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Regeneration and reactivation of reforming catalysts avoiding iron scale carryover from the regenerator circuit to the reactors

机译:重整催化剂的再生和再活化可避免铁垢从再生器回路带入反应器

摘要

Improvements in a reforming process for the regeneration and reactivation of a bed of a reforming catalyst, notably an iridium- containing catalyst, coked and catalytically deactivated during the on- oil portion of a reforming cycle. The reactor containing the catalyst is contained in a multi-reactor unit, the individual reactors of which are connected in series via suitable piping and valving. The reactor can be alternately manifolded with production facilities during the on-oil portion of the operating cycle during which period the catalyst of said reactor becomes coked, and can be manifolded alone or with other reactors with a ferrous metal regeneration circuit during the catalyst regeneration and reactivation portion of an operating cycle during which period the catalyst is regenerated and reactivated. In the regeneration and reactivation of the coked catalyst the sequence of process steps include (a) an oxidation step and subsequent reduction step, or (b) a reduction step and subsequent oxidation step, to remove coke and redisperse the iridium component of the catalyst of said reactor. Iron scale carryover from the regeneration circuit to the catalyst of said reactor is drastically reduced by by-passing said reactor during the periods of transition from the (a) oxidation step to the reduction step, or (b) from the reduction step to the oxidation step by closing off the manifold connection between the regeneration circuit and the said reactor. Loss of catalyst activity due to iron scale carryover to the catalyst of said reactor is thus suppressed.
机译:用于在重整循环的油中部分使焦化并催化失活的重整催化剂,特别是含铱催化剂的床的重整和活化的重整工艺的改进。包含催化剂的反应器包含在多反应器单元中,其各个反应器通过合适的管道和阀门串联连接。在操作周期的上油部分期间,反应器可以与生产设施交替连接,在此期间,所述反应器的催化剂焦化,并且可以在催化剂再生和分离期间将其单独或与其他具有黑色金属再生回路的反应器歧管。操作周期的再活化部分,在此期间催化剂被再生和再活化。在焦化催化剂的再生和再活化中,工艺步骤的顺序包括(a)氧化步骤和随后的还原步骤,或(b)还原步骤和随后的氧化步骤,以除去焦炭并使催化剂中的铱成分重新分散说反应堆。在从(a)氧化步骤到还原步骤,或(b)从还原步骤到氧化的过渡期间,通过绕过所述反应器,可以大大减少从再生回路到所述反应器催化剂的铁垢残留。通过关闭再生回路和所述反应器之间的歧管连接来完成步骤。因此抑制了由于铁垢携带到所述反应器的催化剂而引起的催化剂活性的损失。

著录项

  • 公开/公告号US4769128A

    专利类型

  • 公开/公告日1988-09-06

    原文格式PDF

  • 申请/专利权人 EXXON RESEARCH AND ENGINEERING COMPANY;

    申请/专利号US19870061580

  • 发明设计人 JOSEPH P. BOYLE;

    申请日1987-06-15

  • 分类号B01J23/96;C10G35/085;C10G35/09;

  • 国家 US

  • 入库时间 2022-08-22 06:48:41

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