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Extrusion Coating of Paper with Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV)—Packaging Related Functional Properties

机译:用聚(3-羟基丁酸酯-CO-3-羟基戊羟苯甲酸盐)挤出涂料(PHBV) - 包装相关功能性质

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摘要

Taking into account the current trend for environmentally friendly solutions, paper coated with a biopolymer presents an interesting field for future packaging applications. This study covers the application of the biopolymer poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) on a paper substrate via extrusion coating. The intention of this study is to analyse the effect of a plasticiser on the processability (melting point, film thickness) and the final properties (crystallinity, elongation at break) of PHBV. Up to 15 wt.% of the plasticisers triethyl citrate (TEC) and polyethylene glycol (PEG) were used as additive. The processing (including melt flow rate) as well as the structural properties (melting and crystallisation temperature, surface structure by atomic force microscopy (AFM), polarisation microscopy, scanning electron microscopy (SEM)), mechanical properties (elongation at break, tensile strength, elastic modulus, adhesion), and barrier properties (grease) of these blends and their coating behaviour (thickness on paper), were tested at different extrusion temperatures. The melting temperature (Tm) of PHBV was reduced by the plasticisers (from 172 °C to 164 resp. 169 °C with 15 wt.% TEC resp. PEG). The minimal achieved PHBV film thickness on paper was 30 µm owing to its low melt strength. The elastic modulus decreased with both plasticisers (from 3000 N/mm2 to 1200 resp. 1600 N/mm2 with 15 wt.% TEC resp. PEG). At 15 wt.% TEC, the elongation at break increased to 2.4 length-% (pure PHBV films had 0.9 length-%). The grease barrier (staining) was low owing to cracks in the PHBV layers. The extrusion temperature correlated with the grease barrier, mechanical properties, and bond strength. The bond strength was higher for films extruded with a temperature profile for constant melt flow rate at different plasticiser concentrations. The bond strength was max. 1.2 N/15 mm. Grease staining occurs because of cracks induced by the low elongation at break and high brittleness. Extrusion coating of the used specific PHBV on paper is possible. In further studies, the minimum possible PHBV film thickness needs to be reduced to be cost-effective. The flexibility needs to be increased to avoid cracks, which cause migration and staining.
机译:考虑到当前环保解决方案的趋势,涂有生物聚合物的纸张为未来的包装应用提供了一个有趣的领域。本研究涵盖了通过挤出涂层在纸基材上施加生物聚合物聚(3-羟基丁酸酯-CO-CO-CO-CO-3-羟基苯本研究的目的是分析增塑剂对PHBV的加工性(熔点,膜厚度)和最终性质(结晶度,断裂伸长)的作用。最多15重量%。将柠檬酸三乙酯(TEC)和聚乙二醇(PEG)的增塑剂的%用作添加剂。加工(包括熔体流速)以及结构性质(熔融和结晶温度,表面结构通过原子力显微镜(AFM),偏振显微镜,扫描电子显微镜(SEM),机械性能(伸长率,拉伸强度在不同的挤出温度下测试这些共混物的弹性模量,粘合性)和粘附性(涂布厚度)(纸上的厚度)。 PHBV的熔融温度(TM)由增塑剂(172℃至164℃。169℃,15重量%。%TEC。PEG)。由于其熔体强度低,纸上的PHBV膜厚度最小地实现了30μm。弹性模量随两个增塑剂(从3000n / mm2到1200次)减小。1600 n / mm2,15重量%。%tec。peg)。在15重量%。%TEC中,断裂的伸长率增加到2.4长度 - %(纯PHBV薄膜具有0.9长度)。由于PHBV层中的裂缝,油脂屏障(染色)很低。挤出温度与油脂屏障,机械性能和粘合强度相关。用温度曲线挤出的薄膜粘合强度较高,以在不同的增塑剂浓度下恒定熔体流速。债券强度最大。 1.2 n / 15 mm。由于断裂和高脆性的低伸长率诱导的裂缝发生润滑脂染色。纸张上使用的特定PHBV的挤出涂层是可能的。在进一步的研究中,需要降低最低可能的PHBV膜厚度以具有成本效益。需要增加灵活性以避免导致迁移和染色的裂缝。

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