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Reclamation of printing effluents of a carpet manufacturing industry by membrane processes

机译:通过膜工艺回收地毯制造业的印刷废水

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The effluent from the print dying process of a carpet manufacturing industry was subjected to nanotiltration (NF) and ultrafiltration (UF) processes aiming at water reuse. Three alternatives were adopted; (i) NF, (ii) loose UF (MWCO 20,000 Da) followed by NF and (iii) tight UF (MWCO 1000 Da) followed by NE The separation performances and flux decline levels were compared for the detemination of the best process. Printing effluent was chemically precipitated using alum and fed to a lab-scale plate-and-frame membrane module under a trans-membrane pressure of 1.75 x 10(5) and 5.90 x 10(5) Pa (1.75 and 5.90 bar) for UF and NF processes, respectively. All the alternatives were tested in concentration mode of filtration where a volume reduction factor of up to 28.5 was achieved. The NF process provided very high separation performance for COD, color, turbidity, total solids and total hardness. The flux decline started at 16% and reached up to 31% at a volume reduction factor of 11.8. The loose and tight UF processes applied before NF to reduce this flux decline were not effective with a very severe flux decline of about 60% in both processes. The comparison resulted in a recommendation with single stage NF with adequate effluent characteristics. (c) 2005 Elsevier B.V. All rights reserved.
机译:地毯制造行业的印染过程中产生的废水经过了纳米倾斜(NF)和超滤(UF)工艺,旨在实现水的再利用。采用了三种选择; (i)NF,(ii)松散的UF(MWCO 20,000 Da),其次是NF,(iii)松散的UF(MWCO 1000 Da),其次是NE。比较了分离性能和通量下降水平,以确定最佳工艺。使用明矾对印刷废水进行化学沉淀,然后将其用于超滤的跨膜压力为1.75 x 10(5)和5.90 x 10(5)Pa(1.75和5.90 bar),送入实验室规模的板框膜组件和NF进程。所有替代品均在浓缩过滤模式下进行了测试,其中体积减小系数高达28.5。 NF工艺为COD,颜色,浊度,总固体和总硬度提供了非常高的分离性能。通量下降始于16%,在体积减小系数11.8时达到了31%。在NF之前应用松散且紧密的UF工艺来减少这种通量下降是无效的,在这两个过程中通量下降都非常严重,约为60%。通过比较得出了推荐的单级NF,且具有足够的出水特性。 (c)2005 Elsevier B.V.保留所有权利。

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