研究文章。抗坏血酸和铁对淀粉和聚己内酯多层膜机械和吸氧性能的影响

A. Mahieu, C. Terrié, N. Leblanc
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引用次数: 18

摘要

摘要采用共挤压法制备了热塑性淀粉(TPS)为芯层、聚ε-己内酯(PCL)为皮层的三层薄膜。在TPS层中分别添加15% w/w的抗坏血酸和1.5% w/w的铁粉,使其具有除氧能力,可作为活性食品包装。本研究表明,这些化合物也在不同层之间的相互作用中发挥作用。FTIR测量表明,抗坏血酸在TPS和PCL之间的界面处迁移,在那里它作为两种聚合物之间的相容剂,可能是通过在两种聚合物的极性功能之间产生新的相互作用。这导致了不同层之间更好的粘附,表现为多层膜TPS-PCL的粘附能从4.10−3 N·mm−1增加到含有活性组分的多层膜的12.10−3 N·mm−1。由于这种相容作用,含有抗坏血酸和铁的多层膜的机械性能得到了广泛的改善,平均最大抗拉强度为7 MPa,而不含活性成分的多层膜为3.7 MPa,断裂伸长率分别为1450%和290%。然而,尽管PCL具有疏水性,但tps基层的吸水性仅略有降低。多层膜显示活性氧清除特性,但与没有PCL层的活性膜相比,该反应的速率是2倍(没有PCL层的活性膜15天达到低于1%的氧气,大约30天达到与多层活性膜相同的氧气水平)。
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Research Article. Role of ascorbic acid and iron in mechanical and oxygen absorption properties of starch and polycaprolactone multilayer film
Abstract A trilayer film based on thermoplastic starch (TPS) for the core layer and poly(ε-caprolactone) (PCL) for the skin layers was obtained by coextrusion. Ascorbic acid and iron powder were added at respectively 15% and 1.5% w/w in the TPS layer for their capacity to act as oxygen scavenger, making the film usable as active food packaging. This study demonstrates that these compounds also play a role in the interactions between the different layers. FTIR measurements show that ascorbic acid migrates at the interface between TPS and PCL, where it acts as a compatibiliser between both polymers, probably by creating new interactions between polar functions of both polymers. This leads to a better adhesion of the different layers, demonstrated by the increase of the adhesion energy from 4.10−3 N·mm−1 for the multilayer film TPS-PCL to 12.10−3 N·mm−1 for the multilayer film containing the active components. Thanks to this compatibilising effect, the mechanical properties of the multilayer film containing ascorbic acid and iron are widely improved with an average maximal tensile strength of 7 MPa, against 3.7 MPa for the multilayer film without the active components and with an elongation at break of respectively 1450% against 290%. However, despite the hydrophobicity of PCL, the water sorption of the TPS-based layer is only slightly reduced. The multilayer film shows active oxygen scavenging properties but the rate of this reaction is divided by two compared to the active film without PCL layers (15 days to reach less than 1% oxygen for the active film without PCL layers and approximately 30 days to reach the same oxygen level with the multilayer active film).
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