Javascript must be enabled to continue!
Cellulose Submicron Fibers
View through CrossRef
In order to manufacture cellulose submicron fibers, electrospinning of cellulose was tried with different solvents. Alpha-cellulose did not dissolve in 6% (w/w) sodium hydroxide/4%urea aqueous solution. Alpha-cellulose solution in 85% phosphoric acid was not spinnable at an applied voltage between 15kV to 25 kV and at a spin length of 4 to 6 inches. Electrospinning of alpha-cellulose in N-methylmorpholine-N-oxide/N-methyl-pyrrolidinone/water solvent mixture could be performed at an applied voltage of 28 kV and at a spin length of seven inches during spinning and at an ambient temperature of 380C. The degree of crystallinity of the cellulose submicron fibers was found to be 37.88%. The number average fiber diameter of cellulose submicron fibers from 1.25% (w/w) cellulose solution in the N-methylmorpholine-N-oxide/N-methyl-pyrrolidinone/water solvent was found to be 207 nm and the number average fiber diameter of cellulose submicron fibers from 2.5% (w/w) cellulose solution in the N-methylmorpholine-N-oxide/N-methyl-pyrrolidinone/water solvent mixture was found to be 243 nm.
Title: Cellulose Submicron Fibers
Description:
In order to manufacture cellulose submicron fibers, electrospinning of cellulose was tried with different solvents.
Alpha-cellulose did not dissolve in 6% (w/w) sodium hydroxide/4%urea aqueous solution.
Alpha-cellulose solution in 85% phosphoric acid was not spinnable at an applied voltage between 15kV to 25 kV and at a spin length of 4 to 6 inches.
Electrospinning of alpha-cellulose in N-methylmorpholine-N-oxide/N-methyl-pyrrolidinone/water solvent mixture could be performed at an applied voltage of 28 kV and at a spin length of seven inches during spinning and at an ambient temperature of 380C.
The degree of crystallinity of the cellulose submicron fibers was found to be 37.
88%.
The number average fiber diameter of cellulose submicron fibers from 1.
25% (w/w) cellulose solution in the N-methylmorpholine-N-oxide/N-methyl-pyrrolidinone/water solvent was found to be 207 nm and the number average fiber diameter of cellulose submicron fibers from 2.
5% (w/w) cellulose solution in the N-methylmorpholine-N-oxide/N-methyl-pyrrolidinone/water solvent mixture was found to be 243 nm.
Related Results
Recycling of cellulose from vegetable fiber waste for sustainable industrial
applications
Recycling of cellulose from vegetable fiber waste for sustainable industrial
applications
Recently two significant topics that became important for textile industry namely ‘providing sustainability by reusing of
textile wastes’ and ‘developing high-valued new textile ra...
Valorization of khat (Catha edulis) waste for the production of cellulose fibers and nanocrystals
Valorization of khat (Catha edulis) waste for the production of cellulose fibers and nanocrystals
Cellulose fibers (C40 and C80) were extracted from khat (Catha edulis) waste (KW) with chlorine-free process using 40% formic acid/40% acetic acid (C40), and 80% formic acid/80% ac...
Preparation and Characterization of Cellulose and Microcrystalline Cellulose from Sugarcane Bagasse and Assessment of the Microcrystalline Cellulose as a Directly Compressible Excipient
Preparation and Characterization of Cellulose and Microcrystalline Cellulose from Sugarcane Bagasse and Assessment of the Microcrystalline Cellulose as a Directly Compressible Excipient
Cellulose, the most abundant biomass material in nature finds wide applications in the pharmaceutical industry. Sugarcane bagasse (SCB) is one of the main agricultural lignocellul...
Enzymatic-assisted preparation of nanocrystalline cellulose from non-wood fibers
Enzymatic-assisted preparation of nanocrystalline cellulose from non-wood fibers
In the current scenario of growing environmental concerns, the search for innovative, renewable, non-polluting materials has never been as intensive as it is today. Cellulose, bein...
Cellulose-Synthesizing Machinery in Bacteria
Cellulose-Synthesizing Machinery in Bacteria
Abstract
Cellulose is produced by all plants and a number of other organisms, including bacteria. The most representative cellulose-producing bacterial species is Gluconace...
Ionic liquid-assisted the preparation of transparent cellulosic biocomposite films
Ionic liquid-assisted the preparation of transparent cellulosic biocomposite films
(English) Interest in new environmentally friendly cellulose-based products has tremendously increased in recent years.
Cellulose-based composites come in various forms and have p...
Synthesis, and Characterization of Cellulose Nanocrystal (CNC) From Corncob /PVA Based Bio nanocomposite
Synthesis, and Characterization of Cellulose Nanocrystal (CNC) From Corncob /PVA Based Bio nanocomposite
Abstract
The study has been carried out to investigate the effect of incorporating corncob cellulose nanocrystals in polyvinyl alcohol (PVA) matrix with the aim of enhancin...

