Effect of growth factors on the production of mycelium-based biofoam

Mycelium-based biofoam has the potential to become an alternative to petroleum-polymeric based-foam by utilising fungal mycelium and lignocellulosic material as the matrix and substrate, respectively. The lignocellulosic materials, which were rice husk, sawdust, and sugarcane bagasse, which is cruci...

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Main Authors: Nashiruddin, Noor Idayu, Chua, Kai Shin, Mansor, Azmi Fadziyana, A. Rahman, Roshanida, Lai, Jau Choy, Wan Azelee, Nur Izyan, El Enshasy, Hesham
Format: Article
Language:English
Published: Springer Science and Business Media Deutschland GmbH 2022
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Online Access:http://eprints.utm.my/103229/1/RoshanidaARahman2022_EffectofGrowthFactorsontheProductionofMyceliumBased.pdf
http://eprints.utm.my/103229/
http://dx.doi.org/10.1007/s10098-021-02146-4
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spelling my.utm.1032292023-10-24T09:52:07Z http://eprints.utm.my/103229/ Effect of growth factors on the production of mycelium-based biofoam Nashiruddin, Noor Idayu Chua, Kai Shin Mansor, Azmi Fadziyana A. Rahman, Roshanida Lai, Jau Choy Wan Azelee, Nur Izyan El Enshasy, Hesham TP Chemical technology Mycelium-based biofoam has the potential to become an alternative to petroleum-polymeric based-foam by utilising fungal mycelium and lignocellulosic material as the matrix and substrate, respectively. The lignocellulosic materials, which were rice husk, sawdust, and sugarcane bagasse, which is crucial for the production of biofoam, were tested as a substrate for Pleurotus ostreatus mycelium growth during the screening procedure. Three growth factors were varied during mycelium-based biofoam production: incubation temperature, spawn loading, and moisture content. In this study, rice husk was the ideal substrate in the production of mycelium biofoam compared to other fungi. The inhibition of P. ostreatus mycelium growth at 30 °C incubation temperature was due to decay and contamination. On the other hand, by varying the growth factor of mycelium biofoam on rice husk, the optimum dry density of mycelium–biofoam was observed at 50% (w/w) moisture content (1.07 g/cm3), while the optimum compressive strength was observed at 40% (w/w) spawn loading (1.350 MPa). These results showed that varying the growth factor could influence the mechanical behaviour of the material. The morphology of the biofoam was also observed through a scanning electron microscope. Short and highly entangled tube-like structures and compact filaments forming a material were seen, responsible for the lightness characteristic of the material. The functional group of the biofoam was also determined using a Fourier transform infrared spectrophotometer. A new band of proteins and lipids was detected at 1633 cm-1 and 3280 cm-1 in the biofoam. It clearly shows the chemical nature of feeding substrate responsible for the changes of material spectra. Therefore, this study highlighted that the biodegradable mycelium biofoam of P. ostreatus using rice husk as a substrate is a promising alternative to polymeric foam. Springer Science and Business Media Deutschland GmbH 2022 Article PeerReviewed application/pdf en http://eprints.utm.my/103229/1/RoshanidaARahman2022_EffectofGrowthFactorsontheProductionofMyceliumBased.pdf Nashiruddin, Noor Idayu and Chua, Kai Shin and Mansor, Azmi Fadziyana and A. Rahman, Roshanida and Lai, Jau Choy and Wan Azelee, Nur Izyan and El Enshasy, Hesham (2022) Effect of growth factors on the production of mycelium-based biofoam. Clean Technologies and Environmental Policy, 24 (1). pp. 351-361. ISSN 1618-954X http://dx.doi.org/10.1007/s10098-021-02146-4 DOI : 10.1007/s10098-021-02146-4
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Nashiruddin, Noor Idayu
Chua, Kai Shin
Mansor, Azmi Fadziyana
A. Rahman, Roshanida
Lai, Jau Choy
Wan Azelee, Nur Izyan
El Enshasy, Hesham
Effect of growth factors on the production of mycelium-based biofoam
description Mycelium-based biofoam has the potential to become an alternative to petroleum-polymeric based-foam by utilising fungal mycelium and lignocellulosic material as the matrix and substrate, respectively. The lignocellulosic materials, which were rice husk, sawdust, and sugarcane bagasse, which is crucial for the production of biofoam, were tested as a substrate for Pleurotus ostreatus mycelium growth during the screening procedure. Three growth factors were varied during mycelium-based biofoam production: incubation temperature, spawn loading, and moisture content. In this study, rice husk was the ideal substrate in the production of mycelium biofoam compared to other fungi. The inhibition of P. ostreatus mycelium growth at 30 °C incubation temperature was due to decay and contamination. On the other hand, by varying the growth factor of mycelium biofoam on rice husk, the optimum dry density of mycelium–biofoam was observed at 50% (w/w) moisture content (1.07 g/cm3), while the optimum compressive strength was observed at 40% (w/w) spawn loading (1.350 MPa). These results showed that varying the growth factor could influence the mechanical behaviour of the material. The morphology of the biofoam was also observed through a scanning electron microscope. Short and highly entangled tube-like structures and compact filaments forming a material were seen, responsible for the lightness characteristic of the material. The functional group of the biofoam was also determined using a Fourier transform infrared spectrophotometer. A new band of proteins and lipids was detected at 1633 cm-1 and 3280 cm-1 in the biofoam. It clearly shows the chemical nature of feeding substrate responsible for the changes of material spectra. Therefore, this study highlighted that the biodegradable mycelium biofoam of P. ostreatus using rice husk as a substrate is a promising alternative to polymeric foam.
format Article
author Nashiruddin, Noor Idayu
Chua, Kai Shin
Mansor, Azmi Fadziyana
A. Rahman, Roshanida
Lai, Jau Choy
Wan Azelee, Nur Izyan
El Enshasy, Hesham
author_facet Nashiruddin, Noor Idayu
Chua, Kai Shin
Mansor, Azmi Fadziyana
A. Rahman, Roshanida
Lai, Jau Choy
Wan Azelee, Nur Izyan
El Enshasy, Hesham
author_sort Nashiruddin, Noor Idayu
title Effect of growth factors on the production of mycelium-based biofoam
title_short Effect of growth factors on the production of mycelium-based biofoam
title_full Effect of growth factors on the production of mycelium-based biofoam
title_fullStr Effect of growth factors on the production of mycelium-based biofoam
title_full_unstemmed Effect of growth factors on the production of mycelium-based biofoam
title_sort effect of growth factors on the production of mycelium-based biofoam
publisher Springer Science and Business Media Deutschland GmbH
publishDate 2022
url http://eprints.utm.my/103229/1/RoshanidaARahman2022_EffectofGrowthFactorsontheProductionofMyceliumBased.pdf
http://eprints.utm.my/103229/
http://dx.doi.org/10.1007/s10098-021-02146-4
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score 13.160551