Effectiveness factor for a hollow-fiber biofilm reactor at maximum substrate consumption

Abdurrahman Tanyolaç, Haluk Beyenal
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引用次数: 11

Abstract

In this work, a model was proposed to evaluate the effectiveness factor of a hollow-fiber biofilm reactor (HFBR) for optimum biofilm densities, to achieve a maximum substrate consumption rate. The effectiveness factor was calculated for selected lumen concentrations using a cell-density-dependent effective diffusion coefficient, Monod biokinetics adapted for maintenance, and a minimum substrate concentration concept for biofilm activity in the model, a different approach from that in the literature. The solution of the continuity equation revealed an optimum biofilm density and active biofilm thickness, corresponding to a maximum substrate consumption rate within the biofilm. The optimum biofilm density decreased with increasing lumen substrate concentrations, while the maximum substrate consumption rate and active biofilm thickness parabolically increased, as experimentally observed in the literature. Meanwhile, an interesting descending trend of the effectiveness factor at optimum biofilm density was observed at low lumen substrate concentration and biofilm thickness values for different radial flow rates.

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最大底物消耗时中空纤维生物膜反应器的有效系数
在这项工作中,提出了一个模型来评估中空纤维生物膜反应器(HFBR)对最佳生物膜密度的有效性因子,以实现最大的底物消耗率。利用细胞密度依赖的有效扩散系数、适合维持的Monod生物动力学以及模型中生物膜活性的最低底物浓度概念(与文献中不同的方法),计算了选定的管腔浓度的有效因子。连续性方程的解得到了最佳生物膜密度和活性生物膜厚度,对应于生物膜内最大底物消耗率。根据文献实验观察,最佳生物膜密度随着管腔底物浓度的增加而降低,而最大底物消耗率和活性生物膜厚度呈抛物线型增加。同时,在不同径向流速下,低腔内底物浓度和低生物膜厚度时,最佳生物膜密度下的有效因子呈下降趋势。
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