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Development of recycled blends based on cables and wires with plastic cabinets: An effective solution for value addition of hazardous waste plastics

机译:基于电缆和电线与塑料柜的可再生混合物的开发:危险废塑料增值的有效解决方案

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The recycling of polyvinyl chloride (PVC) recovered from the plastic insulations in wires and cables is a rising concern in the current situation due to its hazardous behaviour during recycling. Similarly, high-impact polystyrene (HIPS) and acrylonitrile butadiene styrene (ABS) used in the structural components of electrical and electronic equipment are also generated in large quantities. In the current work, three agendas were fixed: (a) to determine the effect of recycled polymeric material (HIPS and ABS) recovered from different sources on the mechanical property of the polymeric blends; (b) to formulate a high-impact strength blend; and (c) to deduce a mechanism for improved impact strength. The mechanical characterizations were conducted on the entire blends formulated. Among them, the recycled blend composed of recycled PVC (r-PVC) and recycled ABS (r-ABS) (segregated from uninterrupted power supply housing) and recycled HIPS (r-HIPS; collected from television housing) was confined for further physio-mechanical and thermal analysis. Besides, the r-PVC/r-ABS systems had shown better mechanical properties than r-PVC/r-HIPS systems in similar composition. The impact strength of blend r-PVC/r-ABS (70:30) was found to be 250 J/m, which was 200% more than the blend r-PVC/r-ABS (0:100). The compatibility and non-compatibility in PVC/ABS and PVC/HIPS blends respectively were explained with thermal, mechanical and morphological characterizations. Furthermore, a plausible cross-linking mechanism is developed between ABS and PVC, which controls the release of chlorine atoms into the environment.
机译:从电线和电缆的塑料绝缘层中回收的聚氯乙烯(PVC)的回收在当前情况下由于其在回收过程中的危险性而日益受到关注。同样,也大量产生了用于电气和电子设备的结构部件的高抗冲聚苯乙烯(HIPS)和丙烯腈丁二烯苯乙烯(ABS)。在当前工作中,确定了三个议程:(a)确定从不同来源回收的回收聚合物材料(HIPS和ABS)对聚合物共混物机械性能的影响; (b)配制高冲击强度的混合物; (c)推论一种提高冲击强度的机制。对所配制的全部共混物进行机械表征。其中,由再生PVC(r-PVC)和再生ABS(r-ABS)(与不间断电源壳体隔离)和再生HIPS(r-HIPS;从电视壳体中收集)组成的再生混合物被限制用于进一步的生理处理。机械和热分析。此外,r-PVC / r-ABS系统的机械性能比类似成分的r-PVC / r-HIPS系统更好。发现共混物r-PVC / r-ABS(70:30)的冲击强度为250 J / m,比共混物r-PVC / r-ABS(0:100)高200%。分别通过热,机械和形态学特征解释了PVC / ABS和PVC / HIPS共混物中的相容性和不相容性。此外,在ABS和PVC之间开发了一种合理的交联机制,该机制控制了氯原子向环境中的释放。

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