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Titlebook: Cellulose Chemistry and Properties: Fibers, Nanocelluloses and Advanced Materials; Orlando J. Rojas Book 2016 Springer International Publi

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Cellulose Chemistry and Properties: Fibers, Nanocelluloses and Advanced Materials
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0065-3195 rom Cellulose Solutions in Ionic Liquids Qi Zhou et al.:Cellulose-based biocomposites  Orlando Rojas et al.:Films of cellulose nanocrystals and nanofibrils  Pedro Fardim et al.:Functional cellulose particles Wadood Hamad et al.:Cellulose Composites978-3-319-79875-2978-3-319-26015-0Series ISSN 0065-3195 Series E-ISSN 1436-5030
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I-Chin Wu,Yi-Sheng Lin,Che-Hung Liu. Novel cellulose derivatives are available by chemical modification under heterogeneous or homogeneous conditions, depending on the cellulose reactivity. In particular, unconventional nucleophilic displacement reactions yielding products for high-value applications are highlighted. Novel amino cell
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Astronomy and Astrophysics Libraryo[4.3.0]non-5-enium acetate, as an excellent solvent for cellulose fiber spinning. The use of moderate process temperatures in this process avoids the otherwise extensive cellulose degradation. The structural and morphological properties of the spun fibers are described, as determined by WAXS, biref
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Astronomy and Astrophysics Library. Thus, enzymatic treatments are favorable for effecting fiber deconstruction into nanocellulose. In addition to reviewing nanocellulose production by enzymatic routes, we discuss incorporation of enzyme activity to produce biodegradable systems for biomedical applications and food packaging. Relate
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Book 2016roperties of cellulose  Herbert Sixta, Michael Hummel et al.Cellulose Fibers Regenerated from Cellulose Solutions in Ionic Liquids Qi Zhou et al.:Cellulose-based biocomposites  Orlando Rojas et al.:Films of cellulose nanocrystals and nanofibrils  Pedro Fardim et al.:Functional cellulose particles Wadood Hamad et al.:Cellulose Composites
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