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Modified rice husk as component in recyclable and biodegradable epoxy thermosets
KTH, School of Engineering Sciences in Chemistry, Biotechnology and Health (CBH), Fibre- and Polymer Technology. Department of Mechanical Engineering, Makerere University, Kampala, Uganda.ORCID iD: 0000-0002-9753-3684
KTH, School of Engineering Sciences in Chemistry, Biotechnology and Health (CBH), Centres, Wallenberg Wood Science Center. KTH, School of Engineering Sciences in Chemistry, Biotechnology and Health (CBH), Fibre- and Polymer Technology, Coating Technology.ORCID iD: 0000-0002-2477-6896
KTH, School of Engineering Sciences in Chemistry, Biotechnology and Health (CBH), Fibre- and Polymer Technology, Polymer Technology.ORCID iD: 0000-0002-4638-755X
Department of Mechanical Engineering, Makerere University, Kampala, Uganda; Africa Center of Excellence in Materials, Product Development and Nanotechnology, Makerere University, Kampala, Uganda.
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2024 (English)In: Discover Applied Sciences, E-ISSN 3004-9261, Vol. 6, no 4, article id 175Article in journal (Refereed) Published
Abstract [en]

Rice husk (RH), an abundant agricultural residue, was successfully chemically modified and used as a component in reprocessable and biodegradable epoxy thermosets. First, RH was subjected to alkaline treatment to increase the cellulose content followed by succinylation and curing with trimethylolpropane triglycidyl ether to form the thermoset films. The chemical structure of the different intermediates and thermosets was confirmed by Fourier transform infrared spectroscopy. The developed thermoset films had good solvent resistance against common organic solvents and good thermal stability as measured by thermogravimetry with peak temperatures of 347–387 ℃, char residues of 16–20% and limiting oxygen index values of 24–26%, respectively. The films could be thermally reprocessed by hot-pressing with excellent recovery of the mechanical properties (92–96% recovery of tensile stress). Furthermore, 80–84% biodegradation during 150 days under mesophilic home composting conditions was demonstrated by cumulative CO<inf>2</inf> evolution. These results indicate promising potential for the developed RHs thermosets as replacements for petroleum-based plastics in e.g. packaging and agricultural applications.

Place, publisher, year, edition, pages
Springer Nature , 2024. Vol. 6, no 4, article id 175
Keywords [en]
Biodegradation, Cellulose, Composting, Reprocessable thermoset, Rice husk, Thermogravimetric analysis
National Category
Polymer Technologies Polymer Chemistry
Identifiers
URN: urn:nbn:se:kth:diva-367029DOI: 10.1007/s42452-024-05834-0ISI: 001195194300001Scopus ID: 2-s2.0-85188910151OAI: oai:DiVA.org:kth-367029DiVA, id: diva2:1983896
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QC 20250714

Available from: 2025-07-14 Created: 2025-07-14 Last updated: 2025-07-14Bibliographically approved

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Yiga, Vianney AndrewSubramaniyan, SathiyarajKalita, Naba KumarHakkarainen, Minna

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