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Time-resolved monitoring of biofouling development on a flat sheet membrane using optical coherence tomography

机译:使用光学相干层析成像技术对平板膜上生物积垢的发展进行时间分辨监测

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摘要

Biofouling on a membrane leads to significant performance decrease in filtration processes. In this study, an optical coherence tomography (OCT) was used to perform a time-resolved analysis of dynamic biofouling development on a submerged membrane under continuous operation. A real-time change in the biofouling morphology was calculated through the image analysis of OCT scans. Three videos were generated through the acquisition of serial static images. This is the first study that displays the dynamic biofouling formation process as a video. The acquisition of OCT cross-sectional scans of the biofouling allowed to evaluate the time-lapsed evolution for three different time periods (early stage, double layers and long-term). Firstly, at the early filtration stage, membrane coverage and average biofouling layer thickness were found to be linearly correlated with the permeate flux pattern. Secondly, after 3 d of operation, an anomalous morphology was observed, constituted by a double-layered biofouling structure: denser on the bottom and looser on the top. In a long-term operation, the biofouling structure underwent a dynamic evolution over time, resulting in a multi-layered structure. The biofouling formation information was closely associated with filtration performance (i.e. flux) indicating the suitability of OCT as real-time and in-situ biofouling monitoring technique.
机译:膜上的生物污垢会导致过滤过程的性能显着下降。在这项研究中,光学相干断层扫描(OCT)用于在连续操作下对浸没膜上动态生物积垢发展进行时间分辨分析。通过OCT扫描的图像分析计算了生物污染形态的实时变化。通过采集串行静态图像生成了三个视频。这是第一项以视频形式显示动态生物污垢形成过程的研究。对生物污染的OCT横截面扫描的获取允许评估三个不同时间段(早期,双层和长期)的时间推移演变。首先,在早期过滤阶段,发现膜覆盖率和平均生物污损层厚度与渗透通量模式呈线性相关。其次,在运行3天后,观察到异常形态,由双层生物污垢结构组成:底部较密,顶部较松。在长期操作中,生物结垢结构会随着时间动态变化,从而形成多层结构。生物污染形成信息与过滤性能(即通量)密切相关,表明OCT作为实时和原位生物污染监测技术的适用性。

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