Valorization of underutilized river tamarind Leucaena leucocephala seeds biomass for cellulose nanocrystals synthesis

River tamarind or scientifically Leucaena leucocephala, is one of the underutilized nanocellulose resources with the potential to be used in reinforcement materials. This work evaluated the use of the insoluble residual waste or marc obtained during the isolation of galactomannan from Leucaena leuco...

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Published in:International Journal of Advanced and Applied Sciences
Main Author: Husin M.; Ilham Z.; Li A.R.; Razaki A.Z.M.; Wan-Mohtar W.A.A.Q.I.; Man S.
Format: Article
Language:English
Published: Institute of Advanced Science Extension (IASE) 2021
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85105785805&doi=10.21833%2fijaas.2021.01.012&partnerID=40&md5=0b8a72fcf1e045be20d1adaebc06ec00
id 2-s2.0-85105785805
spelling 2-s2.0-85105785805
Husin M.; Ilham Z.; Li A.R.; Razaki A.Z.M.; Wan-Mohtar W.A.A.Q.I.; Man S.
Valorization of underutilized river tamarind Leucaena leucocephala seeds biomass for cellulose nanocrystals synthesis
2021
International Journal of Advanced and Applied Sciences
8
1
10.21833/ijaas.2021.01.012
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85105785805&doi=10.21833%2fijaas.2021.01.012&partnerID=40&md5=0b8a72fcf1e045be20d1adaebc06ec00
River tamarind or scientifically Leucaena leucocephala, is one of the underutilized nanocellulose resources with the potential to be used in reinforcement materials. This work evaluated the use of the insoluble residual waste or marc obtained during the isolation of galactomannan from Leucaena leucocephala seed (LLS) as a feedstock of cellulose to obtain cellulose nanocrystals by a two-step acid hydrolysis followed by its characterization and morphological study. The first step involved acid hydrolyzation of the hemicellulose and lignin from LLS, while the second step dealt with the removal of the amorphous region to produce crystalline LLS nanocrystals (NLLS). The physicochemical properties of nanocrystals were characterized using the Fourier transform infrared spectroscopy (FTIR), field emission scanning electron microscopy (FESEM), transmission electron microscopy (TEM), particle size analyzer (PSA), X-ray diffractometer (XRD), thermal gravimetric analysis (TGA), and gel permeation chromatography (GPC). The NLLS isolated showed a rod-like structure in the range of 70–90nm in diameter with a crystallinity index of 76% and thermal stability at 264°C. PSA indicates that 97.5% of the size distribution of NLLS was below 136.9nm. GPC analysis also revealed that the sulphuric acid hydrolyzation during the second step caused a reduction in the molecular weight due to the cleaving of glycosidic bonds in the structure. These results indicated that LLS waste is a potential feedstock for cellulose nanocrystals preparation. © 2020 The Authors.
Institute of Advanced Science Extension (IASE)
2313626X
English
Article
All Open Access; Gold Open Access
author Husin M.; Ilham Z.; Li A.R.; Razaki A.Z.M.; Wan-Mohtar W.A.A.Q.I.; Man S.
spellingShingle Husin M.; Ilham Z.; Li A.R.; Razaki A.Z.M.; Wan-Mohtar W.A.A.Q.I.; Man S.
Valorization of underutilized river tamarind Leucaena leucocephala seeds biomass for cellulose nanocrystals synthesis
author_facet Husin M.; Ilham Z.; Li A.R.; Razaki A.Z.M.; Wan-Mohtar W.A.A.Q.I.; Man S.
author_sort Husin M.; Ilham Z.; Li A.R.; Razaki A.Z.M.; Wan-Mohtar W.A.A.Q.I.; Man S.
title Valorization of underutilized river tamarind Leucaena leucocephala seeds biomass for cellulose nanocrystals synthesis
title_short Valorization of underutilized river tamarind Leucaena leucocephala seeds biomass for cellulose nanocrystals synthesis
title_full Valorization of underutilized river tamarind Leucaena leucocephala seeds biomass for cellulose nanocrystals synthesis
title_fullStr Valorization of underutilized river tamarind Leucaena leucocephala seeds biomass for cellulose nanocrystals synthesis
title_full_unstemmed Valorization of underutilized river tamarind Leucaena leucocephala seeds biomass for cellulose nanocrystals synthesis
title_sort Valorization of underutilized river tamarind Leucaena leucocephala seeds biomass for cellulose nanocrystals synthesis
publishDate 2021
container_title International Journal of Advanced and Applied Sciences
container_volume 8
container_issue 1
doi_str_mv 10.21833/ijaas.2021.01.012
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85105785805&doi=10.21833%2fijaas.2021.01.012&partnerID=40&md5=0b8a72fcf1e045be20d1adaebc06ec00
description River tamarind or scientifically Leucaena leucocephala, is one of the underutilized nanocellulose resources with the potential to be used in reinforcement materials. This work evaluated the use of the insoluble residual waste or marc obtained during the isolation of galactomannan from Leucaena leucocephala seed (LLS) as a feedstock of cellulose to obtain cellulose nanocrystals by a two-step acid hydrolysis followed by its characterization and morphological study. The first step involved acid hydrolyzation of the hemicellulose and lignin from LLS, while the second step dealt with the removal of the amorphous region to produce crystalline LLS nanocrystals (NLLS). The physicochemical properties of nanocrystals were characterized using the Fourier transform infrared spectroscopy (FTIR), field emission scanning electron microscopy (FESEM), transmission electron microscopy (TEM), particle size analyzer (PSA), X-ray diffractometer (XRD), thermal gravimetric analysis (TGA), and gel permeation chromatography (GPC). The NLLS isolated showed a rod-like structure in the range of 70–90nm in diameter with a crystallinity index of 76% and thermal stability at 264°C. PSA indicates that 97.5% of the size distribution of NLLS was below 136.9nm. GPC analysis also revealed that the sulphuric acid hydrolyzation during the second step caused a reduction in the molecular weight due to the cleaving of glycosidic bonds in the structure. These results indicated that LLS waste is a potential feedstock for cellulose nanocrystals preparation. © 2020 The Authors.
publisher Institute of Advanced Science Extension (IASE)
issn 2313626X
language English
format Article
accesstype All Open Access; Gold Open Access
record_format scopus
collection Scopus
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