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Investigation on thermal decomposition and kinetics study of recovered oil from electronic waste by thermogravimetric analysis

机译:热重分析对电子垃圾回收油热分解及动力学研究的研究

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This paper investigated thermal decomposition during pyrolysis of a recovered oil from electronic waste (e-waste). The sample used in this study was High-Impact Polystyrene (HIPS). The pyrolysis target temperature was 400—550 °C. It was found that the maximum oil yield (32.5 wt.%) was obtained at the pyrolysis temperature of 450 °C. After the pyrolysis test, thermogravimetric analysis (TGA) was performed on the HIPS-derived oil to study on decomposition and kinetics. The produced pyrolysis oil that contained highest Styrene component (19.52%) was processed at 450 °C. From GC-MS and TGA, the first range (40-120 °C) could be devoted to moisture and other low volatility compounds such as Stylene, Benzene and 2-Hydroxymethyl. Then, the 1,2-Diphenylcyclopropane and a-Methylstyrene might be extensively decomposed at the second range (120-340 °C). The final peak (450-560 °C) could be the decomposition of Tetraphenylhexane. Activation energy of the pyrolysis oil was around 40-43 kJ/mol and 10-18 kJ/mol for the first and the second decomposition range, respectively, and the pyrolysis temperature did not significantly affect the activation energy of the produced oil.
机译:本文研究了从电子废物(电子废物)的回收油热解中的热分解。本研究中使用的样品是高抗冲聚苯乙烯(臀部)。热解目标温度为400-550℃。发现在450℃的热解温度下获得最大油产率(32.5重量%)。在热解试验后,对HIPS衍生的油进行热重分析(TGA)以研究分解和动力学。将含有最热苯乙烯组分(19.52%)的产生的热解油在450℃下加工。从GC-MS和TGA,第一范围(40-120°C)可以致力于水分和其他低挥发性化合物,例如官员,苯和2-羟甲基。然后,1,2-二苯基环丙烷和α-甲基苯乙烯可以在第二范围(120-340℃)处广泛分解。最终峰(450-560°C)可以是四苯基己烷的分解。热解油的活化能量为约40-43kJ / mol,分别为10-18kJ / mol,分别为第一和第二分解范围,热解温度没有显着影响所生产的油的活化能。

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