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Simple prediction of oxygen penetration depth in biofilms for wastewater treatment

机译:废水处理生物膜中氧气渗透深度的简单预测

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摘要

The distribution of oxygen in a biofilm is very important in oxidation processes such as simultaneous carbon oxidization and nitrification using a fluidized bed biofilm reactor.In this study,attention was paid to biofilm thickness and biofilm density which significantly affect the oxygen distribution in biofilms.Using an oxygen microelectrode that we fabricated,the oxygen distribution in biofilms of different thicknesses was measured,and subsequently oxygen penetration depth and ratio were determined.As a result,oxygen penetration ratio decreased gradually with increasing biofilm thickness.Moreover,the kinetic parameters of a Monod-type reaction and the effective diffusion coefficient were computed based on the oxygen distribution in the biofilms.Using the obtained biofilm dry density,kinetic parameters and effective diffusion coefficient,the oxygen distribution in biofilms was successfully fitted to the results of a microelectrode analysis.The oxygen distribution was simulated by the finite difference method using the kinetic parameters and effective diffusion coefficient.Therefore,oxygen penetration ratio can be predicted at various biofilm thicknesses and oxygen concentrations in a bulk solution.
机译:生物膜中氧气的分布在氧化过程中非常重要,例如使用流化床生物膜反应器同时进行碳氧化和硝化。在这项研究中,注意生物膜厚度和生物膜密度会显着影响生物膜中的氧气分布。我们制作了一个氧气微电极,测量了不同厚度的生物膜中的氧气分布,然后确定了氧气的渗透深度和渗透率。结果,氧气渗透率随着生物膜厚度的增加而逐渐降低。此外,Monod的动力学参数根据生物膜中的氧分布计算反应类型和有效扩散系数。利用获得的生物膜干密度,动力学参数和有效扩散系数,将生物膜中的氧分布成功地拟合到微电极分析的结果中。氧分布由通过使用动力学参数和有效扩散系数的有限差分法。因此,可以预测在各种生物膜厚度和本体溶液中的氧气浓度下的氧气渗透率。

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