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Behaviour of biofilm systems under varying hydrodynamic conditions

机译:在变化的水动力条件下生物膜系统的行为

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摘要

Heterotrophic biofilms were cultivated in long-term experiments in biofilm tube reactors. During the biofilm cultivation the substrate loading of glucose was kept constant while the hydrodynamic conditions were changed stepwise. To describe the behaviour of the biofilm structure under these varying flow conditions the mass transfer and transport at the bulk/biofilm interface and inside the biofilm was investigated with oxygen microelectrodes. Furthermore, the biofilm density was used to describe the biofilm compactness before and after the change of the hydrodynamic condition. The obtained results show that the biofilm density and also the substrate flux decreased with decreasing flow velocity in the bulk phase. Additionally the slope of the oxygen concentration profiles decreased and the thickness of the concentration boundary layer increased. On the other hand, increasing the flow velocity in the bulk phase led both to a higher biofilm density and a higher maximum substrate flux. The biofilm surface became more homogenous and the thickness of the concentration boundary layer decreased. The time for adaptation of the biofilm structure after changing the hydrodynamic conditions ranged between 1 and 3 weeks.
机译:在长期的实验中,在生物膜管式反应器中培养了异养生物膜。在生物膜培养期间,葡萄糖的底物负载保持恒定,而流体动力学条件逐步改变。为了描述在这些变化的流动条件下生物膜结构的行为,用氧气微电极研究了在本体/生物膜界面和生物膜内部的传质和传输。此外,生物膜密度用于描述流体力学条件改变前后的生物膜致密性。获得的结果表明,生物膜密度以及基质通量随着本体相中流速的降低而降低。另外,氧浓度分布的斜率减小并且浓度边界层的厚度增加。另一方面,增加本体相中的流速导致较高的生物膜密度和较高的最大底物通量。生物膜表面变得更加均匀,并且浓度边界层的厚度减小。改变水动力条件后,适应生物膜结构的时间为1至3周。

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