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Production of Renewable Petrochemicals from Catalytic Co-pyrolysis of Beech Wood and Low-density Polyethylene with Mesoporous Bifunctional ZSM-5 Zeolites

机译:生产山毛榉木材和低密度聚乙烯催化共热分解的可再生石油化学品,具有中孔双官能ZSM​​-5沸石

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This study investigated catalytic fast pyrolysis (CFP) of beech wood, low-density polyethylene(LDPE), and their mixture (mass ratio of 1) with a conventional microporous ZSM-5 and mesoporous bifunctional Zn/ZSM-5_(meso) zeolite prepared by desilication of the conventional ZSM-5 with NaOH solution and then impregnation with Zn. The generation of mesopores by desilication improved the diffusion property of the zeolite, which decreased the formation of undesired polyaromatic hydrocarbons from secondary polymerization reactions of monoaromatics in CFP. In addition, the impregnation of Zn increased the dehydrogenation activity of the zeolites, and thus enhanced the conversion of low-value alkanes to valuable olefins. As a result, Zn/ZSM-5_(meso) produced higher yields (56.0 C%) of valuable petrochemicals (monoaromatic hydrocarbons and olefins) and lower yields of undesired polyaromatics (1.70 C%) and alkanes (10.2 C%) in co-feed CFP of the beech wood and LDPE mixture than ZSM-5 (48.2 C%, 4.18 C%, and 18.7 C% for petrochemicals, polyaromatics, and alkanes, respectively). ZSM-5 desilication and impregnation with Zn thus have a beneficial effect on improve the product distribution in CFP of biomass and plastic mixtures. In addition, the results suggest that CFP may provide a promising technology for producing renewable petrochemicals from municipal and agricultural solid wastes, which usually contain high contents of biomass and waste plastics.
机译:本研究调查了山毛榉木,低密度聚乙烯(LDPE)的催化快速热解(CFP),及其混合物(质量比为1),用常规的微孔ZSM-5和中孔双官能Zn / ZSM-5_(Meso)沸石制备通过用NaOH溶液溶解常规ZSM-5,然后用Zn浸渍。通过溶解产生沸石的产生改善了沸石的扩散特性,这降低了在CFP中单甘露钒的二次聚合反应的不需要多芳烃的形成。此外,Zn的浸渍增加了沸石的脱氢活性,从而提高了低值烷烃对有价值的烯烃的转化。结果,Zn / ZSM-5_(MESO)产生了更高的产率(56.0c%)的有价值的石油化学物质(单芳族烃类和烯烃),并且在共同中降低了不需要的聚芳族分子(1.70c%)和烷烃(10.2c%)的产率饲料山毛榉木材和LDPE混合物的CFP分别比ZSM-5(分别为ZSM-5(48.2℃%,4.18℃,和18.7c%,分别用于石油化学物质,聚芳族化合物和烷烃)。因此,ZSM-5溶解和浸渍具有对改善生物质和塑料混合物CFP中的产物分布的有益效果。此外,结果表明,CFP可以为生产来自市和农业固体废物的可再生石油化学品提供有前途的技术,这通常含有高含量的生物质和废塑料。

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