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About the Role of the Bottleneck/Cork Interface on Oxygen Transfer

机译:关于瓶颈/软木塞接口在氧气转移中的作用

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The transfer of oxygen through a corked bottleneck was investigated using a manometric technique. First, the effect of cork compression on oxygen transfer was evaluated without considering the glass/cork interface. No significant effect of cork compression (at 23% strain, corresponding to the compression level of cork in a bottleneck for still wines) was noticeable on the effective diffusion coefficient of oxygen. The mean value of the effective diffusion coefficient is equal to 10(-8) m(2) s(-1), with a statistical distribution ranging from 10(-10) to 10(-7) m(2) s(-1), which is of the same order of magnitude as for the non-compressed cork. Then, oxygen transfer through cork compressed in a glass bottleneck was determined to assess the effect of the glass/cork interface. In the particular case of a gradient-imposed diffusion of oxygen through our model corked bottleneck system (dry cork without surface treatment; 200 and similar to 0 hPa of oxygen on both sides of the sample), the mean effective diffusion coefficient is of 5 X 10(-7) m(2) s(-1), thus revealing the possible importance of the role of the glass/stopper interface in the oxygen transfer.
机译:使用测压技术研究了通过塞状瓶颈的氧气传输。首先,在不考虑玻璃/软木塞界面的情况下评估了软木塞压缩对氧转移的影响。在氧气的有效扩散系数上,没有发现软木压缩的显着影响(在23%的应变下,对应于静止酒瓶颈中的软木压缩水平)。有效扩散系数的平均值等于10(-8)m(2)s(-1),统计分布范围为10(-10)到10(-7)m(2)s(- 1),其大小与未压缩的软木塞相同。然后,确定通过压缩在玻璃瓶颈中的软木中的氧转移,以评估玻璃/软木界面的作用。在特定情况下,通过我们模型的软木瓶颈系统进行梯度氧气扩散(未经表面处理的干软木塞;样品两侧均为200且类似于0 hPa的氧气),平均有效扩散系数为5 X 10(-7)m(2)s(-1),因此揭示了玻璃/塞子界面在氧气传输中的作用的重要性。

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