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首页> 外文期刊>Journal of environmental engineering and science >Heterogeneous modeling of an anaerobic sequencing batch biofilm reactor (ASBBR)
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Heterogeneous modeling of an anaerobic sequencing batch biofilm reactor (ASBBR)

机译:厌氧测序分批生物膜反应器(ASBBR)的异构建模

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摘要

The objective of this study was to estimate the first-order intrinsic kinetic constant (k_1) and the liquid-phase mass transfer coefficient (k_c) in a bench-scale anaerobic sequencing batch biofilm reactor (ASBBR) fed with glucose. A dynamic heterogeneous mathematical model, considering two phases (liquid and solid), was developed through mass balances in the liquid and solid phases. The model was adjusted to experimental data obtained from the ASBBR applied for the treatment of glucose-based synthetic wastewater with approximately 500 mg L~(-1) of glucose, operating in 8 h batch cycles, at 30 ℃ and 300 rpm. The values of the parameters obtained were 0.8911 min~(-1) for k_1 and 0.7644 cm min"1 for k_c. The model was validated utilizing the estimated parameters with data obtained from the ASBBR operating in 3 h batch cycles, with a good representation of the experimental behavior. The solid-phase mass transfer flux was found to be the limiting step of the overall glucose conversion rate.
机译:这项研究的目的是估计在喂食葡萄糖的台式厌氧测序批处理生物膜反应器(ASBBR)中的一阶固有动力学常数(k_1)和液相传质系数(k_c)。通过考虑液相和固相的质量平衡,建立了一个考虑两相(液相和固相)的动态异构数学模型。将该模型调整为适用于ASBBR的实验数据,该ASBBR用于处理含约500 mg L〜(-1)葡萄糖的葡萄糖基合成废水,在30℃和300 rpm下以8 h的批处理周期运行。对于k_1,所获得的参数值为0.8911 min〜(-1),对于k_c,所获得的参数值为0.7644 cm min“ 1。使用从以3 h批处理周期运行的ASBBR获得的数据估计的参数对模型进行了验证,可以很好地表示发现固相传质通量是总葡萄糖转化率的限制步骤。

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