Hybridizations and reinforcements in mycelium composites: A review

被引:7
作者
Womer, Scott [1 ]
Huynh, Tien [2 ]
John, Sabu [1 ]
机构
[1] RMIT Univ, Sch Engn, POB 71, Bundoora, VIC 3083, Australia
[2] RMIT Univ, Sch Sci, POB 71, Bundoora, VIC 3083, Australia
来源
BIORESOURCE TECHNOLOGY REPORTS | 2023年 / 22卷
关键词
Mycelium Composites; Hybridization; Reinforcement; Sustainable materials; Mechanical properties; MECHANICAL-PROPERTIES; BIOCOMPOSITES; POLYSTYRENE; FUNGI;
D O I
10.1016/j.biteb.2023.101456
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Mycelium composites have gained attention in recent years for its environmental credentials and low-cost manufacturing. This emerging material has shown comparable strength to polystyrene foams and particle boards, resulting in its consideration as a sustainable alternative for many applications. Researchers have worked to improve many of mycelium composites properties; however, its strength has seen particular focus. The subject of this review is the methods of hybridization and reinforcement explored to strengthen mycelium composite boards and foams. The result of these methods is highly varied, with most having little effect on improving mycelium composites beyond control samples. Methods which did improve strength were often impractical and/ or weaker than samples in which no hybridization or reinforcement was used. While mycelium composites remain an interesting solution for more sustainable materials, methods of hybridization and reinforcement do not appear to be contributing to viable improvements which could be applied to new applications.
引用
收藏
页数:11
相关论文
共 130 条
  • [41] Physico-Mechanical and Thermodynamic Properties of Mycelium-Based Biocomposites: A Review
    Girometta, Carolina
    Picco, Anna Maria
    Baiguera, Rebecca Michela
    Dondi, Daniele
    Babbini, Stefano
    Cartabia, Marco
    Pellegrini, Mirko
    Savino, Elena
    [J]. SUSTAINABILITY, 2019, 11 (01)
  • [42] Morphological and physico-mechanical properties of mycelium biocomposites with natural reinforcement particles
    Gou, Leyu
    Li, Sa
    Yin, Jiangsong
    Li, Tingting
    Liu, Xin
    [J]. CONSTRUCTION AND BUILDING MATERIALS, 2021, 304
  • [43] Granta A., 2020, Material property charts
  • [44] Advanced Materials From Fungal Mycelium: Fabrication and Tuning of Physical Properties
    Haneef, Muhammad
    Ceseracciu, Luca
    Canale, Claudio
    Bayer, Ilker S.
    Heredia-Guerrero, Jose A.
    Athanassiou, Athanassia
    [J]. SCIENTIFIC REPORTS, 2017, 7
  • [45] Study on the mechanical properties of the latex-mycelium composite
    He Juan
    Cheng Cong-mi
    Su Da-gen
    Zhong Ming-feng
    [J]. SUSTAINABLE DEVELOPMENT OF URBAN AND RURAL AREAS, 2014, 507 : 415 - +
  • [46] Heisel F., 2017, World Congress on Sustainable Technologies (WCST-2017), P45
  • [47] The Effects of Temperature and Nutritional Conditions on Mycelium Growth of Two Oyster Mushrooms (Pleurotus ostreatus and Pleurotus cystidiosus)
    Hoa, Ha Thi
    Wang, Chun-Li
    [J]. MYCOBIOLOGY, 2015, 43 (01) : 14 - 23
  • [48] Multi-Organism Composites: Combined Growth Potential of Mycelium and Bacterial Cellulose
    Hoenerloh, Aileen
    Ozkan, Dilan
    Scott, Jane
    [J]. BIOMIMETICS, 2022, 7 (02)
  • [49] Fungal Mycelium and Cotton Plant Materials in the Manufacture of Biodegradable Molded Packaging Material: Evaluation Study of Select Blends of Cotton Byproducts
    Holt, G. A.
    McIntyre, G.
    Flagg, D.
    Bayer, E.
    Wanjura, J. D.
    Pelletier, M. G.
    [J]. JOURNAL OF BIOBASED MATERIALS AND BIOENERGY, 2012, 6 (04) : 431 - 439
  • [50] Institute A.N.S, 2016, ANSI A208.1, V2016