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Effect of air flow rate and C/N ratio on biological nitrogen removal through the CANON process treating reject water

机译:空气流量和C / N比对通过CANON处理废水处理生物脱氮的影响

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The CANON process is a promising method for nitrogen removal in wastewaters with low organic carbon content like reject water. This study investigated the effect of important factors for optimization of the CANON process through inhibition of nitrite-oxidizing bacteria (NOB). In the acclimation period, complete ammonium removal and 43.3% total N removal were obtained at hydraulic retention time of 12 h, temperature of 30 degrees C +/- 0.5 degrees C and DO equal to 7-9 mg/L. The effects of air flow rate (AFR) (representative of DO), SRT and C/N were evaluated. Air flow rate was the most important factor for controlling the process, but the effect of SRT was negligible. When AFR was increased from 100 to 500 mL/min, both ammonium removal efficiency (33-43% to 81-83%) and nitrite accumulation (nitritation, 40 mgN/L to 100-120 mgN/L) were increased, but with increasing AFR to 1000 mL/min only ammonium removal efficiency was increased and because of better condition (high DO) for NOBs, nitritation was decreased. C/N had an effect like AFR of 1000 and only increased ammonium removal efficiency and total N removal. With increasing AFR and C/N, both OUR and AUR were increased, but SVI was decreased.
机译:CANON工艺是一种用于去除有机碳含量低的废水(如废水)中的氮的有前途的方法。这项研究调查了通过抑制亚硝酸盐氧化细菌(NOB)来优化CANON工艺的重要因素的影响。在适应期,在水力停留时间为12小时,温度为30摄氏度+/- 0.5摄氏度,溶解氧等于7-9毫克/升的情况下,可以完全去除铵盐并去除43.3%的总氮。评估了空气流速(AFR)(以DO表示),SRT和C / N的影响。空气流量是控制过程的最重要因素,但SRT的影响可忽略不计。当AFR从100 mL / min增加到500 mL / min时,除铵效率(33-43%增加至81-83%)和亚硝酸盐积累(硝化作用,从40 mgN / L增加到100-120 mgN / L)均增加,但是将AFR增加到1000 mL / min只会提高铵的去除效率,并且由于NOB的条件更好(DO较高),因此亚硝化减少了。 C / N具有类似于AFR 1000的作用,并且仅提高了铵去除效率和总N去除率。随着AFR和C / N的增加,OUR和AUR均增加,但SVI减少。

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