期刊
POLYMER TESTING
卷 93, 期 -, 页码 -出版社
ELSEVIER SCI LTD
DOI: 10.1016/j.polymertesting.2020.106924
关键词
Oxygen transfer rate; Cork stopper; Diffusion; Permeability; Extrapolation method
资金
- French National Association of Research and Technology (ANRT)
- Julie Chanut's PhD grant (CIFRE) [2018/1273]
A fast manometric method has been developed to determine the oxygen transfer rate through cork stoppers. It enables the measurement of the effective diffusion coefficient in thin cork wafers in a few days, with a calculation method to extrapolate the results to full-length stoppers based on statistical analysis. The study also addresses the issues of material heterogeneity, representative thickness, and the effective length of the stopper for significant resistance to mass transfer.
A fast manometric method has been designed for determining the oxygen transfer rate through cork stoppers. Thanks to this technique, it is possible to measure the effective diffusion coefficient of oxygen through a thin cork wafer in a few days, whereas months are required in the case of a full-length cork stopper. A calculation method has also been developed and validated to extrapolate the effective oxygen diffusion coefficient measured on thin wafers to a full-length stopper, based on the statistical analysis of the experimental data distribution. The question of the material heterogeneity and the representative thickness is addressed as well as the effective length of the stopper beyond which the gain in resistance to mass transfer becomes non-significant.
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