The water vapour sorption properties of Sitka spruce determined using a dynamic vapour sorption apparatus

被引:0
|
作者
Callum A. S. Hill
Andrew J. Norton
Gary Newman
机构
[1] Edinburgh Napier University,Centre for Timber Engineering, Joint Research Institute for Civil Engineering, School of Engineering and the Built Environment
[2] Renuables Ltd.,undefined
[3] Plant Fibre Technology Ltd.,undefined
来源
Wood Science and Technology | 2010年 / 44卷
关键词
Moisture Content; Equilibrium Moisture Content; Wood Cell Wall; Desorption Curve; Fibre Saturation Point;
D O I
暂无
中图分类号
学科分类号
摘要
The water vapour sorption properties of Sitka spruce (Picea abies) have been investigated over a range of temperatures (14.2–43.8°C) using a dynamic vapour sorption apparatus. The sorption kinetics behaviour was evaluated using the parallel exponential kinetics model which has been found to give very accurate fits to the data in studies of foodstuffs or plant fibres, but has not been previously applied to sorption studies with wood. Both the adsorption and desorption kinetics curve can be deconvoluted into a fast and slow exponential process. Under conditions of adsorption, the fast process appears to be associated with the formation of monolayer water (determined using the Hailwood Horrobin model) up to a relative humidity of 20%. Under desorption, there is no clear differentiation between fast and slow processes. The area bounded by the sorption hysteresis loop reduced as the temperature at which the isotherm was measured increased, due to movement of the desorption curve only, with the adsorption curve remaining the same at all temperatures. This behaviour is consistent with sorption processes taking place on nanoporous glassy solids below the glass transition temperature. The heat of wetting was determined from the temperature dependence of the desorption isotherms by using the Clausius–Clapeyron equation, yielding results that are consistent with literature values. However, doubts are raised in this paper as to the applicability of using the Clausius–Clapeyron equation for analyses of this type.
引用
收藏
页码:497 / 514
页数:17
相关论文
共 50 条
  • [31] Dynamics of water vapour sorption in trehalose glasses
    Hunter, N. E.
    Craig, D. Q. M.
    Belton, P. S.
    JOURNAL OF PHARMACY AND PHARMACOLOGY, 2007, 59 : A17 - A18
  • [32] PERMEATION AND SORPTION OF WATER VAPOUR IN VARNISH FILMS
    THOMAS, AM
    GENT, WL
    PROCEEDINGS OF THE PHYSICAL SOCIETY OF LONDON, 1945, 57 (322): : 324 - 349
  • [33] THE EFFECT OF DYEING ON THE SORPTION OF WATER VAPOUR BY WOOL
    LAROSE, P
    JOURNAL OF THE SOCIETY OF DYERS AND COLOURISTS, 1954, 70 (02): : 77 - 81
  • [34] Sorption and diffusion of water vapour on edible films
    Berkun, D.
    Balkose, D.
    Tihminlioglu, F.
    Altinkaya, S. A.
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2008, 94 (03) : 683 - 686
  • [35] The sorption of water vapour by anhydride modified softwood
    A. N. Papadopoulos
    C. A. S. Hill
    Wood Science and Technology, 2003, 37 : 221 - 231
  • [36] Water vapour permeability and sorption of painted substrates
    Miniotaite, R
    8TH INTERNATIONAL CONFERENCE ON MODERN BUILDING MATERIALS, STRUCTURES AND TECHNIQUES, 2004, : 109 - 113
  • [37] Sorption and diffusion of water vapour on edible films
    D. Berkün
    D. Balköse
    F. Tıhmınlıoǧlu
    S. A. Altınkaya
    Journal of Thermal Analysis and Calorimetry, 2008, 94 : 683 - 686
  • [38] SORPTION OF WATER VAPOUR BY SULFOACID AND CARBOXYL CATIONITES
    NIKOLSKII, B
    BOGATOVA, NF
    DOKLADY AKADEMII NAUK SSSR, 1961, 141 (06): : 1409 - &
  • [39] Transport and sorption of water vapour in activated carbons
    Cossarutto, L
    Zimny, T
    Kaczmarczyk, J
    Siemieniewska, T
    Bimer, J
    Weber, JV
    CARBON, 2001, 39 (15) : 2339 - 2346
  • [40] The sorption of water vapour by anhydride modified softwood
    Papadopoulos, AN
    Hill, CAS
    WOOD SCIENCE AND TECHNOLOGY, 2003, 37 (3-4) : 221 - 231