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Modeling of the denitrification/anaerobic digestion process of salmon fishery wastewater in a biofilm tubular reactor

机译:生物膜管式反应器中鲑鱼渔业废水反硝化/厌氧消化过程的建模

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The literature has paid scarce attention to the modeling of the denitrification-anaerobic digestion process in packed bed biofilm tubular reactors used to treat wastewater. The present study obtained a steady-state model for industrial salmon fishery wastewater treatment in a biofilm tubular reactor, including pH as a variable and the effect of biomass on hydrolysis. The axial profile of the reactor components and process efficiency were predicted with deviations below 6%. The optimal operating zone for the process was found at hydraulic retention time (HRT) > 1.5 d and inlet protein concentration (S_(prot,0)) < 3000 mg TOCL~(-1). Based on our results, we concluded that the removal of organic matter and nitrogen compounds depended mainly on HRT. The effluent pH was mainly affected by the C/N ratio, where a decrease increases pH. Organic matter removal was related with the anaerobic digestion process, while denitrification influenced mostly nitrate and nitrite removal.
机译:文献很少关注用于处理废水的填充床生物膜管式反应器中反硝化-厌氧消化过程的建模。本研究获得了在生物膜管式反应器中处理工业鲑鱼渔业废水的稳态模型,包括pH作为变量以及生物量对水解的影响。预测反应器组件的轴向轮廓和工艺效率偏差低于6%。在水力停留时间(HRT)> 1.5 d和入口蛋白质浓度(S_(prot,0))<3000 mg TOCL〜(-1)时发现了该工艺的最佳操作区。根据我们的结果,我们得出结论,去除有机物和氮化合物主要取决于HRT。废水的pH值主要受C / N比的影响,其中C / N的降低会增加pH值。有机物的去除与厌氧消化过程有关,而反硝化作用主要影响硝酸盐和亚硝酸盐的去除。

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