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Direct Three-Dimensional Visualization of Membrane Fouling by Confocal Laser Scanning Microscopy

机译:共聚焦激光扫描显微镜直接三维可视化膜污染

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Membrane-based separation is an important technique for removing emulsified oil from water. However, the mechanisms of fouling are complex because of the deformability and potential for coalescence and break-up of the oil droplets. Here, we report for the first time direct, three-dimensional (3D) visualization of oil droplets on electrospun fiber microfiltration membranes after a period of membrane-based separation of oil-in-water emulsions. High-resolution 3D images were acquired by a dual-channel confocal laser scanning microscopy (CLSM) technique in which both the fibers and the oil (dodecane) were fluorescently labeled. The morphology of dodecane as the foulant was observed for two different types of fibers, an oleophobic nylon (PA6(3)T), and oleophilic polyvinylidene fluoride (PVDF). Through direct visualization, the rejected oil was found to form droplets of clam-shell shape on the PA6(3)T fibers, whereas the oil tended to wet the PVDF fibers and spread across the membrane. The morphology was also analyzed as a function of separation time (i.e., "4D" imaging), as the oil accumulated within and upon the membranes. The observations are qualitatively consistent with a transition from blocking of individual pores in the membrane to coalescence of oil droplets into coherent liquid films with increasing filtration time. Analysis of permeate flux using blocking filtration models corroborate the transition of fouling modes indicated by the 3D images. This direct, 3D visualization CLSM technique is a powerful tool for characterizing the mechanisms of fouling in membranes used for liquid emulsion separations.
机译:基于膜的分离是一种用于从水中除去乳化油的重要技术。然而,由于聚结的可变形性和潜力以及油滴的分解,所污垢的机制是复杂的。在这里,我们在膜 - 水乳液的基于膜的分离期后,在电纺纤维微滤膜上的第一次直接,三维(3D)可视化的直接,三维(3D)可视化。通过双通道共聚焦激光扫描显微镜(CLSM)技术获得高分辨率3D图像,其中纤维和油(十二烷)荧光标记。对于两种不同类型的纤维,疏油尼龙(PA6(3)T)和油磷酸多偏二氟乙烯(PVDF)的形态观察到Dooulant的形态。通过直接可视化,发现废弃的油在PA6(3)T纤维上形成蛤壳形状的液滴,而油倾向于润湿PVDF纤维并涂抹在膜上。作为分离时间(即“4D”成像)的函数“也分析了形态,因为膜中积聚的油。观察结果与从膜中的个体孔的过渡到膜的相结合到相干液体膜中的过渡,随着过滤时间的增加而变成相干液体膜。使用阻塞过滤模型分析渗透磁通量证实了3D图像所示的结垢模式的转变。这种直接,3D可视化CLSM技术是一种强大的工具,用于表征用于液体乳液分离的膜中的污垢机制。

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