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首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Selective production of valuable hydrocarbons from waste motorbike engine oils via catalytic fast pyrolysis using zeolites
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Selective production of valuable hydrocarbons from waste motorbike engine oils via catalytic fast pyrolysis using zeolites

机译:使用沸石通过催化快速热解从摩托车废机油中选择性生产有价值的碳氢化合物

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Aged automobile engine oils contain highly oxidized and hazardous organic compounds, and their disposal adversely affects the environment, underground, and surface waters. Therefore, it is imperative to develop innovative strategies to solve the problem of disposal of waste engine oils. One way is to recover value added chemicals and intermediates from it. This study focuses on recovery of useful hydrocarbons from highly oxidized, waste motorbike engine oils via catalytic fast pyrolysis using zeolites belonging to ZSM-5, Zeolite-beta and Zeolite-Y (ZY) families. Pyrolysis experiments were conducted in a micropyrolyzer connected to a gas chromatograph-mass spectrometer. Initially, non-catalytic fast pyrolysis was performed at temperatures from 300 to 800 degrees C, and it was found that high temperatures led to the formation of C3-10 alkenes, while low temperatures resulted in high yields of heavy fractions like C31-60 alkanes and oxidized aromatics. In order to selectively improve the production of C6-15 alkanes that are valuable as fuel molecules, catalytic fast pyrolysis was performed at 400 degrees C using 1:1 wt./wt. of oil:zeolites. Hydrogen form of ZY resulted in ca. 65% of C6-15 linear, branched, and cyclic alkanes, while other catalysts promoted the formation of alkenes. The yields of C6-15 linear and cyclic alkanes increased with micropore area, pore volume, and surface acidity of the zeolites. An increase in catalyst quantity significantly increased the yield of C6-10 alkanes, while reducing the C11-45 alkane yield and promoting the formation of C3-5 alkanes. High temperatures led to a significant drop in the production of linear and branched alkanes, but promoted the formation of alkenes and cyclic hydrocarbons. This work has demonstrated that catalytic fast pyrolysis using zeolites is a potential technique to selectively recover value added hydrocarbons from highly oxidized engine oils. (C) 2015 Elsevier B.V. All rights reserved.
机译:老化的汽车发动机油包含高度氧化和有害的有机化合物,其处置会对环境,地下和地表水产生不利影响。因此,迫切需要开发创新的策略来解决废弃机油的处置问题。一种方法是从中回收附加值的化学品和中间体。这项研究的重点是通过使用属于ZSM-5,β-沸石和Y-沸石(ZY)家族的沸石通过催化快速热解从高氧化的废旧摩托车发动机油中回收有用的烃。热解实验是在与气相色谱-质谱仪相连的微型热解器中进行的。最初,非催化快速热解是在300至800摄氏度的温度下进行的,发现高温导致C3-10烯烃的形成,而低温则导致重馏分(如C31-60烷烃)的高收率和氧化的芳烃。为了选择性地提高有价值的C6-15烷烃作为燃料分子的生产,在400摄氏度下使用1:1 wt./wt进行催化快速热解。油:沸石。 ZY的氢形式导致大约65%的C6-15直链,支链和环状烷烃,而其他催化剂则促进了烯烃的形成。 C6-15直链和环状烷烃的收率随沸石的微孔面积,孔体积和表面酸度的增加而增加。催化剂数量的增加显着增加了C6-10烷烃的产率,同时降低了C11-45烷烃的产率并促进了C3-5烷烃的形成。高温导致直链和支链烷烃的产量显着下降,但促进了烯烃和环状烃的形成。这项工作表明,使用沸石进行催化快速热解是一种从高氧化度机油中选择性回收增值碳氢化合物的潜在技术。 (C)2015 Elsevier B.V.保留所有权利。

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