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Modelling of anhydrous milkfat fractionation in an ultrafiltration membrane process

机译:超滤膜过程中无水乳脂分离的建模

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摘要

Ultrafiltration membrane separation is a promising technology for AMF fractionation.An experimental study has been presented in our earlier communication [1] to demonstrate the success of fractionation using a 20 g melted anhydrous milkfat (40 °C) charged in a dead-end filtration cell.The operating conditions determined were: temperature 30 °C,stirring speed 100 rpm,and constant filtration pressure 300 psi,for a processing time of around 30 min.However,under these conditions especially at 300 psi or higher pressure,milkfat flux exhibit continuous decline with time as a result of the gradual fouling.This is due to the gradual accumulation and deposition of fat nuclei and crystals on and in the membrane pores causing irreversible deformation in the membrane pores.This leads to gradual increase in the membrane resistance for milkfat permeation.In this paper,a mathematical model is presented for the calculations of milkfat flux decline using the experimental parameters.The average predicted milkfat flux is 3.53E-06 m3 m-2 s_1,while the experimental value is 3.16E-06 m3 m-2 s_1,giving a reasonable error (10.5%).Thus,this model can be used for the prediction of milkfat flux under any processing conditions within the range considered here.Furthermore,the model enables us to determine the development of the cake layer thickness with time,the mass of fat deposited per unit membrane area (kg m-2),and the average specific filtration resistance.
机译:超滤膜分离是AMF分离的一种有前途的技术。在我们较早的论文[1]中已进行了一项实验研究,以证明使用装入死角过滤池中的20 g熔融无水乳脂(40°C)进行分离的成功。确定的操作条件为:温度30°C,搅拌速度100 rpm,恒定过滤压力300 psi,处理时间约为30分钟。然而,在这些条件下,特别是在300 psi或更高压力下,乳脂通量表现出连续性逐渐结垢的结果是随着时间的推移而下降,这是由于脂肪核和晶体在膜孔上和在膜孔中的逐渐积累和沉积导致膜孔中不可逆转的变形,这导致了对乳脂的膜阻力逐渐增加本文提出了一个数学模型,用于使用实验参数计算乳脂通量下降。 d乳脂通量为3.53E-06 m3 m-2 s_1,而实验值为3.16E-06 m3 m-2 s_1,具有合理的误差(10.5%)。因此,该模型可用于预测乳脂此外,该模型使我们能够确定滤饼层厚度随时间的变化,每单位膜面积上沉积的脂肪质量(kg m-2)以及平均比滤过率抵抗性。

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