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Denitrification rate and carbon source consumption in full-scale wastewater filtration

机译:全尺寸废水过滤中的反硝化率和碳源消耗

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In response to new demands for increased removal of nitrogen and phosphorus, the Henriksdal and Bromma treatment plants, with hydraulic loads of 283,000 and 148,000 m~3/d, respectively, built filtration steps as a final process step in the plants. The denitrification rates in a full-scale and in a pilot plant filter are calculated to 13.1 and 21.3g (NO_3+NO_2)-N/(m~3·h), respectively, in the total filter bed after 2.5-24.2 and 16.0-28.0 h of operational time, and 6.4 and 18.7 g (NO_3+NO_2)-N/(m~3·h), respectively, after 1.0 and 0.1-0.9 h of operational time. In composite samples, the denitrification rate in the total filter bed is 10-20 g (NO_3+NO_2)-N/(m~3·h) in the full-scale filter. The average values for k=ΔCOD_f/ΔC_T are 1.6 and around 3 in the total filter bed in steady state and in the beginning of the experiments, respectively, both in the full-scale and in the pilot plant study. The carbon source costs for reducing the concentration of nitrate nitrogen in the Bromma plant from 12 to 8 mg/l in the effluent are 117,400 EUR and 147,400 EUR with methanol and ethanol, respectively, as a carbon source.
机译:响应于对氮和磷去除的新要求,亨利克斯氏菌和铜磷治疗厂,分别为液压载荷为283,000和148,000 m〜3 / d,作为植物的最终工艺步骤。在2.5-24.2和16.0之后,在2.5-24.2和16.0之后,在2.5-24.2和16.0之后,分别以13.1和21.3g(NO_3 + NO_2)-N /(m〜3·h)计算为13.1和21.3g(nO_3 + no_2)-n /(m〜3·h) -28.0 h的操作时间和6.4和18.7g(no_3 + no_2)-n /(m〜3·h),分别在1.0和0.1-0.9小时之后的操作时间。在复合样品中,全滤床中的脱氮率在满量程过滤器中为10-20g(NO_3 + NO_2)-N /(M〜3·H)。 K =ΔCod_F/ΔC_T的平均值分别在稳态和实验开始时的总滤床中为1.6和约3,两者都在全规模和试验工厂研究中。在污水中从12至8mg / L中降低硝酸盐氮浓度的碳源成本为117,400欧元,分别为甲醇和乙醇作为碳源。

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