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Fabrication of superhydrophobic cellulose/chitosan composite aerogel for oil/water separation
by
Wang, Yixi
, Liu, Zhiyong
, Guo, Xuhong
, Meng, Guihua
, Peng, Huili
, Wu, Jianning
, Wang, Hao
in
Aerogels
/ Cellulose
/ Chemistry
/ Chemistry and Materials Science
/ Chitosan
/ Contact angle
/ Hydrophobicity
/ Ion exchange
/ Particulate composites
/ Polymer Sciences
2017
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Fabrication of superhydrophobic cellulose/chitosan composite aerogel for oil/water separation
by
Wang, Yixi
, Liu, Zhiyong
, Guo, Xuhong
, Meng, Guihua
, Peng, Huili
, Wu, Jianning
, Wang, Hao
in
Aerogels
/ Cellulose
/ Chemistry
/ Chemistry and Materials Science
/ Chitosan
/ Contact angle
/ Hydrophobicity
/ Ion exchange
/ Particulate composites
/ Polymer Sciences
2017
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Fabrication of superhydrophobic cellulose/chitosan composite aerogel for oil/water separation
by
Wang, Yixi
, Liu, Zhiyong
, Guo, Xuhong
, Meng, Guihua
, Peng, Huili
, Wu, Jianning
, Wang, Hao
in
Aerogels
/ Cellulose
/ Chemistry
/ Chemistry and Materials Science
/ Chitosan
/ Contact angle
/ Hydrophobicity
/ Ion exchange
/ Particulate composites
/ Polymer Sciences
2017
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Fabrication of superhydrophobic cellulose/chitosan composite aerogel for oil/water separation
Journal Article
Fabrication of superhydrophobic cellulose/chitosan composite aerogel for oil/water separation
2017
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Overview
Superhydrophobic cellulose and chitosan composite aerogel (SCECS) is fabricated through a novel and simple approach for the first time. During the preparation of cellulose and chitosan composite aerogel (CECS), chitosan is selfassemble into number micron-diameter particles on the surface of aerogel, which is similar to the micromorphology of a lotus leaf. Based on the rough surface, CECS is modified by sodium stearate through electrostatic interaction and ion exchange. Water contact angles of 156° are obtained for superhydrophobic aerogel. SCECS can remove various oils from water and with absorption capacities of 10 g/g for oil. Furthermore, the special structure of a non-porous of surface and porous layer of internal is benefit to separate surfactant-stabilized water-in-oil emulsions under gravity.
Publisher
The Korean Fiber Society,Springer Nature B.V
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