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On the Kinetics of Degradation Reaction Determined Post Accelerated Weathering of Polyolefin Plastic Waste Blends

机译:在聚烯烃塑料废物混合物的加速风化后测脱反应动力学

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摘要

Polyolefin (PO) polymers constitute the majority of consumer plastic commodities. The reliance on such materials make it near imposable to avoid touching one in any given day. Therefore, the accumulation of plastic solid waste (PSW) in developed and developing societies alike requires immediate attention to manage and valorize this type of waste. In this work, PSW originating from real life sources and virgin linear low-density polyethylene (LLDPE) films were compounded in a mechanical recycling effort. The recycled blends constituted up to 100% (by weight) of the waste material. Accelerated weathering (aging) was conducted on the blends, reaching threshold limit of exposure to study the major changes occurring on the recycled blends. Thermogravimetry and differential scanning calorimetry (DSC) were used to determine their characteristics and applicability for future recycling using thermo-chemical treatment (TCT) methods. Analytical solution methods following the international committee of thermal analysis and calorimetry (ICTAC) were followed in conducting the measurements and kinetic calculations alike. A novel analytical mathematical solution model is also introduced to determine both the pre-exponential factor (Ao) and apparent activation energy (Ea) of the degradation reaction. The model proved to be a more accurate analysis tool, and the work in whole enabled the determination of future plans for using such waste components as a feedstock to thermal units.
机译:聚烯烃(PO)聚合物构成了消费塑料商品的大部分。依赖这些材料使其在任何在任何一天中避免触摸一个时,它就不可能。因此,在发达国家和发展中的社会中塑料固体废物(PSW)的积累需要立即关注管理和储存这种类型的废物。在这项工作中,在机械回收努力中复合了来自现实寿命来源和原始线性低密度聚乙烯(LLDPE)薄膜的PSW。再循环混合物的废料组成为100%(重量)。加速风化(老化)在混合物上进行,达到暴露的阈值限制,研究再生混合物发生的主要变化。使用热量扫描和差示扫描量热法(DSC)用于使用热化学处理(TCT)方法来确定它们的特性和适用性,以便使用热化学处理(TCT)方法。在进行测量和动力学计算之后,遵循国际热分析和热量测定法(ICTAC)后的分析解决方法。还引入了一种新的分析数学溶液模型以确定降解反应的预指数因子(AO)和表观活化能量(EA)。该模型被证明是一种更准确的分析工具,整体工作能够确定将这些废物组件作为原料的未来计划确定为热单元。

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