The optimization of physico-mechanical properties of bionanocomposite films based on gluten/ carboxymethyl cellulose/ cellulose nanofiber using response surface methodology

被引:54
作者
Bagheri, Vahid [1 ]
Ghanbarzadeh, Babak [1 ,2 ]
Ayaseh, Ali [1 ]
Ostadrahimi, Alireza [3 ]
Ehsani, Ali [4 ]
Alizadeh-Sani, Mahmood [5 ]
Adun, Perihan Aysal [2 ]
机构
[1] Univ Tabriz, Fac Agr, Dept Food Sci & Technol, POB 51666-16471, Tabriz, Iran
[2] Near East Univ, Fac Engn, Dept Food Engn, POB 99138,Mersin 10, Nicosia, Turkey
[3] Tabriz Univ Med Sci, Nutr Res Ctr, Tabriz, Iran
[4] Tabriz Univ Med Sci, Fac Nutr & Food Sci, Dept Food Sci & Technol, Tabriz, Iran
[5] Univ Tehran Med Sci, Fac Publ Hlth, Food Safety & Hyg, Tehran, Iran
关键词
Gluten; Carboxymethyl cellulose; Cellulose nanofiber; Nanocomposites; Response surface methodology; WHEAT GLUTEN; BARRIER PROPERTIES; PROTEIN;
D O I
10.1016/j.polymertesting.2019.105989
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
In the present study, new biodegradable nanocomposite films were produced. The effect of wheat gluten (WG) (1-2.5 wt%), carboxymethyl cellulose (CMC) (0.5-1 wt%) and cellulose nanofiber (CNF) (0-10 wt% based on gluten and CMC biopolymers solid matter in each formula) concentration on water vapor permeability (WVP), mechanical and color properties of the biodegradable nanocomposites were investigated using response surface methodology (RSM). Regression models were also developed for all responses as a function of linear, interaction and quadratic terms of WG/CMC/CNF concentrations. The optimum point with 1 wt% gluten, 0.686 wt% CMC and 8.549 wt% CNF for a maximum desirability of 0.878 was obtained. Furthermore, the microstructure, surface topography and the distribution quality of cellulose nanofiber in the biopolymer matrix were evaluated by scanning electron microscopy (FE-SEM), atomic force microscopy (AFM) and X ray diffraction (XRD) analysis.
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页数:11
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