Development of blend films of poly(3-hydroxy)butyrate and celulose triacetate: Thermal and crystalline properties

Derivative polysaccharide, cellulose triacetate (CTAc) is blended to the combination of poly-hydroxybutyrate and its copolymer polyhydroxyvalerate (PHB-PHV) as the internal plasticiser. The blends films were analyzed by differential scanning calorimetry and X-ray diffraction. The DSC methode shows t...

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Main Authors: Muhammad, Ida Idayu, Mohd. Noor, Mohd. Azemi
Format: Conference or Workshop Item
Language:English
Published: 1997
Subjects:
Online Access:http://eprints.utm.my/4641/1/IdaIdayu1997_DevelopmentOfBlendFilmsOfPoly%283-hydroxy%29butyrate.pdf
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author Muhammad, Ida Idayu
Mohd. Noor, Mohd. Azemi
author_facet Muhammad, Ida Idayu
Mohd. Noor, Mohd. Azemi
author_sort Muhammad, Ida Idayu
collection ePrints
description Derivative polysaccharide, cellulose triacetate (CTAc) is blended to the combination of poly-hydroxybutyrate and its copolymer polyhydroxyvalerate (PHB-PHV) as the internal plasticiser. The blends films were analyzed by differential scanning calorimetry and X-ray diffraction. The DSC methode shows the miscibility of this blend by a single peak of glass transition temperature and a decrease in the melting point. By using a certain composition in mixing, the product shows lower crystalinity than plain PHB. The combination of such properties of these new blends will put PHB as a potentially new source of biopolymer material with a better processability window.
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spelling utm.eprints-46412017-08-27T01:36:17Z http://eprints.utm.my/4641/ Development of blend films of poly(3-hydroxy)butyrate and celulose triacetate: Thermal and crystalline properties Muhammad, Ida Idayu Mohd. Noor, Mohd. Azemi T Technology (General) Derivative polysaccharide, cellulose triacetate (CTAc) is blended to the combination of poly-hydroxybutyrate and its copolymer polyhydroxyvalerate (PHB-PHV) as the internal plasticiser. The blends films were analyzed by differential scanning calorimetry and X-ray diffraction. The DSC methode shows the miscibility of this blend by a single peak of glass transition temperature and a decrease in the melting point. By using a certain composition in mixing, the product shows lower crystalinity than plain PHB. The combination of such properties of these new blends will put PHB as a potentially new source of biopolymer material with a better processability window. 1997 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/4641/1/IdaIdayu1997_DevelopmentOfBlendFilmsOfPoly%283-hydroxy%29butyrate.pdf Muhammad, Ida Idayu and Mohd. Noor, Mohd. Azemi (1997) Development of blend films of poly(3-hydroxy)butyrate and celulose triacetate: Thermal and crystalline properties. In: Regional Symposium on Chemical Engineering 1997 in conjunction with 13th Symposium of Malaysian Chemical Engineers, 13-15 October 1997, Hyatt Regency, Johor, Malaysia.
spellingShingle T Technology (General)
Muhammad, Ida Idayu
Mohd. Noor, Mohd. Azemi
Development of blend films of poly(3-hydroxy)butyrate and celulose triacetate: Thermal and crystalline properties
title Development of blend films of poly(3-hydroxy)butyrate and celulose triacetate: Thermal and crystalline properties
title_full Development of blend films of poly(3-hydroxy)butyrate and celulose triacetate: Thermal and crystalline properties
title_fullStr Development of blend films of poly(3-hydroxy)butyrate and celulose triacetate: Thermal and crystalline properties
title_full_unstemmed Development of blend films of poly(3-hydroxy)butyrate and celulose triacetate: Thermal and crystalline properties
title_short Development of blend films of poly(3-hydroxy)butyrate and celulose triacetate: Thermal and crystalline properties
title_sort development of blend films of poly 3 hydroxy butyrate and celulose triacetate thermal and crystalline properties
topic T Technology (General)
url http://eprints.utm.my/4641/1/IdaIdayu1997_DevelopmentOfBlendFilmsOfPoly%283-hydroxy%29butyrate.pdf
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