DocumentCode :
108044
Title :
Interchannel Mixing Minimization in Semi-Packed Micro Gas Chromatography Columns
Author :
Alfeeli, Bassam ; Narayanan, Shrikanth ; Moodie, D. ; Zellner, Phillip ; McMillan, Mike ; Hirtenstein, Daniel ; Rice, Gary ; Agah, Masoud
Author_Institution :
Dept. of Adv. Syst., Kuwait Inst. for Sci. Res., Safat, Kuwait
Volume :
13
Issue :
11
fYear :
2013
fDate :
Nov. 2013
Firstpage :
4312
Lastpage :
4319
Abstract :
Semi-packed columns containing an array of micropillars embedded within an open rectangular column structure are a new class of micro gas chromatography (μGC) columns introduced to provide higher separation efficiency and higher sample capacity. Three different semi-packed column configurations are evaluated with respect to pillar spacing along the flow direction and number of pillars across channel. The efficiencies of semi-packed columns, in terms of height-equivalent-to-a-theoretical-plate (HETP), are compared with two microfabricated open-rectangular columns. According to simulation results, arranging the pillars in a symmetrical configuration with spacing equal to the post dimension can suppress multi-path flows. Experimental results confirm the simulation prediction as the design with 2 μm post spacing (SP1) demonstrates the highest performance among other designs. SP1 is found to have HETP of 0.010 cm (15 000 plates/m) at an optimal velocity of 18 cm/s. An open channel design with comparable channel width yields an HETP of 0.025 cm (6000 plates/m) at an optimal velocity of 45 cm/s. The pressure drop in semi-packed columns is experimentally measured to be ~ 9 kPa which falls within the practical range of microfabricated pumps.
Keywords :
chromatography; microfluidics; height-equivalent-to-a-theoretical-plate; interchannel mixing minimization; micropillars; open channel design; open rectangular column struc- ture; pillar spacing; sample capacity; semipacked micro gas chromatography columns; separation efficiency; symmetrical configuration; Portable gas analyzers; micro total analysis systems; microelectromechanical systems; microfabricated separation columns; microfluidics;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2013.2267795
Filename :
6541948
Link To Document :
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