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Influence of Spacer Design and Module Geometry on the Filtration Performance during Skim Milk Microfiltration with Flat Sheet and Spiral-Wound Membranes

机译:垫片设计和模块几何形状对平板和螺旋缠绕膜脱脂牛奶微滤过程中过滤性能的影响

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摘要

Spacer design in spiral-wound membranes (SWMs) significantly affects the axial pressure drop in the flow channel but also the deposit layer removal. However, the effects of the spacer design and feed flow distribution in the module on the filtration performance have not yet been investigated during the highly fouling-susceptible fractionation of proteins from skim milk by SWMs. Therefore, a parallel spacer with no turbulence promotion and a less homogeneous feed flow distribution in the SWM was compared to a diamond spacer with regard to its impact on deposit formation and filtration performance. The experiments were conducted in a flat sheet test cell and in SWMs. The parallel spacer induced a more homogeneous deposit layer formation. However, no difference in filtration performance could be observed in the experiments with the test cell. Even though deposit layer formation dominates the microfiltration, its amount and spatial distribution could not be directly linked to the filtration performance. Furthermore, both spacers were assessed in SWM. Despite the higher crossflow velocity applicable in the more open channels of the parallel spacer, the performance of the parallel spacer was inferior to the diamond spacer. This was independent of the viscosity of the feed. Due to the high curvature of the membrane sheets close to the permeate collection tube, the cross-section of the flow channels in the SWM equipped with the parallel spacer was reduced. This resulted in a distinctly lower deposit layer control and performance, which could not be compensated by the resulting higher crossflow velocity far from the permeate collection tube.
机译:螺旋缠绕膜(SWM)中的垫片设计会显着影响流道中的轴向压降,但也会影响沉积层的去除。但是,在通过SWMs对脱脂乳中的蛋白质进行高度易污染的分馏过程中,尚未研究隔板设计和模块中进料流量分布对过滤性能的影响。因此,就其对沉积物形成和过滤性能的影响而言,与金刚石垫片相比,在SWM中没有湍流促进作用且进料流量分布较不均匀的平行垫片得到了比较。实验在平板测试室和SWM中进行。平行间隔物引起更均匀的沉积层形成。但是,在使用测试单元的实验中,没有观察到过滤性能的差异。即使沉积层的形成主导了微过滤,但其数量和空间分布也不能直接与过滤性能相关。此外,两个间隔子都在SWM中进行了评估。尽管较高的错流速度适用于平行隔圈的更多开放通道,但平行隔圈的性能不及金刚石隔圈。这与进料的粘度无关。由于靠近渗透物收集管的膜片的高曲率,减小了配备有平行垫片的SWM中流道的横截面。这导致沉积层的控制和性能明显降低,而远离渗透物收集管的更高的错流速度无法弥补这一点。

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