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Solvent Microextraction into a Single Drop

Analytical Chemistry · 1996 · Vol. 68(13) · pp. 2236–2240
Michael A. JeannotFrederick F. Cantwell

Abstract

An analytical technique is described which combines solvent extraction with gas chromatographic (GC) analysis in a simple and inexpensive apparatus involving very little solvent consumption. A small drop (8 μL) of a water-immiscible organic solvent, containing an internal standard, is located at the end of a Teflon rod which is immersed in a stirred aqueous sample solution. After the solution has been stirred for a prescribed period of time, the probe is withdrawn from the aqueous solution, and the organic phase is sampled with a microsyringe and injected into the GC for quantification. The observed rate of solvent extraction is in good agreement with a convective-diffusive kinetic model. Analytically, the relative standard deviation of the method is 1.7% for a 5.00-min extraction of the analyte 4-methylacetophenone into n-octane.

Innovative Microfluidic and Catalytic Techniques InnovationMicrofluidic and Capillary Electrophoresis ApplicationsAnalytical Chemistry and ChromatographyChemistrySolventAqueous solutionDrop (telecommunication)ChromatographyAnalyteExtraction (chemistry)OctaneAqueous two-phase systemAnalytical Chemistry (journal)

Funding

  • Natural Sciences and Engineering Research Council of Canada
Citations
1,271
FWCI
4.17
field-weighted impact
References
27
Percentile
93%
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Citations per year
References
Notes on the diffusion-type model for the longitudinal mixing of fluids in flow
Chemical Engineering Science · 1957 · 575 citations
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