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Full-scale modelling of a food industry wastewater treatment plant in view of process upgrade

机译:考虑到过程升级,对食品工业废水处理厂进行全面建模

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A mathematical model for the aerobic part of a food industry wastewater treatment plant(WWTP)was developed and used to assess possible upgrade options.This aerobic part of the WWTP treats two streams.The direct stream is treated in an anaerobic reactor after pre-treatment.The bypass stream is sent directly from the production facility to the aerobic part of the WWTP,without anaerobic treatment.The plant upgrade consists of installing additional volume for nitrification and denitrification,a so-called post-denitrification.An influent characterization translated the available influent measurements into data useful for modelling.It was shown by simulations with the developed model that the physical plant upgrade will result in a 99% decrease in effluent ammonium concentration.In addition a 5% decrease in COD concentration was obtained.However,the effluent nitrate concentration and total nitrogen increased drastically because of the upgrade.Additional control actions,more specifically the increase of the bypass flow rate,were necessary for decreasing this effluent total nitrogen concentration.This was also demonstrated with the developed model.
机译:针对食品工业废水处理厂(WWTP)的好氧部分开发了数学模型,并用于评估可能的升级方案。该WWTP的好氧部分处理两条流。直接流经预处理后在厌氧反应器中进行处理。旁路流直接从生产设备发送到污水处理厂的好氧部分,无需进行厌氧处理。工厂升级包括安装额外的硝化和反硝化容量,即所谓的后反硝化。将进水的测量数据转化为可用于建模的数据。通过开发的模型进行的模拟显示,物理工厂升级将使废水中的铵浓度降低99%,此外还获得了COD浓度的5%降低。由于升级,硝酸盐浓度和总氮急剧增加。其他控制措施,更具体地说是增加旁路流量是降低此废水总氮浓度所必需的。开发的模型也证明了这一点。

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