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Quantification of oxygen fluxes in a long gravity sewer

机译:长重力下水道中的氧气通量定量

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Quantification of the oxygen fluxes in the sewer system is at present the optimal methodology to obtain information about the influence of sewers on transformations and mass balances in the urban drainage system. However, the relative and absolute values of these fluxes are practically unknown. In this work, the oxygen fluxes were quantified experimentally in a full-scale aerobic main sewer. The sewer biofilm respiration was determined with an in situ flow cell, a method that has not been used before in the sewer. The surface reaeration was determined with a gas tracer method based on the inert, non-radio-active and non-toxic gas tracer sulphur hexafluoride. In addition, the wastewater biomass respiration rate was measured. The validity of the applied methods was verified with redundant oxygen balances over a 2-km-long section. Measurement campaigns under different hydrodynamic conditions showed that the relative contribution of the biofilm, the wastewater, the reaeration and the in- and outflow with the water, all contributed significantly. However, the absolute contributions varied extensively and depended especially on the discharge. The COD conversion in the sewer could be estimated from the aerobic activity. The aerobic total degradation in the study reach was 3%. However, when extrapolated to the entire sewer net of the catchment area with 5000 PE, the COD conversion was estimated as high as 30% of the dissolved COD during the night. This indicates that the wastewater composition at the treatment plant will be strongly affected by the sewer system.
机译:目前,对下水道系统中的氧气通量进行定量分析是获取有关下水道对城市排水系统中转换和质量平衡的影响的信息的最佳方法。但是,这些通量的相对和绝对值实际上是未知的。在这项工作中,在全尺寸好氧主污水管中对氧气通量进行了实验量化。下水道生物膜的呼吸是用原位流动池测定的,该方法以前从未在下水道中使用过。基于惰性,无放射性和无毒的气体示踪剂六氟化硫,用气体示踪法测定表面反应。另外,测量废水生物量呼吸速率。通过在2公里长的区域上使用多余的氧气平衡来验证所应用方法的有效性。在不同水动力条件下的测量活动表明,生物膜,废水,反应和与水的流入和流出的相对贡献均显着。但是,绝对贡献变化很大,尤其取决于放电。下水道中的COD转化率可通过有氧活动来估算。有氧总降解在研究范围内为3%。但是,当用5000 PE推断到集水区的整个下水道网时,夜间的COD转化率估计高达溶解的COD的30%。这表明污水处理系统将严重影响处理厂的废水成分。

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