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Observation of flow characteristics in a hollow fiber lumen using non-invasive X-ray microimaging (XMI)

机译:使用非侵入性X射线显微成像(XMI)观察中空纤维腔中的流动特性

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This paper reports non-invasive observations of flow characteristics inside a hollow fiber membrane lumen under suction conditions using X-ray microimaging (XMI) techniques. The observation revealed that for hydrophobic polypropylene (PP) hollow fiber membranes, bubbles, ranging in size from about 50 to 200 μm existed in some local regions of the fiber lumen. An in situ suction pressure monitor revealed that the presence of the bubbles inside the fiber lumen caused considerable fluctuations in the transmembrane pressure during the filtration. The XMI observation identified two types of bubbles, stagnant and mobile. The stagnant bubbles, whose shape changed with increasing suction pressure, eventually reached a stable geometry of a semi-sphere with a flat bottom. These bubbles were observed to stick firmly to some local regions of the fiber lumen. Contact angle analysis shows that the existence of the stagnant bubble could be related to the hydrophobicity of the local region. The mobile bubbles were observed to grow and detach from the wall under suction conditions, indicating a possible role of cavitation in the filtration with hollow fiber membranes. A crevice model was used to explain the formation of the nuclei for cavitation on the fiber internal surface. In addition, this study also confirmed that X-ray microimaging is a useful tool for non-invasive observation of two-phase flow phenomenon inside fiber lumens.
机译:本文使用X射线显微成像(XMI)技术报告了在抽吸条件下中空纤维膜腔内部流动特性的非侵入性观察结果。观察结果表明,对于疏水性聚丙烯(PP)中空纤维膜,在纤维内腔的某些局部区域中存在气泡,气泡的大小范围约为50至200μm。现场吸气压力监测器显示,在过滤过程中,纤维腔内气泡的存在引起跨膜压力的明显波动。 XMI观察确定了两种类型的气泡:停滞气泡和移动气泡。滞留气泡的形状随着吸力的增加而改变,最终达到了具有平坦底部的半球形的稳定几何形状。观察到这些气泡牢固地粘附在纤维腔的某些局部区域。接触角分析表明,停滞气泡的存在可能与局部区域的疏水性有关。观察到在抽吸条件下,可移动的气泡会生长并从壁上脱离,这表明空化在中空纤维膜过滤中的可能作用。缝隙模型用于解释在纤维内表面形成空穴的核。此外,这项研究还证实,X射线显微成像是一种非侵入性观察纤维腔内部两相流动现象的有用工具。

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