期刊文献+

Adsorption of benzene, cyclohexane and hexane on ordered mesoporous carbon 被引量:18

Adsorption of benzene, cyclohexane and hexane on ordered mesoporous carbon
原文传递
导出
摘要 Ordered mesoporous carbon(OMC) with high specific surface area and large pore volume was synthesized and tested for use as an adsorbent for volatile organic compound(VOC)disposal. Benzene, cyclohexane and hexane were selected as typical adsorbates due to their different molecular sizes and extensive utilization in industrial processes. In spite of their structural differences, high adsorption amounts were achieved for all three adsorbates, as the pore size of OMC is large enough for the access of these VOCs. In addition, the unusual bimodal-like pore size distribution gives the adsorbates a higher diffusion rate compared with conventional adsorbents such as activated carbon and carbon molecular sieve. Kinetic analysis suggests that the adsorption barriers mainly originated from the difficulty of VOC vapor molecules entering the pore channels of adsorbents. Therefore, its superior adsorption ability toward VOCs, together with a high diffusion rate, makes the ordered mesoporous carbon a promising potential adsorbent for VOC disposal. Ordered mesoporous carbon(OMC) with high specific surface area and large pore volume was synthesized and tested for use as an adsorbent for volatile organic compound(VOC)disposal. Benzene, cyclohexane and hexane were selected as typical adsorbates due to their different molecular sizes and extensive utilization in industrial processes. In spite of their structural differences, high adsorption amounts were achieved for all three adsorbates, as the pore size of OMC is large enough for the access of these VOCs. In addition, the unusual bimodal-like pore size distribution gives the adsorbates a higher diffusion rate compared with conventional adsorbents such as activated carbon and carbon molecular sieve. Kinetic analysis suggests that the adsorption barriers mainly originated from the difficulty of VOC vapor molecules entering the pore channels of adsorbents. Therefore, its superior adsorption ability toward VOCs, together with a high diffusion rate, makes the ordered mesoporous carbon a promising potential adsorbent for VOC disposal.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2015年第4期65-73,共9页 环境科学学报(英文版)
基金 the State Key program of National Natural Science Foundation (No. 21337003) the Strategic Priority Research Program (No. XDB05050200) the National High Technology Research and Development Program of China (2012AA063101) the Special Environmental Protection Foundation for Public Welfare Project (No. 201309073) the Team Interaction and Cooperation of the Science and Technology Program of the Chinese Academy of Sciences
关键词 Volatile organic compounds Adsorption Ordered mesoporous carbon Isosteric heat of adsorption Knudsen diffusion Volatile organic compounds Adsorption Ordered mesoporous carbon Isosteric heat of adsorption Knudsen diffusion
  • 相关文献

同被引文献95

引证文献18

二级引证文献96

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部