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Nitrogen removal in an oxidation ditch

机译:氧化沟中的氮去除

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The aim of this study is to obtain a good description of nitrogen removal in a full scale oxidation ditch of 1300 m3 for later optimization. Different Data are collected and exploitation chart of this WWTP are used to analyze the working conditions. An intensive measuring campaign was investigated to describe the dynamic behavior. Different concentrations of nitrogen component are measured in the inlet and outlet of WWTP with a step sampling of an hour during 8 hours of working. In the same time and with the same frequency, soluble COD is measured at inlet and outlet. To observe gradient concentrations in the ditch, 10 samples were done at various point of the ditch. Ammonia, nitrate, nitrite and dissolved oxygen are measured. ASM1 model is used to describe biological removal of organic and nitrogen removal. Data collection is necessary, for parameter implementation in the model for simulating oxidation ditch working and for calibration and validation of this model. Inert soluble Si and soluble fraction of influent COD was calculated from data collected. Soluble COD is about 35% of total COD and Si was quantified to 29% of soluble COD.
机译:这项研究的目的是对1300 m3的全尺寸氧化沟中的氮去除进行良好的描述,以进行后续优化。收集不同的数据,并使用该污水处理厂的开采图来分析其工作条件。调查了一个密集的测量活动,以描述动态行为。在WWTP的进口和出口处测量了不同浓度的氮成分,并在8小时的工作时间内进行了一个小时的分步采样。在相同的时间和相同的频率下,在进口和出口处测量可溶性COD。为了观察沟渠中的梯度浓度,在沟渠的各个点进行了10个采样。测量氨,硝酸盐,亚硝酸盐和溶解氧。 ASM1模型用于描述生物去除有机物和氮的去除。数据收集对于模型中参数实现以模拟氧化沟工作以及对该模型进行校准和验证是必不可少的。从收集的数据中计算出惰性的可溶性Si和进水COD的可溶性分数。可溶性COD约占总COD的35%,Si定量为可溶性COD的29%。

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