Processing and properties of eco-friendly bio-nanocomposite films filled with cellulose nanocrystals from sugarcane bagasse

被引:173
作者
El Achaby, Mounir [1 ]
El Miri, Nassima [2 ]
Aboulkas, Adil [3 ]
Zahouily, Mohamed [2 ]
Bilal, Essaid [4 ]
Barakat, Abdellatif [5 ]
Solhy, Abderrahim [1 ]
机构
[1] Mohammed VI Polytech Univ, Ctr Adv Mat, Lot 660 Hay Moulay Rachid, Benguerir 43150, Morocco
[2] Moroccan Fdn Adv Sci Innovat & Res MAScIR, Rabat Design, Rue Mohamed El Jazouli, Rabat 10100, Morocco
[3] Univ Sultan Moulay Slimane, Fac Polydisciplinaire Beni Mellal, Lab Interdisciplinaire Rech Sci & Tech, BP 592, Beni Mellal 23000, Morocco
[4] Complexe Ind Jorf Lasfar, OCP Grp, R&D OCP, BP 118, El Jadida, Morocco
[5] Univ Montpelier, INRA, IATE, CIRAD,Montpellier SupAgro, F-34060 Montpellier, France
关键词
Cellulose nanocrystals; Polymer blend; Bio-nanocomposite films; MECHANICAL-PROPERTIES; FORMING SOLUTIONS; RHEOLOGICAL PROPERTIES; DIELECTRIC-PROPERTIES; PHYSICAL-PROPERTIES; TENSILE PROPERTIES; POLYVINYL-ALCOHOL; BARRIER; BLEND; EXTRACTION;
D O I
10.1016/j.ijbiomac.2016.12.040
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Novel synthesis strategy of eco-friendly bio-nanocomposite films have been exploited using cellulose nanocrystals (CNC) and polyvinyl alcohol/carboxymethyl cellulose (PVA/CMC) blend matrix as a potential in food packaging application. The CNC were extracted from sugarcane bagasse using sulfuric acid hydrolysis, and they were successfully characterized regarding their morphology, size, crystallinity and thermal stability. Thereafter, PVA/CMC-CNC bio-nanocomposite films, at various CNC contents (0.5-10 wt%), were fabricated by the solvent casting method, and their properties were investigated. It was found that the addition of 5 wt% CNC within a PVA/CMC increased the tensile modulus and strength by 141% and 83% respectively, and the water vapor permeability was reduced by 87%. Additionally, the bio-nanocomposites maintained the same transparency level of the PVA/CMC blend film (transmittance of similar to 90% in the visible region), suggesting that the CNC were dispersed at the nanoscale. In these bio-nanocomposites, the adhesion properties and the large number of functional groups that are present in the CNC's surface and the macromolecular chains of the PVA/CMC blend are exploited to improve the interfacial interactions between the CNC and the blend. Consequently, these eco-friendly structured bio-nanocomposites with superior properties are expected to be useful in food packaging applications. (C) 2016 Published by Elsevier B.V.
引用
收藏
页码:340 / 352
页数:13
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