Bacterial cellulose: characterization of a biomaterial for apparel products application

Purpose This study aims to evaluate two bacterial cellulose (BC) films as an alternative textile surface suitable for use in the manufacture of clothing prototypes. Design/methodology/approach A combination of experiments for the production and characterization of BC films with traditional technique...

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Veröffentlicht in:Research Journal of Textile and Apparel 2022-11, Vol.26 (4), p.532-545
Hauptverfasser: Costa, Andréa Fernanda De Santana, Rocha, Maria Alice Vasconcelos, Fenrnandes, Laura Maria Abdon, Queiroz, Julia Atroch, Agra, Ana Carolina Monteiro Gonçalves, Amorim, Julia Didier Pedrosa, Sarubbo, Leonie Asfora
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Sprache:eng
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Zusammenfassung:Purpose This study aims to evaluate two bacterial cellulose (BC) films as an alternative textile surface suitable for use in the manufacture of clothing prototypes. Design/methodology/approach A combination of experiments for the production and characterization of BC films with traditional techniques for sewing fabrics was carried out. BC films were produced from the bacterum Gluconacetobacter hansenii UCP1619 and from Kombucha, a consortium of microorganisms grown on sugared tea. The BC films were then purified, characterized by scanning electron microscopy (SEM) and evaluated for mechanical strength. Two clothing prototypes were developed by combining BC films with a flat fabric composed of 70% linen and 30% polyester to assess the viability of the garment for future clothing making using biomaterials. Findings The results showed that the combination of flat fabric with BC-based biomaterials is a viable alternative for the innovative use of BC films in the manufacture of apparel products, especially after optimizing the mechanical properties of the artefact. Originality/value BC application studies in the textile industry are still in their early stages, although they are attracting more and more the attention of researchers around the world. The experiments carried out in this research provide new information on the handling and application of this material in innovative products for the textile industry.
ISSN:1560-6074
1560-6074
2515-8090
DOI:10.1108/RJTA-04-2021-0048