首页> 外文会议>IWA(International Water Association) International Conference on Biofilm Systems; 20030914-18; Cape Town(ZA) >Growth, structure and oxygen penetration in particle supported autotrophic biofilms
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Growth, structure and oxygen penetration in particle supported autotrophic biofilms

机译:颗粒自养生物膜的生长,结构和氧渗透

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Particle supported autotrophic biofilms were cultivated in external-loop airlift reactors at two different pumice concentrations. Oxygen microelectrodes were used to investigate substrate transport and conversion. A special flow cell was designed for the measurement of oxygen concentration profiles in the particle supported biofilms under defined hydrodynamic conditions. The oxygen concentration profiles inside the biofilms were found to be steeper at high flow velocities in the bulk phase of the flow cell compared to those at low flow velocities. Furthermore, the oxygen flux increased and the thickness of the concentration boundary layer decreased with increasing flow velocity. This dependence was found to be more pronounced in less dense biofilms out of airlift reactors with lower pumice concentrations. In addition confocal laser scanning microscopy (CLSM) was used to visualize the biofilm structure. The volume fractions of bacteria and extracellular polymeric substances (lectin-specific EPS-glycoconjugates) were measured in living fully hydrated biofilms. Both the microelectrode and CLSM measurement showed the influence of shear stress on particle supported biofilms. A higher particle concentration led to dense biofilms with a homogeneous surface, lower thickness of the concentration boundary layer and steeper oxygen concentration profiles. The combination of both techniques allows a detailed and quantitative characterisation of particle associated biofilm structure and function.
机译:在两个不同浮石浓度的外环气举反应器中培养了颗粒支撑的自养生物膜。氧气微电极用于研究底物的转运和转化。设计了一种特殊的流通池,用于在定义的流体动力学条件下测量颗粒负载生物膜中的氧气浓度曲线。发现在生物膜内部的氧气浓度分布在流通池整体相中的高流速下比在低流速下更陡。此外,随着流速的增加,氧通量增加并且浓度边界层的厚度减小。发现在浮石浓度较低的空运反应堆中,密度较小的生物膜中这种依赖性更为明显。另外,共聚焦激光扫描显微镜(CLSM)用于可视化生物膜结构。在活的完全水合的生物膜中测量细菌和细胞外聚合物质(凝集素特异性EPS-糖共轭物)的体积分数。微电极和CLSM测量均显示了剪切应力对颗粒负载生物膜的影响。较高的颗粒浓度导致致密的生物膜具有均匀的表面,较低的浓度边界层厚度和较陡的氧气浓度分布。两种技术的结合可以对颗粒相关生物膜的结构和功能进行详细的定量表征。

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