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Characteristics of liquid product from the pyrolysis of waste plastic mixture at low and high temperatures: Influence of lapse time of reaction

机译:废塑料混合物在低温和高温下热解的液体产物特征:反应时间的影响

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Pyrolysis of a waste plastic mixture (high-density polyethylene: low-density polyethylene: polypropylene: polystyrene = 3:2:3:1) into a liquid product was carried out in a stirred semi-batch reactor at low (350 deg C) and high (400 deg C) temperatures. The effect of lapse time of reaction in the reactor and also degradation temperature on the characteristics of the liquid product from pyrolysis of the mixture was investigated. Liquid products were described by cumulative amount distribution, paraffin, olefin, naphthene and aromatic (PONA) distribution and molecular weight distribution. Their characteristic was quite differed with a lapse time of reaction and also at a low and high degradation temperatures, because of the different physicochemical properties of the plastic types in the mixture. With increase of lapse time of reaction, the order for the main products in PONA components obtained at 350 deg C was firstly aromatic products and then olefin products, while at 400 deg C the order was firstly aromatic products, then olefin products and finally paraffin products. The experiments also showed from the molecular weight distribution of liquid PONA components that the paraffin and olefin products had a wide distribution by mainly random scission of polymer, but in the case of olefin products were produced by an end-chain scission mechanism as well as random scission mechanism, as evidenced by much more light olefin products. This phenomenon was evident at a higher degradation temperature. Also, both the light olefin and naphthene products with a molecular weight of around 120, as a main product, showed a similar trend as a function of lapse time, which had a maximum fraction at 343 min (at 350 deg C) and 83 min (at 400 deg C). Among PONA components, the highest concentrations of aromatic products were obtained with a molecular weight of around 100 at the fastest lapse time of reaction, regardless of degradation temperature. It was concluded that the characteristics of liquid product on the pyrolysis of plastic mixtures were strongly influenced by lapse time of reaction and degradation temperature.
机译:废塑料混合物(高密度聚乙烯:低密度聚乙烯:聚丙烯:聚苯乙烯= 3:2:3:1)在低温(350℃)下在搅拌的半间歇反应器中热解为液体产品和高温(400摄氏度)。研究了反应器中反应时间的流逝以及降解温度对混合物热解后液体产物特性的影响。通过累积量分布,石蜡,烯烃,环烷和芳烃(PONA)分布和分子量分布来描述液体产品。由于混合物中塑料类型的不同物理化学性质,它们的特性在反应的经过时间以及低低降解温度和高降解温度下都存在很大差异。随着反应时间的延长,在350℃下获得的PONA组分中的主要产物的顺序为首先是芳族产物,然后是烯烃产物,而在400℃下,首先是芳族产物,然后是烯烃产物,最后是石蜡产物。 。实验还从液体PONA组分的分子量分布表明,主要通过聚合物的无规断裂,石蜡和烯烃产物具有较宽的分布,但是在烯烃产物的情况下,其是通过端链断裂机理以及无规断裂产生的。裂解机理,更多的轻质烯烃产品证明了这一点。这种现象在较高的降解温度下很明显。另外,作为主要产物的分子量约为120的轻质烯烃和环烷烃产品,其随时间的变化趋势相似,在343分钟(350℃)和83分钟时的最大馏分(在400摄氏度时)。在PONA组分中,无论降解温度如何,在最快的反应时间下都可获得最高浓度的芳香族产物,分子量约为100。可以得出结论,液体产物对塑料混合物热解的特性受反应时间和降解温度的强烈影响。

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