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The combined effects of temperature and humidity on initial emittable formaldehyde concentration of a medium-density fiberboard

机译:温度和湿度对中密度纤维板初始可释放甲醛浓度的综合影响

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Individual effects of temperature and humidity on formaldehyde emissions from manufactured fiber-boards have been studied previously, but their combined effects and possible correlation with initial emittable concentration (C-0) of building materials have not been reported yet. This paper investigated their combined effects on C-0 theoretically from microcosmic perspective. Total formaldehyde content related to humidity and formaldehyde molecular phases affected by temperature in the porous material were considered. A correlation between C-0 and the combined effects of temperature and humidity was derived. A typical medium-density fiberboard (MDF) was tested over the temperature range of 5.2-35.0 degrees C, absolute humidity (AH) range of 2.8-17.8 g/kg(air) in the dynamic environmental chamber to validate this correlation. The good agreement between the correlation and measurement data demonstrated the effectiveness of this correlation. The correlation could be helpful to simulate formaldehyde emissions and to estimate indoor formaldehyde exposure under varied temperature and humidity conditions in actual buildings. Influences of using different token parameters of humidity (absolute humidity vs. relative humidity) were also analyzed. The token parameter of humidity has significant effects on the quantitative conclusions on the influencing factors studies. (C) 2016 Elsevier Ltd. All rights reserved.
机译:先前已经研究了温度和湿度对人造纤维板甲醛释放量的个别影响,但尚未报道它们的综合影响以及与建筑材料初始可释放浓度(C-0)的可能关系。本文从微观角度研究了它们对C-0的联合作用。考虑了与湿度和甲醛分子相相关的总甲醛含量,该湿度和甲醛分子相受多孔材料中温度的影响。得出了C-0与温度和湿度的综合影响之间的相关性。在动态环境室中,在5.2-35.0摄氏度的温度范围,2.8-17.8 g / kg(空气)的绝对湿度(AH)范围内对典型的中密度纤维板(MDF)进行了测试,以验证这种相关性。相关性与测量数据之间的良好一致性证明了这种相关性的有效性。这种相关性可能有助于模拟甲醛释放量,并估计实际建筑物中在变化的温度和湿度条件下室内甲醛暴露量。还分析了使用不同的湿度标记参数(绝对湿度与相对湿度)的影响。湿度的象征性参数对影响因素研究的定量结论有重大影响。 (C)2016 Elsevier Ltd.保留所有权利。

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