Analysis of Whiskey by Dispersive Liquid-Liquid Microextraction Coupled with Gas Chromatography/Mass Spectrometry: An Upper Division Analytical Chemistry Experiment Guided by Green Chemistry

Fuente: ERIC Institute of Education Sciences
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Autori principali: Owens, Janel E., Zimmerman, Laura B., Gardner, Michael A., Lowe, Luis E.
Natura: Recurso educativo Open Access
Lingua:en
Pubblicazione: 2016
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author Owens, Janel E.
Zimmerman, Laura B.
Gardner, Michael A.
Lowe, Luis E.
author_facet Owens, Janel E.
Zimmerman, Laura B.
Gardner, Michael A.
Lowe, Luis E.
Owens, Janel E.
Zimmerman, Laura B.
Gardner, Michael A.
Lowe, Luis E.
collection Education Resources Information Center
contents Analysis of Whiskey by Dispersive Liquid-Liquid Microextraction Coupled with Gas Chromatography/Mass Spectrometry: An Upper Division Analytical Chemistry Experiment Guided by Green Chemistry Owens, Janel E. Zimmerman, Laura B. Gardner, Michael A. Lowe, Luis E. Science Instruction Science Laboratories Spectroscopy Chemistry Laboratory Experiments Science Experiments College Science Undergraduate Study Analysis of whiskey samples prepared by a green microextraction technique, dispersive liquid-liquid microextraction (DLLME), before analysis by a qualitative gas chromatography-mass spectrometry (GC/MS) method, is described as a laboratory experiment for an upper division instrumental methods of analysis laboratory course. Here, aroma compounds in whiskey samples (n = 11) were extracted using ultrasound-assisted DLLME with chloroform (as extraction solvent). The chloroform extract was analyzed by GC/MS with data manipulation by AMDIS (automated mass spectral deconvolution and identification system) to allow for comparisons between whiskey samples. Aroma compounds commonly reported in the literature (furfural, isoamyl acetate, 5-methyl furfural, ethyl esters, phenylethyl alcohol, whiskeylactone, and vanillin) were tentatively identified based upon the match to the MS library. This unique laboratory allows students to engage in a real-world analysis of a high-value product and to explore the use of AMDIS to tentatively identify compounds and compare chromatographic profiles of various whiskey samples for identification of common and unique constituents. Students also use the literature to provide sensory information for these identified semivolatile compounds.
format Recurso educativo Open Access
id eric_EJ1088226
institution ERIC Institute of Education Sciences
language en
publishDate 2016
record_format eric
spellingShingle Analysis of Whiskey by Dispersive Liquid-Liquid Microextraction Coupled with Gas Chromatography/Mass Spectrometry: An Upper Division Analytical Chemistry Experiment Guided by Green Chemistry
Owens, Janel E.
Zimmerman, Laura B.
Gardner, Michael A.
Lowe, Luis E.
Science Instruction
Science Laboratories
Spectroscopy
Chemistry
Laboratory Experiments
Science Experiments
College Science
Undergraduate Study
Analysis of Whiskey by Dispersive Liquid-Liquid Microextraction Coupled with Gas Chromatography/Mass Spectrometry: An Upper Division Analytical Chemistry Experiment Guided by Green Chemistry Owens, Janel E. Zimmerman, Laura B. Gardner, Michael A. Lowe, Luis E. Science Instruction Science Laboratories Spectroscopy Chemistry Laboratory Experiments Science Experiments College Science Undergraduate Study Analysis of whiskey samples prepared by a green microextraction technique, dispersive liquid-liquid microextraction (DLLME), before analysis by a qualitative gas chromatography-mass spectrometry (GC/MS) method, is described as a laboratory experiment for an upper division instrumental methods of analysis laboratory course. Here, aroma compounds in whiskey samples (n = 11) were extracted using ultrasound-assisted DLLME with chloroform (as extraction solvent). The chloroform extract was analyzed by GC/MS with data manipulation by AMDIS (automated mass spectral deconvolution and identification system) to allow for comparisons between whiskey samples. Aroma compounds commonly reported in the literature (furfural, isoamyl acetate, 5-methyl furfural, ethyl esters, phenylethyl alcohol, whiskeylactone, and vanillin) were tentatively identified based upon the match to the MS library. This unique laboratory allows students to engage in a real-world analysis of a high-value product and to explore the use of AMDIS to tentatively identify compounds and compare chromatographic profiles of various whiskey samples for identification of common and unique constituents. Students also use the literature to provide sensory information for these identified semivolatile compounds.
title Analysis of Whiskey by Dispersive Liquid-Liquid Microextraction Coupled with Gas Chromatography/Mass Spectrometry: An Upper Division Analytical Chemistry Experiment Guided by Green Chemistry
topic Science Instruction
Science Laboratories
Spectroscopy
Chemistry
Laboratory Experiments
Science Experiments
College Science
Undergraduate Study
url https://eric.ed.gov/?id=EJ1088226