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Enhancement of Mechanical and Thermal Properties of Oil Palm Empty Fruit Bunch Fiber Poly(butylene adipate-co-terephtalate) Biocomposites by Matrix Esterification Using Succinic Anhydride

机译:琥珀酸酐基质酯化技术增强油棕空果束纤维聚己二酸丁二醇酯-对苯二甲酸对苯二甲酸丁二酯生物复合材料的机械和热性能

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摘要

In this work, the oil palm empty fruit bunch (EFB) fiber was used as a source of lignocellulosic filler to fabricate a novel type of cost effective biodegradable composite, based on the aliphatic aromatic co-polyester poly(butylene adipate-co-terephtalate) PBAT (EcoflexTM), as a fully biodegradable thermoplastic polymer matrix. The aim of this research was to improve the new biocomposites’ performance by chemical modification using succinic anhydride (SAH) as a coupling agent in the presence and absence of dicumyl peroxide (DCP) and benzoyl peroxide (BPO) as initiators. For the composite preparation, several blends were prepared with varying ratios of filler and matrix using the melt blending technique. The composites were prepared at various fiber contents of 10, 20, 30, 40 and 50 (wt %) and characterized. The effects of fiber loading and coupling agent loading on the thermal properties of biodegradable polymer composites were evaluated using thermal gravimetric analysis (TGA). Scanning Electron Microscopy (SEM) was used for morphological studies. The chemical structure of the new biocomposites was also analyzed using the Fourier Transform Infrared (FTIR) spectroscopy technique. The PBAT biocomposite reinforced with 40 (wt %) of EFB fiber showed the best mechanical properties compared to the other PBAT/EFB fiber biocomposites. Biocomposite treatment with 4 (wt %) succinic anhydride (SAH) and 1 (wt %) dicumyl peroxide (DCP) improved both tensile and flexural strength as well as tensile and flexural modulus. The FTIR analyses proved the mechanical test results by presenting the evidence of successful esterification using SAH/DCP in the biocomposites’ spectra. The SEM micrograph of the tensile fractured surfaces showed the improvement of fiber-matrix adhesion after using SAH. The TGA results showed that chemical modification using SAH/DCP improved the thermal stability of the PBAT/EFB biocomposite.
机译:在这项工作中,油棕空果束(EFB)纤维被用作木质纤维素填料的来源,以脂肪族芳香族共聚酯聚己二酸丁二酯-对苯二甲酸对苯二甲酸酯为基础,制造出一种新型的具有成本效益的可生物降解的复合材料。 PBAT(Ecoflex TM ),是一种完全可生物降解的热塑性聚合物基质。这项研究的目的是在存在和不存在过氧化二枯基(DCP)和过氧化苯甲酰(BPO)的情况下,通过使用琥珀酸酐(SAH)作为偶联剂进行化学改性来改善新型生物复合材料的性能。对于复合材料的制备,使用熔融共混技术制备了几种具有不同比例的填料和基体的共混物。以10、20、30、40和50(wt%)的各种纤维含量制备复合材料并进行表征。使用热重分析(TGA)评估了纤维负载量和偶联剂负载量对可生物降解聚合物复合材料热性能的影响。扫描电子显微镜(SEM)用于形态研究。还使用傅立叶变换红外(FTIR)光谱技术分析了新型生物复合材料的化学结构。与其他PBAT / EFB纤维生物复合材料相比,用40(wt%)EFB纤维增强的PBAT生物复合材料显示出最佳的机械性能。用4(wt%)的琥珀酸酐(SAH)和1(wt%)的二枯基过氧化物(DCP)进行生物复合处理可以改善拉伸强度和弯曲强度以及拉伸强度和弯曲模量。 FTIR分析通过提供SAH / DCP在生物复合材料光谱中成功酯化的证据,证明了机械测试结果。拉伸断裂表面的SEM显微照片显示,使用SAH后,纤维与基体的粘合性得到了改善。 TGA结果表明,使用SAH / DCP进行化学修饰可提高PBAT / EFB生物复合材料的热稳定性。

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