Ajmal Mehwish, Memon Saeed Ahmed, Shaikh Huma, Memon Shahabuddin, Shah Shahnila
National Centre of Excellence in Analytical Chemistry, University of Sindh Jamshoro 76080 Pakistan
Nanoscale Adv. 2024 May 22;6(14):3573-3581. doi: 10.1039/d4na00019f. eCollection 2024 Jul 9.
Separation of gases from air mixture is one of the most challenging and laborious separations due to the remarkably uniform molecular size of gas molecules. Therefore, the present study aimed to synthesize polyacrylonitrile-based nanofibers mat(NM) impregnated with -diethanolaminomethylcalix[4]arene (PAN/-DEAC4 NM) for the separation of two crucial gases O and N. The affinity of the prepared PAN/-DEAC4 NM for O was examined by optimizing the loading concentration of -DEAC4 in the range from 5% to 20% (w/v). The results showed remarkable performance of the PAN/-DEAC4 NM for O/N separation with a superior O/N selectivity of 12.75 and excellent permeance of 10.2 GPU for O and 0.8 GPU for N at 2 bar. The PAN/-DEAC4 NM followed a facilitated transport mechanism for the separation of gases and it was revealed that the -DEAC4 platform in the PAN NM is facilitating the transport of O due to its greater affinity towards O. BET analysis revealed that the prepared NM possesses non-porous morphology with a surface area of 12.69 m g. SEM micrographs also confirmed the formation of defect-free NM. Thus, this study presents a unique perspective and direction for fabricating highly permeable nanofiber mats for O/N separation.
由于气体分子的分子大小非常均匀,从空气混合物中分离气体是最具挑战性和最费力的分离过程之一。因此,本研究旨在合成浸渍有 - 二乙醇胺甲基杯[4]芳烃的聚丙烯腈基纳米纤维毡(PAN/-DEAC4 NM),用于分离两种关键气体氧气和氮气。通过在5%至20%(w/v)范围内优化 -DEAC4的负载浓度,研究了制备的PAN/-DEAC4 NM对氧气的亲和力。结果表明,PAN/-DEAC4 NM在氧气/氮气分离方面表现出色,在2巴压力下,其氧气/氮气选择性高达12.75,氧气渗透率为10.2 GPU,氮气渗透率为0.8 GPU。PAN/-DEAC4 NM遵循促进传输机制进行气体分离,研究表明,PAN NM中的 -DEAC4平台因其对氧气的亲和力更强而促进了氧气的传输。BET分析表明,制备的纳米纤维毡具有无孔形态,比表面积为12.69 m²/g。扫描电子显微镜图像也证实了无缺陷纳米纤维毡的形成。因此,本研究为制备用于氧气/氮气分离的高渗透性纳米纤维毡提供了独特的视角和方向。