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Interfacial polymerization of facilitated transport polyamide membrane prepared from PIP and IPC for gas separation applications

机译:由PIP和IPC制备的促进运输的聚酰胺膜的界面聚合,用于气体分离应用

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摘要

A facilitated transport polyamide (PA) membrane was developed for gas separation by interfacial polymerization reaction of piperazine (PIP) and isophthaloyl chloride (IPC) supported on polysulfone (PSF) membrane previously prepared by dry/wet phase inversion method. The properties of the prepared membranes were characterized by SEM, FT-IR, TGA, and XRD. SEM images showed that a defect-free PSF, and rough PA membranes were fabricated, while the FT-IR spectra confirmed the formation of PA layer on top of the PSF support. The separation performance of the thin film PA and PSF membranes was evaluated using four gasses (CO~(2), CH~(4), N~(2), and O~(2)). Compared to the PSF membrane, the PA membrane demonstrated an increased selectivity of CO~(2)/CH~(4)and CO~(2)/N~(2)by 178%, 169%, respectively. This improvement was attributed to the presence of amine functional groups, which acted as a fixed carrier to facilitate the transport of CO~(2)gas across the membrane. However, building the PA layer on top of PSF support reduced the membrane permeance of CO~(2)from 2.41 to 2.12 GPU as a result of the increased mass transfer resistance. Furthermore, the effect of operating temperature and pressure on the separation performance of the membranes was investigated.
机译:开发了一种方便运输的聚酰胺(PA)膜,用于通过预先通过干/湿相转化方法制备的聚砜(PSF)膜上负载的哌嗪(PIP)和间苯二甲酰氯(IPC)的界面聚合反应进行气体分离。通过SEM,FT-IR,TGA和XRD表征了制备的膜的性能。 SEM图像显示无缺陷的PSF和粗糙的PA膜被制造出来,而FT-IR光谱证实了PSF载体顶部的PA层的形成。使用四种气体(CO〜(2),CH〜(4),N〜(2)和O〜(2))评估了PA和PSF薄膜的分离性能。与PSF膜相比,PA膜的CO〜(2)/ CH〜(4)和CO〜(2)/ N〜(2)选择性分别提高了178%和169%。这种改善归因于胺官能团的存在,该胺官能团起固定载体的作用,促进了CO〜(2)气体跨膜的运输。然而,由于传质阻力的增加,在PSF支撑物上构建PA层将CO〜(2)的膜渗透率从2.41降低到2.12 GPU。此外,研究了操作温度和压力对膜分离性能的影响。

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