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Highly Selective Oxygen/Nitrogen Separation Membrane Engineered Using a Porphyrin-Based Oxygen Carrier

机译:使用基于卟啉的氧气载体设计的高选择性氧气/氮气分离膜

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摘要

Air separation is very important from the viewpoint of the economic and environmental advantages. In this work, defect-free facilitated transport membranes based on poly(amide-12-b-ethylene oxide) (Pebax-2533) and tetra(p-methoxylphenyl)porphyrin cobalt chloride (T(p-OCH3)PPCoCl) were fabricated in systematically varied compositions for O2/N2 separation. T(p-OCH3)PPCoCl was introduced as carriers that selectively and reversibly interacted with O2 and facilitated O2 transport in the membrane. The T(p-OCH3)PPCoCl had good compatibility with the Pebax-2533 via the hydrogen bond interaction and formed a uniform and thin selective layer on the substrate. The O2 separation performance of the thin film composite (TFC) membranes was improved by adding a small amount of the T(p-OCH3)PPCoCl and decreasing the feed pressure. At the pressure of 0.035 MPa, the O2 permeability and O2/N2 selectivity of the 0.6 wt % T(p-OCH3)PPCoCl/Pebax-2533 was more than 3.5 times that of the Pebax-2533 TFC membrane, which reached the 2008 Robeson upper bound. It provides a candidate membrane material for O2/N2 efficient separation in moderate conditions.
机译:从经济和环境优势的角度来看,空气分离非常重要。在这项工作中,制造了基于聚(酰胺-12-b-环氧乙烷)(Pebax-2533)和四(对甲氧基苯基)卟啉氯化钴(T(p-OCH3)PPCoCl)的无缺陷促进传输膜。用于O2 / N2分离的系统变化的组成。引入T(p-OCH3)PPCoCl作为载体,可与O2选择性和可逆地相互作用,并促进O2在膜中的运输。 T(p-OCH3)PPCoCl通过氢键相互作用与Pebax-2533具有良好的相容性,并在基板上形成了均匀且薄的选择层。通过添加少量的T(p-OCH3)PPCoCl并降低进料压力,可以改善薄膜复合(TFC)膜的O2分离性能。在0.035 MPa的压力下,0.6 wt%T(p-OCH3)PPCoCl / Pebax-2533的O2渗透性和O2 / N2选择性是Pebax-2533 TFC膜的3.5倍以上,后者达到了2008年的Robeson上限。它为在中等条件下有效分离O2 / N2提供了一种候选膜材料。

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