吸收速度对CO2分离N2和CH4过程中醋酸纤维素中空纤维膜制备的影响

M. Mubashir, Y. Yeong, T. Chew, K. K. Lau
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引用次数: 0

摘要

在过去的几十年里,中空纤维膜由于其在二氧化碳分离过程中的广泛工业应用而引起了研究人员的极大兴趣。在目前的研究中,我们报道了在气体分离中吸收速度对醋酸纤维素(CA) HFMs制备的影响。用场发射扫描电子显微镜(FESEM)观察所得HFMs的形貌。气体渗透结果表明,当吸附速度由自由落体增加到12.2 m/min时,所得CA HFM的CO2、N2和CH4渗透率分别降低55.68%、87.25%和82.00%。同时,气对选择性分别提高146.18%和247.76%。这主要是由于聚合物取向和链式填充的增加抑制了HFMs中的大空隙,从而提高了气体对的选择性。此外,纺丝速度为12.2 m/min时,CA HFM的CO2/CH4和CO2/N2理想选择性最高,分别为3.9和3.6。
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Effect of Take-up Speed on the Fabrication of Cellulose Acetate Hollow Fibre Membrane in CO2 Separation from N2 and CH4
Over the past decades, hollow fibre membranes (HFMs) have attracted much interest of the researchers due to their extensive industrial usage in CO2 separation processes. In the current study, we have reported the effect of take-up speed on the fabrication of cellulose acetate (CA) HFMs in gas separation. The morphology of the resultant HFMs was examined by using field emission scanning electron microscopy (FESEM). The gas permeation results obtained in this work revealed that, when take-up speed increased from free fall to 12.2 m/min, CO2, N2 and CH4 permeances of the resultant CA HFM were reduced 55.68%, 87.25% and 82.00%, respectively. Meanwhile, gas pair selectivities were increased 146.18% and 247.76% respectively. These results were mainly due to the increment of polymer orientation and chain packing which suppressed the macro-voids in the HFMs and thus, the gas pair selectivities were improved. Furthermore, it was found that CA HFM spun at take-up speed of 12.2 m/min showed highest CO2/CH4 and CO2/N2 ideal selectivities of 3.9 and 3.6, respectively.
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