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Process intensification in wastewater treatment: oxygen transfer characterisation of a jet loop reactor for aerobic biological wastewater treatment

机译:废水处理中的工艺强化:用于好氧生物废水处理的射流回路反应器的氧转移特性

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The overall volumetric mass transfer coefficient (K_La) and the overall gas holdup (ε) were measured in a jet loop reactor (JLR) used for the intensive aerobic biological treatment of waste water. The process parameters and their ranges were: inlet water flow rate: 30 ≤ Q_L ≤ 70 l/min, inlet air flow rate; 4 ≤ Q_g ≤ 36 l/min. The ratio of water flow rates from the bottom of the reactor (Q_B) and the inlet water flow rate (Q_L) varied in the range 0.0 ≤ Q_B/Q_L ≤ 0.92. It was found that, both K_La, and ε increased with increasing Q_g. Up to a critical Q_g value, neither K_La nor ε varied with energy dissipation rate per unit volume, E/V, but beyond these Q_g values, K_La decreased while ε increased with increasing E/V. Water withdrawal from the bottom of the reactor in addition to that from the top, increased K_La up to 30% depending on the process conditions. Use of pure oxygen instead of air could also lead to increases in K_La up to 19%.
机译:在用于废水的强化需氧生物处理的射流回路反应器(JLR)中测量总体积传质系数(K_La)和总气体滞留率(ε)。工艺参数及其范围为:进水流量:30≤Q_L≤70 l / min,进风量; 4≤Q_g≤36 l / min。从反应器底部出来的水流量之比(Q_B)与进水流量(Q_L)之比在0.0≤Q_B / Q_L≤0.92的范围内变化。已经发现,K_La和ε都随着Q_g的增加而增加。达到临界Q_g值时,K_La和ε均不随单位体积能量耗散率E / V的变化而变化,但超过这些Q_g值,K_La减小,而ε随着E / V的增加而增加。除了从顶部的反应器底部排出的水以外,根据工艺条件,K_La最多可增加30%。使用纯氧代替空气也可能导致K_La升高高达19%。

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