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Determining Source Strength of Semivolatile Organic Compounds using Measured Concentrations in Indoor Dust

机译:使用室内粉尘中的浓度测定半挥发性有机化合物的源强度

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摘要

Consumer products and building materials emit a number of semivolatile organic compounds (SVOCs) in the indoor environment. Because indoor SVOCs accumulate in dust, we explore the use of dust to determine source strength and report here on analysis of dust samples collected in 30 U.S. homes for six phthalates, four personal care product ingredients, and five flame retardants. We then use a fugacity-based indoor mass-balance model to estimate the whole house emission rates of SVOCs that would account for the measured dust concentrations. Di-2-ethylhexyl phthalate (DEHP) and di-iso-nonyl phthalate (DiNP) were the most abundant compounds in these dust samples. On the other hand, the estimated emission rate of diethyl phthalate (DEP) is the largest among phthalates, although its dust concentration is over two orders of magnitude smaller than DEHP and DiNP. The magnitude of the estimated emission rate that corresponds to the measured dust concentration is found to be inversely correlated with the vapor pressure of the compound, indicating that dust concentrations alone cannot be used to determine which compounds have the greatest emission rates. The combined dust-assay modeling approach shows promise for estimating indoor emission rates for SVOCs.
机译:消费品和建筑材料在室内环境中会排放大量半挥发性有机化合物(SVOC)。由于室内SVOC会积聚在粉尘中,因此我们探索使用粉尘确定源强度,并在此报告分析在30个美国家庭中收集的粉尘样品,其中包含六种邻苯二甲酸盐,四种个人护理产品成分和五种阻燃剂。然后,我们使用基于逸度的室内质量平衡模型来估算SVOC的整个房屋排放率,这些排放率将解释所测得的粉尘浓度。在这些粉尘样品中,邻苯二甲酸二-2-乙基己酯(DEHP)和邻苯二甲酸二异壬酯(DiNP)是最丰富的化合物。另一方面,尽管邻苯二甲酸二乙酯(DEP)的粉尘浓度比DEHP和DiNP小两个数量级以上,但其估计排放量在邻苯二甲酸盐中最大。发现与测得的粉尘浓度相对应的估算排放速率的大小与化合物的蒸气压成反比,表明仅粉尘浓度不能用于确定哪种化合物具有最大的排放速率。组合的灰尘测定法建模方法显示出估计SVOC室内排放率的希望。

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