| Literature DB >> 33466330 |
María Consuelo Díaz-Maroto1, Manuel López Viñas1, Lourdes Marchante2, María Elena Alañón3, Ignacio Javier Díaz-Maroto4, María Soledad Pérez-Coello1.
Abstract
The effects of different storage conditions, light exposure, temperature and different commercially available cork stoppers on the phenolic, volatile and sensorial profile of Verdejo wines were studied. Two natural corks of different visual quality and a microgranulated cork stopper were investigated over one year at two different storage conditions. One simulating light exposure and temperature in retail outlets and the other simulating optimal cellar conditions (darkness and 12 °C). The wines stored under commercial conditions showed greater losses of total and free SO2 and higher levels of brown-yellowish tones, related to the oxidation of flavan-3-ols. Although these wines underwent a decrease in the total content of stilbenes, a significant increase in trans-piceid was observed. In addition, these wines suffered important changes in their volatile and sensory profile. Volatile compounds with fruity and floral aromas decreased significantly, while volatile compounds related to aged-type characters, as linalool oxides, vitispirane, TDN or furan derivatives increased. Wines stored in darkness at 12 °C underwent minor changes and their sensory profiles were similar to wine before bottling. The high-quality natural corks and microgranulated corks better preserved the quality of the white wines from a sensory point of view. These results showed that temperature and light exposure conditions (diffuse white LEDs and 24 ± 2 °C) in retail outlets considerably decrease the quality of bottled white wines and, consequently, their shelf life, due to the premature development of aged-type characters.Entities:
Keywords: cork; phenolic compounds; sensorial; shelf life; storage; volatile compounds; wine
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Year: 2021 PMID: 33466330 PMCID: PMC7794777 DOI: 10.3390/molecules26010232
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411