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Dual-temperature dual-state fermentation: A novel approach to improve aroma and color characteristics of Marselan wines.


ABSTRACT: This study examined the effects of the Dual-Temperature Dual-State Fermentation (DTSF) technique on the chemical and sensory characteristics of industrial-scale 'Marselan' wine. Compared to the control wine, DTSF wine exhibited greater color intensity (chroma) attributed to higher levels of anthocyanin derivatives and copigments, along with a lower pH. Furthermore, DTSF wine retained higher concentrations of grape-derived aroma volatiles, including C6/C9 compounds, terpenoids, and norisoprenoids, and elevated levels of fermentation-derived esters (notably ethyl esters), contributing to a more intense fresh fruit aroma. Additionally, the DTSF technique had a minimal impact on condensed tannins and mouthfeel. This study confirms the viability of the DTSF technique for producing high-quality red wines and highlights its potential for the production of wines with diverse sensory profiles.

SUBMITTER: Yao X 

PROVIDER: S-EPMC12018024 | biostudies-literature | 2025 Apr

REPOSITORIES: biostudies-literature

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Dual-temperature dual-state fermentation: A novel approach to improve aroma and color characteristics of Marselan wines.

Yao Xuechen X   Cai Haoen H   Kou Jiayi J   Xie Yunxue Y   Li Jin J   Zhou Penghui P   He Fei F   Duan Changqing C   Pan Qiuhong Q   Qi Mengyao M   Lan Yibin Y  

Food chemistry: X 20250409


This study examined the effects of the Dual-Temperature Dual-State Fermentation (DTSF) technique on the chemical and sensory characteristics of industrial-scale 'Marselan' wine. Compared to the control wine, DTSF wine exhibited greater color intensity (chroma) attributed to higher levels of anthocyanin derivatives and copigments, along with a lower pH. Furthermore, DTSF wine retained higher concentrations of grape-derived aroma volatiles, including C6/C9 compounds, terpenoids, and norisoprenoids  ...[more]

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