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首页> 外文期刊>Polymer Degradation and Stability >Oxidation of unstabilised polypropylene particles as studied by microcalorimetry and chemiluminescence techniques
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Oxidation of unstabilised polypropylene particles as studied by microcalorimetry and chemiluminescence techniques

机译:微量量热法和化学发光技术研究不稳定聚丙烯颗粒的氧化

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摘要

Microcalorimetry (MC) and chemiluminescence (CL) measurements have been used to study the oxidation of unstabilised polypropylene (PP) particles. The oxidation profiles obtained by the two techniques were found to be similar although a time shift between the profiles was observed, particularly at low temperatures. The similar shape suggests a close relation between the rate of the overall oxidation process as measured by MC and the rate of the CL emitting reactions. MC revealed that the energy evolved up to the maximum of the MC oxidation profile increased significantly above 110 degreesC indicating a change in the overall oxidation process, possibly associated with a more pronounced secondary oxidation. The results indicate that above 110 degreesC the maximum of an oxidation profiles (as measured either by MC or CL techniques) is not suitable for evaluating the temperature dependency of oxidation. FTIR was used to follow the formation of oxidation products. It was found that the oxidation profiles obtained by either MC or CL measurements did not reflect the carbonyl build-up but more likely the hydroperoxide build-up. (C) 2003 Elsevier Science Ltd. All rights reserved. [References: 23]
机译:微量热法(MC)和化学发光(CL)测量已用于研究未稳定的聚丙烯(PP)颗粒的氧化。发现通过两种技术获得的氧化曲线相似,尽管观察到曲线之间存在时间偏移,特别是在低温下。相似的形状表明由MC测量的整个氧化过程的速率与CL发射反应的速率之间存在密切的关系。 MC揭示出,释放出直至MC氧化曲线的最大值的能量在110℃以上显着增加,表明整个氧化过程的变化,可能与更明显的二次氧化有关。结果表明,高于110摄氏度时,氧化曲线的最大值(通过MC或CL技术测量)不适合评估氧化的温度依赖性。 FTIR用于追踪氧化产物的形成。已经发现,通过MC或CL测量获得的氧化曲线没有反映出羰基的积累,而是更可能是氢过氧化物的积累。 (C)2003 Elsevier ScienceLtd。保留所有权利。 [参考:23]

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