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Performance of liquid-liquid hydrocyclone (LLHC) for treating produced water from surfactant flooding produced water

机译:液 - 液水旋流(LLHC)对食品灌溉产水处理水的液 - 液水旋流(LLHC)的性能

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Purpose - The purpose of this study is to investigate the performance of the fabricated liquid-liquid hydrocyclone (LLHC) with dimensions similar to those of one of the Malaysian oilfields with the presence of an anionic surfactant, S672. The effect of salinity and initial oil concentration were also investigated following the actual range concentration. Design/methodology/approach - The current control system's pressure drop ratio (PDR) does not necessarily lead to an efficient LLHC. Therefore, rather than using the PDR, the efficiency of the LLHC was analyzed by comparing the concentration of oil in the effluents with the concentration of oil at the feed of the LLHC. An LLHC test rig was developed at Centre of Enhanced Oil Recovery, Universiti Teknologi PETRONAS. Emulsions were prepared by mixing the brines, S672 and oil by using Ultra Turrax ultrasonic mixer. The emulsion was pumped into the LLHC at different feed flowrate and split ratio. The brines concentration, initial oil concentration and S672 concentration were also varied in this study. Samples were taken at the underflow of the LLHC and the oil in water concentration analysis was done for the samples using TD-500D equipment. Findings - It was found that the efficiency of oil removal decreased with an increase in S672 concentration but increased with the increase in salinity and initial oil concentration. Originality/value - The optimum feed flowrate for the LLHC of 45 mm diameter and length of 1,125 mm with the presence of S672 surfactant was found to be 40 L/min with a split ratio of 14%. This study can be used as a guidance for future optimization of the LLHC in the presence of the surfactant.
机译:目的 - 本研究的目的是探讨制造的液 - 液水力旋流器(LLHC)的性能,其尺寸类似于马来西亚油田的尺寸,其中存在阴离子表面活性剂S672。在实际范围浓度之后还研究了盐度和初始油浓度的影响。设计/方法/方法 - 目前的控制系统的压降比(PDR)不一定导致有效的LLHC。因此,通过将流出物中的油浓度与LLHC的饲料浓度进行比较,通过比较油的浓度来分析LLHC的效率而不是使用PDR。 LLHC测试钻机是在增强的石油回收的中心开发的,Universiti Teknologi Petronals。通过使用超棱镜超声波混合器将盐水,S672和油混合来制备乳液。以不同的进料流量和分流比将乳液泵入LLHC中。在本研究中,盐浓度,初始油浓度和S672浓度也变化。在LLHC的下面拍摄样品,使用TD-500D设备对样品进行水浓度分析的油。结果 - 发现除油的效率降低了S672浓度的增加,但随着盐度和初始油浓度的增加而增加。原始性/值 - 对于存在S672表面活性剂的直径为45mm直径和长度为1,125mm的最佳进给流量为40L / min,分流比为14%。本研究可作为在表面活性剂存在下未来优化LLHC的指导。

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