酒精溶液中橡木的膨胀:水和乙醇的协同效应和记忆效应

IF 3.1 2区 农林科学 Q1 FORESTRY
Cédric Dussaut, Julien Colin, Joel Casalinho, Rémi Teissier Du Cros, François Litoux-Desrues, Charlotte Abadie, Patrick Perré
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引用次数: 0

摘要

这项工作致力于研究橡木在橡木桶陈酿葡萄酒和烈酒过程中因吸附水和乙醇分子而引起的尺寸变化。我们开发了一种定制设备,通过图像和数字图像相关性来确定浸泡在液体中的样品在径向和切向方向上的变形。报告了八种乙醇含量(包括纯水和乙醇)下的膨胀测量结果和随后干燥后的残余收缩率。在很宽的浓度范围内都观察到了协同效应。这表明,当水和乙醇的含量都足够大时,吸附位点会产生协同作用。此外,还进行了连续接触试验,以评估历史的影响,结果表明,由于木材结构发生了不可逆的改变,接触的先后顺序会对膨胀产生影响。对包括残余收缩率在内的所有这些数据进行了分析,并以图表形式总结了其机理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Swelling of oak wood in alcoholic solutions: synergy and memory effects between water and ethanol

Swelling of oak wood in alcoholic solutions: synergy and memory effects between water and ethanol

Swelling of oak wood in alcoholic solutions: synergy and memory effects between water and ethanol

This work is devoted to dimensional changes in oak wood induced by the adsorption of water and ethanol molecules during barrel aging of wine and spirits. A custom device has been developed to determine the deformations in the radial and tangential directions of samples soaked in liquid, through imagery and digital image correlation. Swelling measurements and residual shrinkage after subsequent drying are reported at eight ethanol contents, including pure water and ethanol. A synergistic effect is observed over a wide range of concentrations. This suggests a collaborative action of sorption sites when both water and ethanol are in sufficient quantity. In addition, sequential exposure tests were performed to assess the effect of history, showing that the order of exposure influences the swelling because of the irreversible alterations in the structure of the wood. All these data, including the residual shrinkage, were analyzed and the mechanisms are summarized in a graphical presentation.

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来源期刊
Wood Science and Technology
Wood Science and Technology 工程技术-材料科学:纸与木材
CiteScore
5.90
自引率
5.90%
发文量
75
审稿时长
3 months
期刊介绍: Wood Science and Technology publishes original scientific research results and review papers covering the entire field of wood material science, wood components and wood based products. Subjects are wood biology and wood quality, wood physics and physical technologies, wood chemistry and chemical technologies. Latest advances in areas such as cell wall and wood formation; structural and chemical composition of wood and wood composites and their property relations; physical, mechanical and chemical characterization and relevant methodological developments, and microbiological degradation of wood and wood based products are reported. Topics related to wood technology include machining, gluing, and finishing, composite technology, wood modification, wood mechanics, creep and rheology, and the conversion of wood into pulp and biorefinery products.
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