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H-ZSM-5 catalysed degradation of low density polyethylene, polypropylene, polyisobutylene and squalane: Influence of polymer structure on aromatic product distribution

机译:H-ZSM-5催化低密度聚乙烯,聚丙烯,聚异丁烯和角鲨烷的降解:聚合物结构对芳族产物分布的影响

摘要

Low density polyethylene, polypropylene and polyisobutylene and a medium molecular weight compound, squalane, were degraded as model compounds for plastics over a H-ZSM-5 zeolite catalyst. These compounds give products that are rich in gasoline-range chemicals, which contain a number of aromatic compounds. Polyisobutylene, (PIB) with dimethyl branching on alternate carbon atoms is shown to produce very little aromatics, whereas polypropylene (PP), with methyl branching and low density polyethylene (LDPE), and with very few branches on the polymer backbone, produces high yields of aromatics, and squalane with methyl branching fairly spaced out produces still higher yields of aromatics compared with PIB. The aromatic distributions obtained from these compounds have been explained in terms of the carbon branching on the polymer and the steric effect resulting from the polymer's ingress into the zeolite channels
机译:低密度聚乙烯,聚丙烯和聚异丁烯以及中分子量化合物角鲨烷在H-ZSM-5沸石催化剂上降解为塑料模型化合物。这些化合物产生的产品富含汽油范围的化学物质,其中包含许多芳香族化合物。已显示在异碳原子上具有二甲基支链的聚异丁烯(PIB)产生很少的芳族化合物,而具有甲基支链和低密度聚乙烯(LDPE)且在聚合物主链上具有很少支链的聚丙烯(PP)产生的收率高与PIB相比,具有相当大的甲基支链间隔的角鲨烷产生的芳烃收率更高。从这些化合物获得的芳族分布已根据聚合物上的碳支化以及聚合物进入沸石通道所产生的空间效应进行了解释。

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