4.7 Article

Concurrent phenomena contributing to the formation of the aroma of wine during aging in oak wood: An analytical study

Journal

JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
Volume 53, Issue 10, Pages 4166-4177

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jf0481960

Keywords

wine; aroma; flavor; aging; aroma evolution; oak; GC-MS; furaneol; sotolon; homofuraneol; maltol; phenylacetaldehyde; gamma-lactones

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Red wine was stored in different oak barrels or in stainless steel, and samples were taken for two years to determine 79 aroma compounds. Aging in oak affects 41 compounds. The type of wood affects 11 compounds. At least seven different processes seem to take place concurrently in aroma evolution, and five such processes, affecting 37 compounds, are linked to the oak cask. These are extraction from the wood, oxidation of wine alcohols and amino acids, microbiological formation of ethyl phenols, sorption processes, and condensation of acetaldehyde with polyphenols. The wood can release linear gamma- and delta-lactones, beta-damascenone, and ionones. Some compounds are released very fast from wood, which suggests they lie in the external part of the wood. Some extraction profiles are too complex to be explained by physical processes. Finally, the levels of 2,5-dimethyl-4-hydroxy-3(2H)-furanone and 2-methyl-5-methyl-4-hydroxy-3(2H)-furanone increase even in the reference wine, which suggests the presence of a precursor.

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