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Influence of storage conditions on starch/PVA films containing cellulose nanofibers

机译:贮存条件对含纤维素纳米纤维的淀粉/ PVA薄膜的影响

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摘要

Cellulose nanofibers (CN) with high aspect ratio were obtained and their transverse modulus (Et) was determined for the first time by peak force (PF) QNM (quantitative nanomechanical mapping). The PF QNM value of Et (18.8 GPa) was comparable with that of cellulose determined by other methods. CN were used as reinforcements in starch/poly(vinyl alcohol) (S/PVA) cross-linked films and the influence of storage conditions on the properties of these films was investigated in this paper. It was found that over 4wt%, CN form a real network and hinder starch recrystallization. CN determined a significant increase of strength and stiffness of S/PVA depending on storage conditions. Two fold increase of modulus was observed in thermal treated samples compared to fresh ones and the increase of both strength and modulus in samples exposed to humid atmosphere. PF QNM successfully explains the influence of moisture on the properties of the films exposed to humid atmosphere, emphasizing new well organized sub-micron amorphous formations on their surface. Starch films with 7 wt% CN showed strength and stiffness close to that of polyolefines (19.5 MPa and 1199 MPa, respectively), and can be seen as a low cost "green" substitute for application in food packaging and conservation. (C) 2015 Elsevier B.V. All rights reserved.
机译:获得了具有高长宽比的纤维素纳米纤维(CN),并通过峰力(PF)QNM(定量纳米机械映射)首次确定了其横向模量(Et)。 Et(18.8 GPa)的PF QNM值与通过其他方法测定的纤维素相当。 CN被用作淀粉/聚乙烯醇(S / PVA)交联薄膜的增强材料,并研究了储存条件对这些薄膜性能的影响。发现超过4wt%的CN形成真实的网络并阻碍淀粉重结晶。 CN根据储存条件确定S / PVA的强度和刚度显着提高。与新鲜样品相比,热处理样品的模量增加了两倍,而暴露在潮湿环境中的样品的强度和模量增加了。 PF QNM成功地解释了水分对暴露于潮湿气氛的薄膜性能的影响,强调了表面上新的组织良好的亚微米无定形形成。具有7 wt%CN的淀粉薄膜显示出的强度和刚度接近聚烯烃(分别为19.5 MPa和1199 MPa),并且可以看作是用于食品包装和保存的低成本“绿色”替代品。 (C)2015 Elsevier B.V.保留所有权利。

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