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首页> 外文期刊>International Journal of Polymer Science >Thermal Response and Degressive Reaction Study of Oxo-Biodegradable Plastic Products Exposed to Various Degradation Media
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Thermal Response and Degressive Reaction Study of Oxo-Biodegradable Plastic Products Exposed to Various Degradation Media

机译:热响应和脱离反应的氧代 - 可生物降解塑料产品暴露于各种降解培养基

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In this work, three plastic film products commonly used as commodity thermoplastic articles were analysed with the aim of characterizing their thermal behaviour and stability. The test specimens were subjected to a series of analytical tests to confirm their biodegradable nature. The specimens ranged between 30 and 70?μm in thickness and showed high concentrations of regulated metals, namely, lead (Pb), postchemical analysis which can lead to its migration to natural sinks. The specimens were also exposed to degressive media, namely, accelerated (UV induced) weathering and soil burial field testing. The weight loss measured exceeded 58% after soil burial indicating deterioration under natural environmental stressors. In addition, the thermal characterization campaign executed with the aim of determining the product’s thermal response followed internationally recognised experimental protocols for the determination of thermal stability. The methodology used followed the International Confederation for Thermal Analysis and Calorimetry (ICTAC) recommendation for thermal stability and the computation of kinetic parameters. The degradation reaction kinetics were also determined postexposure to degressive media. Thermogravimetric analysis coupled with differential scanning calorimetry heat flow analysis and Fourier infrared spectroscopy results was also used in studying the degradation behaviour of the specimens. Analytical kinetic estimation methods relying on model free solutions enabled the determination of the apparent activation energy (Ea) of the specimens postexposure to degradation media. A shift in the degradation mechanism was also detected after studying the kinetic parameters which showed a range of Ea between 86.64 and 226.90?kJ?mol-1 depending on the type of specimens and exposure media. It can be concluded that the oxo-biodegradable films are well suited for thermal treatment in the future as discarded plastic solid waste (PSW) articles. This work also paves the way for developing national standards and future plans for societies burdened with PSW accumulation.
机译:在这项工作中,分析了三种常用作为商品热塑性制品的塑料薄膜产品,目的是表征其热行为和稳定性。进行试样进行一系列分析试验以确认其可生物降解性质。试样的厚度为30和70?μm,并且显示出高浓度的调节金属,即铅(Pb),导通水平分析,这可能导致其迁移到天然水槽。标本也暴露于脱离培养基,即加速(UV诱导)风化和土壤墓地测试。土壤埋葬指示自然环境压力源的恶化后测量的重量损失超过58%。此外,通过确定产品的热响应遵循国际公认的实验方案来确定热稳定性的目的。该方法遵循国际热分析和量热法(ICTAC)热稳定性建议的国际联盟和动力学参数的计算。降解反应动力学也被确定为消失的培养基。耦合差分扫描量热法热流分析和傅里叶红外光谱结果的热重分析也用于研究样本的降解行为。依赖于模型自由溶液的分析动力学估计方法使得确定样本后曝光的表观激活能量(EA)降解介质。在研究了在研究eA的动力学参数之后,还检测到降解机制的转变,其显示在86.64和226.90Ω·kJ?mol-1之间,这取决于样品和曝光介质的类型。可以得出结论,氧代可生物降解的薄膜在未来的热处理中非常适合作为丢弃的塑料固体废物(PSW)制品。这项工作还为开发国家标准和未来的社会计划铺平了PSW积累的方式。

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