Characterisation of Cassava Bagasse and Composites Prepared by Blending with Low-Density Polyethylene
The main objective of this study was to characterise the cassava bagasse and to evaluate its addition in composites. Two cassava bagasse samples were characterised using physicochemical, thermal and microscopic techniques, and by obtaining their spectra in the mid-infrared region and analysing them by using x-ray diffraction. Utilising sorption isotherms, it was possible to establish the acceptable conditions of temperature and relative humidity for the storage of the cassava bagasse. The incorporation of cassava bagasse in a low-density polyethylene (LDP) matrix was positive, increasing the elasticity modulus values from 131.90 for LDP to 186.2 for 70% LDP with 30% SP bagasse. These results were encouraging because cassava bagasse could serve as a structural reinforcement, as well as having environmental advantages for its application in packaging, construction and automotive parts.
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Instituto de Tecnologia do Paraná - Tecpar
2014
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oai:scielo:S1516-891320140006008212015-09-03Characterisation of Cassava Bagasse and Composites Prepared by Blending with Low-Density PolyethyleneFarias,Fabiane OliveiraJasko,Ariana CrasnhakColman,Tiago André DenckPinheiro,Luís AntônioSchnitzler,EgonBarana,Ana CláudiaDemiate,Ivo Mottin Manihot esculenta Crantz residue polymers The main objective of this study was to characterise the cassava bagasse and to evaluate its addition in composites. Two cassava bagasse samples were characterised using physicochemical, thermal and microscopic techniques, and by obtaining their spectra in the mid-infrared region and analysing them by using x-ray diffraction. Utilising sorption isotherms, it was possible to establish the acceptable conditions of temperature and relative humidity for the storage of the cassava bagasse. The incorporation of cassava bagasse in a low-density polyethylene (LDP) matrix was positive, increasing the elasticity modulus values from 131.90 for LDP to 186.2 for 70% LDP with 30% SP bagasse. These results were encouraging because cassava bagasse could serve as a structural reinforcement, as well as having environmental advantages for its application in packaging, construction and automotive parts.info:eu-repo/semantics/openAccessInstituto de Tecnologia do Paraná - TecparBrazilian Archives of Biology and Technology v.57 n.6 20142014-12-01info:eu-repo/semantics/articletext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S1516-89132014000600821en10.1590/S1516-8913201402506 |
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Farias,Fabiane Oliveira Jasko,Ariana Crasnhak Colman,Tiago André Denck Pinheiro,Luís Antônio Schnitzler,Egon Barana,Ana Cláudia Demiate,Ivo Mottin |
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Farias,Fabiane Oliveira Jasko,Ariana Crasnhak Colman,Tiago André Denck Pinheiro,Luís Antônio Schnitzler,Egon Barana,Ana Cláudia Demiate,Ivo Mottin Characterisation of Cassava Bagasse and Composites Prepared by Blending with Low-Density Polyethylene |
author_facet |
Farias,Fabiane Oliveira Jasko,Ariana Crasnhak Colman,Tiago André Denck Pinheiro,Luís Antônio Schnitzler,Egon Barana,Ana Cláudia Demiate,Ivo Mottin |
author_sort |
Farias,Fabiane Oliveira |
title |
Characterisation of Cassava Bagasse and Composites Prepared by Blending with Low-Density Polyethylene |
title_short |
Characterisation of Cassava Bagasse and Composites Prepared by Blending with Low-Density Polyethylene |
title_full |
Characterisation of Cassava Bagasse and Composites Prepared by Blending with Low-Density Polyethylene |
title_fullStr |
Characterisation of Cassava Bagasse and Composites Prepared by Blending with Low-Density Polyethylene |
title_full_unstemmed |
Characterisation of Cassava Bagasse and Composites Prepared by Blending with Low-Density Polyethylene |
title_sort |
characterisation of cassava bagasse and composites prepared by blending with low-density polyethylene |
description |
The main objective of this study was to characterise the cassava bagasse and to evaluate its addition in composites. Two cassava bagasse samples were characterised using physicochemical, thermal and microscopic techniques, and by obtaining their spectra in the mid-infrared region and analysing them by using x-ray diffraction. Utilising sorption isotherms, it was possible to establish the acceptable conditions of temperature and relative humidity for the storage of the cassava bagasse. The incorporation of cassava bagasse in a low-density polyethylene (LDP) matrix was positive, increasing the elasticity modulus values from 131.90 for LDP to 186.2 for 70% LDP with 30% SP bagasse. These results were encouraging because cassava bagasse could serve as a structural reinforcement, as well as having environmental advantages for its application in packaging, construction and automotive parts. |
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Instituto de Tecnologia do Paraná - Tecpar |
publishDate |
2014 |
url |
http://old.scielo.br/scielo.php?script=sci_arttext&pid=S1516-89132014000600821 |
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