Studies on biodegradability, morphology and mechanical properties of low density polyehtylene/sago based blends

In this study, sago starch was physically blended with LDPE via two-roll mill to produces LDPE/sago starch (SS) bidegradable films. Glycerol was added to the blends as a plasticizer to increase the compatibility of sago starch and LDPE, which also subsequently reduced the brittleness of the film. Me...

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Main Authors: Wan Abdul Rahman, Wan Aizan, Rasit Ali, Roshafima, Zakaria, Naterah
Format: Conference or Workshop Item
Language:English
Published: 2006
Subjects:
Online Access:http://eprints.utm.my/id/eprint/351/1/WanAizanWan2006_Studiesonbiodegradabilitymorphologyand.pdf
http://eprints.utm.my/id/eprint/351/
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spelling my.utm.3512017-08-24T01:50:49Z http://eprints.utm.my/id/eprint/351/ Studies on biodegradability, morphology and mechanical properties of low density polyehtylene/sago based blends Wan Abdul Rahman, Wan Aizan Rasit Ali, Roshafima Zakaria, Naterah TP Chemical technology In this study, sago starch was physically blended with LDPE via two-roll mill to produces LDPE/sago starch (SS) bidegradable films. Glycerol was added to the blends as a plasticizer to increase the compatibility of sago starch and LDPE, which also subsequently reduced the brittleness of the film. Melt flow index of the blends was measured to determine the rheological properties and the viability of the blends to undergo blow film process. Gloss test was also studied to determine the optical properties. Mechanical and morphology studies of LDPE/SS biofilms have been done by tensile testing machine and microscopy respectively. Exposure of LDPE/SS biofilms to the fungi environment was done to analyse the biodegradability of the blends. Results showed, MFI of LDPE/SS biofilm decreased as the content of the starch increased as well as the glossiness of the films. The mechanical properties such as tensile strength and elongation also decreased as the starch content increased. However, biodegradablility of the films increased as the starch content increased as it can be seen by fungi growth on the surface of LDPE/SS biofilms. 2006-07 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/351/1/WanAizanWan2006_Studiesonbiodegradabilitymorphologyand.pdf Wan Abdul Rahman, Wan Aizan and Rasit Ali, Roshafima and Zakaria, Naterah (2006) Studies on biodegradability, morphology and mechanical properties of low density polyehtylene/sago based blends. In: 1st International Conference on Natural Resources Engineering & Technology 2006, 24-25th July 2006, Putrajaya, Malaysia.
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Wan Abdul Rahman, Wan Aizan
Rasit Ali, Roshafima
Zakaria, Naterah
Studies on biodegradability, morphology and mechanical properties of low density polyehtylene/sago based blends
description In this study, sago starch was physically blended with LDPE via two-roll mill to produces LDPE/sago starch (SS) bidegradable films. Glycerol was added to the blends as a plasticizer to increase the compatibility of sago starch and LDPE, which also subsequently reduced the brittleness of the film. Melt flow index of the blends was measured to determine the rheological properties and the viability of the blends to undergo blow film process. Gloss test was also studied to determine the optical properties. Mechanical and morphology studies of LDPE/SS biofilms have been done by tensile testing machine and microscopy respectively. Exposure of LDPE/SS biofilms to the fungi environment was done to analyse the biodegradability of the blends. Results showed, MFI of LDPE/SS biofilm decreased as the content of the starch increased as well as the glossiness of the films. The mechanical properties such as tensile strength and elongation also decreased as the starch content increased. However, biodegradablility of the films increased as the starch content increased as it can be seen by fungi growth on the surface of LDPE/SS biofilms.
format Conference or Workshop Item
author Wan Abdul Rahman, Wan Aizan
Rasit Ali, Roshafima
Zakaria, Naterah
author_facet Wan Abdul Rahman, Wan Aizan
Rasit Ali, Roshafima
Zakaria, Naterah
author_sort Wan Abdul Rahman, Wan Aizan
title Studies on biodegradability, morphology and mechanical properties of low density polyehtylene/sago based blends
title_short Studies on biodegradability, morphology and mechanical properties of low density polyehtylene/sago based blends
title_full Studies on biodegradability, morphology and mechanical properties of low density polyehtylene/sago based blends
title_fullStr Studies on biodegradability, morphology and mechanical properties of low density polyehtylene/sago based blends
title_full_unstemmed Studies on biodegradability, morphology and mechanical properties of low density polyehtylene/sago based blends
title_sort studies on biodegradability, morphology and mechanical properties of low density polyehtylene/sago based blends
publishDate 2006
url http://eprints.utm.my/id/eprint/351/1/WanAizanWan2006_Studiesonbiodegradabilitymorphologyand.pdf
http://eprints.utm.my/id/eprint/351/
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score 13.160551