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An integrated mathematical model for chemical oxygen demand (COD) removal in moving bed biofilm reactors (MBBR) including predation and hydrolysis

机译:用于移动床生物膜反应器(MBBR)中化学需氧量(COD)去除的集成数学模型,包括捕食和水解

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An integrated mathematical model is proposed for modelling a moving bed biofilm reactor (MBBR) for removal of chemical oxygen demand (COD) under aerobic conditions. The composite model combines the following: (i) a one-dimensional biofilm model, (ii) a bulk liquid model, and (iii) biological processes in the bulk liquid and biofilm considering the interactions among autotrophic, heterotrophic and predator microorganisms. Depending on the values for the soluble biodegradable COD loading rate (SCLR), the model takes into account a) the hydrolysis of slowly biodegradable compounds in the bulk liquid, and b) the growth of predator microorganisms in the bulk liquid and in the biofilm. The integration of the model and the SCLR allows a general description of the behaviour of COD removal by the MBBR under various conditions. The model is applied for two in-series MBBR wastewater plant from an integrated cellulose and viscose production and accurately describes the experimental concentrations of COD, total suspended solids (TSS), nitrogen and phosphorous obtained during 14 months working at different SCLRs and nutrient dosages. The representation of the microorganism group distribution in the biofilm and in the bulk liquid allow for verification of the presence of predator microorganisms in the second reactor under some operational conditions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了一个综合数学模型,用于对有氧条件下去除化学需氧量(COD)的移动床生物膜反应器(MBBR)进行建模。该复合模型结合了以下内容:(i)一维生物膜模型,(ii)整体液体模型,以及(iii)考虑自养微生物,异养微生物和捕食者微生物之间的相互作用的大体积液体和生物膜中的生物过程。根据可溶性可生物降解的COD负载率(SCLR)的值,该模型考虑a)散装液体中缓慢可生物降解的化合物的水解,b)散装液体和生物膜中捕食微生物的生长。模型和SCLR的集成允许对MBBR在各种条件下去除COD的行为进行一般描述。该模型应用于纤维素和粘胶生产一体化的两个串联MBBR废水处理厂,并准确描述了在不同SCLR和营养剂量下14个月内获得的COD,总悬浮固体(TSS),氮和磷的实验浓度。在生物膜中和在本体液体中的微生物基团分布的表示允许在某些操作条件下验证第二反应器中捕食性微生物的存在。 (C)2016 Elsevier Ltd.保留所有权利。

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