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« Previous AbstractAnalysis of volatile organic compounds in crumb and crust of different baked and toasted gluten-free breads by direct PTR-ToF-MS and fast-GC-PTR-ToF-MS    Next AbstractComparison of different extraction methodologies for the analysis of volatile compounds in gluten-free flours and corn starch by GC/QTOF »

J Sep Sci


Title:Analytical feasibility of a solvent-assisted flavour evaporation method for aroma analyses in bread crumb
Author(s):Pico J; Oduber F; Gomez M; Bernal J;
Address:"I.U.Cinquima, Analytical Chemistry Group, University of Valladolid, Valladolid, Spain. Food Technology Area, E.T.S. Ingenierias Agrarias, University of Valladolid, Palencia, Spain"
Journal Title:J Sep Sci
Year:2018
Volume:20180927
Issue:20
Page Number:3902 - 3909
DOI: 10.1002/jssc.201800336
ISSN/ISBN:1615-9314 (Electronic) 1615-9306 (Linking)
Abstract:"The analysis of bread aroma is essential in order to evaluate its quality as well as to improve it. The use of different methodologies for the analysis of volatile compounds lead to varying results. In the present study, the matrix effect, extraction efficiency, limits of detection and quantification as well as the precision of a proposed solvent-assisted flavour evaporation methodology were evaluated for the first time and compared with a reference method, both differing in the distillation step. The repeatability (<8%) and matrix effect (present in 15 of the 31 compounds) were improved with the proposed method but the extraction efficiencies (average of 52%) and the intermediate precision (>15%) were not as required. However, the applicability of the reference method was limited to breads with fat levels <2%. For breads higher in fat, the proposed method represents an alternative for aroma analysis"
Keywords:Bread/*analysis Gas Chromatography-Mass Spectrometry Odorants/*analysis Solvents/chemistry Volatile Organic Compounds/*analysis Volatilization bread crumb gas chromatography solvent extraction volatile compounds;
Notes:"MedlinePico, Joana Oduber, Fernanda Gomez, Manuel Bernal, Jose eng Germany 2018/09/06 J Sep Sci. 2018 Oct; 41(20):3902-3909. doi: 10.1002/jssc.201800336. Epub 2018 Sep 27"

 
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