Fabrication and characterization of diatomite functionalized cellulose acetate nanofibers
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Green Open Access
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Abstract
Cellulose acetate (CA) nanofiber membranes incorporated with diatomite (DE) were prepared by electrospinning to produce electrospun nanofiber membranes with high specific surface area and high porosity with fine pores. When the DE percentage increased from 0 to 30%, the water contact angle (WCA) of the membranes increased from 86.21° to 118.44°, indicating that neat CA nanofibers were more hydrophilic than CA/DE nanofibers and had a better wetting tendency. CA, CA-10DE, and CA-20DE nanofiber membranes showed a mean flow pore size (MFP) of 2.941, 2.681, and 2.408 µm, respectively, with narrow pore size distributions. However, the CA-30DE nanofiber membrane showed a smaller MFP size of 0.5014 µm. CA nanofibers were produced in the range of 206.31 to 281.13 nm. The dye removal ability of these membranes was tested using an aqueous solution of C.I. Reactive Red 141. © 2019, American Association of Textile Chemists and Colorists. All rights reserved.
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Keywords
Cellulose Acetate, Diatomite, Electrospinning, Membranes, Nanofibers, Wastewater Treatment, Cellulose, Contact angle, Pore size, Wastewater treatment, Cellulose acetates, Electrospun nanofibers, Fabrication and characterizations, High specific surface area, Nanofiber membrane, Narrow pore size distributions, Water contact angle (WCA), Contact Angle, Diatomaceous Earth, Pore Size, Pores, 570, Diatomite, Nanofiber membrane, Membranes, Electrospun nanofibers, Electrospinning, Pore Size, Water contact angle (WCA), Nanofibers, Cellulose acetates, Narrow pore size distributions, Fabrication and characterizations, Wastewater treatment, 540, Diatomaceous Earth, High specific surface area, Pores, Pore size, Wastewater Treatment, Contact Angle, Cellulose, Contact angle, Cellulose Acetate
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OpenCitations Citation Count
5
Volume
6
Issue
3
Start Page
28
End Page
36
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CrossRef : 3
Scopus : 5
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5
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57
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