Department of Earth and Environmental Sciences, University of Texas, Arlington, TX, USA.
Department of Earth and Environmental Sciences, University of Texas, Arlington, TX, USA.
Chemosphere. 2021 May;271:129349. doi: 10.1016/j.chemosphere.2020.129349. Epub 2021 Jan 8.
BACKGROUND/OBJECTIVE: Polyurethane foam (PUF), a proven sampling medium for measuring air concentrations of organic compounds, is widely used in upholstered home furniture. We evaluated the potential utility of couch PUF as a passive sampler and as a reservoir for non-flame retardant semivolatile organic compounds (SVOCs).
We collected PUF samples from 13 California home couches, measured concentrations (C) of 64 SVOCs at three different depths (i.e., top, top-middle, and middle from couch surfaces facing outward), and examined concentration changes with depth. To calculate the PUF-air partition coefficient (K = C/C = C × K/C), we used the calculated dust-air partition coefficient (K) with the octanol-air partition coefficient (K) and dust concentrations (C) simultaneously collected and measured. We used K to compute fugacity capacity of PUF and chemical mass distribution among various indoor compartments and PUF.
Among 29 detected compounds, 11 compounds were detected in more than 50% of the samples at all depths. Among the 11 compounds, concentrations of phenanthrene, 2-benzylideneoctanal, galaxolide, tonalide, and homosalate decreased with depth. Among the studied SVOCs, more than 20% of the total mass was distributed to couch PUF for phenol and compounds in skin-applied products (i.e., 2-benzylideoneoctanal, galaxolide, and homosalate).
Our results showed that couch PUF can absorb many SVOCs and may be an important reservoir for some SVOCs. However, it may not be an effective passive sampling medium for those that have relatively high K values. Direct dermal contact with couch seats may be an important exposure route for non-users of skin-applied compounds.
背景/目的:聚氨酯泡沫(PUF)是一种经过验证的有机化合物空气浓度测量采样介质,广泛用于软垫家庭家具。我们评估了沙发 PUF 作为被动采样器和非阻燃半挥发性有机化合物(SVOC)储库的潜在用途。
我们从加利福尼亚州的 13 个家庭沙发中收集了 PUF 样本,在三个不同深度(即从面向沙发表面的外部的顶部、顶部中间和中间)测量了 64 种 SVOC 的浓度(C),并检查了浓度随深度的变化。为了计算 PUF-空气分配系数(K=C/C= C×K/C),我们同时使用计算得出的灰尘-空气分配系数(K)与辛醇-空气分配系数(K)和同时收集和测量的灰尘浓度(C)。我们使用 K 来计算 PUF 的逸度容量和各种室内隔室和 PUF 之间的化学质量分布。
在所检测的 29 种化合物中,有 11 种化合物在所有深度的超过 50%的样本中被检测到。在所研究的 SVOC 中,超过 20%的总质量分配到沙发 PUF 中,酚和皮肤应用产品中的化合物(即 2-苄基辛醛、加乐麝香和甲氧基肉桂酸)。
我们的结果表明,沙发 PUF 可以吸收许多 SVOC ,并且可能是某些 SVOC 的重要储存库。然而,对于那些具有相对较高 K 值的化合物,它可能不是一种有效的被动采样介质。与沙发座位的直接皮肤接触可能是非皮肤应用化合物使用者的重要暴露途径。