Oak Ridge Institute for Science and Education Participant at U.S. Environmental Protection Agency, USA.
U.S. Environmental Protection Agency, Office of Research and Development, National Risk Management Research Laboratory, Research Triangle Park, NC, 27711, USA.
Chemosphere. 2019 Oct;233:347-354. doi: 10.1016/j.chemosphere.2019.05.289. Epub 2019 May 31.
The material-phase diffusion coefficient (D) and material/air partition coefficient (K) are the key parameters controlling the emissions of semivolatile organic compounds (SVOCs) from source materials. In indoor environments, air temperature is subject to change and can significantly affect the emission rates of SVOCs from building materials and consumer products. In this study, the emissions of organophosphate ester flame retardants (OPEFRs) from customized polyisocyanurate foam materials were measured in 44-mL microchambers at 23, 35, and 55 °C. The values of D and K at different temperatures were determined. The results showed that the increase of temperature can significantly enhance the emissions of OPEFRs from the foam materials, and the emissions of OPEFRs were found to transfer from SVOC-type to volatile organic compound (VOC)-type with the increase of temperature. A correlation for OPEFRs between the steady-state emission rate and temperature and correlations between D, K and temperature were obtained. The research results shed light on the effect of temperature on the mechanisms governing emissions of SVOCs.
物质相扩散系数 (D) 和物质/空气分配系数 (K) 是控制半挥发性有机化合物 (SVOC) 从源材料排放的关键参数。在室内环境中,空气温度会发生变化,并会显著影响建筑材料和消费品中 SVOC 的排放速率。在这项研究中,在 23、35 和 55°C 的 44-mL 微室中测量了定制聚异氰脲酸酯泡沫材料中有机磷酸酯阻燃剂 (OPEFR) 的排放。确定了不同温度下 D 和 K 的值。结果表明,温度的升高可以显著增强 OPEFR 从泡沫材料中的排放,并且随着温度的升高,OPEFR 的排放被发现从 SVOC 型转变为挥发性有机化合物 (VOC) 型。得到了 OPEFR 与温度的稳态排放率之间的相关性以及 D、K 与温度之间的相关性。研究结果揭示了温度对 SVOC 排放机制的影响。