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首页> 外文期刊>Journal of environmental engineering and science >Effect of media volume on mixing of biological aerated filters
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Effect of media volume on mixing of biological aerated filters

机译:培养基体积对曝气生物滤池混合的影响

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Effect of reduced media volume on the mixing of biological aerated filters (BAF) was quantitatively determined. The degree of mixing was evaluated based on Reynolds numbers (Re) while the nonideality of the flow was assessed from information of residence time distribution. At HRTs of 1411, 1111, 781 and 581 min and their, respectively, approximate OLRs of 2, 3, 4, and 6 kg COD·m~(-3)d~(-1), the Re in the partial-bed were 40300, 36100, 25500, and 40400, respectively, whilst those of the full-bed were 19500, 20500, 11700, and 26400. Porosity of the BAF is a bed characteristic resulting from the balance between the effect of biomass accumulation due to growth and biomass loss due to shear stress, arising from increased organic loadings, gas flow, and increased upflow velocity. The number of tanks, calculated from the residence time distribution data, is either 1 or 2 (rounded up to an integer). This indicates the occurrence of a completely mixed pattern inside both reactors.
机译:定量确定减少的介质体积对生物曝气滤池(BAF)混合的影响。基于雷诺数(Re)评估混合度,同时根据停留时间分布信息评估流动的非理想性。在HRT为1411、1111、781和581 min时,它们的OLR分别为2、3、4和6 kg COD·m〜(-3)d〜(-1),部分床层中的Re分别为40300、36100、25500和40400,而全床的分别为19500、20500、11700和26400。BAF的孔隙度是床的特征,其归因于生长对生物量积累的影响。由于增加的有机负荷,气流和上升的流速引起的剪切应力导致生物量损失。根据停留时间分布数据计算出的储罐数量为1或2(四舍五入为整数)。这表明在两个反应器内都发生了完全混合的模式。

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