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典型文献
Improving the Surface Performance of Electrospun Air Filter Paper Using Multi-walled Carbon Nanotubes
文献摘要:
In this study,air filter base paper(P)was used as the receiving substrate,polyvinyl alcohol(PVA)and PVA/multi-walled carbon nanotube(MWCNT)spinning solutions were used to prepare electrospun air filter papers(P-PVA and P-PVA/MWCNT,respectively).Then,P-PVA/MWCNT was calendered under different pressures.The effect of MWCNTs on the surface performance of P-PVA/MWCNT was explored and the influence of calendering technology on their structure and filtration characteristics was analyzed.Electron scanning microscope observation showed that the PVA nanofibers on the surface of P-PVA/MWCNT had no beading,and MWCNTs weakened the surface electrostatic phenomenon and had a good micromorphology.During the calendering process,with an increase in pressure,the mean pore size and surface roughness of P-PVA/MWCNT decreased,the initial resistance increased,and the filtration efficiency changed slightly.
文献关键词:
作者姓名:
Weiyin Su;Lanfeng Hui;Yang Gao;Mingyue Zhao
作者机构:
Tianjin Key Lab of Pulp&Paper Tianjin University of Science and Technology,Tianjin,300457,China
引用格式:
[1]Weiyin Su;Lanfeng Hui;Yang Gao;Mingyue Zhao-.Improving the Surface Performance of Electrospun Air Filter Paper Using Multi-walled Carbon Nanotubes)[J].造纸与生物质材料(英文),2022(01):38-44
A类:
calendered,calendering,beading
B类:
Improving,Surface,Performance,Electrospun,Air,Filter,Paper,Using,Multi,walled,Carbon,Nanotubes,In,this,study,air,filter,base,was,used,receiving,substrate,polyvinyl,alcohol,PVA,multi,carbon,nanotube,spinning,solutions,were,prepare,electrospun,papers,respectively,Then,under,different,pressures,effect,MWCNTs,surface,performance,explored,influence,technology,their,structure,filtration,characteristics,analyzed,Electron,scanning,microscope,observation,showed,that,nanofibers,had,weakened,electrostatic,phenomenon,good,micromorphology,During,process,mean,pore,size,roughness,decreased,initial,resistance,increased,efficiency,changed,slightly
AB值:
0.586374
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