The research on bioplastics (both biobased and biodegradable) is steadily growing and discovering environmentally friendly substitutes for conventional plastic. This review highlights the significance of bioplastics, analyzing, for the first time, the state of the art concerning the use of agri-food waste as an alternative substrate for biopolymer generation using Haloferax mediterranei. H. mediterranei is a highly researched strain able to produce polyhydroxybutyrate (PHB) since it can grow and produce bioplastic in high-salinity environments without requiring sterilization. Extensive research has been conducted on the genes and pathways responsible for PHB production using H. mediterranei to find out how fermentation parameters can be regulated to enhance cell growth and increase PHB accumulation. This review focuses on the current advancements in utilizing food waste as a substitute for costly substrates to reduce feedstock expenses. Specifically, it examines the production of biomass and the recovery of PHB from agri-food waste. Furthermore, it emphasizes the characterization of PHB and the significance of hydroxyvalerate (HV) abundance in the formation of Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) copolymer. The downstream processing options are described, and the crucial factors associated with industrial scale-up are assessed, including substrates, bioreactors, process parameters, and bioplastic extraction and purification. Additionally, the economic implications of various options are discussed.

Bioplastic production from agri-food waste through the use of Haloferax mediterranei. A comprehensive initial overview / Longo, Angela; Fanelli, Francesca; Villano, Marianna; Montemurro, Marco; Rizzello, CARLO GIUSEPPE. - In: MICROORGANISMS. - ISSN 2076-2607. - 12:6(2024). [10.3390/microorganisms12061038]

Bioplastic production from agri-food waste through the use of Haloferax mediterranei. A comprehensive initial overview

Angela Longo
Primo
Investigation
;
Marianna Villano;Carlo Giuseppe Rizzello
2024

Abstract

The research on bioplastics (both biobased and biodegradable) is steadily growing and discovering environmentally friendly substitutes for conventional plastic. This review highlights the significance of bioplastics, analyzing, for the first time, the state of the art concerning the use of agri-food waste as an alternative substrate for biopolymer generation using Haloferax mediterranei. H. mediterranei is a highly researched strain able to produce polyhydroxybutyrate (PHB) since it can grow and produce bioplastic in high-salinity environments without requiring sterilization. Extensive research has been conducted on the genes and pathways responsible for PHB production using H. mediterranei to find out how fermentation parameters can be regulated to enhance cell growth and increase PHB accumulation. This review focuses on the current advancements in utilizing food waste as a substitute for costly substrates to reduce feedstock expenses. Specifically, it examines the production of biomass and the recovery of PHB from agri-food waste. Furthermore, it emphasizes the characterization of PHB and the significance of hydroxyvalerate (HV) abundance in the formation of Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) copolymer. The downstream processing options are described, and the crucial factors associated with industrial scale-up are assessed, including substrates, bioreactors, process parameters, and bioplastic extraction and purification. Additionally, the economic implications of various options are discussed.
2024
Haloferax mediterranei; bioplastics; polyhydroxyalkanoates; agri-food waste; bioreactor
01 Pubblicazione su rivista::01g Articolo di rassegna (Review)
Bioplastic production from agri-food waste through the use of Haloferax mediterranei. A comprehensive initial overview / Longo, Angela; Fanelli, Francesca; Villano, Marianna; Montemurro, Marco; Rizzello, CARLO GIUSEPPE. - In: MICROORGANISMS. - ISSN 2076-2607. - 12:6(2024). [10.3390/microorganisms12061038]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1712075
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