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Designing packaging materials with viscoelastic and gas barrier properties by optimized processing of poly(3-hydroxybutyrate-co-3-hydroxyvalerate) with lignin

机译:通过木质素聚(3-羟基丁酸酯-co-3-羟基戊酸酯)的优化加工设计具有粘弹性和阻气性的包装材料

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Microbial poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBHV) bio-polyester was combined by thermoforming with Kraft lignin in order to design new advanced composite materials for packaging purpose. After assessing the compatibility of the two raw materials, the thermoformed composite sheets were investigated in order to assess the impact of the lignin fraction (between 0 and 10 wt.%) on melting and crystallization, behavior, thermo-oxidative stability, mechanical and viscoelastic properties, and permeability for oxygen and carbon dioxide. It turned out that the applied Kraft lignin is highly compatible with microbial PHBHV, and by exerting a reinforcing effect, acts as an active additive. As aspired, the gas permeability was decreased by combining PHBHV with 1 wt.% lignin; here, a reduction of permeability for oxygen by 77% and by 91% for carbon dioxide, respectively, was observed if compared to the native bio-polyester specimens. Also the low thermo-oxidation stability, a typical characteristic of pure PHBHV, was increased for the lignin-containing materials. This first report on thermoformed composite materials of microbial PHBHV and lignin suggests a new class of bio-based polymer materials to be applied for packaging of various easily perishable goods. (C) 2015 Elsevier B.V. All rights reserved.
机译:微生物聚(3-羟基丁酸酯-co-3-羟基戊酸酯)(PHBHV)生物聚酯通过与卡夫木质素热成型相结合,以设计用于包装目的的新型先进复合材料。在评估了两种原料的相容性之后,研究了热成型的复合片材,以评估木质素含量(0-10 wt。%)对熔融和结晶,行为,热氧化稳定性,机械和粘弹性的影响。性质,以及氧气和二氧化碳的渗透性。事实证明,所施加的牛皮纸木质素与微生物PHBHV高度相容,并且通过发挥增强作用而充当活性添加剂。如所期望的,通过将PHBHV与1重量%的木质素组合而降低了气体渗透性;在这里,与天然生物聚酯样品相比,氧气的渗透率分别降低了77%和91%。含木质素的材料还提高了低热氧化稳定性,这是纯PHBHV的典型特征。关于微生物PHBHV和木质素的热成型复合材料的第一份报告提出了一种新型的生物基聚合物材料,可用于包装各种易腐烂的物品。 (C)2015 Elsevier B.V.保留所有权利。

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