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首页> 外文期刊>Water Research >In-situ biofilm characterization in membrane systems using Optical Coherence Tomography: Formation, structure, detachment and impact of flux change
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In-situ biofilm characterization in membrane systems using Optical Coherence Tomography: Formation, structure, detachment and impact of flux change

机译:使用光学相干层析成像技术在膜系统中进行原位生物膜表征:通量变化的形成,结构,分离和影响

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摘要

Biofouling causes performance loss in spiral wound nanofiltration (NF) and reverse osmosis (RO) membrane operation for process and drinking water production. The development of biofilm formation, structure and detachment was studied in-situ, non-destructively with Optical Coherence Tomography (OCT) in direct relation with the hydraulic biofilm resistance and membrane performance parameters: transmembrane pressure drop (TMP) and feed-channel pressure drop (FCP). The objective was to evaluate the suitability of OCT for biofouling studies, applying a membrane biofouling test cell operated at constant crossflow velocity (0.1 m s~(-1)) and permeate flux (20 L m~(-2) h~(-1)). In time, the biofilm thickness on the membrane increased continuously causing a decline in membrane performance. Local biofilm detachment was observed at the biofilm -membrane interface. A mature biofilm was subjected to permeate flux variation (20 to 60 to 20 L m~(-2) h~(-1)). An increase in permeate flux caused a decrease in biofilm thickness and an increase in biofilm resistance, indicating biofilm compaction. Restoring the original permeate flux did not completely restore the original biofilm parameters: After elevated flux operation the biofilm thickness was reduced to 75% and the hydraulic resistance increased to 116% of the original values. Therefore, after a temporarily permeate flux increase the impact of the biofilm on membrane performance was stronger. OCT imaging of the biofilm with increased permeate flux revealed that the biofilm became compacted, lost internal voids, and became more dense. Therefore, membrane performance losses were not only related to biofilm thickness but also to the internal biofilm structure, e.g. caused by changes in pressure. Optical Coherence Tomography proved to be a suitable tool for quantitative in-situ biofilm thickness and morphology studies which can be carried out non-destructively and in real-time in transparent membrane biofouling monitors.
机译:生物污损导致螺旋伤口纳滤(NF)和反渗透(RO)膜操作的性能下降,用于生产过程和饮用水。使用光学相干断层扫描(OCT)对水膜生物膜阻力和膜性能参数(跨膜压降(TMP)和进料通道压降)直接相关的生物膜形成,结构和分离的发展进行了现场无损研究。 (FCP)。目的是通过在恒定的错流速度(0.1 ms〜(-1))和渗透通量(20 L m〜(-2)h〜(-1)下运行的膜生物污损测试池来评估OCT在生物污损研究中的适用性。 ))。随着时间的流逝,膜上的生物膜厚度不断增加,导致膜性能下降。在生物膜-膜界面观察到局部生物膜分离。使成熟的生物膜经历渗透通量变化(20至60至20 L m〜(-2)h〜(-1))。渗透通量的增加引起生物膜厚度的减少和生物膜阻力的增加,表明生物膜紧实。恢复原始渗透通量并不能完全恢复原始生物膜参数:在提高通量操作后,生物膜厚度减小到75%,而水力阻力增加到原始值的116%。因此,在暂时渗透通量增加之后,生物膜对膜性能的影响更强。对渗透通量增加的生物膜进行OCT成像显示,生物膜变得紧密,失去了内部空隙并变得更加致密。因此,膜性能的损失不仅与生物膜的厚度有关,而且与内部生物膜的结构有关。由压力变化引起。光学相干断层扫描被证明是用于定量原位生物膜厚度和形态研究的合适工具,可以在透明膜生物污染监测仪中进行无损实时监测。

著录项

  • 来源
    《Water Research》 |2014年第15期|243-254|共12页
  • 作者单位

    Wetsus, Centre of Excellence for Sustainable Water Technology, Agora 1, P.O. Box 1113, 8900 CC Leeuwarden, The Netherlands,Biofilm Centre, University Duisburg-Essen, Universitaetsstrasse 5, 45141 Essen, Germany;

    Wetsus, Centre of Excellence for Sustainable Water Technology, Agora 1, P.O. Box 1113, 8900 CC Leeuwarden, The Netherlands;

    Wetsus, Centre of Excellence for Sustainable Water Technology, Agora 1, P.O. Box 1113, 8900 CC Leeuwarden, The Netherlands;

    Wetsus, Centre of Excellence for Sustainable Water Technology, Agora 1, P.O. Box 1113, 8900 CC Leeuwarden, The Netherlands;

    Wetsus, Centre of Excellence for Sustainable Water Technology, Agora 1, P.O. Box 1113, 8900 CC Leeuwarden, The Netherlands;

    Biofilm Centre, University Duisburg-Essen, Universitaetsstrasse 5, 45141 Essen, Germany;

    Wetsus, Centre of Excellence for Sustainable Water Technology, Agora 1, P.O. Box 1113, 8900 CC Leeuwarden, The Netherlands;

    Wetsus, Centre of Excellence for Sustainable Water Technology, Agora 1, P.O. Box 1113, 8900 CC Leeuwarden, The Netherlands,Department of Biotechnology, Faculty of Applied Sciences, Delft University of Technology, Julianalaan 67, 2628 BC Delft, The Netherlands,King Abdullah University of Science and Technology, Water Desalination and Reuse Center, Thuwal, Saudi Arabia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    OCT; Membrane biofouling monitor; Sensitive biofilm thickness measurement; Biofilm morphology; Transmembrane pressure drop; Feed-channel pressure drop;

    机译:华侨城;膜生物污染监测仪;灵敏的生物膜厚度测量;生物膜形态;跨膜压降;进料通道压降;

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