利用废弃的低密度聚乙烯小袋和非洲藜豆荚生物质残渣生产生物复合材料

T. E. Odetoye, Victor A. Adeoye
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引用次数: 0

摘要

由于塑料垃圾对环境的不利影响,近年来塑料垃圾已成为固体废物管理的一个主要问题。在大多数发展中国家,低密度聚乙烯(LDPE)垃圾袋和小袋构成了每天产生的塑料废物的很大一部分,造成了不必要的环境负担,需要加以解决。在这项研究中,我们报道了使用非洲藜豆荚颗粒作为LDPE基质(从废塑料包中获得)的填料用于生物复合材料的生产。生物复合材料的平均填料尺寸为150µm,填料含量为10、20、30 wt%,采用手工铺层法。压缩、弯曲、冲击和拉伸强度;采用ASTM标准测定制备的生物复合材料的吸水率和可生物降解性。与对照样品相比,制备的生物复合材料样品的冲击强度提高了103%,达到34.3 J,抗变形性能更好(弯曲模量为348.9 N/mm2;填料含量为30 wt %时,杨氏模量为237.9 N/mm2。生物复合材料样品的抗拉强度最高,为8.3 N/mm2。对断裂试样的扫描电镜(SEM)分析表明,试样在基体中具有良好的附着力。这项工作的结果表明,LDPE废物囊和蜂胶豆荚农业残留物的增值可以是一种增值的,负担得起的废物管理方法,用于生产室内应用的生物复合材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biocomposite production from waste low-density polyethylene sachets and Prosopis africana pods biomass residue
Plastic litter has become a major concern in solid waste management in recent times due to the adverse effect on the environment. In most developing countries, low-density polyethylene (LDPE) waste bags and sachets constitute a significant portion of plastic wastes that are generated daily, leading to an unnecessary environmental burden that needs to be addressed. In this study, we report the use of Prosopis africana pod particles as fillers in LDPE matrix (obtained from waste plastic sachets) for biocomposite production.  Biocomposites were produced from 150µm average filler size for 10, 20, 30 wt% filler contents, using hand lay-up method. The compression, flexural, impact, and tensile strengths; water absorption and the biodegradability characteristics of the prepared biocomposites were determined using ASTM standards. In comparison with the control sample, the prepared biocomposites samples exhibited 103% improved impact strength of 34.3 J and better resistance to deformation (flexural modulus of 348.9 N/mm2; Young’s modulus of 237.9 N/mm2) at 30 wt % filler content. Biocomposite sample with the 10 wt% gave the highest tensile strength of 8.3 N/mm2. Scanning Electron Microscopy (SEM) analysis of the fractured sample shows good adhesion in the matrix.  Findings from this work indicate that valorization of LDPE waste sachet and prosopis pods agricultural residues can be a value-addition, affordable waste management method for producing biocomposites towards indoor applications.
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