Koyuncu Ismail, Topacik Dincer, Wiesner Mark R
Faculty of Civil Engineering, Department of Environmental Engineering, Istanbul Technical University, 80626, Maslak, Istanbul, Turkey.
Water Res. 2004 Jan;38(2):432-40. doi: 10.1016/j.watres.2003.10.001.
In this paper, factors influencing the flux decline of nanofiltration membranes for the treatment of dye bath wastewaters were investigated. Experiments were performed with synthetic wastewaters. Synthetic solutions were prepared in different dye and salt concentrations at laboratory conditions. Operating conditions including cross-flow velocity and pH were changed to observe the effects of interactions between NaCl, dyes and the membrane. Cake formation rate of dye molecules on membrane surface with time was investigated by using linearized forms of cake filtration equations. The results suggest that cake layer formation of dye molecules on membrane surface, especially at low salt concentrations was the principal cause of flux decline. Operating conditions had a strong influence on permeate flux. Effects of cross-flow velocity on permeate flux were more pronounced at low NaCl concentrations. Furthermore, the lowest permeate flux values were obtained at the alkaline conditions due to increased dye hydrophobicity at high pH values.
本文研究了影响纳滤膜处理染浴废水时通量下降的因素。使用合成废水进行了实验。在实验室条件下,制备了不同染料和盐浓度的合成溶液。改变包括错流速度和pH值在内的操作条件,以观察NaCl、染料和膜之间相互作用的影响。通过使用线性化的滤饼过滤方程,研究了染料分子在膜表面的滤饼形成速率随时间的变化。结果表明,染料分子在膜表面形成滤饼层,尤其是在低盐浓度下,是通量下降的主要原因。操作条件对渗透通量有很大影响。在低NaCl浓度下,错流速度对渗透通量的影响更为明显。此外,由于在高pH值下染料疏水性增加,在碱性条件下获得了最低的渗透通量值。