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Effect of nitrite, limited reactive settler and plant design configuration on the predicted performance of simultaneous C/N/P removal WWTPs

机译:亚硝酸盐,有限的反应沉降器和工厂设计配置对同时去除C / N / P废水处理厂的预期性能的影响

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摘要

This paper describes a modelling study where five new benchmark plant design configurations for biological nutrient removal (A2/O, UCT, JHB, MUCT and BDP-5 stage) are simulated and evaluated under different model assumptions. The ASM2d including electron dependent decay rates is used as the reference model (A1). The second case (A2) adds nitrite as a new state variable, describing nitrification and denitrification as two-step processes. The third set of models (A3 and A4) considers different reactive settlers types (diffusion-limited/non limited). This study analyses the importance of these new model extensions to correctly describe the nitrification behaviour and the carbon source competition between ordinary heterotrophic organisms (OHO) and polyphosphate accumulating organisms (PAO) under certain operation conditions. The economic and environmental aspects when meeting the P discharge limits by adding an external carbon source are also studied.
机译:本文描述了一项建模研究,其中在不同的模型假设下,模拟并评估了五个用于生物营养去除的新基准工厂设计配置(A2 / O,UCT,JHB,MUCT和BDP-5阶段)。包括取决于电子的衰减速率的ASM2d用作参考模型(A1)。第二种情况(A2)将亚硝酸盐添加为新的状态变量,将硝化和反硝化描述为两步过程。第三组模型(A3和A4)考虑了不同的反应沉降器类型(扩散限制/非限制)。这项研究分析了这些新模型扩展的重要性,以正确描述特定操作条件下普通异养生物(OHO)与聚磷酸盐累积生物(PAO)之间的硝化行为和碳源竞争。还研究了通过添加外部碳源满足P排放限值时的经济和环境方面。

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