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Stimulation of Stable Micro?Emulsion at Oil?Water Interface Using Co? Surfactants as an Alternative Method for Enhanced Oil Recovery

机译:刺激稳定的微吗?乳液在油中的乳液?水界面使用CO?表面活性剂作为增强储油的替代方法

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In order to screen various chemical and microbial EOR methods for core-flooding experiments and potential field trials, a laboratory investigation of evaluating the effect of micro-emulsion on the reduction of interfacial tension (IFT) was recently carried out at CSIRO by using commercially available chemical and bio-surfactants. Environment friendly non-ionic, anionic surfactants and a biosurfactant (Bacillus subtilis) were used to create micro-emulsion in an oil-brine system. Stable micro- emulsion (ME) was achieved by proportionally mixing various alcohols with surfactants. Twenty-four micro-emulsion samples with five different chemical combinations were prepared for screening. All samples were stirred to create a stable ME phase. The volume changes of the ME phase were monitored over two weeks and their density, viscosity, and IFT were measured. The size distribution of ME phases was also characterised using optical microscopy equipped with an UV light source. The micro-emulsion created by co-surfactants were found to be quite effective in reducing the oil-brine IFT and oil viscosity, and achieved ultra low IFT under reservoir pressure and temperature. There appears to be a linear relationship between the size of micro-emulsion and IFT reduction. ME with small sizes results in more IFT reduction and achieve stable ME at high temperature and pressure. Compared with the IFT reduction from the surfactant or microbial metabolism, the reduction of IFT through stable ME can be several orders of magnitude larger and may thus achieve better enhanced oil recovery in suitable reservoir systems.
机译:为了筛选各种化学和微生物EOR方法,用于核 - 泛滥实验和潜在的现场试验,最近通过商购获得的CSIRO对微乳液对微乳液减少(IFT)进行评估的实验室研究化学和生物表面活性剂。环境友好的非离子,阴离子表面活性剂和生物活性剂(Bacillus枯草芽孢杆菌)用于在油盐系统中产生微乳液。通过将各种醇与表面活性剂与表面活性剂成比例地混合来实现稳定的微乳液(ME)。制备二十四种具有五种不同化学组合的微乳液样品进行筛选。搅拌所有样品以产生稳定的ME相。在两周内监测ME相的体积变化,并测量密度,粘度和IFT。使用配备有UV光源的光学显微镜,对ME相的尺寸分布也表征。发现由共表面活性剂产生的微乳液在降低油盐IFT和油粘度方面非常有效,并且在储层压力和温度下实现了超低IFT。微乳液和IFT的尺寸之间似乎是一种线性关系。小尺寸的小尺寸会导致更多的IFT,在高温和压力下实现稳定。与来自表面活性剂或微生物代谢的IFT降低相比,通过稳定的IFT的减少可以是几个数量级,因此可以在合适的储层系统中实现更好的增强的储油。

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