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首页> 外文期刊>Brazilian journal of chemical engineering >PORE BLOCKING MECHANISM FOR THE RECOVERY OF MILK SOLIDS FROM DAIRY WASTEWATER BY ULTRAFILTRATION
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PORE BLOCKING MECHANISM FOR THE RECOVERY OF MILK SOLIDS FROM DAIRY WASTEWATER BY ULTRAFILTRATION

机译:超滤回收乳品中牛奶固体的孔堵塞机理

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This paper evaluates the pore blocking mechanism of two ultrafiltration membranes with different geometries (tubular and spiral wound) when dairy wash water is filtered. The work evaluated the effect of transmembrane pressure and the cross-flow velocity with a 3~2 experimental design using classical Hermia's models and the resistance-in-series model. The resistance-in-series analysis identified external fouling on the surface of both membranes, but the tubular membrane showed higher reversible fouling, while the reversible and irreversible resistances of the spiral wound membrane averaged 41% and 45%, respectively. Cake formation is the model that best represents ultrafiltration in the spiral wound membrane at all transmembrane pressures and cross-flow velocities. In the tubular membrane, at the lowest cross-flow velocity (0.79 m.s~(-1)), the cake formation model fitted the experimental data best. However, at higher cross-flow velocities (1.42 and 2.23 m.s~(-1)), the best fit of flux data was obtained with the complete pore blocking model. In addition, the tubular membrane apparently had a two-step pore blocking: "pore blocking" as the initial governing mechanism followed by "cake formation".
机译:本文评估了过滤乳制品洗涤水时,两种具有不同几何形状(管状和螺旋形伤口)的超滤膜的孔堵塞机理。这项工作使用经典Hermia模型和串联电阻模型,通过3〜2个实验设计评估了跨膜压力和错流速度的影响。串联电阻分析确定了两个膜表面的外部结垢,但管状膜显示出较高的可逆结垢,而螺旋缠绕膜的可逆和不可逆电阻分别平均为41%和45%。滤饼形成是最能代表在所有跨膜压力和错流速度下螺旋缠绕膜超滤的模型。在管状膜中,在最低横流速度(0.79 m.s〜(-1))下,滤饼形成模型最适合实验数据。但是,在较高的横流速度(1.42和2.23 m.s〜(-1))下,使用完整的孔阻塞模型可以获得最佳的通量数据拟合。另外,管状膜显然具有两步的孔阻塞:“孔阻塞”作为初始控制机制,随后是“滤饼形成”。

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