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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Effect of bubble hydrodynamic and chemical dosage on treatment of oily wastewater by Induced Air Flotation (IAF) process
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Effect of bubble hydrodynamic and chemical dosage on treatment of oily wastewater by Induced Air Flotation (IAF) process

机译:气泡气动力和化学剂量对诱导气浮法处理含油废水的影响

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The objective of this work is to study the treatment of oily wastewater containing anionic surfactant at Critical Micelle Concentration (CMC) by the Modified Induced Air Flotation (MIAF) process. MIAF, which is the combined process between the IAF process and the coagulation process, was applied and also compared with the Induced Air Flotation (IAF) and coagulation processes.The study has shown that the removal efficiency, considered in terms of COD, was related to the alum dosage, pH value and gas flow rate. Moreover, the interfacial area (a) obtained experimentally from the bubble hydrodynamic parameters (bubble size, bubble rising velocity, bubble formation frequency) and the velocity gradient (G) have been proven to be the important parameter for controlling the flotation process efficiency and operation cost. The simple proposed correlation, based on the a/G ratio, provides relatively a good coincidence between the experimental and predicted values of treatment efficiencies in this study.
机译:这项工作的目的是研究通过改性诱导气浮法(MIAF)处理临界胶束浓度(CMC)的含阴离子表面活性剂的含油废水。应用了IAF工艺和混凝工艺的组合工艺MIAF,并将其与诱导气浮法(IAF)和混凝工艺进行了比较。研究表明,从COD角度考虑,去除效率是相关的明矾剂量,pH值和气体流速。此外,从气泡水动力参数(气泡大小,气泡上升速度,气泡形成频率)和速度梯度(G)实验获得的界面面积(a)已被证明是控制浮选工艺效率和操作的重要参数。成本。基于a / G比的简单建议的相关性在本研究中提供了实验效率与实验效率预测值之间的相对较好的重合。

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