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Effectiveness of flow stabilization in small-scale wastewater treatment facilities

机译:小型废水处理设施中流量稳定的有效性

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Household type Johkasous which have a flow stabilization, function were surveyed on their performance. The water level, flow velocity and SS were measured after the maximum flow entering the anaerobic filter chamber with or without flow stabilization operation. In operation without the flow stabilization, the flow peak directly reached the biofiltration chamber and the flow rate kept at 1 cm/sec during 3-4 min in the connection baffle between the two anaerobic chambers. This suggested the possibility of sludge transfer from the first anaerobic chamber. Moreover the increase of SS in the second anaerobic chamber indicated sludge transfer from the second anaerobic chamber to the biofiltration chamber. In contrast, in operation with flow stabilization the relaxation of the water flow in the second anaerobic chamber and the biofilm chamber was verified. By the increase of the water level in the first anaerobic chamber, the flow stabilization performance was satisfactorily obtained. A model describing the change of the water level was developed and the calculated values and the measured value agreed well. The model will be useful in the design of the flow stabilization function.
机译:调查了具有流动稳定功能的家用型Johkasous的性能。在有或没有流量稳定操作的情况下,进入厌氧滤池的最大流量后,测量水位,流速和SS。在没有流量稳定的操作中,流量峰值直接到达生物过滤室,并且在两个厌氧室之间的连接挡板中,流速在3-4分钟内保持在1 cm / sec。这表明有可能从第一个厌氧室转移污泥。此外,第二厌氧室中SS的增加表明污泥从第二厌氧室转移至生物过滤室。相反,在稳定流动的操作中,证实了第二厌氧室和生物膜室中水流的松弛。通过增加第一厌氧室中的水位,令人满意地获得了流动稳定性能。建立了描述水位变化的模型,计算值与测量值吻合良好。该模型将在流动稳定功能的设计中有用。

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