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The effects of ZSM-5 mesoporosity and morphology on the catalytic fast pyrolysis of furan

机译:ZSM-5中渗透性和形态对呋喃催化快速热解的影响

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摘要

ZSM-5 catalysts with different morphologies were synthesized and evaluated for the catalytic conversion of furan in a fixed bed reactor to provide insights into the rational design of zeolite catalysts for catalytic fast pyrolysis (CFP). The effects of mesoporosity and morphology of ZSM-5 catalysts on the production of aromatics and olefins as well as catalyst deactivation were investigated. The results suggest that increasing mesoporosity and decreasing crystallite size can increase furan conversion and affect selectivity to products. Improved selectivities to benzene, toluene, xylene and olefins were achieved with mesoporous ZSM-5 and 100 nm ZSM-5 compared to 800 nm ZSM-5. Coke formation on zeolite catalysts during the reaction of furan was also largely reduced (up to 65%) by introducing mesoporosity. It was observed that coke is mainly formed and accumulated inside the micropores of ZSM-5 catalysts rather than on the external surface or within the mesopores. Characterization of mass transport in the coked zeolite samples using cyclohexane as a probe molecule suggested that coke blocks micropores, leading to a decrease in micropore volume during the catalyst deactivation process. However, due to the three-dimensional pore structure of ZSM-5, the mass transport properties of mesoporous ZSM-5 do not exhibit an apparent change. Catalyst deactivation was mainly due to the coverage of active sites by coke, rather than the blockage of the transport pathways by coke.
机译:合成ZSM-5具有不同形态的催化剂,并评价呋喃在固定床反应器中的催化转化,以提供催化快速热解(CFP)沸石催化剂的合理设计的见解。研究了ZSM-5催化剂的介体和形态对芳烃和烯烃的产生以及催化剂失活的影响。结果表明,越来越渗透性和微晶尺寸的降低可以增加呋喃转化并影响产品的选择性。通过中孔ZSM-5和100nm ZSM-5实现改善苯,甲苯,二甲苯和烯烃的选择性,与800nm ZSM-5相比,实现。通过引入中渗透性,呋喃反应过程中的沸石催化剂上的焦炭形成也大大降低了(高达65%)。观察到焦炭主要形成和积聚在ZSM-5催化剂的微孔内,而不是在外表面或中孔中。使用环己烷作为探针分子的焦化沸石样品中焦化沸石样品中的质量传输表征表明焦炭块微孔,导致催化剂失活过程中微孔体积的降低。然而,由于ZSM-5的三维孔隙结构,中孔ZSM-5的质量传输性能不会表现出表观变化。催化剂失活主要是由于焦炭的覆盖率,而不是通过焦炭堵塞运输途径。

著录项

  • 来源
    《Green chemistry》 |2017年第15期|共9页
  • 作者单位

    Beijing Forestry Univ Key Lab Wooden Mat Sci &

    Applicat Minist Educ Coll Mat Sci &

    Technol 35 Qinghua East Rd Beijing 100083 Peoples R China;

    Univ Massachusetts Dept Chem Engn 159 Goessman Lab 686 N Pleasant St Amherst MA 01003 USA;

    Univ Massachusetts Dept Chem Engn 159 Goessman Lab 686 N Pleasant St Amherst MA 01003 USA;

    Univ Massachusetts Dept Chem Engn 159 Goessman Lab 686 N Pleasant St Amherst MA 01003 USA;

    Univ Massachusetts Dept Chem Engn 159 Goessman Lab 686 N Pleasant St Amherst MA 01003 USA;

    Univ Massachusetts Dept Chem Engn 159 Goessman Lab 686 N Pleasant St Amherst MA 01003 USA;

    Univ Wisconsin Dept Chem &

    Biol Engn 1415 Engn Dr Madison WI 53706 USA;

    Univ Massachusetts Dept Chem Engn 159 Goessman Lab 686 N Pleasant St Amherst MA 01003 USA;

    Univ Minnesota Dept Chem Engn &

    Mat Sci 421 Washington Ave Minneapolis MN 55455 USA;

    Univ Massachusetts Dept Chem Engn 159 Goessman Lab 686 N Pleasant St Amherst MA 01003 USA;

    Univ Massachusetts Dept Chem Engn 159 Goessman Lab 686 N Pleasant St Amherst MA 01003 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;数理科学和化学;化学工业废物处理与综合利用;
  • 关键词

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