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RECYCLE OF PLASTIC WASTE AND AGRICULTURAL WASTE

机译:塑料废物和农业废物的循环利用

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Manufacturing of polymer composites using plastic waste is one of the solutions to solve the environmental pollution problems caused by non-biodegradable polymer. In this study, Rice husk fiber Reinforced Polyethylene composites (RhRP) have been fabricated with rice husk fiber and plastic waste (recycle low density polyethylene) by compression molding method. Effect of fiber volume fraction, pressure and temperature on the properties of the composite samples was studied. In addition, mechanical properties, thermal properties and durability of RhRP composites were measured. Moreover, chemical modification of rice husk fiber was done through acid and aqueous alkaline solution. The modified fiber samples exhibit the higher strength as well as the lower water absorption rate compared with the unmodified fiber composite samples. Therefore, the resistance to aging of the composites in aqueous environment improved significantly for the modified composite samples. Furthermore, Scanning Electron Microscope (SEM) was also used to characterize the surface feature and the interfacial adhesion between fiber and matrix polymer. The modified composite samples reveal better interfacial adhesion than the unmodified composite ones. Thermo Gravimetric Analysis (TG/DTA) was employed to determine thermal stability of the composite samples. The modified fiber samples have higher thermal stability than the unmodified composite ones.
机译:使用塑料废料制造聚合物复合材料是解决由不可生物降解的聚合物引起的环境污染问题的解决方案之一。在这项研究中,稻壳纤维增强聚乙烯复合材料(RhRP)由稻壳纤维和塑料废料(回收利用低密度聚乙烯)通过压缩成型法制成。研究了纤维体积分数,压力和温度对复合样品性能的影响。另外,测量了RhRP复合材料的机械性能,热性能和耐久性。此外,稻壳纤维的化学改性是通过酸和碱性水溶液进行的。与未改性的纤维复合材料样品相比,改性纤维样品表现出较高的强度和较低的吸水率。因此,对于改性的复合材料样品,复合材料在水性环境中的抗老化性显着提高。此外,还使用扫描电子显微镜(SEM)表征纤维与基体聚合物之间的表面特征和界面粘附性。改性的复合材料样品比未改性的复合材料样品具有更好的界面附着力。使用热重分析(TG / DTA)来确定复合材料样品的热稳定性。改性纤维样品比未改性复合材料具有更高的热稳定性。

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