Revealing the water resistance, thermal and biodegradation properties of citrus aurantifolia crosslinked tapioca starch/nanocellulose bionanocomposites

© 2020, Springer Science+Business Media, LLC, part of Springer Nature. Moisture absorption, thermal and biodegradation properties of nanocellulose (NC) reinforced bionanocomposite tapioca starch (TS) films crosslinked with Citrus aurantifolia or lime juice (LJ) were investigated for food packaging a...

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Main Authors: Ong, Hui Lin, Villagracia, Al Rey, Owi, Wei Tieng, Sam, Sung Ting, Akil, Hazizan Md
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Published: Animo Repository 2020
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Online Access:https://animorepository.dlsu.edu.ph/faculty_research/2229
https://animorepository.dlsu.edu.ph/context/faculty_research/article/3228/type/native/viewcontent
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spelling oai:animorepository.dlsu.edu.ph:faculty_research-32282022-06-22T06:48:44Z Revealing the water resistance, thermal and biodegradation properties of citrus aurantifolia crosslinked tapioca starch/nanocellulose bionanocomposites Ong, Hui Lin Villagracia, Al Rey Owi, Wei Tieng Sam, Sung Ting Akil, Hazizan Md © 2020, Springer Science+Business Media, LLC, part of Springer Nature. Moisture absorption, thermal and biodegradation properties of nanocellulose (NC) reinforced bionanocomposite tapioca starch (TS) films crosslinked with Citrus aurantifolia or lime juice (LJ) were investigated for food packaging applications. The films were synthesized by solvent casting using different amounts of nanocellulose and crosslinkers: lime juice and a commercial citric acid (CA). Nanocellulose as reinforcing filler was obtained from oil palm empty fruit bunches through acid hydrolysis. Crystallinity of all TS bionanocomposites was determined using X-ray diffractometry. TS bionanocomposites interaction with water was studied by means of moisture absorption, moisture content and swelling. Flory-Huggin model was used to measure the crosslinked density of crosslinked TS bionanocomposites which indicated successful crosslinking using LJ and CA for TS. The crystallinity of TS film increased from 43.5% for neat TS to 51.6% for TS film with inclusion of NC. LJ-crosslinked TS film with 1 wt% of NC (based on starch content) had the lowest moisture absorption and swelling ratio. TS bionanocomposites with LJ had better thermal and biodegradation properties compared to commercial CA-crosslinked TS biocomposites, which can be a potential food packaging material among the tested bionanocomposites. 2020-01-01T08:00:00Z text text/html https://animorepository.dlsu.edu.ph/faculty_research/2229 https://animorepository.dlsu.edu.ph/context/faculty_research/article/3228/type/native/viewcontent Faculty Research Work Animo Repository Mexican lime—Biodegradation Mexican lime—Thermal properties Crosslinking (Polymerization) Nanocomposites (Materials) Cassava flour Physics
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
topic Mexican lime—Biodegradation
Mexican lime—Thermal properties
Crosslinking (Polymerization)
Nanocomposites (Materials)
Cassava flour
Physics
spellingShingle Mexican lime—Biodegradation
Mexican lime—Thermal properties
Crosslinking (Polymerization)
Nanocomposites (Materials)
Cassava flour
Physics
Ong, Hui Lin
Villagracia, Al Rey
Owi, Wei Tieng
Sam, Sung Ting
Akil, Hazizan Md
Revealing the water resistance, thermal and biodegradation properties of citrus aurantifolia crosslinked tapioca starch/nanocellulose bionanocomposites
description © 2020, Springer Science+Business Media, LLC, part of Springer Nature. Moisture absorption, thermal and biodegradation properties of nanocellulose (NC) reinforced bionanocomposite tapioca starch (TS) films crosslinked with Citrus aurantifolia or lime juice (LJ) were investigated for food packaging applications. The films were synthesized by solvent casting using different amounts of nanocellulose and crosslinkers: lime juice and a commercial citric acid (CA). Nanocellulose as reinforcing filler was obtained from oil palm empty fruit bunches through acid hydrolysis. Crystallinity of all TS bionanocomposites was determined using X-ray diffractometry. TS bionanocomposites interaction with water was studied by means of moisture absorption, moisture content and swelling. Flory-Huggin model was used to measure the crosslinked density of crosslinked TS bionanocomposites which indicated successful crosslinking using LJ and CA for TS. The crystallinity of TS film increased from 43.5% for neat TS to 51.6% for TS film with inclusion of NC. LJ-crosslinked TS film with 1 wt% of NC (based on starch content) had the lowest moisture absorption and swelling ratio. TS bionanocomposites with LJ had better thermal and biodegradation properties compared to commercial CA-crosslinked TS biocomposites, which can be a potential food packaging material among the tested bionanocomposites.
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author Ong, Hui Lin
Villagracia, Al Rey
Owi, Wei Tieng
Sam, Sung Ting
Akil, Hazizan Md
author_facet Ong, Hui Lin
Villagracia, Al Rey
Owi, Wei Tieng
Sam, Sung Ting
Akil, Hazizan Md
author_sort Ong, Hui Lin
title Revealing the water resistance, thermal and biodegradation properties of citrus aurantifolia crosslinked tapioca starch/nanocellulose bionanocomposites
title_short Revealing the water resistance, thermal and biodegradation properties of citrus aurantifolia crosslinked tapioca starch/nanocellulose bionanocomposites
title_full Revealing the water resistance, thermal and biodegradation properties of citrus aurantifolia crosslinked tapioca starch/nanocellulose bionanocomposites
title_fullStr Revealing the water resistance, thermal and biodegradation properties of citrus aurantifolia crosslinked tapioca starch/nanocellulose bionanocomposites
title_full_unstemmed Revealing the water resistance, thermal and biodegradation properties of citrus aurantifolia crosslinked tapioca starch/nanocellulose bionanocomposites
title_sort revealing the water resistance, thermal and biodegradation properties of citrus aurantifolia crosslinked tapioca starch/nanocellulose bionanocomposites
publisher Animo Repository
publishDate 2020
url https://animorepository.dlsu.edu.ph/faculty_research/2229
https://animorepository.dlsu.edu.ph/context/faculty_research/article/3228/type/native/viewcontent
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