Gillot S, Héduit A
Hydrosystems and Bioprocesses Research Unit, Cemagref, Parc de Tourvoie, BP 44, F-92163 Antony Cedex, France.
Water Sci Technol. 2008;57(8):1265-9. doi: 10.2166/wst.2008.222.
The objective of this work was to analyse the impact of different geometric and operating parameters on the alpha factor value for fine bubble aeration systems equipped with EPDM membrane diffusers. Measurements have been performed on nitrifying plants operating under extended aeration and treating mainly domestic wastewater. Measurements performed on 14 nitrifying plants showed that, for domestic wastewater treatment under very low F/M ratios, the alpha factor is comprised between 0.44 and 0.98. A new composite variable (the Equivalent Contact Time, ECT) has been defined and makes it possible for a given aeration tank, knowing the MCRT, the clean water oxygen transfer coefficient and the supplied air flow rate, to predict the alpha factor value. ECT combines the effect on mass transfer of all generally accepted factors affecting oxygen transfer performances (air flow rate, diffuser submergence, horizontal flow).
这项工作的目的是分析不同几何参数和运行参数对配备三元乙丙橡胶(EPDM)膜曝气器的微气泡曝气系统的α因子值的影响。已对在延时曝气条件下运行且主要处理生活污水的硝化处理厂进行了测量。在14个硝化处理厂进行的测量表明,对于在极低F/M比下处理生活污水的情况,α因子在0.44至0.98之间。已定义了一个新的复合变量(等效接触时间,ECT),对于给定的曝气池,在已知平均细胞停留时间(MCRT)、清水氧传递系数和供应空气流量的情况下,该变量能够预测α因子值。ECT综合了所有影响氧传递性能的公认因素(空气流量、曝气器浸没深度、水平流)对传质的影响。