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Permeability and meniscus phenomenon in four Korean softwood species
作者姓名:Su Kyoung Chun  Sheikh Ali Ahmed
作者单位:Department of Wood Science & Engineering College of Forest Sciences,Kangwon National University,Chunchon 200-701,Re-public of Korea,Department of Wood Science & Engineering College of Forest Sciences,Kangwon National University,Chunchon 200-701,Re-public of Korea
摘    要:1 Introduction A number of studies have been carried out to examine the process of liquid impregnation into different kinds of wood (Stamm and Raleigh, 1967; Bolton and Petty, 1978; Olsson et al., 2001). Different techniques and methods have been developed so far to obtain quanti- tative and qualitative information about this process (Stamm, 1953; Stone, 1956; Rudman, 1965). Penetra- tion of liquid in wood depends on several factors. The penetration rate and amount varies in different spec…

关 键 词:毛细管  针叶树  纵向管胞  渗透率
收稿时间:2006-04-10
修稿时间:2006-05-25

Permeability and meniscus phenomenon in four Korean softwood species
Su Kyoung Chun,Sheikh Ali Ahmed.Permeability and meniscus phenomenon in four Korean softwood species[J].Forestry Studies in China,2006,8(3):56-60.
Authors:Su Kyoung Chun  Sheikh Ali Ahmed
Institution:Department of Wood Science & Engineering, College of Forest Sciences, Kangwon National University, Chunchon 200-701, Republic of Korea
Abstract:The safranine impregnation differences in Pinus koraiensis, P. densiflora, P. rigida, and Larix kaempferi were studied. Among them, P. koraiensis conducted higher depth of safranine in radial and L. kaempferi in longitudinal direction. High magnification was used to observe the safranine penetration behavior in longitudinal direction especially in longitudinal tracheids. Safranine impregnation in longitudinal tracheids was captured in digital video mode to observe the formation of curved and flat air-safranine meniscus. Given the tracheid radius 16–20 μm, surface tension of water at 72 dynes per centimeter at 23°C and a contact angle 30°, the capillary pressure ranges from 0.06 to 0.08 bar. The lower the lumen diameter is, the higher the capillary pressure is. It was assumed that due to the differences of total water pressure under the safranine-water interface and total air pressure above the interface, curved meniscus was formed in the cell lumen.
Keywords:meniscus  contact angle  capillary pressure  longitudinal tracheids  softwood  
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