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Separation performance of desanding and deoiling hydrocyclones treating three-phase feeds: Effect of oil-particle aggregates

机译:用于处理三相饲料的裂解和脱色碳糖的分离性能:油颗粒聚集体的影响

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The study presents preliminary results on the separation of a three-phase (oil, particulate SiO2, water) feed by desanding and deoiling hydrocyclones. Optical microscopy confirms formation of oil particle aggregates (OPAs) of a range of morphologies. Presence of OPAs does not affect the efficiency of oil separation but lowers the efficiency of separation of solids. In both hydrocyclones, OPAs preferentially partition into the overflow stream so that oil and SiO2 can be viewed as the "lead" and the "follower" phases, respectively. A model is developed to calculate the fraction of the "follower" phase incorporated in aggregates. Applied to data from the desander, the model shows that similar to 30% to 40% of SiO2 is captured in oil/SiO2 aggregates and that the fraction does not depend on the split ratio. In contrast, during deoiling, the fraction of SiO2 locked up in oil/SiO2 aggregates does not exceed 10% and is lower at lower split ratios; these observations can be attributed to aggregate break-up in a higher shear flow in the deoiler.
机译:该研究提出了通过脱丁和脱落氢旋流素分离三相(油,颗粒状SiO 2,水)饲料的初步结果。光学显微镜证实形成了一系列形态的油颗粒聚集体(OPA)。 OPA的存在不会影响油分离的效率,但降低了固体的分离效率。在两个氢旋流器中,OPA优先地分配到溢流流中,使得油和SiO2分别可以被视为“铅”和“追随者”阶段。开发了一种模型以计算掺入聚集体中的“从动件”相的分数。应用于来自Desdander的数据,该模型表明,类似于30%至40%的SiO2被捕获在油/ SiO2聚集体中,并且馏分不依赖于分流比。相反,在碎片期间,在油/ SiO 2聚集体中锁定的SiO 2的级分不超过10%并且在较低的分裂比下较低;这些观察结果可归因于煎切割器中较高剪切流中的分解。

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