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Hybrid MF and membrane bioreactor process applied towards water and indigo reuse from denim textile wastewater

机译:MF和膜生物反应器混合工艺应用于牛仔布纺织废水中的水和靛蓝回用

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This work investigates the application of a microfiltration (MF)-membrane bioreactor (MBR) hybrid process for textile dyeing process wastewater reclamation. The indigo blue dye was efficiently retained by the MF membrane (100%), which allows its recovery from the concentrate stream. MF promotes 100% of colour removal, and reduces the chemical oxygen demand (COD) and conductivity by about 65% and 25%, respectively, and improves the wastewater biodegradability. MF flux decline was mostly attributed to concentration polarization and the chemical cleaning was efficient enough to recover initial hydraulic resistance. The MBR provides to be a stable process maintaining its COD and ammonia removal efficiency (73% and 100%, respectively) mostly constant throughout and producing a permeate that meets the reuse criteria for some industry activities, such as washing-off and equipment washdown. The use of an MF or ultrafiltration (UF) membrane in the MBR does not impact the MBR performance in terms of COD removal. Although the membrane of MBR-UF shows permeability lower than MBR-MF membrane, the UF membrane contributes to a more stable operation in terms of permeability.
机译:这项工作调查了微滤(MF)-膜生物反应器(MBR)混合工艺在纺织印染废水回收中的应用。靛蓝染料被MF膜(100%)有效保留,从而可以从浓缩物流中回收。 MF促进100%的脱色,并分别减少约65%和25%的化学需氧量(COD)和电导率,并提高了废水的生物降解性。 MF通量下降主要归因于浓度极化,化学清洗的效率足以恢复初始的水力阻力。 MBR提供了一个稳定的过程,可保持其COD和氨的去除效率(分别为73%和100%)在整个过程中保持恒定,并产生满足某些行业活动(如冲洗和设备冲洗)再使用标准的渗透液。在MBR中使用MF或超滤(UF)膜不会影响MBR在去除COD方面的性能。尽管MBR-UF膜显示出比MBR-MF膜低的渗透率,但是UF膜在渗透率方面有助于更稳定的操作。

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