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ASSOCIATION OF A UASB REACTOR AND A SUBMERGED AERATED BIOFILTER FOR DOMESTIC SEWAGE TREATMENT

机译:UASB反应器和潜水曝气生物滤池的组合,用于家庭污水处理

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This paper presents exploratory results on the association of an Upflow Anaerobic Sludge Blanket - UASB reactor (46 L) and a submerged aerated biofilter - BF (6.3 L) for domestic sewage treatment. The experimental period extended for 322 days, during which the hydraulic and organic loads were gradually increased in both reactors. Having the UASB as a reference, the following hydraulic loads were tested: 0.4 m~3/m~2.h (θ=16 h); 0.6m~3/m~2.h (θ = 10h); 0.8 m~3/m~2.h (θ = 8 h); 1.0 m~3/m~2.h (θ = 6 h) and 1.45 m~3/m~2.h (9 = 4h). During the experiments carried out with the UASB reactor operating at a hydraulic detention time of 6 hours, related to a θ <11' in the granular media of the BF, the mean removal efficiency in terms of SS, BOD5 and COD, in both reactors, were respectively 94%, 96% and 91%. The final effluent, related to the BF effluent, presented the following mean characteristics: SS = 10 mg/L, BOD_5 = 9 mg/L and COD = 38 mg/L. The results obtained in the last phase of the experiments, when the hydraulic load in the UASB reactor reached 1.45 m~3/m~2.h (θ = 4h), were similar to those obtained in the previous phase. These results demonstrate that submerged aerated biofilters can be considered a viable alternative for the post-treatment of effluents from UASB reactors treating domestic sewage. These reactors are capable of being operated with very short hydraulic detention times.
机译:本文介绍了用于生活污水处理的上流厌氧污泥毯子-UASB反应器(46 L)和潜水式曝气生物滤池-BF(6.3 L)的探索性结果。实验期延长了322天,在此期间,两个反应堆的水力和有机负荷逐渐增加。以UASB为参考,测试了以下液压载荷:0.4 m〜3 / m〜2.h(θ= 16 h); 0.6m〜3 / m〜2.h(θ= 10h); 0.8 m〜3 / m〜2.h(θ= 8 h); 1.0 m〜3 / m〜2.h(θ= 6 h)和1.45 m〜3 / m〜2.h(9 = 4h)。在UASB反应器在水力滞留时间为6小时的条件下进行的实验中,与高炉颗粒介质中的θ<11'有关,两个反应器的平均去除效率均以SS,BOD5和COD表示分别为94%,96%和91%。与高炉废水有关的最终废水具有以下平均特性:SS = 10 mg / L,BOD_5 = 9 mg / L,COD = 38 mg / L。在最后阶段的实验中,当UASB反应器中的水力负荷达到1.45 m〜3 / m〜2.h(θ= 4h)时,获得的结果与上一阶段的结果相似。这些结果表明,对于用于处理生活污水的UASB反应器的废水进行后处理,可以考虑使用潜水式曝气生物滤池。这些反应堆能够以非常短的水力停留时间运行。

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