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Improving the water resistance of nanocellulose-based films with polyhydroxyalkanoates processed by the electrospinning coating technique

机译:用电纺丝涂层技术加工多羟基烷烃的纳米纤维素基膜的耐水性

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摘要

Polyhydroxyalkanoates (PHAs) comprise a family of biodegradable aliphatic polyesters with enhanced sustainable profile and high water vapor barrier. As environmentally friendly materials, nanostructured cellulose-based films, also called nanopapers, such as films made of cellulose nanofibrils (CNFs) and lignocellulose nanofibrils (LCNFs), are also of growing interest due to their high mechanical strength and outstanding oxygen barrier properties at dry conditions. Unfortunately, nanopapers are highly hydrophilic, lacking of sufficient moisture resistance for uses in, for instance, food packaging. The present study reports, for the first time, on the effect of electrospun poly(3-hydroxybutyrate) (PHB) and poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) double side coatings on the morphology, water contact angle, mechanical properties, and barrier performance of CNF and LCNF films. The resultant multilayer structures showed significantly improved water contact resistance, more balanced mechanical properties, and higher barrier performance against water vapor in comparison to the neat nanopapers. Although the PHA-coated nanopapers presented slightly lower aroma barrier due to the intrinsic affinity of PHA for limonene uptake, these sustainable multilayer films further improved the oxygen performance of the nanopapers, showing significant potential as barrier materials even at high humidity conditions. As a result, the here-developed novel films, based on nanopapers double side coated with electrospun PHB and PHBV layers, appear as a very promising fully bio-based material concept for food packaging applications due to their outstanding water vapor and oxygen barrier performance.
机译:聚羟基烷烷(PHA)包含一种可生物降解的脂族聚酯家族,具有增强的可持续型材和高水蒸气屏障。作为环保材料,纳米结构纤维素的薄膜,也称为纳米粉刺,例如由纤维素纳米纤维(CNFS)和木质纤维素纳米纤维(LCNF)的薄膜,由于它们的高机械强度和干燥的优异氧气屏障性能而产生的感兴趣。状况。不幸的是,纳米粉粉是高度亲水的,缺乏足够的防潮性,例如食品包装。本研究报告称,首次对Electur纺聚(3-羟基丁酸盐)(PHB)和聚(3-羟基丁酸酯-CO-3-羟基戊烯)(PHBV)双侧涂层的作用进行了作用,水接触角CNF和LCNF薄膜的机械性能和阻隔性能。与整齐的纳米涂布物相比,所得的多层结构显着提高了水接触电阻,更平衡的机械性能和较高的水蒸气的阻挡性能。虽然PHA涂覆的纳米粉覆盖物由于PHA用于溶胶的固核吸收而呈稍低的香气屏障,但是这些可持续的多层膜进一步改善了纳米粉覆的氧性能,即使在高湿度条件下也显示出屏障材料的显着潜力。结果,基于纳米粉刺双侧涂有Electurpum PHB和PHBV层的纳米粉刺双侧,由于它们出色的水蒸气和氧气阻隔性能,因此出现了用于食品包装应用的非常有前景的完全生物基础材料概念。

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