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A MODEL FOR THE SIMULATION OF THE SHARON PROCESS: pH AS A KEY FACTOR

机译:沙龙过程的模拟模型:pH是关键因素

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The SHARON process allows partial nitrification of wastewaters with high ammonium content and, when coupled with the Anammox process, represents a more sustainable alternative for N-removal than a conventional nitrification-denitrification. In this work, a mathematical model describing a continuously aerated SHARON reactor is presented. Special attention was given to the pH, because it affects substrates availability and inhibition phenomena, implementing an algorithm for its calculation. Since ammonium-oxidizing and nitrite-oxidizing organisms are inhibited by their own substrates, ammonia and nitrous acid respectively, Haldane kinetics was used in both nitrification steps. A preliminary evaluation of the model using historical experimental data generated in a lab-scale SHARON reactor, fed with synthetic substrate, is also presented, corroborating that the quality of the obtained effluent is highly dependent on pH.
机译:SHARON工艺可将氨含量高的废水进行部分硝化,并且与Anammox工艺结合使用时,代表了比传统硝化-反硝化方法更可持续的脱氮替代方案。在这项工作中,提出了描述连续充气SHARON反应堆的数学模型。特别注意了pH值,因为它会影响底物的利用率和抑制现象,因此实现了一种计算算法。由于铵氧化生物和亚硝酸氧化生物分别受其自身的底物氨和亚硝酸抑制,因此在两个硝化步骤中均使用了Haldane动力学。还提供了使用在实验室规模的SHARON反应器中生成的历史实验数据(带有合成底物)对该模型进行的初步评估,这证明了所获得的流出物的质量高度依赖于pH值。

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