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首页> 外文期刊>Energy Conversion & Management >Analysis of thermal degradation kinetics and carbon structure changes of co-pyrolysis between macadamia nut shell and PET using thermogravimetric analysis and ~(13)C solid state nuclear magnetic resonance
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Analysis of thermal degradation kinetics and carbon structure changes of co-pyrolysis between macadamia nut shell and PET using thermogravimetric analysis and ~(13)C solid state nuclear magnetic resonance

机译:热重分析和〜(13)C固态核磁共振分析澳洲坚果壳与PET共热解的热降解动力学和碳结构变化

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摘要

Thermal degradation kinetics of co-pyrolysis of polyethylene terephthalate (PET) blended with macadamia nut shell were investigated using a large-scale customised thermogravimetric analysis (TGA) and ~(13)C solid-state nuclear magnetic resonance (NMR) spectroscopy. Blending ratios ranging 20-80 v/t.% of PET with macadamia nut shell were analysed at heating rates of 3, 5 and 8 ℃/min up to 1273 K in the presence of N_2 atmosphere with a flow rate of 1 L/min. The differential thermogravimetric analysis (DTG) data was analysed by the Freeman-Carroll method to yield kinetic parameters which were correlated with chemical analysis by ~(13)C solid-state NMR. The results indicated that two synergistic effects occurred between PET and macadamia nut shell during co-pyrolysis, which were characterised by an enhanced carbon yield of the co-pyrolysis products. The secondary reaction occurring between primary products of macadamia nut shell and PET was identified as the cause of the synergistic effect and this effect varied with weight fraction of macadamia nut shell in the blend and the heating rate. The measured changes in activation energy and reaction order indicated that the thermal degradation mechanism of co-pyrolysis is different to that of the individual components. The NMR results indicated that macadamia nut shell catalysed the degradation behaviour of PET leading to growth of polycyclic aromatic hydrocarbons (PAHs) through cross-linking reaction and enhancing the carbon yield from the PET.
机译:使用大规模定制的热重分析(TGA)和〜(13)C固态核磁共振(NMR)光谱,研究了共混有澳洲坚果壳的聚对苯二甲酸乙二醇酯(PET)的热解动力学。在存在N_2气氛,流速为1 L / min的情况下,以3、5和8℃/ min的加热速率加热至1273 K,分析了PET与澳洲坚果壳的混合比例为20-80 v / t。% 。用Freeman-Carroll方法分析差示热重分析(DTG)数据,得到动力学参数,该参数与〜(13)C固态NMR化学分析相关。结果表明,共热解过程中,PET与澳洲坚果壳之间发生了两种协同作用,其特征是共热解产物的碳收率提高。澳洲坚果壳和PET之间发生的副反应被确定为协同效应的原因,并且该效果随澳洲坚果壳在混合物中的重量分数和加热速率而变化。测得的活化能和反应顺序的变化表明,共热解的热降解机理与各个组分的不同。 NMR结果表明,澳洲坚果壳通过交联反应催化了PET的降解行为,从而导致多环芳烃(PAHs)的生长,并提高了PET的碳收率。

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