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Effect of upflow velocity on the performance of an inclined plate membrane bioreactor treating municipal wastewater

机译:上流速对斜板膜生物反应器处理城市污水性能的影响

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An inclined plate membrane bioreactor (iPMBR) was introduced to meet the challenge of handling high mixed liquor suspended solids when operating at long sludge retention times. During the first 407 days of operation, the iPMBR was able to rezone more sludge (1.5-10.5 times greater) in its upstream, anoxic tank compared to its downstream, aerobic tank. This could extend membrane filtration by diverting most of the sludge from the aerobic zone. During this period, the upflow velocities through the inclined plates of the anoxic tank ranged from 2.3 × 10~(-4) to 7.7 × 10~(-4) m/s. After Day 407, the operating conditions were changed to determine whether the iPMBR would fail to create a sludge concentration difference between its two tanks. When the upflow velocity was increased to 1.8 × 10~(-3) m/s, the sludge concentration difference between the two zones was removed. This indicated that the upflow velocity had increased sufficiently to overcome the settling velocities of most flocs, resulting in more solids being carried from the anoxic to the aerobic tank. For the configuration of this iPMBR, operating at flow rates where the upflow velocity through the inclined plates was less than 1.0 × 10~(-3) m/s would be necessary to keep a significant sludge concentration difference between its two zones.
机译:引入斜板膜生物反应器(iPMBR)以应对在长的污泥保留时间下运行时处理高混合液悬浮固体的挑战。在运行的前407天,iPMBR能够将其上游缺氧池中的污泥重新分配(比其下游有氧池中的污泥多1.5-10.5倍)。通过将大部分污泥从好氧区转移出去,可以延长膜过滤的速度。在此期间,通过缺氧槽斜板的上升速度为2.3×10〜(-4)至7.7×10〜(-4)m / s。在第407天之后,更改了运行条件以确定iPMBR是否无法在其两个储罐之间产生污泥浓度差。当上流速度提高到1.8×10〜(-3)m / s时,两个区域之间的污泥浓度差异被消除。这表明上升速度已经增加到足以克服大多数絮凝物的沉降速度,导致更多的固体从缺氧槽运到需氧槽。对于这种iPMBR的配置,必须要在通过斜板的上流速度小于1.0×10〜(-3)m / s的流速下运行,以在其两个区域之间保持明显的污泥浓度差异。

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