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High flux and antifouling properties of negatively charged membrane for dyeing wastewater treatment by membrane distillation

机译:带膜蒸馏处理印染废水的带负电荷膜的高通量和防污性能

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摘要

This study investigated the applicability of membrane distillation" (MD) to treat dyeing wastewater discharged by the textile industry. Four different dyes containing methylene blue (MB), crystal violet (CV), acid red 18 (AR18), and acid yellow 36 (AY36) were tested. Two types of hydrophobic membranes made of polytetrafluoroethylene (PTFE) and polyvinylidene fluoride (PVDF) were used. The membranes were characterized by testing against each dye (foulant-foulant) and the membrane dye (membranefoulant) interfacial interactions and their mechanisms were identified. The MD membranes possessed negative charges, which facilitated the treatment of acid and azo dyes of the same charge and showed higher fluxes. In addition, PTFE membrane reduced the wettability with higher hydrophobicity of the membrane surface. The PTFE membrane evidenced especially its resistant to dye absorption, as its strong negative charge and chemical structure caused a flake-like (loose) dye dye structure to form on the membrane surface rather than in the membrane pores. This also enabled the recovery of flux and membrane properties by water flushing (WF), thereby direct-contact MD with PTFE membrane treating 100 mg/L of dye mixtures showed stable flux and superior color removal during five days operation. Thus, MD shows a potential for stable long-term operation in conjunction with a simple membrane cleaning process, and its suitability in dyeing wastewater treatment. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究调查了膜蒸馏”(MD)在处理纺织工业排放的印染废水中的适用性。四种不同的染料,包括亚甲基蓝(MB),结晶紫(CV),酸性红18(AR18)和酸性黄36(测试了两种类型的疏水膜,分别由聚四氟乙烯(PTFE)和聚偏二氟乙烯(PVDF)制成,通过测试每种染料(污垢-污垢)和膜染料(薄膜污垢)的界面相互作用以及它们的相互作用来表征该膜。 MD膜带有负电荷,有利于处理相同电荷的酸和偶氮染料,并显示出较高的通量;此外,PTFE膜降低了膜表面的疏水性,提高了润湿性,尤其证明了PTFE膜的优越性。它具有很强的负电荷和化学结构,可在其表面形成片状(松散)染料,因此具有抗染料吸收的能力。膜表面而不是膜孔中。这也使得能够通过水冲洗(WF)恢复通量和膜性能,因此MD与PTFE膜直接接触处理100 mg / L的染料混合物显示出稳定的通量和在五天的运行中出色的脱色效果。因此,MD结合简单的膜清洗工艺显示出稳定长期运行的潜力,以及其在印染废水处理中的适用性。 (C)2016 Elsevier Ltd.保留所有权利。

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