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Effectiveness of Nitrification and Denitrification Processes in Biofilters Treating Wastewater from De-Icing Airport Runways

机译:生物滤池处理除冰机场跑道废水的硝化和反硝化过程的有效性

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The basic factors determining the efficiency of the removal of nitrogen and carbon compounds from airport wastewater containing de-icing agents are low temperature and the C/N ratio (carbon to nitrogen ratio). Biofilm reactors (biofilters) create better conditions for nitrification and denitrification than suspended biomass reactors. The scope of the study included determination of the influence of the C/N ratio in the wastewater on nitrification, denitrification and organic compound removal in biofilm reactors depending on the temperature. The experiment was performed in 24 circular laboratory biofilters with LECA (Light Expanded Clay Aggregates) filling. The study was divided into three series differing in organic carbon loading. In each series, carried out at the same hydraulic retention time, biofilters were operated at 25, 8, 4 or 0 °C. The study showed the effective removal of nitrogen compounds across a very wide temperature range. The applied filling and properly selected operating parameters of the reactors resulted in effective simultaneous nitrification and denitrification. The highest efficiency of nitrogen removal at 0 °C (34.57 ± 4.54%) was obtained at the C/N ratio of 0.5 gC/gN. The efficiency of denitrification (the lowest at the temperature of 0 °C) increased as the temperature and C/N ratio increased in the wastewater.
机译:决定从含除冰剂的机场废水中去除氮和碳化合物效率的基本因素是低温和C / N比(碳氮比)。生物膜反应器(生物过滤器)比悬浮生物质反应器创造了更好的硝化和反硝化条件。研究范围包括根据温度确定废水中C / N比对生物膜反应器中硝化,反硝化和有机化合物去除的影响。该实验是在24个圆形实验室生物滤池中进行的,其中装有LECA(轻质粘土聚集体)填充物。该研究分为三个系列,每个系列的有机碳含量不同。在每个系列中,在相同的水力停留时间下进行的生物滤池均在25、8、4或0°C下运行。研究表明,在很宽的温度范围内都能有效去除氮化合物。所施加的填充物和反应器的适当选择的操作参数导致有效同步硝化反硝化。在0.5 gC / gN的C / N比下,在0°C时,脱氮效率最高(34.57±4.54%)。脱氮效率(温度为0°C时最低)随着废水中温度和C / N比的增加而增加。

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