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首页> 外文期刊>Fuel >Influence of HZSM-5-based catalyst deactivation on the performance of different reactor configurations for the conversion of bioethanol into hydrocarbons
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Influence of HZSM-5-based catalyst deactivation on the performance of different reactor configurations for the conversion of bioethanol into hydrocarbons

机译:基于HZSM-5的催化剂失活对不同反应器构型碳氢化合物转化成烃的不同反应器配置的影响

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摘要

The conversion of bioethanol into hydrocarbons, BTH process, has been simulated in reactors with different catalyst regimes (packed bed, non-circulating fluidized bed and circulating fluidized bed). The production of value-added products, as light olefins (ethylene, propylene and butenes) and gasoline (C4+ hydrocarbons), has been targeted. Different activity profiles have been predicted for packed and fluidized bed reactors, and a circulating fluidized bed reactor has allowed a steady-state operation. The obtained product distribution in this reactor can be easily tuned by modifying the reaction conditions and the mean residence time of the catalyst in the reactor. Maximum yields of olefins (ca. 85%) are predicted to be achieved at low temperature (300 degrees C), low space time (0.1 gcat h g-1) or high content of water in the feed (75%), whereas the yield of gasoline is otherwise maximized (ca. 70%) at high temperature (400 degrees C), high space time (1.0 gcat h g-1) or low content of water in the feed (5%, azeotrope mixture). The results highlight the interest of having a useful and versatile simulation model to be used as a tool for the prediction of different reactor performances in processes with complex reaction networks and fast catalyst deactivation as the BTH process.
机译:将生物乙醇转化为烃,BTH工艺,已经在具有不同催化剂制度(包装床,非循环流化床和循环流化床)的反应器中模拟。已经靶向了增值产品,作为光烯烃(乙烯,丙烯和丙烯)和汽油(C4 +烃)的制备。已经预测了填充和流化床反应器的不同活动型材,并且循环流化床反应器允许稳态操作。通过改变反应条件和反应器中催化剂的平均停留时间,可以容易地调节该反应器中所得产物分布。预计在低温(300摄氏度),低空间时间(0.1gcat H G-1)或饲料中的高含量(75%),预计将获得最大产量(约35%)。在高温(400摄氏度)的汽油产率(约70%),在饲料中的高空间时间(1.0gcat H G-1)或饲料中的低含量(5%,共沸混合物)。结果突出了具有有用和多功能仿真模型的兴趣将用作预测具有复杂反应网络的过程中不同反应器性能的工具,以及作为BTH工艺的快速催化剂停用。

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  • 来源
    《Fuel》 |2021年第15期|121061.1-121061.11|共11页
  • 作者单位

    Univ Basque Country UPV EHU Dept Chem Engn POB 644 Bilbao 48040 Spain|Univ Oslo Ctr Mat Sci & Nanotechnol SMN Dept Chem N-0315 Oslo Norway;

    Univ Basque Country UPV EHU Dept Chem Engn POB 644 Bilbao 48040 Spain;

    Univ Basque Country UPV EHU Dept Chem Engn POB 644 Bilbao 48040 Spain;

    Univ Basque Country UPV EHU Dept Chem Engn POB 644 Bilbao 48040 Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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