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Moisture sorption isotherms and thermodynamic properties of Oak wood (Quercus robur and Quercus canariensis): optimization of the processing parameters

机译:橡木(栎鞋和栎属Canariensis的水分吸附等温线和热力学性质):优化处理参数

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摘要

The aim of this paper was to determine the moisture desorption isotherms and essentials thermodynamic properties of two Oak wood varieties. Desorption isotherms were measured using a static gravimetric method at 50, 60, 70 and 80 °C within the range of 5-90 % relative humidity. The equilibrium moisture content decreased with increasing temperature and decreased with decreasing relative humidity at a constant temperature. The 'Thermodynamic' sorption equation was found to be the best for describing the experimental moisture sorption isotherms of woods within the range of temperature and water activity investigated. The Fiber saturation point, deduced from the 'Thermodynamic' model parameters, depends on the temperature and varying from 22.6 to 54.4 (% kg water/kg dry matter). Isosteric heat of desorption and differential entropy were calculated by applying Clausius-Clapeyron equation to the desorption data fitted by the 'Thermodynamic' model. The isosteric heat of desorption and the differential entropy decreased with increasing moisture content according to an exponential law equation and varying from 2.03 to 31.14 kJ/mol and from 73.98 to 4.34 J/(mol K), respectively. The linear relationship between differential enthalpy and entropy satisfied the enthalpy-entropy compensation theory. The sign of Gibbs free energy was found to be positive (+283 J/mol) and (+97 J/mol) for Quercus robur and Quercus canariensis, respectively. The isokinetic temperature was found to be greater than the harmonic temperature. Based on the enthalpy-entropy compensation theory, it could be concluded that the moisture desorption isotherm of Oak wood is a non-spontaneous and enthalpy-controlled process.
机译:本文的目的是确定两种橡木品种的水分解吸等温度和必需的热力学性质。使用50,60,70和80℃的静态重量法测量解吸等温线在5-90%相对湿度范围内。平衡水分含量随温度的增加而降低,随着相对温度的相对湿度降低而降低。发现“热力学”吸附方程是最适合于描述在研究的温度和水活性范围内的木材实验性水分吸附等温线。从“热力学”模型参数中推断的纤维饱和点取决于温度,从22.6到54.4(%kg水/ kg干物质)。通过将Clausius-Clapeyron方程应用于由“热力学”模型装配的解吸数据来计算解吸和差动熵的基位热。解吸的旁边热量和差动熵随着指数律方程的增加,分别从2.03至31.14 kJ / mol和73.98〜4.34 kJ /(mol k)不同。差动焓与熵之间的线性关系满足焓熵补偿理论。发现Gibbs自由能量的标志分别为栎(+283 j / mol)和(+97 j / mol),分别用于栎属robur和栎属canariensis。发现等因基因温度大于谐波温度。基于焓熵补偿理论,可以得出结论,橡木木材的水分解吸等温度是一种非自发性和焓控制的过程。

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  • 来源
    《Heat and mass transfer》 |2017年第5期|1541-1552|共12页
  • 作者单位

    Laboratoire d'Énergétique et des Transferts Thermiques et Massiques Département de Physique Faculté des Sciences de Tunis Université de Tunis El Manar Campus Universitaire 2092 El Manar Tunis Tunisia;

    Laboratoire d'Énergétique et des Transferts Thermiques et Massiques Département de Physique Faculté des Sciences de Tunis Université de Tunis El Manar Campus Universitaire 2092 El Manar Tunis Tunisia;

    Laboratoire d'Htudes et de Recherche sur le MAtériau Bois (LERMAB) Ecole Nationale Supérieure des Technologies et Industries du Bois Université de Lorraine 27 rue Philippe Séguin-CS 60036 88026 Epinal Cedex France;

    Laboratoire d'Énergétique et des Transferts Thermiques et Massiques Département de Physique Faculté des Sciences de Tunis Université de Tunis El Manar Campus Universitaire 2092 El Manar Tunis Tunisia;

    Laboratoire de Gestion et de Valorisation des Ressources Forestières Institut Nationale de Recherches en Génie Rural Eaux et Forêts (INRGREF) B.P. 10 2080 Ariana Tunisia;

    Laboratoire d'Énergétique et des Transferts Thermiques et Massiques Département de Physique Faculté des Sciences de Tunis Université de Tunis El Manar Campus Universitaire 2092 El Manar Tunis Tunisia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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