CIESC Journal

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RESIDENCE TIME DISTRIBUTION IN AN OPEN REACTOR:EFFECT OF BACKGROUND REACTANT ON TRACER DISPERSION

毛在砂; 陈家镛   

  1. Institute of Chemical Metallurgy, Academia Sinica, Beijing 100080, China
  • 收稿日期:1992-01-11 修回日期:1992-09-08 出版日期:1993-06-28 发布日期:1993-06-28
  • 通讯作者: 毛在砂

RESIDENCE TIME DISTRIBUTION IN AN OPEN REACTOR:EFFECT OF BACKGROUND REACTANT ON TRACER DISPERSION

MA Zaisha; CHEN Jiayong   

  1. Institute of Chemical Metallurgy, Academia Sinica, Beijing 100080, China
  • Received:1992-01-11 Revised:1992-09-08 Online:1993-06-28 Published:1993-06-28
  • Contact: MA Zaisha

摘要: A new approach is presented for deriving the residence time distribution(RTD)in open-type reactors with exclusion of residence in the fore section.Inasmuch as failure to predict the con-version of chemical reactions has been evidenced in many occasions,numerical solution of tracerdispersion in the presence of background concentration gradient of reactant is given to demonstratethe strong effect of background reactant on the true RTD a reactant molecule experiences.Withinthe error of computation,the conversion of a first-order chemical reaction under steady state is shownto be equal in both closed and open reactors,despite difference in relevant RTDs

关键词: axial dispersion model;open reactor;residence time distrbution;effect of background reactant

Abstract: A new approach is presented for deriving the residence time distribution(RTD)in open-type reactors with exclusion of residence in the fore section.Inasmuch as failure to predict the con-version of chemical reactions has been evidenced in many occasions,numerical solution of tracerdispersion in the presence of background concentration gradient of reactant is given to demonstratethe strong effect of background reactant on the true RTD a reactant molecule experiences.Withinthe error of computation,the conversion of a first-order chemical reaction under steady state is shownto be equal in both closed and open reactors,despite difference in relevant RTDs

Key words: axial dispersion model, open reactor, residence time distrbution, effect of background reactant