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Novel negatively charged nanofiltration membrane based on 4,4'-diaminodiphenylmethane for dye removal

机译:基于4,4'-二氨基二苯基甲烷的新型带负电荷的纳滤膜进行染料去除

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摘要

Membrane separation processes constitute an economical and efficient technology for the effective treatment of dye wastewater. In this study, 4,4'-diaminodiphenylmethane and 1,3,5-benzenetricarbonyl trichloride were used as monomers to prepare polyamide-based nanofiltration (NF) membranes by interfacial polymerization, for dye removal. The preparation parameters of the NF membrane were optimized by investigating the effects of the concentrations of two monomers, the soaking time of the carrier in aqueous solution of monomer, and the polymerization time on the membrane performance. The surface roughness of optimized membrane was found to be only 5.08 nm, and the stabilized contact angle was about 25 degrees, indicating very high hydrophilicity. When the pH was in the range from 3 to 10, the membrane surface became electronegative, which resulted in a high rejection rate toward various negatively charged dyes. For the congo red dye solution, the membrane showed a flux of 36.81 L m(-2) h(-1) and a rejection rate of 99%. The rejection rate of the other two negatively charged dyes investigated herein was also above 95%. Moreover, the filtration experiment of bovine serum albumin solution showed that the flux recovery rate of the membrane was up to 89.85%, indicating good stability and antifouling performance.
机译:膜分离过程构成了染料废水的有效处理的经济高效技术。在该研究中,使用4,4'-二氨基二苯基甲烷和1,3,5-苯甲烷基三氯化物作为单体以制备聚酰胺基纳滤(NF)膜通过界面聚合,用于去除染料。通过研究两种单体的浓度,载体在单体水溶液中的浸泡时间以及膜性能的聚合时间来进行优化NF膜的制备参数。发现优化膜的表面粗糙度仅为5.08nm,稳定的接触角为约25度,表明非常高的亲水性。当pH在3至10的范围内时,膜表面变为电动负载,导致朝向各种带负电荷染料的高抑制率。对于刚果红染料溶液,膜显示出36.81μm(-2)H(-1)的助焊剂,排斥率为99%。本文研究的其他两个带负电荷染料的抑制率也高于95%。此外,牛血清白蛋白溶液的过滤实验表明,膜的助焊剂回收率高达89.85%,表明稳定性良好和防污性能。

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