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Carbon nanotube reinforced PVAm/PVA blend FSC nanocomposite membrane for

机译:碳纳米管增强PVAm / PVA共混FSC纳米复合膜

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A carbon nanotube (CNT) reinforced polyvinyl amine/polyvinyl alcohol (PVAm/PVA) blend nanocomposite membrane with facilitated transport fixed-site-carriers (FSC) for CO2/CH4 separation was developed with the focus on improving membrane separation performance at elevated pressures and the challenges related to the up-scaling of the membrane for potential industrial applications. This nanocomposite membrane was prepared by dip-coating with the modified CNTs dispersed uniformly in a hydrophilic PVAm-/PVA blended solution with a precise control of the coating layer thickness (coating layer thickness 0.5-2.5 mu m). Membranes with an up-scaled size (300 x 300 mm) were prepared. A selectivity of CO2/CH4 up to 45 and a CO2 permeance of up to 0.35 m(3) (STP)/m(2) h bar were documented in the low pressure range (2-5 bar). With the addition of a small amount of CNTs (1.0 wt.%), the membrane showed an enhanced water swelling, capacity as well as good durability against the compaction effect in operations at elevated pressures. The CO2 permeance of the CNTs reinforced nanocomposite membranes improved significantly compared to its counterpart membrane without CNTs, while the CO2/CH4 selectivity remained similar. The effects of increased pressure (up to 15 bar) on membrane separation performance were investigated in the same way. The SEM images of the nanocomposite membrane confirmed that the CNTs and PVAm/PVA blend polymer were compatible
机译:碳纳米管(CNT)增强的聚乙烯胺/聚乙烯醇(PVAm / PVA)混合纳米复合膜,具有促进CO2 / CH4分离的固定固定载体(FSC)的运输,着重于提高在高压和高温下的膜分离性能。与潜在工业应用中膜的规模扩大相关的挑战。通过用均匀地分散在亲水性PVAm- / PVA混合溶液中的改性CNT浸涂并精确控制涂层厚度(涂层厚度0.5-2.5μm)来制备该纳米复合膜。制备具有较大尺寸(300×300mm)的膜​​。在低压范围(2-5 bar)中记录了高达45的CO2 / CH4选择性和高达0.35 m(3)(STP)/ m(2)h bar的CO2渗透率。通过添加少量的CNT(1.0 wt。%),该膜表现出增强的水溶胀性,容量以及在高压操作中抗压实效果的良好耐久性。与没有CNT的对应膜相比,CNTs增强的纳米复合膜的CO2渗透率显着提高,而CO2 / CH4的选择性仍然相似。以相同的方式研究了增加压力(最高15 bar)对膜分离性能的影响。纳米复合膜的SEM图像证实了CNT与PVAm / PVA共混聚合物相容

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