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An improved mass transfer based model for analyzing VOC emissions from building materials

机译:一种基于传质的改进模型,用于分析建筑材料的VOC排放

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摘要

An improved generally applicable model for calculating the surface emissions of volatile organic compounds (VOCs) from building materials and the VOC instantaneous distributions in materials is developed. Differing from the mass transfer based models in the literature, it does not neglect the mass transfer resistance through the air phase boundary layer. The results of using the presented model are validated with the experiments in the literature. By normalizing the model, factors of influencing the surface emissions of VOCs from building material are clarified and the influences are quantitatively analyzed. It is found that the dimensionless emission rate of VOCs is just a function of Bi_m (the Biot number for mass transfer)/K (the partition coefficient) and Fo_m (the Fourier number for mass transfer), which summarizes the general surface emission characteristics of VOCs from building materials and provides the basis for fitting experimental data to formulate empirical correlations of VOC emissions. Based upon the model and the analysis, the applicable condition of the famous Little model is presented.
机译:开发了一种用于计算建筑材料中挥发性有机化合物(VOC)的表面排放以及材料中VOC瞬时分布的改进的通用模型。与文献中基于传质的模型不同,它没有忽略通过气相边界层的传质阻力。使用该模型的结果已通过文献中的实验得到验证。通过对模型进行归一化,可以弄清影响建筑材料中VOCs表面排放的因素,并对其影响进行定量分析。发现VOCs的无量纲排放速率只是Bi_m(传质的比奥数)/ K(分配系数)和Fo_m(传质的傅里叶数)的函数,总结了一般的表面发射特性。来自建筑材料的挥发性有机化合物,并提供了拟合实验数据以建立挥发性有机化合物排放经验相关性的基础。基于模型和分析,提出了著名的Little模型的适用条件。

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