Toxicology and Environmental Research and Consulting (TERC), Dow Chemical Company, Midland, MI, 48674, USA.
Toxicology and Environmental Research and Consulting (TERC), Dow Chemical Company, Midland, MI, 48674, USA.
Chemosphere. 2021 Dec;285:131291. doi: 10.1016/j.chemosphere.2021.131291. Epub 2021 Jul 3.
The objective of this study was to determine snow scavenging of cVMS and its potential effect on the cVMS concentrations in snowmelt water and surrounding soil. Snow scavenging of two cVMS, octamethylcyclotetrasiloxane (D4) and decamethylcyclopentasiloxane (D5), was examined in two steps. First, sorption and desorption of D4 and D5 on snowflakes, including snow sorption coefficients (K), were measured against a benchmark compound, cyclopentanone, at different temperatures from 0 to -20 °C. Measurements were made using a custom-made snow chamber and C-labeled D4 and D5. In addition, the transfer of snow-bound cVMS to snowmelt water and surrounding soil was studied with C-D4 and C-D5-spiked snowpack placed both in a closed snow chamber and on top of a layer of frozen soil in an open chemical hood. K values measured in both sorption and desorption processes were very small (<10 m). They increased with decreasing temperature and were higher for the D5 compared to D4. The calculated gas scavenging of D4 and D5 was small because of the small K values, while particle scavenging of cVMS is predicted to be negligible due to their low octanol/air partition coefficients (K). Most importantly, almost all C-D4 and C-D5 sorbed by a snowpack was lost during the snow melting process through re-volatilization and hydrolysis and became non-detectable in snowmelt water. In short, the experimental measurements demonstrated that snow scavenging could not be a valid deposition mechanism for these volatile hydrophobic compounds.
本研究旨在确定雪对 cVMS 的清除作用及其对雪融水中和周围土壤中 cVMS 浓度的潜在影响。我们通过两步实验来检验两种 cVMS(八甲基环四硅氧烷(D4)和十甲基环五硅氧烷(D5))的雪清除作用。首先,我们使用定制的雪室和 C 标记的 D4 和 D5,针对环戊酮这一基准化合物,在 0 至-20°C 的不同温度下,测量了 D4 和 D5 在雪花上的吸附和解吸以及雪吸附系数(K)。此外,我们还通过将 C-D4 和 C-D5 标记的雪包分别置于封闭的雪室内和开放化学通风橱顶部的一层冷冻土上,研究了雪结合的 cVMS 向雪融水和周围土壤中的迁移。在吸附和解吸过程中测量的 K 值均非常小(<10 m)。它们随温度降低而增加,且 D5 比 D4 的 K 值更高。由于 K 值较小,D4 和 D5 的气体清除量较小,而由于其辛醇/空气分配系数(K)较低,cVMS 的颗粒清除量预计可忽略不计。最重要的是,在雪融化过程中,雪包中吸附的大部分 C-D4 和 C-D5 通过再挥发和水解而损失,在雪融水中无法检出。总之,实验测量结果表明,雪清除作用不可能成为这些挥发性疏水性化合物的有效沉积机制。