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首页> 外文期刊>European Polymer Journal >Ternary PLA-PHB-Limonene blends intended for biodegradable food packaging applications
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Ternary PLA-PHB-Limonene blends intended for biodegradable food packaging applications

机译:三元PLA-PHB-柠檬烯共混物,用于可生物降解的食品包装应用

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In this work poly(lactic acid) PLA, and poly(hydroxybutyrate) PHB, were blended and plasticized with a natural terpene D-limonene (LIM) with the dual objective to increase PLA crystallinity and to obtain flexible films intended for food packaging applications. Materials were melt-blended and processed in transparent films. Structural and surfaces properties were evaluated. Moreover, functional properties were studied by means colorimetric parameters, oxygen permeation and water resistant measurements. In addition, thermal stability, crystallization behavior, mechanical as well as nanomechanical properties were investigated. FTIR spectra showed the characteristic bands corresponding to PLA and PHB and their rather molecular interaction. Py-GC/MS showed the characteristics peak of D-limonene as well as the thermal degradation products of PLA and PHB. D-limonene amount after processing was higher in PHB incorporated samples. PHB produced a reinforcing effect in PLA matrix and therefore an improvement in the oxygen barrier properties and the surface water resistance. Moreover, Scanning Confocal Microscopy surface images showed the dispersion of PHB crystal in PLA matrix. The influences of plasticization process on the mechanical properties showed that D-limonene provoked an increase in elongation at break. Disintegrability under composting conditions was also investigated and it was observed that PHB delays the PLA disintegrability under composting while D-limonene speed it up. In brief, the best results regarding structural, thermal, barrier and mechanical properties were found for the ternary PLA-PHB-LIM film.
机译:在这项工作中,聚乳酸(PLA)和聚羟基丁酸酯(PHB)与天然萜烯D-柠檬烯(LIM)混合并增塑,其双重目的是提高PLA的结晶度并获得用于食品包装应用的柔性薄膜。将材料熔融共混并在透明膜中加工。评价了结构和表面性能。此外,通过比色参数,氧气渗透和耐水性测量来研究功能性质。此外,还研究了热稳定性,结晶行为,机械性能和纳米机械性能。 FTIR光谱显示了对应于PLA和PHB的特征谱带及其相当的分子相互作用。 Py-GC / MS显示D-柠檬烯的特征峰以及PLA和PHB的热降解产物。在加入PHB的样品中,加工后的D-柠檬烯含量较高。 PHB在PLA基质中产生了增强作用,因此改善了氧气阻隔性能和表面耐水性。此外,扫描共聚焦显微镜表面图像显示出PHB晶体在PLA基质中的分散。塑化过程对机械性能的影响表明,D-柠檬烯引起断裂伸长率的增加。还研究了堆肥条件下的崩解性,并观察到PHB延迟了堆肥下的PLA崩解性,而D-柠檬烯加快了分解速度。简而言之,对于三元PLA-PHB-LIM膜,发现了关于结构,热,阻隔和机械性能的最佳结果。

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