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A novel approach to the design and operation scheduling of heterogeneous catalytic reactors

机译:多相催化反应器设计和运行调度的新方法

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摘要

A number of studies have been conducted to reduce the overall level of catalyst deactivation in heterogeneous catalytic reactors, and improve the performance of reactors, such as yield, conversion or selectivity. The methodology generally includes optimization of the following: (1) operating conditions of the reaction system, such as feed temperature, normal operating temperature, pressure, and composition of feed streams; (2) reactor design parameters, such as dimension of the reactor, side stream distribution along the axis of the reactor beds, the mixing ratio of inert catalyst at each bed; and (3) catalyst design parameters, such as the pore size distribution across the pellet, active material distribution, size and shape of the catalyst, etc. Few studies have examined optimization of the overall catalyst reactor performance throughout the catalyst lifetime, considering catalyst deactivation. Furthermore, little attention has been given to the impact of various configurations of reactor networks and scheduling of the reactor operation (i.e., online and offline-regeneration) on the overall reactor performance throughout the catalyst lifetime. Therefore, we developed a range of feasible sequences of reactors and scheduling of reactors for operation and regeneration, and compared the overall reactor performance of multiple cases. Furthermore, a superstructure of reactor networks was developed and optimized to determine the optimum reactor network that shows the maximum overall reactor performance. The operating schedule of each reactor in the network was considered further. Lastly, the methodology was illustrated using a case study of the MTO (methanol to olefin) process.
机译:为了降低多相催化反应器中催化剂失活的总体水平,并改善反应器的性能,例如产率,转化率或选择性,进行了许多研究。该方法通常包括以下方面的优化:(1)反应系统的操作条件,例如进料温度,正常操作温度,压力和进料流的组成; (2)反应器的设计参数,例如反应器的尺寸,沿反应器床轴线的侧流分布,各床惰性催化剂的混合比; (3)催化剂设计参数,例如整个颗粒的孔径分布,活性物质分布,催化剂的尺寸和形状等。很少有研究考虑催化剂的失活来研究整个催化剂寿命期间整体催化剂反应器性能的优化。 。此外,很少关注反应器网络的各种配置和反应器运行的时间表(即,在线和离线再生)对整个催化剂寿命中的整体反应器性能的影响。因此,我们开发了一系列可行的反应堆顺序以及用于运行和再生的反应堆调度,并比较了多种情况下的整体反应堆性能。此外,对反应堆网络的上部结构进行了开发和优化,以确定显示出总体反应堆最高性能的最佳反应堆网络。进一步考虑了网络中每个反应堆的运行时间表。最后,通过对MTO(甲醇制烯烃)工艺的案例研究说明了该方法。

著录项

  • 来源
    《The Korean journal of chemical engineering》 |2014年第7期|1136-1147|共12页
  • 作者单位

    Centre for Process Integration, School of Chemical Engineering and Analytical Science, The University of Manchester, P. O. Box 88, Manchester, M60 1QD, U.K.;

    Centre for Process Integration, School of Chemical Engineering and Analytical Science, The University of Manchester, P. O. Box 88, Manchester, M60 1QD, U.K.;

    Department of Chemistry & Chemical Engineering, Inha University, 253, Yonghyun-dong, Nam-gu, Incheon 402-751, Korea;

  • 收录信息 美国《科学引文索引》(SCI);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

    Modeling; Optimization; Kinetics; Reactor; Deactivation;

    机译:造型;优化;动力学;反应堆;停用;

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