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Microfluidic Separation of a Soluble Substance Using Transverse Diffusion in a Layered Flow

Authors
Xuan Don NguyenJeon, Hyeong JinKim, Hyo YongPaik, Hyun JongHuh, JuneKim, Hyung HoonGo, Jeung Sang
Issue Date
1월-2017
Publisher
MDPI AG
Keywords
transverse diffusion; layered flow; polymers; separation; microfluidic
Citation
MICROMACHINES, v.8, no.1
Indexed
SCIE
SCOPUS
Journal Title
MICROMACHINES
Volume
8
Number
1
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/85112
DOI
10.3390/mi8010009
ISSN
2072-666X
Abstract
This paper presents a practical flow-through method to separate anisole and ethyl phenylacetate, respectively, from a polystyrene mixture. The microfluidic separation uses different diffusive dynamics of the substances transverse to the lamination flow formed in a microchannel. The effect of inlet flow rates and ambient temperature on separation is examined. Additionally, the possibility of the separation of the light substance from the mixture with different molecular weight is shown numerically and experimentally. The separation efficiency is explained by the facts that the relaxation time depends on the inlet flow rate and that the diffusivity depends on the ambient temperature. This method can be applied to separate monomers from aggregates.
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