Copper (II), a vital fungicide in organic viticulture, also acts as a wine oxidation catalyst. However, limited data are currently available on the impact that maximum allowed copper (II) ion doses in wine grapes at harvest can have on aged wine quality. This was the focus of the present study. We investigated the copper (II) effects by producing both white and red wines from musts containing three initial metal concentrations according to the limits set for organic farming. In detail, the influence of copper (II) on fermentation evolution, chromatic characteristics, and phenolic compounds was evaluated. Interestingly, the white wine obtained with the highest permitted copper (II) dose initially exceeded the concentration of 1.0 mg/L at fermentation completion. However, after one year of storage, the copper (II) content fell below 0.2 ± 0.01 mg/L. Conversely, red wines showed copper (II) levels below 1.0 mg/L at the end of fermentation, but the initial copper (II) level in musts significantly affected total native anthocyanins, color intensity, hue, and acetaldehyde concentration. After 12-month aging, significant differences were observed in polymeric pigments, thus suggesting a potential long-term effect of copper (II) on red wine color stability.

Copper (II) Level in Musts Affects Acetaldehyde Concentration, Phenolic Composition, and Chromatic Characteristics of Red and White Wines / Errichiello, Francesco; Picariello, Luigi; Forino, Martino; Blaiotta, Giuseppe; Petruzziello, Ernesto; Moio, Luigi; Gambuti, Angelita. - In: MOLECULES. - ISSN 1420-3049. - 29:12(2024), pp. 2907-2927. [10.3390/molecules29122907]

Copper (II) Level in Musts Affects Acetaldehyde Concentration, Phenolic Composition, and Chromatic Characteristics of Red and White Wines

Francesco Errichiello
Primo
Membro del Collaboration Group
;
Martino Forino
Membro del Collaboration Group
;
Giuseppe Blaiotta
Membro del Collaboration Group
;
Ernesto Petruzziello
Membro del Collaboration Group
;
Luigi Moio
Membro del Collaboration Group
;
Angelita Gambuti
Ultimo
Membro del Collaboration Group
2024

Abstract

Copper (II), a vital fungicide in organic viticulture, also acts as a wine oxidation catalyst. However, limited data are currently available on the impact that maximum allowed copper (II) ion doses in wine grapes at harvest can have on aged wine quality. This was the focus of the present study. We investigated the copper (II) effects by producing both white and red wines from musts containing three initial metal concentrations according to the limits set for organic farming. In detail, the influence of copper (II) on fermentation evolution, chromatic characteristics, and phenolic compounds was evaluated. Interestingly, the white wine obtained with the highest permitted copper (II) dose initially exceeded the concentration of 1.0 mg/L at fermentation completion. However, after one year of storage, the copper (II) content fell below 0.2 ± 0.01 mg/L. Conversely, red wines showed copper (II) levels below 1.0 mg/L at the end of fermentation, but the initial copper (II) level in musts significantly affected total native anthocyanins, color intensity, hue, and acetaldehyde concentration. After 12-month aging, significant differences were observed in polymeric pigments, thus suggesting a potential long-term effect of copper (II) on red wine color stability.
2024
Copper (II) Level in Musts Affects Acetaldehyde Concentration, Phenolic Composition, and Chromatic Characteristics of Red and White Wines / Errichiello, Francesco; Picariello, Luigi; Forino, Martino; Blaiotta, Giuseppe; Petruzziello, Ernesto; Moio, Luigi; Gambuti, Angelita. - In: MOLECULES. - ISSN 1420-3049. - 29:12(2024), pp. 2907-2927. [10.3390/molecules29122907]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/965058
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