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Cellulose

AUTHOR Ioelovich, Michael; Ioelovich Michael
PUBLISHER LAP Lambert Academic Publishing (03/05/2014)
PRODUCT TYPE Paperback (Paperback)

Description
In this book structure and properties of nanostructured cellulose have been discussed. Besides, an impact of the structural parameters on physicochemical, chemical, biochemical, physical and mechanical properties of nanostructured cellulose materials was described. Cellulose is a widespread renewable natural polymer, which is widely used for the manufacturing of diverse materials and products. Being typical nanostructured polymer, cellulose contains nano-scale fibrils, crystallites, paracrystalline and non-crystalline domains, as well as nanopores. To characterize the supermolecular structure of cellulose, the primary structural parameters - paracrystallinity, crystallinity and amorphicity, microfibrillar angle, as well as parameters of porous structure should be determined. These structural parameters affect various physical, physicochemical, chemical and biochemical properties of cellulose materials. The equations were proposed that allow calculate various properties of the polymer on the base of determined structural parameters.
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Product Details
ISBN-13: 9783659174377
ISBN-10: 3659174378
Binding: Paperback or Softback (Trade Paperback (Us))
Content Language: English
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Page Count: 100
Carton Quantity: 70
Product Dimensions: 6.00 x 0.24 x 9.00 inches
Weight: 0.35 pound(s)
Country of Origin: US
Subject Information
BISAC Categories
Science | Chemistry - General
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publisher marketing
In this book structure and properties of nanostructured cellulose have been discussed. Besides, an impact of the structural parameters on physicochemical, chemical, biochemical, physical and mechanical properties of nanostructured cellulose materials was described. Cellulose is a widespread renewable natural polymer, which is widely used for the manufacturing of diverse materials and products. Being typical nanostructured polymer, cellulose contains nano-scale fibrils, crystallites, paracrystalline and non-crystalline domains, as well as nanopores. To characterize the supermolecular structure of cellulose, the primary structural parameters - paracrystallinity, crystallinity and amorphicity, microfibrillar angle, as well as parameters of porous structure should be determined. These structural parameters affect various physical, physicochemical, chemical and biochemical properties of cellulose materials. The equations were proposed that allow calculate various properties of the polymer on the base of determined structural parameters.
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