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Poly(piperazine-amide)/PES Composite Multi-Channel Capillary Membranes for Low-Pressure Nanofiltration

机译:用于低压纳米过滤的聚(哌嗪酰胺)/ PES复合多通道毛细管膜

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摘要

The mechanical stability of conventional single-channel capillary fibres can be improved in a multi-channel geometry, which has previously found application in ultrafiltration. In this work, multi-channel polyethersulfone (PES) capillary membranes comprising seven feed channels were successfully fabricated in an enhanced steam–dry–wet spinning process and coated on the inner surface with a thin polyamide (PA) layer via interfacial polymerization (IP). The coating procedure consisted of impregnating the support multi-channel capillary membranes (MCM) with an aqueous piperazine solution, flushing with nitrogen gas to remove excess droplets, and pumping an organic trimesoylchloride solution through the channels. Insights into the interfacial polymerization process were gained through the investigation of various parameters, including monomer ratio, contact time, and drying time. Membranes were characterised via scanning electron microscopy (SEM), atomic force microscopy (AFM), and filtration experiments. The optimisation of both the PES support membrane and IP process parameters allowed for the fabrication of composite MCM with an MgSO4 rejection of 91.4% and a solute flux of 68.8 L m−2 h−1 at an applied pressure of 3 bar. The fabricated composite MCM demonstrates that a favourable multi-channel arrangement can be upgraded with a PA layer for application in low-pressure nanofiltration.
机译:常规的单通道毛细管纤维的机械稳定性可以在多通道几何形状中得到改善,这在超滤中已得到应用。在这项工作中,通过增强的蒸汽干湿湿纺工艺成功制造了包含七个进料通道的多通道聚醚砜(PES)毛细管膜,并通过界面聚合(IP)在其内表面涂上了一层薄聚酰胺(PA)层。 。涂布步骤包括用哌嗪水溶液浸渍多通道支撑毛细管膜(MCM),用氮气冲洗以除去多余的液滴,然后将有机均苯三甲酰氯溶液泵送通过通道。通过研究各种参数,包括单体比,接触时间和干燥时间,可以深入了解界面聚合过程。通过扫描电子显微镜(SEM),原子力显微镜(AFM)和过滤实验来表征膜。通过对PES支撑膜和IP工艺参数进行优化,可以制造出复合MCM,其MgSO4截留率为91.4%,溶质通量为68.8 L m -2 h -1 < / sup>在3 bar的施加压力下。制成的复合材料MCM证明,可以用PA层升级有利的多通道排列,以用于低压纳米过滤。

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