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Sustainable and Green Production of Nanostructured Cellulose by a 2-Step Mechano-Enzymatic Process

Articolo
Data di Pubblicazione:
2023
Abstract:
Nanostructured cellulose (NC) represents an emerging sustainable biomaterial for diverse biotechnological applications; however, its production requires hazardous chemicals that render the process ecologically unfriendly. Using commercial plant-derived cellulose, an innovative strategy for NC production based on the combination of mechanical and enzymatic approaches was proposed as a sustainable alternative to conventional chemical procedures. After ball milling, the average length of the fibers was reduced by one order of magnitude (down to 10-20 mu m) and the crystallinity index decreased from 0.54 to 0.07-0.18. Moreover, a 60 min ball milling pre-treatment followed by 3 h Cellic Ctec2 enzymatic hydrolysis led to NC production (15% yield). Analysis of the structural features of NC obtained by the mechano-enzymatic process revealed that the diameters of the obtained cellulose fibrils and particles were in the range of 200-500 nm and approximately 50 nm, respectively. Interestingly, the film-forming property on polyethylene (coating approximately equal to 2 mu m thickness) was successfully demonstrated and a significant reduction (18%) of the oxygen transmission rate was obtained. Altogether, these findings demonstrated that nanostructured cellulose could be successfully produced using a novel, cheap, and rapid 2-step physico-enzymatic process that provides a potential green and sustainable route that could be exploitable in future biorefineries.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
nanostructured cellulose; enzymatic cocktails; ball milling; functional coating
Elenco autori:
Errico, MARIA EMANUELA; Gentile, Gennaro; Avolio, Roberto; Castaldo, Rachele
Autori di Ateneo:
AVOLIO ROBERTO
CASTALDO RACHELE
ERRICO MARIA EMANUELA
GENTILE GENNARO
Link alla scheda completa:
https://iris.cnr.it/handle/20.500.14243/435422
Pubblicato in:
POLYMERS
Journal
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