Related Experiment Video
Updated: Feb 12, 2026

Quantitative 31P NMR Analysis of Lignins and Tannins
Published on: August 2, 2021
Evolution of Sangiovese Wines With Varied Tannin and Anthocyanin Ratios During Oxidative Aging
Angelita Gambuti1, Luigi Picariello1, Alessandra Rinaldi1,2
1Division of Grape and Wine Sciences, Department of Agricultural Sciences, Viale Italia Angolo via Perrottelli, University of Naples Federico II, Avellino, Italy.
Abstract:
Changes in phenolic compounds, chromatic characteristics, acetaldehyde, and protein-reactive tannins associated with oxidative aging were studied in Sangiovese wines with varied tannin T/anthocyanin A ratios. For this purpose, three Sangiovese vineyards located in Tuscany were considered in the 2016 vintage. To obtain wines with different T/A ratios, two red wines were produced from each vinification batch: a free run juice with a lower T/A ratio and a marc pressed wine with a higher T/A ratio. An overall of six wines with T/A ratios ranging between 5 and 23 were produced. An oxidation treatment (four saturation cycles) was applied to each wine. Average and initial oxygen consumption rates (OCR) were positively correlated to VRF/mA (vanilline reactive flavans/monomeric anthocyanins) and T/A ratios while OCRs were negatively related to the wine content in monomeric and total anthocyanins. The higher the A content was, the greater the loss of total and free anthocyanins. A significant lower production of polymeric pigments was detected in all pressed wines with respect to the correspondant free run one. A gradual decrease of tannin reactivity toward saliva proteins after the application of oxygen saturation cycles was detected. The results obtained in this experiment indicate that VRF/mA and T/A ratios are among the fundamental parameters to evaluate before choosing the antioxidant protection to be used and the right oxidation level to apply for a longer shelf-life of red wine.
Related Concept Videos
The Evidence for Evolution
Convergent Evolution
Oxidation Numbers
Gradually Varying Flow
Rapidly Varying Flow
Eukaryotic Evolution
Contrary to the endosymbiont theory, the eukaryote-first hypothesis proposes that the simpler prokaryotic and...

