P84 Co-polyimide/Nanocrystalline Cellulose (NCC)-based Tubular Carbon Membrane: Effect of Drying Times for Carbon Dioxide Separation at Elevated Carbonization Temperature

N. Sazali, W. Salleh, K. Kadirgama
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引用次数: 1

Abstract

In this study, the effect of drying time on the performance of tubular carbon membrane was investigated. P84 co-polyimide blends with Nanocrystalline cellulose (NCC)-based carbon membrane supported on ceramic tube was fabricated through the dip-coating technique. This study aims to investigate the effect of various drying times (12 hours, 24 hours, 3 days and 7 days) on the carbon dioxide separation properties. The gas permeation test of the resultant tubular carbon membrane was determined by using pure gas of CO2 and N2. In order to enhance the membrane performance, final carbonization temperature was executed at 800oC in Argon environment with flow rate of 200 mL/min. From the results, it was found that the best drying times was within 24 hours and such membrane showed the highest CO2/N2 selectivity (66.32±2.18).
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P84共聚酰亚胺/纳米晶纤维素(NCC)基管状碳膜:提高炭化温度下干燥时间对二氧化碳分离的影响
本文研究了干燥时间对管状碳膜性能的影响。采用浸涂法制备了P84共聚酰亚胺与纳米纤维素基碳膜共混物。研究不同干燥时间(12小时、24小时、3天、7天)对二氧化碳分离性能的影响。采用纯净的CO2和N2气体对制备的管状碳膜进行了透气性测试。为了提高膜的性能,最终碳化温度为800℃,氩气环境下,流速为200 mL/min。结果表明,最佳干燥时间为24h,膜的CO2/N2选择性最高(66.32±2.18)。
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