Use este identificador para citar ou linkar para este item: http://www.alice.cnptia.embrapa.br/alice/handle/doc/1188809
Título: Valorization of amazonian fruit agro-industrial by-products for sustainable production of bacterial cellulose nanofibers for food bio-packaging.
Autoria: MIRANDA, K. W. E.
SÁ, G. V.
FROTA, M. M.
SANTOS NETO, J. P. dos
CARVALHO, M. Â. A. P. de
NUNES, N. M. V.
MACHADO, M. T. da C.
SOUZA, T. M. de
BASTOS, M. do S. R.
VASCONCELOS, L. B. de
Afiliação: KELVI WILSON EVARISTO MIRANDA, UNIVERSIDADE FEDERAL DO CEARÁ; GABRIEL VIANA SÁ, UNIVERSIDADE FEDERAL DO CEARÁ; MARYANA MELO FROTA, UNIVERSIDADE FEDERAL DO CEARÁ; JOÃO PAIXÃO DOS SANTOS NETO, UNIVERSIDADE DA MADEIRA; MIGUEL ÂNGELO ALMEIDA PINHEIRO DE CARVALHO, UNIVERSIDADE DA MADEIRA; NUNO MIGUEL VELOSA NUNES, UNIVERSIDADE DA MADEIRA; MARIANA TEIXEIRA DA COSTA MACHADO, UNIVERSIDADE FEDERAL RURAL DO RIO DE JANEIRO; TIAGO MARCOLINO DE SOUZA, UNIVERSIDADE ESTADUAL DO AMAPÁ; MARIA DO SOCORRO ROCHA BASTOS, CNPAT; LUCICLÉIA BARROS DE VASCONCELOS, UNIVERSIDADE FEDERAL DO CEARÁ.
Ano de publicação: 2026
Referência: Polymer Bulletin, v. 83, n. 6, 290, June 2026.
Conteúdo: The expansion of agro-industry creates large volumes of carbon-rich organic waste that pose environmental challenges but also offer opportunities for valorization as sustainable feedstocks for biocomposite production. This study aimed to produce and characterize bacterial cellulose nanofibers (BCN) from agro-industrial wastes (AIW) from soursop (Annona muricata L.; BCN-S) and genipap (Genipa americana L.; BCN-G) collected in the Brazilian Amazon. Substrates (2.5% w/v) were heated to 70 °C for 15 min and inoculated with 10% (w/v) starter culture SCOBY (symbiotic culture of bacteria and yeasts). The substrates exhibited variations in the carbohydrate-to-cellulose conversion profile due to the selective activity of SCOBY. BCN-G showed a good yield (14.50 g/L), highest crystallinity index (CrI = 75.2%), a calculated crystallite size (Dav) of 163.1 nm and the presence of type I cellulose, as well as traces of type II cellulose. However, the control BCN sample (sucrose) exhibited a higher enthalpy of fusion (280 J/g), suggesting greater crystalline purity. BCN-G was incorporated into potato-starch films (5–15% v/v) yielding homogeneous, mostly transparent films with strong UV-blocking (> 99% in tested regions) and numerically lower water vapor permeability (from 1.36 to 1.24 g.mm/m2.h.kPa for the 15% BCN sample). However, differences in some barrier metrics were not statistically significant. Overall, BCN derived from genipap byproducts appears promising as a biodegradable reinforcing agent for starch-based food packaging, supporting circular economy goals and SDG 12 (Responsible Consumption and Production).
Thesagro: Celulose
Fermentação Aeróbica
Resíduo Industrial
Graviola
Jenipapo
Embalagem
Biofilme
Annona Muricata
Genipa Americana
NAL Thesaurus: Cellulose
Fermentation
Plant byproducts
Packaging materials
Food packaging
Palavras-chave: Nanofibras de celulose bacteriana
Valorização de resíduos agroindustriais
Subprodutos agroindustriais de frutas
SCOBY
Filmes de amido de batata
Embalagem biodegradável para alimentos
Barreira à radiação ultravioleta
Permeabilidade ao vapor de água
Bacterial cellulose nanofibers
Agro-industrial waste valorization
Fruit agro-industrial byproducts
Symbiotic culture of bacteria and yeasts
Potato starch films
Biodegradable food packaging
UV-shielding properties
Water vapor permeability
ISSN: 1436-2449
Digital Object Identifier: https://doi.org/10.1007/s00289-026-06348-y
Tipo do material: Artigo de periódico
Acesso: openAccess
Aparece nas coleções:Artigo em periódico indexado (CNPAT)


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