Titolo | Re-use of vegetable wastes as cheap substrates for extremophile biomass production |
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Tipo di pubblicazione | Articolo su Rivista peer-reviewed |
Anno di Pubblicazione | 2011 |
Autori | Di Donato, P., Fiorentino Gabriella, Anzelmo G., Tommonaro G., Nicolaus B., and Poli A. |
Rivista | Waste and Biomass Valorization |
Volume | 2 |
Paginazione | 103-111 |
ISSN | 18772641 |
Parole chiave | batch fermentation, Biomass, Biomass productions, Biomolecules, Biopolymers, Cheap substrate, Citrus limon, Complex media, Daucus carota, Dialysis, Dialysis fermentation, Different modes, Ecology, Enzyme assays, Enzyme production, Enzymes, Extremophiles, Fermentation, Fermentation media, Foeniculum vulgare, Fruits, Growth media, Industrial processing, Lycopersicon esculentum, Microbial biomass, Microbial strain, NMR analysis, PHB production, Production, Sole carbon source, Vegetable wastes, Vegetables, Wastes |
Abstract | Purpose Wastes generated from industrial processing of tomato, lemon, carrot and fennel were used as sole carbon sources to support cheap microbial biomass production of thermophilic and halophilic microbial strains. The production of enzymes and biopolymers was also investigated. Methods The wastes were tested as growth media for extremophiles in two different modes: batch fermentation (BF) and dialysis fermentation (DF). Enzyme assays and NMR analysis of biopolymers were also performed. Results All the wastes afforded microbial biomass production yields comparable to those achieved using the standard complex media (CM). DF conditions allowed quantitative microbial biomass recovery and were used to study biomolecules production. Fennel and lemon wastes could provide appreciable enzyme production yields; carrot residues supported PHB production in comparable amounts with respect to the relative CM. Conclusion Vegetable wastes can be used as growth media for extremophile biomass fermentation thus providing a cheaper way to produce biotechnological extremozymes or biopolymers using zero cost feedstocks. Their use as fermentation media could also represent an alternative and low environmentally impacting method for vegetable wastes management. © Springer Science+Business Media B.V. 2011. |
Note | cited By 15 |
URL | https://www.scopus.com/inward/record.uri?eid=2-s2.0-80051680814&doi=10.1007%2fs12649-011-9062-x&partnerID=40&md5=b554a705f5f5c5c046ea3f46642fa52a |
DOI | 10.1007/s12649-011-9062-x |
Citation Key | DiDonato2011103 |