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Characterization of products obtained of waste polyethylene terephthalate by pyrolysis

机译:描述产品的浪费通过热解聚对苯二甲酸乙二醇酯

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摘要

Abstract In this study, waste polyethylene terephthalate (wPET) was converted to liquid fuel by the pyrolysis method. It was also investigated both effects of microwave pre‐treatment and catalyst (sodium borohydride) on total conversion and oil?+?gas yield. The reaction temperature of 375–425°C and the reaction time of 30?min are sufficient for the pyrolysis of waste plastic samples in a batch reactor. In the pyrolysis of wPETs, the highest oil?+?gas yield of 45% was obtained under the conditions of reaction temperature of 425°C and reaction time of 30?min. The highest total conversion was 62% of microwave pre‐treated wPETs under catalytic conditions. It can be argued that microwave pre‐treatment and NaBH4 influence the oil?+?gas yield in pyrolysis experiments. According to the gas chromatography–mass spectrometry (GC–MS) analysis results of the oil products, they consist of aromatic, mono and multi‐ring aromatic compounds and polyaromatic compounds. Higher heating values of the solid products obtained in pyrolysis are approximately 4000–6000?cal/g. According to X‐ray diffraction analysis (XRD) of the solid products, they consist largely of crystalline terephthalic acid (C8H6O4).
机译:摘要在这项研究中,浪费聚乙烯对苯二酸酯(wPET)转化为液体燃料热解法。微波提前治疗的效果催化剂(硼氢化钠)总转换和石油+ ?375 - 425°C和30的反应时间?足够的浪费塑料的热解样品在一批反应堆。wPETs,最高油+ ?反应的条件下获得的30 425°C的温度和反应时间?分钟。微波的最高总转化率为62%在催化条件下提前wPETs治疗。可以认为,微波提前治疗和NaBH4影响石油+ ?实验。相色谱分析-质谱法(gc - ms)分析石油产品的结果,他们包括芳香,mono和多环芳香族化合物和聚芳的化合物。热解的固体产品获得大约4000 - 6000 ?卡尔/ g。固体产品的衍射分析(XRD),他们很大程度上由水晶对酞酸(C8H6O4)。

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