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首页> 外文期刊>Journal of Hazardous Materials >Stitch and copolymerization of thin-film composite membranes to enhance hydrophilicity and organics resistance for the separation of glycerol-based wastewater
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Stitch and copolymerization of thin-film composite membranes to enhance hydrophilicity and organics resistance for the separation of glycerol-based wastewater

机译:薄膜复合膜的针迹和共聚,增强了甘油基废水分离的亲水性和有机性抗性

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摘要

Many industries produce large amounts of glycerol-based wastewater, which always contains hazardous organic chlorides. Compared with complicated biological treatments or physical adsorption, membrane separation decreases the cost and saves energy. Strong swelling of traditional thin-film composite (TFC) membranes influence the performance in the separation of organic molecules. Here we prepared TFC membranes with an acrylamide-grafted PAN support layer to copolymerize with m-phenylenediamine (MPD) and trimesoyl chloride (TMC). The link of separative layer and support layer was created like a zipper stitching to enhance the stability and resistance for the removal of organic molecules. An aquatic grass-like layer of acrylamide enlarges the surface area and hydrophilicity with superior separation performances (15.8 LMH bar(-1) flux, 72.0% rejection of dichloropropanol (DCP) and 64.6% rejection of glycerol (Gl)). The trade-off upper bound was improved to a high level. We also established the simulations of evaporation using Aspen Plus and mathematical models of reverse osmosis to calculate the energy consumption corresponding to the recycle of glycerol-based wastewater. The experimental and theoretical results illustrate the advantages of acrylamide-grafted TFC membranes in the applications to concentrate organic solutes and treat wastewater.
机译:许多行业产生大量的甘油基废水,总含有有害的有机氯化物。与复杂的生物处理或物理吸附相比,膜分离降低了成本并节省了能量。传统薄膜复合物(TFC)膜的强肿胀会影响有机分子分离中的性能。在这里,我们用丙烯酰胺接枝的平底锅支撑层制备了TFC膜,以与M-苯二胺(MPD)和三咪酰氯(TMC)共聚。将分散层和支撑层的链路类似于拉链缝合,以增强去除有机分子的稳定性和抗性。丙烯酰胺的水生形层和具有优异的分离性能的表面积和亲水性(15.8LMH(-1)焊剂,72.0%的二氯丙醇(DCP)排斥和64.6%的甘油(GL)排斥反应)。权衡上限提高到高水平。我们还使用Aspen Plus和反渗透的数学模型建立了蒸发的模拟,以计算与甘油基废水的再循环相对应的能量消耗。实验性和理论结果说明了丙烯酰胺接枝TFC膜在应用中浓缩有机溶质和处理废水的优点。

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