首页> 外文会议>IWA(International Water Association) International Conference on Biofilm Systems; 20030914-18; Cape Town(ZA) >Microsensor measurement of oxygen concentration in biofilms: from one dimension to three dimensions
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Microsensor measurement of oxygen concentration in biofilms: from one dimension to three dimensions

机译:生物膜中氧浓度的微传感器测量:从一维到三维

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In this study, we measured oxygen concentration in biofilms in one dimension in field conditions and in three dimensions in laboratory conditions by using a robust oxygen microsensor in combination with an automation and data acquisition system. The biofilms were on the discs of rotating biological contactors treating domestic wastewater. The results of this study provide experimental evidence on oxygen distribution in wastewater biofilms and on biofilm structure. (1) The three dimensional measurements of oxygen concentration in biofilms revealed "pockets" of oxygen in deep sections of biofilms. In these isolated "pockets," located 600-760 μm from the biofilm surface, dissolved oxygen concentration was as high as 1 mg/L. This depth of oxygen diffusion is deeper than what was determined based on one dimensional measurements. (2) The heterogeneity of oxygen distribution was related to the surface structure of biofilms. The structure of the biofilm surface affected the diffusion boundary layer over the surface and, in turn, the oxygen diffusion and distribution inside biofilms. (3) Oxygen concentration in biofilms changed generally from a high degree of heterogeneity near the biofilm surface to a low degree of heterogeneity in deep sections of biofilms, indicating a cell-clusters-like structure near the surface and a more compact base layer close to the substratum.
机译:在这项研究中,我们通过使用坚固的氧气微传感器与自动化和数据采集系统相结合,在野外条件下在一维中测量了生物膜中的氧气浓度,在实验室条件下在三维中测量了生物膜中的氧气浓度。生物膜位于处理生活污水的旋转生物接触器的圆盘上。这项研究的结果为废水中生物膜中的氧气分布和生物膜结构提供了实验证据。 (1)对生物膜中氧气浓度的三维测量揭示了在生物膜深层中的氧气“口袋”。在距离生物膜表面600-760μm的这些孤立的“口袋”中,溶解氧浓度高达1 mg / L。氧扩散的深度比基于一维测量确定的深度要深。 (2)氧分布的不均匀性与生物膜的表面结构有关。生物膜表面的结构影响了表面上的扩散边界层,进而影响了生物膜内部的氧气扩散和分布。 (3)生物膜中的氧气浓度通常从生物膜表面附近的高度异质性转变为生物膜深部区域中的低异质性,这表明表面附近的细胞簇状结构以及接近于其的更致密的基础层底层。

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