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Nanostructured cellulose-based aerogels: influence of chemical/mechanical cascade processes on quality index for benchmarking dye pollutant adsorbents in wastewater treatment

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Author
Pirozzi, Annachiara
Rincón, E.
Espinosa, Eduardo
Donsi, Francesco
Serrano, Luis
Publisher
MDPI
Date
2023
Subject
Agri-food residues
Nanocellulose
TEMPO oxidation
High-pressure homogenization
Wastewater treatment
Methylene blue
Dyes
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Abstract
Nanostructured cellulose has emerged as an efficient bio-adsorbent aerogel material, offering biocompatibility and renewable sourcing advantages. This study focuses on isolating (ligno)cellulose nanofibers ((L)CNFs) from barley straw and producing aerogels to develop sustainable and highly efficient decontamination systems. (2) Methods: (Ligno)cellulose pulp has been isolated from barley straw through a pulping process, and was subsequently deconstructed into nanofibers employing various pre-treatment methods (TEMPO-mediated oxidation process or PFI beater mechanical treatment) followed by the high-pressure homogenization (HPH) process. (3) Results: The aerogels made by (L)CNFs, with a higher crystallinity degree, larger aspect ratio, lower shrinkage rate, and higher Young’s modulus than cellulose aerogels, successfully adsorb and remove organic dye pollutants from wastewater. (L)CNF-based aerogels, with a quality index (determined using four characterization parameters) above 70%, exhibited outstanding contaminant removal capacity over 80%. The high specific surface area of nanocellulose isolated using the TEMPO oxidation process significantly enhanced the affinity and interactions between hydroxyl and carboxyl groups of nanofibers and cationic groups of contaminants. The efficacy in adsorbing cationic dyes in wastewater onto the aerogels was verified by the Langmuir adsorption isotherm model. (4) Conclusions: This study offers insights into designing and applying advanced (L)CNF-based aerogels as efficient wastewater decontamination and environmental remediation platforms.
URI
http://hdl.handle.net/10396/26370
Fuente
Gels, 9(12), 958 (2023)
Versión del Editor
https://doi.org/10.3390/gels9120958
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