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Preliminary study for isolation, characterizations of the cellulolytic microorganisms: green convert of microcrystalline cellulose to nanofibers

Abstract
The presented study deals with the isolation of microorganisms able to produce cellulases which convert microcrystalline cellulose (MCC) to nanocellulose fibers (NCFs) in critical conditions. This conduction, namely, could be defined as the most potent isolate capable of producing such cellulases and has the ability to convert the fibers to nanoscale in situ conditions without any need for chemica...
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Keywords
Microcrystalline cellulose
Cellulose
Nanofiber
Microorganism
Isolation (microbiology)
Microcrystalline
Materials science
Polymer science
Nanotechnology
Chemical engineering
Chemistry
Biology
Microbiology
Bacteria
Engineering
Crystallography
Genetics


pdf file

Preliminary study for isolation, characterizations of the cellulolytic microorganisms: green convert of microcrystalline cellulose to nanofibers
pdf file

Preliminary study for isolation, characterizations of the cellulolytic microorganisms: green convert of microcrystalline cellulose to nanofibers

Abstract
The presented study deals with the isolation of microorganisms able to produce cellulases which convert microcrystalline cellulose (MCC) to nanocellulose fibers (NCFs) in critical conditions. This conduction, namely, could be defined as the most potent isolate capable of producing such cellulases and has the ability to convert the fibers to nanoscale in situ conditions without any need for chemica...
View PDF
Keywords
Microcrystalline cellulose
Cellulose
Nanofiber
Microorganism
Isolation (microbiology)
Microcrystalline
Materials science
Polymer science
Nanotechnology
Chemical engineering
Chemistry
Biology
Microbiology
Bacteria
Engineering
Crystallography
Genetics


pdf file