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Comparative analysis of single-cascade five-zone and two-zone SMB systems for the separation of a ternary amino acid mixture

Authors
Jo, Se HeeKim, Jeung KunYool, Chang GeunKim, Jin IlKoo, Yoon MoMun, Sunyong
Issue Date
Dec-2007
Publisher
WILEY
Keywords
five-zone SMB; two-zone SMB; ternary separation; safety margin method
Citation
CANADIAN JOURNAL OF CHEMICAL ENGINEERING, v.85, no.6, pp.874 - 882
Indexed
SCIE
SCOPUS
Journal Title
CANADIAN JOURNAL OF CHEMICAL ENGINEERING
Volume
85
Number
6
Start Page
874
End Page
882
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/179289
DOI
10.1002/cjce.5450850608
ISSN
0008-4034
Abstract
A ternary separation usually requires the use of two simulated moving bed (SMB) units in series. Since an increase in the number of SMB units leads to a significant increase in capital and operational costs, the use of a single SMB unit is preferred if its structure can be modified to treat a ternary separation. Such a modified single SMB unit has been typified by a five-zone SMB or a two-zone SMB so far. The separation performances of a five-zone SMB and a two-zone SMB are compared in this paper by using the ternary amino acid mixture as a model system. A five-zone SMB is designed with the safety margin method while a two-zone SMB is optimized using genetic algorithm. A five-zone SMB based on the maximum allowable safety margin, although it may not guarantee the global optimum solution, results in much better separation performance than a two-zone SMB at its global optimum state.
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