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Cohesiveness and hydrodynamic properties of young drinking water biofilms

机译:年轻人饮用水生物膜的内聚力和流体力学特性

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摘要

Drinking water biofilms are complex microbial systems mainly composed of clusters of different size and age. Atomic force microscopy (AFM) measurements were performed on 4, 8 and 12 weeks old biofilms in order to quantify the mechanical detachment shear stress of the clusters, to estimate the biofilm entanglement rate ξ. This AFM approach showed that the removal of the clusters occurred generally for mechanical shear stress of about 100 kPa only for clusters volumes greater than 200 μm~3. This value appears 1000 times higher than hydrodynamic shear stress technically available meaning that the cleaning of pipe surfaces by water flushing remains always incomplete. To predict hydrodynamic detachment of biofilm clusters, a theoretical model has been developed regarding the averaging of elastic and viscous stresses in the cluster and by including the entanglement rate ξ. The results highlighted a slight increase of the detachment shear stress with age and also the dependence between the posting of clusters and their volume. Indeed, the experimental values of % allow predicting biofilm hydrodynamic detachment with same order of magnitude than was what reported in the literature. The apparent discrepancy between the mechanical and the hydrodynamic detachment is mainly due to the fact that AFM mechanical experiments are related to the clusters local properties whereas hydro-dynamic measurements reflected the global properties of the whole biofilm.
机译:饮用水生物膜是复杂的微生物系统,主要由大小和年龄不同的簇组成。在4、8和12周龄的生物膜上进行了原子力显微镜(AFM)测量,以量化簇的机械分离剪切应力,以估计生物膜缠结率ξ。这种原子力显微镜的方法表明,只有在体积大于200μm〜3的团簇中,团簇的去除通常在约100 kPa的机械剪切应力下发生。该值似乎比技术上可得到的流体动力剪切应力高1000倍,这意味着通过冲洗水清洁管道表面始终不完全。为了预测生物膜簇的水动力分离,已经建立了一个理论模型,该模型关于簇中弹性应力和粘滞应力的平均值,并包括纠缠率ξ。结果表明,随着年龄的增长,分离剪应力略有增加,而且簇的分布与其体积之间也存在依赖性。实际上,%的实验值允许以与文献中报道的相同的数量级来预测生物膜水动力脱离。机械和流体动力分离之间的明显差异主要是由于AFM机械实验与簇的局部特性有关,而流体动力测量则反映了整个生物膜的整体特性。

著录项

  • 来源
    《Water Research》 |2012年第4期|p.1155-1166|共12页
  • 作者单位

    Labomtoire de Chimie Physique et Microbiologie pour I'Environnement (LCPME), UMR 7564, Nancy-Universite, CNRS,405 rue de Vandosuure, 54600 Villers-les-Nancy, France;

    Laboratoire d'Energetique et de Mecanique Theorique et Appliquee (LEMTA), UMR 7563, Nancy-Uniuersite, CNRS,2 avenue de la Foret de Haye, BP 160, 54504 Vandoeuure-Ies-Nancy, France;

    Labomtoire de Chimie Physique et Microbiologie pour I'Environnement (LCPME), UMR 7564, Nancy-Universite, CNRS,405 rue de Vandosuure, 54600 Villers-les-Nancy, France;

    Labomtoire de Chimie Physique et Microbiologie pour I'Environnement (LCPME), UMR 7564, Nancy-Universite, CNRS,405 rue de Vandosuure, 54600 Villers-les-Nancy, France;

  • 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

    biofilm; drinking water; AFM; elasticity; cohesiveness; hydrodynamic; shear stress;

    机译:生物膜饮用水;原子力显微镜弹性;凝聚力流体动力剪应力;
  • 入库时间 2022-08-17 13:46:14

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