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Valorization of Date Palm Waste for Plastic Reinforcement: Macro and Micromechanics of Flexural Strength

机译:塑料加固枣棕榈废物的算命:弯曲强度的宏观和微机械

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摘要

Date palm waste is an abundant agricultural residue in Tunisia and can be used for plastic reinforcement. Moreover, its use in plastic composites can help to reduce dependence on fossil resources for material production. In this work, the valorization of date palm residues was studied by employing high-yield processes following mechanical, chemical, and enzymatical treatments. Fibers obtained by soft chemical treatment with sodium hydroxide and enzymatic treatment with xylanases and pectinases were evaluated for their use in the reinforcement of plastic materials. The flexural strength property, truly relevant for structural, construction, automotive, or other market sectors, was adopted to assess the reinforcing potential of the fibers. Polypropylene was effectively reinforced with date palm fibers (60 wt.%), exhibiting a flexural strength increases of 80% (73.1 MPa), 93% (78.5 MPa), and 106% (83.9 MPa) for mechanical, chemical, and enzymatic fibers, respectively. The different treatments had an impact on the chemical composition of the fibers, and by extension on the final properties of the composites. The holocellulose content could provide good interfacial adhesion using a coupling agent, whereas the lignin content improved the dispersion of the phases. Two interesting outcomes were that the flexural performance of enzymatic fibers was like that of wood composites, whereas the specific flexural strength was comparable to that of glass fiber composites. Overall, the present work has shown the potential behind date palm waste in the composite sector when a specific property or application is desired. Novel treatments have been used for greater fiber compatibility, increasing the sustainability of the process, and improving the applicability of the palm residue.
机译:枣椰子废物是突尼斯的丰富农业残留物,可用于塑料加固。此外,它在塑料复合材料中的使用可以帮助减少对材料生产化石资源的依赖性。在这项工作中,通过使用机械,化学和酶处理后的高产方法研究了枣棕榈残留物的算子。评价通过用氢氧化钠和丙酸酯处理和丙酸盐酶和果胶酶进行软化学处理而获得的纤维,用于塑料材料的增强。采用弯曲强度,真正相关的结构,建筑,汽车或其他市场部门,用于评估纤维的增强潜力。用日常棕榈纤维(60重量%)有效增强聚丙烯,表现出弯曲强度增加80%(73.1MPa),93%(78.5MPa)和106%(83.9MPa),用于机械,化学和酶联纤维, 分别。不同的治疗对纤维的化学成分产生影响,并通过延伸复合材料的最终性质。全纤维素含量可以使用偶联剂提供良好的界面粘附,而木质素含量改善了相的分散。两个有趣的结果是酶法纤维的抗弯性能就像木材复合材料的弯曲性能,而特定的弯曲强度与玻璃纤维复合材料的弯曲强度相当。总体而言,当需要特定的财产或申请时,本作当前的作品已经显示了复合部门的枣棕榈垃圾。新型治疗已被用于更高的纤维相容性,提高过程的可持续性,提高了棕榈渣的适用性。

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