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MATHEMATICAL MODEL FOR SIZING COMBINED NITRIFICATION AND PRE-DENITRIFICATION ACTIVATED SLUDGE SYSTEMS

机译:联合硝化和预脱氮活性污泥系统的数学模型

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Two mathematical steady-state models for sizing single activated sludge systems aimed at nitrogen and organics removal from wastewater are proposed. The attention is focused on the combined nitrification system and the pre-denitrification system, considering three (soluble and particulate biodegradable organic matter and ammonia nitrogen) and four (the above cited and nitrate nitrogen) substrates, respectively. Growth and decay of two groups of bacteria (heterotrophic and autotrophic) are taken into account. If the influent flow composition and the kinetic parameters are known and the effluent nitrogen concentration is fixed, both models give explicit expressions of the volumes of the biological reactors. Moreover, the pre-denitrification model makes it possible to define a priori the applicability of the system for a particular wastewater. Model applications show that the nitrification reactor volume increases in the case of a higher influent organic load or to achieve a higher nitrogen ammonia removal efficiency. A smaller denitrification volume is required to face a higher influent organic load. A sensitivity analysis on the kinetic parameters shows an important influence of the maximum ammonia nitrogen removal rate and the ratio between the decay rates of heterotrophic and autotrophic biomass on the nitrification reactor volume.
机译:提出了两个数学稳态模型,用于确定单一活性污泥系统的大小,目的是从废水中去除氮和有机物。注意力集中在组合硝化系统和预脱硝系统上,分别考虑了三种(可溶和颗粒状可生物降解的有机物和氨氮)和四种(上述和硝态氮)底物。考虑了两组细菌(异养和自养)的生长和衰减。如果已知进水流量组成和动力学参数,并且出水氮浓度是固定的,则这两个模型都可以明确表示生物反应器的体积。此外,预脱硝模型使得可以事先定义系统对特定废水的适用性。模型应用表明,在较高的进水有机负荷或达到较高的氮氨去除效率的情况下,硝化反应器的体积会增加。需要较小的反硝化体积以面对较高的进水有机负荷。动力学参数的敏感性分析表明,最大氨氮去除率以及异养和自养生物质的腐烂率之比对硝化反应器体积的重要影响。

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