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Continuous Flow Synthesis of Petroleum Sulfonates from Crude Oil and Formulation into Nano-Surfactants for Cost Efficient Oil Mobilization

机译:从原油和制剂中连续流动合成石油磺酸盐纳米表面活性剂,用于成本高效的油动力化

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The oil mobilization in tertiary mode using chemicals has been shown to be a promising approach. In such technique, surfactants with or without polymers, designed for specific reservoir conditions, are added into water during water flooding to further drive remaining oil out of the porous structure of the reservoir rock into production wells. The success of the method depends on the cost of the chemicals used and the amount of the additional incremental oil mobilization achieved beyond water flooding. Thus, utilizing reservoir-compatible and inexpensive surfactants is a key. Petroleum sulfonates are some of the most abundant and inexpensive surfactants that can be made available at the scale required for efficient oil mobilization operations. However, petroleum sulfonates lack solubility in harsh reservoir conditions which makes them rather inapplicable for reservoirs with high salt content (e.g. > 50,000 ppm) and high temperature (e.g. 100 °C). We have successfully developed a simple, one-step nano-encapsulation technique to transform petroleum sulfonates into nano-sized multi-emulsion droplets in high salinity injection water featuring long-term stability at high temperatures. To further improve the economics and sustainability of such NanoSurfactants (NS), we developed a continuous and cost-effective synthesis process of petroleum sulfonates, directly from crude oil. The in-house-produced sulfonates were then formulated into a NS solution in high salinity injection water utilizing our encapsulation method. Results showed that petroleum sulfonates were successfully synthesized as seen from NMR analysis. The formulated NS was persistently stable at reservoir conditions, altered the wettability of the oil-wet rock as verified by contact angle measurements, and triggered crude oil release from the rock by spontaneous imbibition. This work provides a solution to produce petroleum sulfonates and formulate NS on-site for use in cost-efficient oil mobilization operations in high salinity and high temperature reservoirs.
机译:已经证明了使用化学品的三级模式下的油动员是一种有希望的方法。在这种技术中,具有或不具有用于特定储层条件的聚合物的表面活性剂在水中加入水中,以进一步驱动水库岩石多孔结构的剩余油进入生产井。该方法的成功取决于所使用的化学品的成本和超出水淹水的额外增量油动员的量。因此,利用储层兼容和廉价的表面活性剂是钥匙。石油磺酸盐是一些最丰富且廉价的表面活性剂,可以以有效的油动力传播所需的规模提供。然而,石油磺酸盐缺乏在苛刻的储层条件下的溶解度,这使得它们相当不适用于具有高盐含量的储层(例如> 50,000ppm)和高温(例如100°C)。我们已成功开发了一种简单的一步纳米封装技术,将石油磺酸盐转化为高盐度注入水中的纳米多乳液液滴,其在高温下具有长期稳定性。为了进一步改善这种纳米蛋白剂(NS)的经济性和可持续性,我们直接由原油生产的石油磺酸盐的连续且经济高效的合成过程。然后将内部产生的磺酸盐配制成利用我们的封装方法在高盐度注入水中的NS溶液中。结果表明,从NMR分析中看到,石油磺酸盐成功地合成。在储存条件下,配制的NS持续稳定,改变了通过接触角测量验证的油湿岩的润湿性,并通过自发性吸收从岩石中引发原油释放。这项工作提供了生产石油磺酸盐的溶液,并在现场制定NS,以用于高盐度和高温储层的成本效益。

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