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Sustainable composites from poly(3-hydroxybutyrate) (PHB) bioplastic and agave natural fibre

机译:来自聚(3-羟基丁酯)(PHB)生物塑料和龙舌兰天然纤维的可持续复合材料

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摘要

A sustainable green composite based on poly(3-hydroxybutyrate) (PHB) and agave fibre was produced. The synergy between PHB bioplastic and agave natural fibre was investigated in the presence of an organic peroxide through one step reactive extrusion processing. The work focuses on controlling the crystallinity of PHB to tailor the mechanical properties, especially for improving the impact properties of highly brittle PHB. Optical microscopy showed a decrease in spherulite formation, and hence controlled reduction of the crystalline region of the PHB matrix, with the addition of agave fibre and peroxide treated fibre. Scanning electron microscopy showed the role of organic peroxide in improving the interfacial interaction in fibre matrix adhesion, and hence resulting in improved mechanical properties. An expected reduction in tensile strength of PHB was found with the addition of 25 wt% of agave fibre due to the reduction in crystallinity induced by the treated agave fibre. Interestingly, optimal composition of composites having 25 wt% agave fibre with 0.1 phr peroxide improved the flexural strength by 46%, impact strength by 45% and heat deflection temperature (HDT) by 39% compared to the neat PHB. An effective reactive extrusion of agave fibre and PHB in the presence of peroxide can provide a sustainable and cost-effective alternative to petroleum-based plastics for food packaging applications.
机译:制备基于聚(3-羟基丁酸酯)(PHB)和龙舌兰纤维的可持续绿色复合材料。通过一种步骤反应挤出加工在有机过氧化物存在下研究了PHB生物塑料和龙舌兰天然纤维之间的协同作用。该工作侧重于控制PHB的结晶度以定制机械性能,特别是改善高脆性PHB的冲击性能。光学显微镜表明球骨形成的降低,因此通过加入龙舌兰纤维和过氧化物处理的纤维来减少PHB基质的结晶区域。扫描电子显微镜显示有机过氧化物在提高纤维基质粘附中的界面相互作用方面的作用,因此导致改善的机械性能。通过加入25wt%的龙舌兰纤维的预期降低PHB的抗拉强度的降低,由于经处理的龙舌兰纤维诱导的结晶度降低。有趣的是,具有25wt%龙舌兰纤维的复合材料的最佳组合物,0.1pher过氧化氧化物将弯曲强度提高46%,冲击强度通过45%,热偏转温度(HDT)与纯PHB相比,39%。在过氧化物存在下,龙舌兰纤维和PHB的有效反应挤出可提供可持续且经济效益的用于食品包装应用的石油基塑料。

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