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Evaluation of Ultra Low Concentration Surfactant System for Chemical Flooding

机译:化学驱超低浓度表面活性剂体系的评价

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摘要

In order to select a surfactant formulation for chemical flooding, the surfactant has to be evaluated at reservoir conditions to determine its compatibility with the reservoir to be injected in. This is to avoid formation of gels and precipitation in the reservoir which can make surfactant enhanced oil recovery unsuccessful. In several studies, surfactants have been tested in the laboratory at room temperature using only sodium chloride salt in the brine. While in oilfield scenario, the temperature is higher and the reservoir brine contains divalent ions. In this study, very low concentration alcohol alkoxy sulfate with and without a co-surfactant in hard brine and medium crude oil has been evaluated. The results from the salinity scan, phase behaviour and core flooding experiments at 60°C shows that alcohol alkoxy sulfate is tolerant to divalent ions and its stability can be improved with the addition of methyl ester sulfonate and internal olefin sulfonate as co-surfactants. These co-surfactants were able to reduce the viscosity of microemulsion phase, create a lower interfacial tension by increasing solubilisation ratio and also increase oil recovery by at least 20%.
机译:为了选择用于化学驱的表面活性剂配方,必须在储层条件下对表面活性剂进行评估,以确定其与要注入的储层的相容性。这是为了避免在储层中形成凝胶和沉淀,以免使表面活性剂增强油质。恢复失败。在一些研究中,表面活性剂已在实验室中于室温下仅在盐水中使用氯化钠盐的条件下进行了测试。在油田中,温度更高,储层盐水中含有二价离子。在这项研究中,已经评估了在硬盐水和中度原油中含有和不含助表面活性剂的极低浓度醇烷氧基硫酸盐。盐度扫描,相行为和岩心驱油实验(在60°C下)的结果表明,醇烷氧基硫酸盐可耐受二价离子,并且可以通过添加甲酯磺酸盐和内烯烃磺酸盐作为助表面活性剂来提高其稳定性。这些助表面活性剂能够降低微乳液相的粘度,通过增加增溶率产生较低的界面张力,还可以至少提高20%的油采收率。

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  • 作者

    Diaz PA; Sagbana P;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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