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EFFECT OF BACKGROUND REACTANT GRADIENT ON TRACER DISPERSION - A CASE-STUDY OF IMPULSE INJECTION OF REACTANT INTO AN OPEN REACTOR
Alternative TitleChin. J. Chem. Eng.
Mao, Z. S.; Chen, T. Y.
1995
Source PublicationChinese Journal of Chemical Engineering
Issue3Pages:145-154
AbstractThe paradox is well known that the residence time distribution (RTD) is not valid for the estimation of the conversion of a first-order reaction in an open tubular reactor. A case of delta-injection of reactive species into an open flow system is investigated theoretically in this paper. The analytical solution with the Laplace transform demonstrated that the conversion of a first order reaction is identical to that in a closed reactor under steady state. The effect of the background reactant concentration gradient addressed by the authors in a previous paper was employed to this case, and the numerical solution of the tracer dispersion based on this novel argument gave rise to a similar value of conversion, suggesting the validity of the concept and the significance of the subtle difference between RTDs determined with or without the presence of a background reactant in an open now system.
KeywordAxial Dispersion Model Open Reactor Residence Time Distribution Effect Of Background Reactant
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Indexed BySCI
Language英语
Document Type期刊论文
Version出版稿
Identifierhttp://ir.ipe.ac.cn/handle/122111/5893
Collection研究所(批量导入)
Recommended Citation
GB/T 7714
Mao, Z. S.,Chen, T. Y.. EFFECT OF BACKGROUND REACTANT GRADIENT ON TRACER DISPERSION - A CASE-STUDY OF IMPULSE INJECTION OF REACTANT INTO AN OPEN REACTOR[J]. Chinese Journal of Chemical Engineering,1995(3):145-154.
APA Mao, Z. S.,&Chen, T. Y..(1995).EFFECT OF BACKGROUND REACTANT GRADIENT ON TRACER DISPERSION - A CASE-STUDY OF IMPULSE INJECTION OF REACTANT INTO AN OPEN REACTOR.Chinese Journal of Chemical Engineering(3),145-154.
MLA Mao, Z. S.,et al."EFFECT OF BACKGROUND REACTANT GRADIENT ON TRACER DISPERSION - A CASE-STUDY OF IMPULSE INJECTION OF REACTANT INTO AN OPEN REACTOR".Chinese Journal of Chemical Engineering .3(1995):145-154.
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