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Modelling as a tool when interpreting biodegradation of micro pollutants in activated sludge systems

机译:在解释活性污泥系统中微污染物的生物降解时作为模型进行建模

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The aims of the present work were to improve the biodegradation of the endocrine disrupting micro pollutant, bisphenol A (BPA), used as model compound in an activated sludge system and to underline the importance of modelling the system. Previous results have shown that BPA mainly is degraded under aerobic conditions. Therefore the aerobic phase time in the BioDenitro process of the activated sludge system was increased from 50 % to 70 %. The hypothesis was that this would improve the biodegradation of BPA. Both the influent and the effluent concentrations of BPA in the experiment dropped significantly after increasing the aerobic time. From simulations with a growth-based biological/physical/chemical process model was concluded that although the simulated effluent concentration of BPA was independent of the influent concentration at steady-state, the observed drop in effluent concentrations probably was caused by either a larger specific biomass to influent BPA ratio, improved biodegradation related to the increased aerobic phase time, or a combination of the two. Thereby it was not possibly to determine if the increase in aerobic phase time improved the biodegradation of BPA. The work underlines the importance of combining experimental results with modelling when interpreting results from biodegradation experiments with fluctuating influent concentrations of micro pollutants.
机译:当前工作的目的是改善内分泌干扰微污染物双酚A(BPA)的生物降解性,该物质在活性污泥系统中用作模型化合物,并强调了对该系统进行建模的重要性。先前的结果表明,BPA主要在有氧条件下降解。因此,活性污泥系统BioDenitro过程中的好氧阶段时间从50%增加到70%。假设是这将改善BPA的生物降解。增加有氧时间后,实验中BPA的进水和出水浓度均显着下降。从基于生长的生物/物理/化学过程模型进行的模拟得出的结论是,尽管模拟的BPA废水浓度与稳态下的废水浓度无关,但观察到的废水浓度下降可能是由较大的比生物量引起的。与进水的BPA比率相比,改善的生物降解与有氧相时间的增加有关,或者两者结合。因此,不可能确定有氧相时间的增加是否改善了BPA的生物降解。这项工作强调了在解释生物降解实验的结果与进水微污染物浓度的波动时,将实验结果与建模相结合的重要性。

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