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Membrane-based microfiltration/electrodialysis hybrid process for the treatment of paper industry wastewater

机译:基于膜的微滤/电渗析混合工艺处理造纸工业废水

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In this research,the pilot plant of a hybrid microfiltration(MF)and electrodialysis(ED)system was designed,constructed and employed successfully to remove the color and contaminants of paper industry wastewater.Microfiltration module comprising of ceramic membrane was used at constant pressure as a pretreatment step for the ED pilot scale unit operation.The ED stack consisted of 11 cation-exchange and 10 anion-exchange membrane pairs.Tubular ceramic module was employed to pre-filter the wastewater at 60 deg C and ambient temperature.Electrodialysis was successfully applied for the treatment of paper industry effluent for the first time with MF as a pretreatment step.The combined hybrid process at the applied potential of 50 V showed a low content of total dissolved solids(TDS)of 546 mg/L,conductivity of 0.61 mS/cm,and chemical oxygen demand(COD)of less than 20 mg/L.The hybrid MF/ED module used in this research gave a recovery and reuse of more than 90% of original wastewater.The proposed pilot plant was found to be more advantageous,since the ceramic membrane module used could withstand higher temperature of the discharged effluent and given the permeate that is free from the suspended particles of colloidal nature.It is also evident from the results that the hybrid process is more efficient than the single unit process.
机译:本研究设计,建造并成功采用了混合微滤(MF)和电渗析(ED)系统的中试装置,以去除造纸工业废水的颜色和污染物。由陶瓷膜组成的微滤模块在恒压下用作ED中试规模装置运行的预处理步骤,ED叠层由11对阳离子交换膜和10对阴离子交换膜组成,采用管状陶瓷组件在60℃和环境温度下对废水进行预过滤,成功进行了电渗析MF作为预处理步骤首次用于造纸工业废水的处理。在50 V施加电势下的混合混合工艺显示总溶解固体(TDS)含量低,为546 mg / L,电导率为0.61 mS / cm,化学需氧量(COD)小于20 mg / L。本研究中使用的混合MF / ED模块可回收和再利用90%以上的原始废水。发现使用ed中试装置更为有利,因为所用的陶瓷膜组件可以承受排出的废水的较高温度,并且渗透液不含胶体性质的悬浮颗粒。从结果还可以看出,混合工艺比单单元过程更有效。

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