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ADSORPTION RATE OF WOOD DURING MOISTURE SORPTION PROCESSES

机译:水分吸收过程中木材的吸收率

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摘要

Moisture sorption processes carried out in successive steps in seven relative humidity environments between 11% and 92% at 20°C for Chinese fir (Cunninghamia lanceolata Hook.) and Sitka spruce (Picea sitchensis Carr.) were studied. A theoretical equation was developed to describe wood adsorption processes, either started from oven-dry condition or certain initial moisture content. The relation between adsorption rate constant in the equation and relative humidity was clarified as follows: with an increase in relative humidity, the adsorption rate constants for both species first decreased and then increased slightly with the minimum values falling into the relative humidity range between 60% and 70%. Further, an attempt was made to model the observed relation between the rate constant and relative humidity by applying the Hailwood-Horrobin sorption theory.
机译:研究了杉木(Cunninghamia lanceolata Hook。)和云杉(Picea sitchensis Carr。)在20°C下在七个相对湿度介于11%和92%之间的七个相对湿度环境中连续进行的水分吸附过程。建立了一个理论方程式来描述木材的吸附过程,该过程是从烘箱干燥条件或某些初始水分含量开始的。明确了方程中的吸附速率常数与相对湿度之间的关系:随着相对湿度的增加,两种物质的吸附速率常数先降低然后略有增加,最小值降至相对湿度范围在60%之间和70%。此外,尝试通过应用Hailwood-Horrobin吸附理论对速率常数和相对湿度之间的观察关系进行建模。

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