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首页> 外文期刊>Separation and Purification Technology >Determination of permeability characteristics from centrifugal flotation velocity of deformable oil droplets in O/W emulsions
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Determination of permeability characteristics from centrifugal flotation velocity of deformable oil droplets in O/W emulsions

机译:从O / W乳状液中可变形油滴的离心浮选速度确定渗透性

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The permeability characteristics of highly concentrated O/W emulsions were clarified on the basis of the kinetic data of the centrifugal flotation experiments with the aid of an analytical centrifuge which could monitor timed near-infrared (MR) transmission profiles of the samples in the centrifugal field, and then the permeability data of the soft particles of oil droplets were compared with those of the rigid particles of silicon dioxide in centrifugal sedimentation. The dependence of centrifugal flotation velocity of concentrated emulsion on the emulsion concentration was not able to be described by the conventional Richardson-Zaki equation. By considering an analogy between the flotation of oil droplets in a solvent and the permeation of a solvent through the granular bed of oil droplets, the specific flow resistance of the oil droplets was determined as a function of the porosity from the data of centrifugal flotation velocity measured for a variety of initial porosity of O/W emulsion. Moreover, the dependence of the effective specific surface of the oil droplets on the porosity of O/W emulsion was derived using the Happel's cell model, which accurately describes the flow properties in the concentrated colloidal dispersions. As a consequence, it was shown that the effective specific surface of the oil droplets markedly decreased with decreasing porosity of emulsion in the range of the relatively high concentration. By contrast, it is significant to note that the effective specific surface remained almost constant in the case of centrifugal sedimentation of particulate suspension of silicon dioxide. These results provide important new insight into the mechanisms involved in the solid-liquid separation of the deformable particles.
机译:在离心浮选实验的动力学数据的基础上借助分析离心机阐明了高浓度O / W乳液的渗透特性,该离心机可以监测离心场中样品的定时近红外(MR)传输曲线,然后将油滴的软颗粒的渗透性数据与二氧化硅在沉降中的刚性颗粒的渗透性数据进行比较。常规乳液的Richardson-Zaki方程无法描述浓乳液的离心浮选速度对乳液浓度的依赖性。通过考虑油滴在溶剂中的浮选与溶剂通过油滴颗粒床的渗透之间的类比,从离心浮选速度的数据确定油滴的比流阻与孔隙率的关系测量各种O / W乳液的初始孔隙率。此外,使用Happel的细胞模型推导了油滴有效比表面对O / W乳液孔隙率的依赖性,该模型精确地描述了浓缩胶体分散液的流动特性。结果表明,在较高浓度范围内,随着乳液孔隙率的降低,油滴的有效比表面积显着降低。相反,值得注意的是,在二氧化硅的颗粒悬浮液的离心沉降的情况下,有效比表面几乎保持恒定。这些结果为可变形颗粒的固液分离所涉及的机理提供了重要的新见解。

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