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Alkaline-Biosurfactant-Biopolymer Process and its Potential for Enhancing Oil Recovery in Omani Oil Field

机译:碱性 - 生物表面活性剂 - 生物聚合物工艺及其提高阿曼油田油回收的潜力

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In present paper we ereport the evaluation and the application of Alkaline-Biosurfactant-Biopolymer (ABsBp) applications for enhancing oil recovery. Generally Alkaline-Surfactant-Polymer (ASP) studies have been carried out using chemical surfactants and polymers. This experimental investigation was performed to evaluate the possibility of using a biosurfactant and a biopolymer with sodium carbonate as an alkali for ASP flooding for the oil field. The candidate example reservoir was selected having favorable properties such as high permeability (500-1000 mD), low oil viscosity (20-25 cp), favorable total acid number (0.1 mg KOH/g oil) and high residual saturation (>20%). The current study was done to design an optimum composition of Alkali/Biosurfactant/Biopolymer (AbSbP) slug and apply it for enhancing oil recovery in both native reservoir cores and Berea sandstone core plugs. The interfacial tension (IFT) between various solutions containing alkali, biosurfactant and biopolymer was measured. Interfacial tension values in the range of 0.02-0.1mN/m were achieved at low biosurfactant and alkali concentrations. The interaction of the biopolymer with the brine, biosurfactant and alkali was investigated in terms of their effect on its viscosity at the reservoir temperature of 50°C. An AbSbP slug containing 1.1 wt.% sodium carbonate, 20 v/v% biosurfactant broth and 20 v/v% biopolymer broth was recommended for the final core flooding experiment. Core flooding experiments were conducted using reservoir cores and Berea cores by injecting the formulated AbS and AbSbP slugs after brine flooding. Maximum additional oil recovery obtained was 14% and 32% of oil initially in place (OIIP) from the reservoir cores and Berea cores respectively. Such difference in additional recovery was mainly due to the vast difference in the mineralogical composition of two rock types. This is the first report of application of Alkali-Biosurfactant-Biopolymer from Oman, showing additional oil from both native cores (from the Omani oil field) and Berea sandstone cores.
机译:本文在筛选碱性 - 生物活性剂 - 生物聚合物(ABSBP)应用中的评价和应用以提高储油。通常使用化学表面活性剂和聚合物进行碱性表面活性剂 - 聚合物(ASP)研究。进行该实验研究以评估使用生物表面活性剂和生物聚合物的可能性与碳酸钠作为碳酸钠,用于油田的ASP洪水。选择具有良好性质的候选物种储库,例如高渗透率(500-1000md),低油粘度(20-25cp),良好的总酸数(0.1mg KOH / G油)和高残留饱和度(> 20%) )。完成目前的研究以设计碱/生物活性剂/生物聚合物(ABSBP)SLUG的最佳组合物,并将其应用于提高天然储层芯和Berea砂岩芯塞中的储油。测定含有碱,生物表面活性剂和生物聚合物的各种溶液之间的界面张力(IFT)。在低生物表面活性剂和碱浓度下实现0.02-0.1mn / m范围内的界面张力值。对生物聚合物与盐水,生物活性剂和碱的相互作用在其对其在50℃的储层温度下的粘度的影响方面进行了研究。含有1.1重量%的ABSBP槽。对于最终的核心洪水实验,建议使用碳酸钠%的碳酸钠,20V / v%生物活性剂肉汤和20V / v%的生物聚合物肉汤。通过在盐水洪水后注入配制的ABS和ABSBP块进行储层芯和Berea芯进行核心泛洪实验。获得的最大额外的储存量分别为14%和32%的油,最初分别从储层核心和贝雷核核心的原位(OIIP)。额外恢复的这种差异主要是由于两种岩石类型的矿物学组成的巨大差异。这是第一份来自阿曼施用碱 - 生物活性剂 - 生物聚合物的报告,显示来自天然核心(来自阿曼油田)和伯伊砂岩核心的额外油。

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