Preparation and Properties of Biocomposite Based on Natural Rubber and Bagasse Nanocellulose
Biocomposite based on natural rubber (NR) and bagasse nanocellulose (BNC) was prepared in latex state. The mechanical, morphological and thermal properties of NR/BNC biocomposite were investigated. It was found that the addition of 3 wt% of BNC in NR film caused significant increase in modulus at 10...
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2015-01-01
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Series: | MATEC Web of Conferences |
Online Access: | http://dx.doi.org/10.1051/matecconf/20152601005 |
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doaj-6c4586bd57cf44918c24e9e2a6eb41f72021-04-02T07:17:22ZengEDP SciencesMATEC Web of Conferences2261-236X2015-01-01260100510.1051/matecconf/20152601005matecconf_acmme2015_01005Preparation and Properties of Biocomposite Based on Natural Rubber and Bagasse NanocelluloseJarnthong Methakarn0Wang Fei1Wei Xiao Yi2Wang Rui3Li Ji Hua4Key Laboratory of Tropical Crop Products Processing of Ministry of Agriculture, Agriculture Products Processing Research Institute, Chinese Academy of Tropical Agricultural SciencesKey Laboratory of Tropical Crop Products Processing of Ministry of Agriculture, Agriculture Products Processing Research Institute, Chinese Academy of Tropical Agricultural SciencesKey Laboratory of Tropical Crop Products Processing of Ministry of Agriculture, Agriculture Products Processing Research Institute, Chinese Academy of Tropical Agricultural SciencesKey Laboratory of Tropical Crop Products Processing of Ministry of Agriculture, Agriculture Products Processing Research Institute, Chinese Academy of Tropical Agricultural SciencesKey Laboratory of Tropical Crop Products Processing of Ministry of Agriculture, Agriculture Products Processing Research Institute, Chinese Academy of Tropical Agricultural SciencesBiocomposite based on natural rubber (NR) and bagasse nanocellulose (BNC) was prepared in latex state. The mechanical, morphological and thermal properties of NR/BNC biocomposite were investigated. It was found that the addition of 3 wt% of BNC in NR film caused significant increase in modulus at 100% and 300% elongations and improved thermal stability of NR/BNC biocomposite. However, the strength at break and elongation at break of the biocomposite were not enhanced correlating to the morphological result obtained from scanning electron microscope (SEM).http://dx.doi.org/10.1051/matecconf/20152601005 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jarnthong Methakarn Wang Fei Wei Xiao Yi Wang Rui Li Ji Hua |
spellingShingle |
Jarnthong Methakarn Wang Fei Wei Xiao Yi Wang Rui Li Ji Hua Preparation and Properties of Biocomposite Based on Natural Rubber and Bagasse Nanocellulose MATEC Web of Conferences |
author_facet |
Jarnthong Methakarn Wang Fei Wei Xiao Yi Wang Rui Li Ji Hua |
author_sort |
Jarnthong Methakarn |
title |
Preparation and Properties of Biocomposite Based on Natural Rubber and Bagasse Nanocellulose |
title_short |
Preparation and Properties of Biocomposite Based on Natural Rubber and Bagasse Nanocellulose |
title_full |
Preparation and Properties of Biocomposite Based on Natural Rubber and Bagasse Nanocellulose |
title_fullStr |
Preparation and Properties of Biocomposite Based on Natural Rubber and Bagasse Nanocellulose |
title_full_unstemmed |
Preparation and Properties of Biocomposite Based on Natural Rubber and Bagasse Nanocellulose |
title_sort |
preparation and properties of biocomposite based on natural rubber and bagasse nanocellulose |
publisher |
EDP Sciences |
series |
MATEC Web of Conferences |
issn |
2261-236X |
publishDate |
2015-01-01 |
description |
Biocomposite based on natural rubber (NR) and bagasse nanocellulose (BNC) was prepared in latex state. The mechanical, morphological and thermal properties of NR/BNC biocomposite were investigated. It was found that the addition of 3 wt% of BNC in NR film caused significant increase in modulus at 100% and 300% elongations and improved thermal stability of NR/BNC biocomposite. However, the strength at break and elongation at break of the biocomposite were not enhanced correlating to the morphological result obtained from scanning electron microscope (SEM). |
url |
http://dx.doi.org/10.1051/matecconf/20152601005 |
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