oils.
机译:这项工作的目标是研究原油对蠕虫状胶束的影响,并鉴定任何耐油系统。合成了一种新的非离子表面活性剂,其在宽范围的温度和盐度条件下形成粘性蠕虫状胶束。进行水性稳定性,流变学,低温透射电子显微镜成像和动态光散射测量以了解在不同温度和盐度条件下使用这些表面活性剂形成的胶束的性质,形状和尺寸,以及在烃的存在下。这些胶束溶液在少量(高达8体积)的原油和纯烃的存在下保持高粘度。用常规的表面活性剂体系进行类似的实验,该系统已知形成蠕虫状胶束;他们没有表现出石油宽容。较大的烷烃和粘性原油影响圆柱形胶束的粘度和转化。这些新的表面活性剂可用于油气操作,例如液压压裂,一致性控制和移动控制,因为它们在少量原油存在下形成粘性蠕虫状胶束。

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