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Formation and Emissions of Volatile Organic Compounds from Homo-PP and Co-PP Resins during Manufacturing Process and Accelerated Photoaging Degradation

机译:在制造过程中由HOMO-PP和CO-PP树脂的挥发性有机化合物形成和排放加速光手册降解

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摘要

Volatile organic compounds (VOCs) from polypropylene (PP) seriously restricts the application of PP in an automotive field. Herein, the traceability of VOCs from PP resins during manufacturing process and accelerated photoaging degradation was clarified on basis of an accurate characterization method of key VOCs. The influence of PP structures on changing the accelerated photoaging degradation on the VOCs was systematic. The VOCs were identified by means of Gas chromatography (GC) coupled with both a hydrogen flame ion detector (FID) and a mass spectrometry detector (MSD). Results showed that both the molecular structure of PP and the manufacturing process affected the species and contents of VOCs. In addition, the photoaging degradation of PP resulted in a large number of new emerged volatile carbonyl compounds. Our work proposed a possible VOC formation mechanism during the manufacturing and photoaging process. VOCs from PP resins were originated from oligomers and chain random scission during thermomechanical degradation. However, β scission of alkoxy radical and Norrish tape I reactions of ketones via intermediate transition were probably the main VOCs formation routes towards PP during photoaging degradation. This work could provide scientific knowledge on both the accurate traceability of VOCs emissions and new technology for development of low-VOCs PP composites for vehicle.
机译:来自聚丙烯(PP)的挥发性有机化合物(VOC)严重限制了PP在汽车领域的应用。这里,根据关键VOC的准确表征方法,阐明了在制造过程中的PP树脂的VOCS的可追溯性。 PP结构对改变VOC上加速的光手册降解的影响是系统的。通过与氢火焰离子检测器(FID)和质谱探测器(MSD)偶联的气相色谱(GC)鉴定VOC。结果表明,PP的分子结构和制造过程都影响了VOC的物种和含量。另外,PP的光手册降解导致大量新的挥发性羰基化合物。我们的工作提出了制造和光学过程中可能的VOC形成机制。来自PP树脂的VOCs源于热机械降解期间的低聚物和链随机群。然而,烷氧基自由基和鼻胶带通过中间转变的反应β的β分布可能是在光手册降解期间朝向PP的主要VOCS形成路线。这项工作可以为VOCS排放的准确可追溯性和用于车辆的低VOCS PP复合材料的新技术提供科学知识。

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