摘要
采用改进的浮动催化法在多孔Al2O3基体上制备了垂直取向的碳纳米管阵列,并用旋转喷涂法将聚苯乙烯填充于碳纳米管的空隙,进一步将其制备成复合碳纳米管膜,研究了H2和CO2单组分在碳纳米管复合膜中的渗透性能,实验结果表明,H2/CO2的理想分离系数随着复合膜中碳管管径的减小而增大,在管径较小的复合膜中,气体渗透分离系数高于努森扩散限制,达到6.25,具有一定的分离效果.两种气体在复合膜中的渗透率随着渗透温度的增加而减小.
Vertically aligned carbon nanotube (CNT) arrays were grown on porous Al2O3 substrate by improved floating catalysis method. Gaps among CNTs were sealed by polystyrene using spin-coating method, and then, the sample was prepared into carbon nanotube composite membrane. H2 and CO2 permeation through the prepared carbon nanotube membrane were studied. Experimental results show that the ideal selec- tivity of H2/CO2 increases with the decreasing of carbon nanotube diameter, it is higher than Knudsen limit in the membrane with smaller diameter carbon nanotubes, the ideal selectivity reaches to 6.25, gaining prefera- ble separation results. Permeance of both gases slightly decreases when permeation temperature increases.
出处
《高等学校化学学报》
SCIE
EI
CAS
CSCD
北大核心
2009年第3期544-548,共5页
Chemical Journal of Chinese Universities
基金
长江学者奖励计划(批准号:50228203)
国家自然科学基金(批准号:20776016)资助
关键词
碳纳米管复合膜
渗透率
浮动催化法
Carbon nanotube composite membrane
Permeance
Floating catalysis method
作者简介
联系人简介:米万良,男,博士,讲师,主要从事催化、纳米材料和无机膜技术研究.E-mail:wlmi@me.ustb.edu.cn