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Stokes shape factor for lactose crystals

机译:乳糖晶体的斯托克斯形状因数

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摘要

The alpha-lactose crystal has a tomahawk shape which needs to be accounted for when designing settling equipment. A shape factor can be used to achieve this. A variety of shape factors have been used for lactose crystals in the literature. This paper sets out to experimentally determine a shape factor for lactose. Large undamaged tomahawk shaped lactose crystals were grown in a lactose agar gel and then recovered for use in settling experiments. Typical industry produced crystals were also tested for comparison. Settling experiments enabled the calculation of a Stokes settling diameter, the diameter of a sphere with the same density and settling velocity as the tomahawk shaped lactose crystal. Using crystal mass to calculate equivalent particle volume and Stokes diameter, the Stokes shape factor for lactose gel-grown crystals was calculated to be 0.99. A Stokes height factor (B_(St)) was formulated which, when multiplied by the height of the lactose crystal, gives the Stokes settling diameter. The lactose B_(St) value was determined to be 0.595 ± 0.007 and 0.643 ± 0.008 for gel-grown and plant-grown lactose crystals, respectively.
机译:α-乳糖晶体具有战斧形状,在设计沉降设备时需要考虑。可以使用形状因子来实现此目的。文献中已将多种形状因子用于乳糖晶体。本文着手实验确定乳糖的形状因子。在乳糖琼脂凝胶中生长未损坏的大型战斧形乳糖晶体,然后回收用于沉降实验。还对典型的工业生产晶体进行了测试以进行比较。沉降实验可以计算斯托克斯沉降直径,即具有与战斧形乳糖晶体相同密度和沉降速度的球体直径。使用晶体质量计算当量颗粒体积和斯托克斯直径,乳糖凝胶生长的晶体的斯托克斯形状因子计算为0.99。制定了斯托克斯高度因子(B_(St)),将其乘以乳糖晶体的高度后得出斯托克斯沉降直径。凝胶生长和植物生长的乳糖晶体的乳糖B_(St)值分别确定为0.595±0.007和0.643±0.008。

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