Author
Listed:
- Cláudio José Galdino da Silva Junior
(Northeast Biotechnology Network (RENORBIO), Federal Rural University of Pernambuco (UFRPE), Rua Dom Manuel de Medeiros, s/n, Dois Irmãos, Recife 52171-900, Brazil
Northeast Biotechnology Network (RENORBIO), Federal University of Alagoas (UFAL), Av. Lourival Melo Mota, s/n, Tabuleiro do Martins, Maceió 57072-970, Brazil
Advanced Institute of Technology and Innovation (IATI), Rua Potyra, 31, Prado, Recife 50751-310, Brazil
School of Technology and Communication, Catholic University of Pernambuco (UNICAP), Rua do Príncipe, 526, Boa Vista, Recife 50050-900, Brazil)
- Anantcha Karla Lafaiete de Holanda Cavalcanti
(Advanced Institute of Technology and Innovation (IATI), Rua Potyra, 31, Prado, Recife 50751-310, Brazil
Center for Communication and Design, Academic Center of the Agreste Region, Federal University of Pernambuco (UFPE), BR 104, Km 59, s/n-Nova Caruaru, Caruaru 50670-90, Brazil)
- Clécio José de Lacerda Lima
(Advanced Institute of Technology and Innovation (IATI), Rua Potyra, 31, Prado, Recife 50751-310, Brazil
Center for Communication and Design, Academic Center of the Agreste Region, Federal University of Pernambuco (UFPE), BR 104, Km 59, s/n-Nova Caruaru, Caruaru 50670-90, Brazil)
- Italo José Batista Durval
(Advanced Institute of Technology and Innovation (IATI), Rua Potyra, 31, Prado, Recife 50751-310, Brazil)
- Attilio Converti
(Advanced Institute of Technology and Innovation (IATI), Rua Potyra, 31, Prado, Recife 50751-310, Brazil
Department of Civil, Chemical and Environmental Engineering, University of Genoa (UNIGE), Pole of Chemical Engineering, Via Opera Pia, 15, 16145 Genoa, Italy)
- Andréa Fernanda de Santana Costa
(Advanced Institute of Technology and Innovation (IATI), Rua Potyra, 31, Prado, Recife 50751-310, Brazil
Center for Communication and Design, Academic Center of the Agreste Region, Federal University of Pernambuco (UFPE), BR 104, Km 59, s/n-Nova Caruaru, Caruaru 50670-90, Brazil)
- Leonie Asfora Sarubbo
(Northeast Biotechnology Network (RENORBIO), Federal Rural University of Pernambuco (UFRPE), Rua Dom Manuel de Medeiros, s/n, Dois Irmãos, Recife 52171-900, Brazil
Advanced Institute of Technology and Innovation (IATI), Rua Potyra, 31, Prado, Recife 50751-310, Brazil
School of Technology and Communication, Catholic University of Pernambuco (UNICAP), Rua do Príncipe, 526, Boa Vista, Recife 50050-900, Brazil)
Abstract
Agro-industrial waste-derived materials are promising candidates for short-cycle packaging applications. Here, we report a proof-of-concept for biodegradable biocomposites formulated with cassava residue (CR), sugarcane bagasse (SCB), and bacterial cellulose (BC) produced by symbiotic fermentation (SCOBY). This approach addresses the mechanical limitations typically associated with cassava starch-based matrices by introducing natural reinforcements to improve structural integrity and cohesion. A set of formulations with varying CR/BC/SCB ratios was processed and assessed through tensile and flexural testing, elongation at break, thermal analysis, and water-related behavior (sorption, absorption, and contact angle). Among the evaluated blends, formulation F1 (80% CR, 5% BC, 15% SCB) delivered the best overall balance between performance and moldability, achieving a tensile strength of 11.97 MPa and showing good dimensional stability. Biodegradability was confirmed by composting, reaching 72.74% mass loss after 84 days. Overall, BC incorporation improved matrix cohesion and enabled control of mechanical integrity and wettability in the blends, as highlighted for F1 (tensile strength 11.97 MPa; peak force 560.32 N; contact angle 65°; water absorption rate, WAR, 58.68%; sorption time 5.4 s). Given the abundance of sugarcane and cassava residues in Northeast Brazil, this low-complexity route leverages locally available feedstocks to add value to regional waste streams and support the partial replacement of synthetic polymers.
Suggested Citation
Cláudio José Galdino da Silva Junior & Anantcha Karla Lafaiete de Holanda Cavalcanti & Clécio José de Lacerda Lima & Italo José Batista Durval & Attilio Converti & Andréa Fernanda de Santana Costa & L, 2026.
"Molded Rigid Single-Use Containers from Cassava Residue, Sugarcane Bagasse, and Bacterial Cellulose Obtained from Low-Complexity Aqueous Processing,"
Resources, MDPI, vol. 15(3), pages 1-33, March.
Handle:
RePEc:gam:jresou:v:15:y:2026:i:3:p:45-:d:1896340
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