Influence of Drying Temperature in the Oven on Physical, Morphology and Mechanical Properties of Mycelium Composite

Mycelium, a root-like fungi network, possesses distinctive characteristics that render it an appealing contender for replacing polystyrene (PS). Drying in the oven is one of the most commonly used methods for producing mycelium composites. However, achieving its desired properties requires proper co...

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Published in:Pertanika Journal of Science and Technology
Main Author: Farrahnoor A.; Hishamuddini A.D.N.; Yusoff H.; Hyie K.M.; Maideen N.C.; Fohimi N.A.M.; Zhou B.T.
Format: Article
Language:English
Published: Universiti Putra Malaysia Press 2025
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85217056989&doi=10.47836%2fpjst.33.1.10&partnerID=40&md5=b4ae69763a0a9c961926ac155182caba
id 2-s2.0-85217056989
spelling 2-s2.0-85217056989
Farrahnoor A.; Hishamuddini A.D.N.; Yusoff H.; Hyie K.M.; Maideen N.C.; Fohimi N.A.M.; Zhou B.T.
Influence of Drying Temperature in the Oven on Physical, Morphology and Mechanical Properties of Mycelium Composite
2025
Pertanika Journal of Science and Technology
33
1
10.47836/pjst.33.1.10
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85217056989&doi=10.47836%2fpjst.33.1.10&partnerID=40&md5=b4ae69763a0a9c961926ac155182caba
Mycelium, a root-like fungi network, possesses distinctive characteristics that render it an appealing contender for replacing polystyrene (PS). Drying in the oven is one of the most commonly used methods for producing mycelium composites. However, achieving its desired properties requires proper control of the drying temperature. This research aims to develop a mycelium-based composite by utilising an edible mushroom, specifically Pleurotus ostreatus (oyster mushroom), as an alternative to non-biodegradable materials for packaging applications. The composite is developed by inoculating Pleurotus ostreatus fungi into the substrate, mainly consisting of kenaf, wheat bran and CaCO3. Afterwards, the composite was incubated for 20 days and then subjected to drying at different oven temperatures (e.g. 40°C, 60°C, and 80°C) for 24 hours. Our findings indicate that the desirable mechanical properties of mycelium composite were found at 60°C, where flexural strength, flexural modulus and impact strength were obtained at 0.11 MPa, 4.15 GPa and 635.8 N, respectively. The moisture content was 26.13%, and the shrinkage was 20.73%. The obtained density of 0.15 g/cm3 was compared to the density of PS, which is 1.04 g/cm3. This research indicates that a lightweight composite material, consisting of a network of interconnected hyphae that function as a natural adhesive, holds significant potential as a viable solution for achieving a more sustainable and environmentally friendly future, primarily due to its biodegradability. © Universiti Putra Malaysia Press.
Universiti Putra Malaysia Press
1287680
English
Article

author Farrahnoor A.; Hishamuddini A.D.N.; Yusoff H.; Hyie K.M.; Maideen N.C.; Fohimi N.A.M.; Zhou B.T.
spellingShingle Farrahnoor A.; Hishamuddini A.D.N.; Yusoff H.; Hyie K.M.; Maideen N.C.; Fohimi N.A.M.; Zhou B.T.
Influence of Drying Temperature in the Oven on Physical, Morphology and Mechanical Properties of Mycelium Composite
author_facet Farrahnoor A.; Hishamuddini A.D.N.; Yusoff H.; Hyie K.M.; Maideen N.C.; Fohimi N.A.M.; Zhou B.T.
author_sort Farrahnoor A.; Hishamuddini A.D.N.; Yusoff H.; Hyie K.M.; Maideen N.C.; Fohimi N.A.M.; Zhou B.T.
title Influence of Drying Temperature in the Oven on Physical, Morphology and Mechanical Properties of Mycelium Composite
title_short Influence of Drying Temperature in the Oven on Physical, Morphology and Mechanical Properties of Mycelium Composite
title_full Influence of Drying Temperature in the Oven on Physical, Morphology and Mechanical Properties of Mycelium Composite
title_fullStr Influence of Drying Temperature in the Oven on Physical, Morphology and Mechanical Properties of Mycelium Composite
title_full_unstemmed Influence of Drying Temperature in the Oven on Physical, Morphology and Mechanical Properties of Mycelium Composite
title_sort Influence of Drying Temperature in the Oven on Physical, Morphology and Mechanical Properties of Mycelium Composite
publishDate 2025
container_title Pertanika Journal of Science and Technology
container_volume 33
container_issue 1
doi_str_mv 10.47836/pjst.33.1.10
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85217056989&doi=10.47836%2fpjst.33.1.10&partnerID=40&md5=b4ae69763a0a9c961926ac155182caba
description Mycelium, a root-like fungi network, possesses distinctive characteristics that render it an appealing contender for replacing polystyrene (PS). Drying in the oven is one of the most commonly used methods for producing mycelium composites. However, achieving its desired properties requires proper control of the drying temperature. This research aims to develop a mycelium-based composite by utilising an edible mushroom, specifically Pleurotus ostreatus (oyster mushroom), as an alternative to non-biodegradable materials for packaging applications. The composite is developed by inoculating Pleurotus ostreatus fungi into the substrate, mainly consisting of kenaf, wheat bran and CaCO3. Afterwards, the composite was incubated for 20 days and then subjected to drying at different oven temperatures (e.g. 40°C, 60°C, and 80°C) for 24 hours. Our findings indicate that the desirable mechanical properties of mycelium composite were found at 60°C, where flexural strength, flexural modulus and impact strength were obtained at 0.11 MPa, 4.15 GPa and 635.8 N, respectively. The moisture content was 26.13%, and the shrinkage was 20.73%. The obtained density of 0.15 g/cm3 was compared to the density of PS, which is 1.04 g/cm3. This research indicates that a lightweight composite material, consisting of a network of interconnected hyphae that function as a natural adhesive, holds significant potential as a viable solution for achieving a more sustainable and environmentally friendly future, primarily due to its biodegradability. © Universiti Putra Malaysia Press.
publisher Universiti Putra Malaysia Press
issn 1287680
language English
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