Institut Universitaire de la Vigne et du Vin, 1 rue Claude Ladrey, Université de Bourgogne , F-21078 Dijon, France.
J Agric Food Chem. 2013 Jun 5;61(22):5391-6. doi: 10.1021/jf4016043. Epub 2013 May 28.
We report here for the first time a thermodynamic study of gaseous ethanol sorption on raw cork powder and plate. Our study aims at a better understanding of the reactivity of this material when used as a stopper under enological conditions, thus in close contact with a hydroethanolic solution, wine. Sorption−desorption isotherms were accurately measured by thermogravimetry at 298 K in a large range of relative pressures. Sorption enthalpies were determined by calorimetry as a function of loading. Sorption−desorption isotherms exhibit a hysteresis loop probably due to the swelling of the material and the absorption of ethanol. Surprisingly, the sorption enthalpy of ethanol becomes lower than the liquefaction enthalpy as the filling increases. This result could be attributed to the swelling of the material, which would generate endothermic effects. Sorption of SO₂ on cork containing ethanol was also studied. When the ethanol content in cork is 2 wt %, the amount of SO₂ sorbed is divided by 2. Thus, ethanol does not enhance the sorption rate for SO₂ but, on the contrary, decreases the SO₂ sorption activity onto cork, probably because of competitive sorption mechanisms.
我们首次报道了气态乙醇在天然软木粉和软木板上的吸附的热力学研究。我们的研究旨在更好地了解这种材料在作为葡萄酒陈酿条件下的瓶塞使用时的反应性,因为此时它与水醇溶液密切接触。在 298 K 下通过热重法在很大的相对压力范围内准确测量了吸附-解吸等温线。通过量热法测定了随负载变化的吸附焓。吸附-解吸等温线呈现滞后环,可能是由于材料的溶胀和乙醇的吸收所致。令人惊讶的是,随着填充量的增加,乙醇的吸附焓低于液化焓。这一结果可能归因于材料的溶胀,这会产生吸热效应。还研究了含乙醇的软木对 SO₂的吸附。当软木中的乙醇含量为 2wt%时,吸附的 SO₂量减少一半。因此,乙醇不会增强 SO₂的吸附速率,反而会降低 SO₂对软木的吸附活性,这可能是由于竞争吸附机制所致。