Influence of dyes, salts and auxiliary chemicals on the nanofiltration of reactive dye baths: Experimental observations and model verification

Ismail Koyuncu*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

47 Citations (Scopus)

Abstract

The aim of this study was to investigate the effects of dyes, salts and auxiliary chemicals in reactive dye baths on the separation performance of nanofiltration membranes. A reactive dye bath was simulated for this purpose with auxiliary chemicals. A DS5-type nanofiltration membrane was used in the experimental runs. Performance of the nanofiltration membrane was evaluated by measuring permeate flux, salt and color rejections in five steps. Reactive black 5, reactive orange 16, NaCl, NaOH, Na2SO4, acidic acid, mollan and slipper were used to prepare synthetic dye baths. Pressures in the range of 8 to 24 bars were applied, and flow velocity was kept constant at 0.74 m/s. NaCl rejection of 20% and color rejection of more than 95% were achieved throughout the experiments. Permeate quality was satisfactory enough to recycle these effluents in reactive dyeing. Acidification of the original synthetic dye bath solution with HCl and H2SO4 decreased the membrane fouling and also increased the NaCl recovery and color rejection. Besides, using HCl instead of H2SO4 increased these positive effects. The effects of auxiliary chemicals were determined by using salt rejection model parameters of α and kD in the presence of an organic ion. There was a correlation among the results of experiments and the model. The model parameters (α and kD) were also calculated for all steps.

Original languageEnglish
Pages (from-to)79-88
Number of pages10
JournalDesalination
Volume154
Issue number1
DOIs
Publication statusPublished - 1 Mar 2003

Funding

This research was carried out with the support of the Istanbul Technical University, Project No. 1451. The author would like to thank the Pizza Textile Company for supplying the formula of the dye bath and chemicals for this study.

FundersFunder number
Istanbul Teknik Üniversitesi1451

    Keywords

    • Auxiliary chemicals
    • Color rejection
    • Membrane fouling
    • Nanofiltration
    • Salt rejection

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