详细信息

Electrospun bead-in-string fibrous membrane prepared from polysilsesquioxane-immobilising poly(lactic acid) with low filtration resistance for air filtration  ( EI收录)  

文献类型:期刊文献

英文题名:Electrospun bead-in-string fibrous membrane prepared from polysilsesquioxane-immobilising poly(lactic acid) with low filtration resistance for air filtration

作者:Cao, Qiming[1]; Meng, Xin[1]; Tan, Shuhang[1]; Xin, Zhong[1]; Turng, Lih-Sheng[2]; Li, Jie[1]; Yao, Zhongyang[1]; Zhai, Zihang[1]; Duan, Runzi[1]

机构:[1] Shanghai Key Laboratory of Multiphase Materials Chemical Engineering and Production Engineering Department, School of Chemical Engineering, East China University of Science and Technology, Shanghai, 200237, China; [2] Department of Mechanical Engineering, University of Wisconsin–Madison, Madison, WI, United States

年份:2020

卷号:27

期号:1

外文期刊名:Journal of Polymer Research

收录:EI(收录号:20195107851592)

语种:英文

外文关键词:Fibrous membranes - Lactic acid - Microfiltration - Dust

摘要:This paper first investigated the optimum conditions for the preparation of electrospun bead-in-string fibrous membrane based on polysilsesquioxane (PSQ)-immobilising poly(lactic acid) (PLA-PSQ). Then, the fibrous membrane was used for air filtration. It is found that the immobilisation of PSQ to PLA makes more and well-distributed bead-in-string strutures form in the fibres, which makes some properties of fibrous membranes improve. First, the beads in string make fibres with bigger and more even pores, and the broadened pores decrease the pressure drop across the PLA-PSQ membrane after air filtration by about 43% compared to that of the PLA membrane at a separation efficiency of 100%. Then, the evenly distributed beads in the fibres make the pore distribution of the fibres more even, which prevents many more dust particles from passing through the pores at a lower pressure and inhibits the aggregation of dust particles during air filtration. Furthermore, the immobilisation of PSQ to PLA decreases the loss of PSQ, and the PLA-PSQ fibre shows better hydrolytic resistance. ? 2019, The Polymer Society, Taipei.

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