Fire-Safe Biobased Composites: Enhancing the Applicability of Biocomposites with Improved Fire Performance

Research has recently transitioned from the study of fossil-based materials to bio-sourced ones, following the quest to achieve sustainability. However, fire presents a unique hazard to bio-composite materials, which limits their applicability in various sectors. This necessitates an in-depth assess...

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Main Author: Dan Zhang
Format: Article
Language:English
Published: MDPI AG 2023-06-01
Series:Fire
Subjects:
Online Access:https://www.mdpi.com/2571-6255/6/6/229
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author Dan Zhang
author_facet Dan Zhang
author_sort Dan Zhang
collection DOAJ
description Research has recently transitioned from the study of fossil-based materials to bio-sourced ones, following the quest to achieve sustainability. However, fire presents a unique hazard to bio-composite materials, which limits their applicability in various sectors. This necessitates an in-depth assessment of the fire behaviour of biobased composites used for specific applications. Improving the fire properties of bio-composites with flame retardants tends to reduce mechanical strength. Therefore, this review focused on biobased composite materials for packaging, structural, automotive, and aeronautical applications that are both mechanically strong and fire safe. It was noticed that the interfacial bonding between the matrix and the reinforcement should be optimized. In addition, optimum amounts of flame retardants are required for better fire performance. This article covers flame retardants for biobased composites, the optimum amount required, and the extent of improvement to the thermal stability and flammability of the materials. This research will help material scientists and the like in their selection of biomass feedstock, flame retardants, and general materials for different types of applications.
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spelling doaj.art-0981fa354063455fbf3b79593d1c70582023-11-18T10:22:08ZengMDPI AGFire2571-62552023-06-016622910.3390/fire6060229Fire-Safe Biobased Composites: Enhancing the Applicability of Biocomposites with Improved Fire PerformanceDan Zhang0School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, ChinaResearch has recently transitioned from the study of fossil-based materials to bio-sourced ones, following the quest to achieve sustainability. However, fire presents a unique hazard to bio-composite materials, which limits their applicability in various sectors. This necessitates an in-depth assessment of the fire behaviour of biobased composites used for specific applications. Improving the fire properties of bio-composites with flame retardants tends to reduce mechanical strength. Therefore, this review focused on biobased composite materials for packaging, structural, automotive, and aeronautical applications that are both mechanically strong and fire safe. It was noticed that the interfacial bonding between the matrix and the reinforcement should be optimized. In addition, optimum amounts of flame retardants are required for better fire performance. This article covers flame retardants for biobased composites, the optimum amount required, and the extent of improvement to the thermal stability and flammability of the materials. This research will help material scientists and the like in their selection of biomass feedstock, flame retardants, and general materials for different types of applications.https://www.mdpi.com/2571-6255/6/6/229renewable resourcesflammabilitybiobased compositespackaging materialsautomotive and aerospace materials
spellingShingle Dan Zhang
Fire-Safe Biobased Composites: Enhancing the Applicability of Biocomposites with Improved Fire Performance
Fire
renewable resources
flammability
biobased composites
packaging materials
automotive and aerospace materials
title Fire-Safe Biobased Composites: Enhancing the Applicability of Biocomposites with Improved Fire Performance
title_full Fire-Safe Biobased Composites: Enhancing the Applicability of Biocomposites with Improved Fire Performance
title_fullStr Fire-Safe Biobased Composites: Enhancing the Applicability of Biocomposites with Improved Fire Performance
title_full_unstemmed Fire-Safe Biobased Composites: Enhancing the Applicability of Biocomposites with Improved Fire Performance
title_short Fire-Safe Biobased Composites: Enhancing the Applicability of Biocomposites with Improved Fire Performance
title_sort fire safe biobased composites enhancing the applicability of biocomposites with improved fire performance
topic renewable resources
flammability
biobased composites
packaging materials
automotive and aerospace materials
url https://www.mdpi.com/2571-6255/6/6/229
work_keys_str_mv AT danzhang firesafebiobasedcompositesenhancingtheapplicabilityofbiocompositeswithimprovedfireperformance