题名 |
Deciphering Effects of Surface Charge on Particle Removal by TiO_2 Polyacrylonitrile Nanofibers |
DOI |
10.4209/aaqr.2016.07.0313 |
作者 |
Qian Zhang;Fang Liu;Tasi-Yu Yang;Xv Lv Si;Gong Ren Hu;Chang-Tang Chang |
关键词 |
Electrospinning ; Particle filtration ; TiO_2 polyacrylonitrile fibers ; Surface charge |
期刊名称 |
Aerosol and Air Quality Research |
卷期/出版年月 |
17卷7期(2017 / 07 / 01) |
页次 |
1909 - 1916 |
内容语文 |
英文 |
中文摘要 |
Over the recent years, the continued increase in the number of particles in air has become a public concern. This problem can be addressed by using nanofibers to filter fine particles. However, nanofibers possess complex characteristics. As such, the effects of surface charge require further studies. In this study, the surface voltages of nanofibers were analyzed with an electrometer after these fibers were charged through corona discharge to investigate the mechanism of filtration. Results indicated that the surface voltage of 2.0% TiO_2 polyacrylonitrile fibers (TPFs) can reach up to 0.97 kV and then decrease to 0.60 kV after 96 h. Particles were optimally removed by charged polyacrylonitrile fibers (PFs) and TPFs. Particle penetration decreased by 71% of TPF and 36% of PF. Scanning Electron Microscopy and Nitrogen adsorption/desorption isotherms revealed that increasing the surface area and roughness of these materials are more favorable for charge maintenance to promote particle removal. Our research could provide an in-depth understanding of the effects of surface charge on particle removal and show how systems can be optimized for further applications. |
主题分类 |
工程學 >
市政與環境工程 |