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Enhancing Sulfur Tolerance of Pd Catalysts by Hydrogen Spillover with Two Different Zeolite Supports for Low-Temperature Hydrogenation of Aromatics

机译:两种沸石载体上的氢溢氢提高钯催化剂的耐硫性,用于芳烃的低温加氢。

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摘要

Pd catalysts supported on zeolite Y and zeolite A (Pd/Y and Pd/A) were prepared separately and combined for improving sulfur tolerance based on our proposed catalyst design concept for low-temperature hydrogenation of aromatics in distillate fuels. After the external surface of Pd/A was passivated by chemical vapor deposition with silica, the resulting SiO_2-Pd/ A catalyst does not show any catalytic activity for hydrogenation of tetralin. However, adding SiO_2-Pd/A to Pd/Y by physical mixing significantly enhanced sulfur tolerance of the Pd catalyst for tetralin hydrogenation in the presence of 100 ppmw sulfur as benzothiophene. The small-pore system (Pd/A) in the hybrid catalyst plays a critical role to maintain the catalytic activity of metal sites in the large-pore system (Pd/Y) in the presence of sulfur, via hydrogen spillover from metal inside the zeolite A pore channel protected by size-selective exclusion of sulfur compounds.
机译:基于我们提出的用于馏出燃料中芳烃的低温加氢的催化剂设计理念,分别制备了负载在沸石Y和沸石A(Pd / Y和Pd / A)上的Pd催化剂,并结合使用以提高耐硫性。在用二氧化硅通过化学气相沉积使Pd / A的外表面钝化之后,所得的SiO_2-Pd / A催化剂对四氢化萘的氢化没有任何催化活性。但是,通过物理混合将SiO_2-Pd / A添加到Pd / Y中,在存在100 ppmw硫作为苯并噻吩的情况下,四氢萘加氢的Pd催化剂的耐硫性显着提高。杂化催化剂中的小孔系统(Pd / A)在硫存在下通过氢从反应堆内部金属中的氢溢出来维持大孔系统(Pd / Y)中金属位点的催化活性起着关键作用。沸石通过选择性选择硫化合物而保护的孔道。

著录项

  • 来源
    《Energy & fuels》 |2014年第novaadeca期|6788-6792|共5页
  • 作者

    Hyun Jae Kim; Chunshan Song;

  • 作者单位

    Clean Fuels and Catalysis Program, EMS Energy Institute, Department of Energy and Mineral Engineering, and Department of Chemical Engineering, The Pennsylvania State University, 209 Academic Projects Building, University Park, Pennsylvania 16802,United States;

    Clean Fuels and Catalysis Program, EMS Energy Institute, Department of Energy and Mineral Engineering, and Department of Chemical Engineering, The Pennsylvania State University, 209 Academic Projects Building, University Park, Pennsylvania 16802,United States;

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

  • 入库时间 2022-08-18 00:40:31

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