Department of Building Science, Tsinghua University , Beijing 100084, China.
Environ Sci Technol. 2015 Feb 3;49(3):1537-44. doi: 10.1021/es5051875. Epub 2015 Jan 21.
The initial emittable concentration (Cm,0) is a key parameter characterizing the emission behaviors of formaldehyde from building materials, which is highly dependent on temperature but has seldom been studied. Our previous study found that Cm,0 is much less than the total concentration (C0,total, used for labeling material in many standards) of formaldehyde. Because Cm,0 and not C0,total directly determines the actual emission behaviors, we need to determine the relationship between Cm,0 and C0,total so as to use Cm,0 as a more appropriate labeling index. By applying statistical physics theory, this paper derives a novel correlation between the emittable ratio (Cm,0/C0,total) and temperature. This correlation shows that the logarithm of the emittable ratio multiplied by power of 0.5 of temperature is linearly related to the reciprocal of temperature. Emissions tests for formaldehyde from a type of medium density fiberboard over the temperature range of 25.0-80.0 °C were performed to validate the correlation. Experimental results indicated that Cm,0 (or emittable ratio) increased significantly with increasing temperature, this increase being 14-fold from 25.0 to 80.0 °C. The correlation prediction agreed well with experiments, demonstrating its effectiveness in characterizing physical emissions. This study will be helpful for predicting/controlling the emission characteristics of pollutants at various temperatures.
初始可散发浓度(Cm,0)是描述建筑材料甲醛散发行为的关键参数,其强烈依赖于温度,但很少被研究。我们之前的研究发现,Cm,0 远小于甲醛的总浓度(C0,total,许多标准中用于标记材料的浓度)。由于 Cm,0 而非 C0,total 直接决定了实际的散发行为,我们需要确定 Cm,0 和 C0,total 之间的关系,以便使用 Cm,0 作为更合适的标记指标。本文应用统计物理理论,推导出了一个描述散发比(Cm,0/C0,total)与温度之间关系的新关联式。该关联式表明,散发比的对数乘以温度的 0.5 次方与温度的倒数呈线性关系。在 25.0-80.0°C 的温度范围内,对某类型中密度纤维板的甲醛散发进行了实验测试,以验证该关联式。实验结果表明,随着温度的升高,Cm,0(或散发比)显著增加,在 25.0-80.0°C 之间增加了 14 倍。关联式的预测与实验结果吻合良好,证明了其在描述物理散发方面的有效性。本研究将有助于预测/控制各种温度下污染物的排放特性。