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Heat-Dependent Desorption of Proanthocyanidins from Grape-Derived Cell Wall Material under Variable Ethanol Concentrations in Model Wine Systems

机译:在模型葡萄酒系统中可变乙醇浓度的葡萄衍生的细胞壁材料中原花青素的热依赖性解吸

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摘要

Desorption of proanthocyanidins (PA) from grape cell wall material (CWM) was investigated in solutions of varying ethanol concentrations and increasing temperature. The results reveal the reversibility of PA-CWM interactions and the role that temperature and ethanol concentration play in the extent of PA desorption. Sequentially raising temperature from 15 to 35 °C resulted in desorption of up to 48% of the initial adsorbed PA. A comparison to a phenolic extraction model showed significant differences between the predicted and actual amount of PA that desorbed from the CWM. This suggests that the initial conditions of temperature and ethanol concentration must be considered when estimating PA extraction in red wine production. Under typical winemaking conditions, a significant amount of PA may be irreversibly adsorbed if exposed to CWM at low temperature (i.e., cold soak). A compositional analysis suggests the selective desorption of large molecular weight PA from CWM under all experimental conditions. Additionally, a preferential desorption of skin-derived PA over seed-derived PA was noted in the absence of ethanol.
机译:研究了来自葡萄细胞壁材料(CWM)的原花青素(PA)的解吸,在不同乙醇浓度和升高的温度下进行溶液。结果揭示了PA-CWM相互作用的可逆性,以及温度和乙醇浓度在PA解吸程度上起作用的作用。依次升高温度为15至35℃,导致初始吸附Pa的解吸可达48%。与酚类提取模型的比较显示了从CWM解吸的PA的预测和实际量之间的显着差异。这表明在红酒生产中的PA萃取时,必须考虑温度和乙醇浓度的初始条件。在典型的酿酒条件下,如果在低温下暴露于CWM(即冷浸泡)暴露于CWM,则大量的PA可能是不可逆转的吸附。组合物分析表明,在所有实验条件下,来自CWM的大分子量Pa的选择性解吸。另外,在没有乙醇的情况下,注意到在种子衍生的PA上的优先解吸。

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