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Pyrolysis of an LDPE-LLDPE-EVA copolymer mixture over various mesoporous catalysts

机译:LDPE-LLDPE-EVA共聚物混合物在各种介孔催化剂上的热解

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摘要

The aim of the present work was to study the performance of mesoporous catalysts in the catalytic cracking of an LDPE+LLDPE+EVA copolymer. Mesoporous catalysts, including MCM-41, Nano-MCM-41, Al-Nano-MCM-41, MMZ-ZSM-5 and Meso-MFI, were applied for this reaction. Also, microporous HZSM-5 was used for a comparison. All of the catalysts showed higher decomposition abilities than thermal decomposition. The catalytic conversion of the LDPE+LLDPE+EVA copolymer was highest with the use of Meso-MFI due to its pore size and strong Bronsted acidity, with high selectivity for lower olefin and gasoline range hydrocarbon. Both MMZ-ZSM-5 and Al-Nano-MCM-41 have an acid site that induced the decomposition reactions, and thus, produced compounds with lower carbon numbers in liquid products. MCM-41, which exhibits no acidity, showed a similar distribution of liquid products to that via thermal cracking, while Nano-MCM-41 showed better catalytic cracking ability due to its high surface area.
机译:本工作的目的是研究介孔催化剂在LDPE + LLDPE + EVA共聚物催化裂化中的性能。将包括MCM-41,Nano-MCM-41,Al-Nano-MCM-41,MMZ-ZSM-5和Meso-MFI在内的介孔催化剂用于该反应。另外,将微孔HZSM-5用于比较。所有催化剂均显示出比热分解更高的分解能力。使用Meso-MFI可以提高LDPE + LLDPE + EVA共聚物的催化转化率,这是因为其孔径大,布朗斯台德酸性强,对低级烯烃和汽油范围的烃具有高选择性。 MMZ-ZSM-5和Al-Nano-MCM-41都有一个酸性位点,该酸性位点引起分解反应,因此,在液体产品中生成的碳数较低的化合物。没有酸度的MCM-41表现出与通过热裂化相似的液体产物分布,而纳米-MCM-41由于其高表面积而具有更好的催化裂化能力。

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