环境化学
沉积物
沉积(地质)
沉积作用
地表水
化学
环境科学
环境工程
地质学
地貌学
作者
Yanjun Du,Xiong Xu,Quanzhen Liu,Lihua Lin,Lu Bai,Donghong Wang
标识
DOI:10.1016/j.scitotenv.2021.152889
摘要
Surface sediments are both sinks and sources of chlorinated and brominated polycyclic aromatic hydrocarbons (Cl/Br-PAHs) in the environment. It is important to study the source of Cl/Br-PAHs in the surface sediment for controlling the ecological risk of Cl/Br-PAHs. Clues from the previous research suggested that atmospheric deposition may be one of the main sources of Cl/Br-PAHs in sediment. However, due to the lack of matched sediment and atmospheric Cl/Br-PAHs data, the contribution of atmospheric deposition to Cl/Br-PAHs in sediment has not been confirmed. This study investigated the characteristics of 37 Cl/Br-PAHs and validated the contribution of atmospheric sedimentation to Cl/Br-PAHs in sediment by a case study in the surface sediments of the Chaobai River, China. To the best of our knowledge, four Cl-PAHs and eleven Br-PAHs were found in the sediments for the first time. The total concentrations of 18 Cl-PAH species were 76–2301 pg/g, while those of Br-PAHs were 6–238 pg/g. The toxic equivalent quantities (TEQ) of the Cl-PAHs in surface sediments in the water conservation area and in the urban comparison area were 0.73 pg TEQ/g and 2.21 pg TEQ/g, respectively. The TEQ of the Br-PAHs in surface sediments in the water conservation area and in the urban comparison area were 2.85 × 10 −2 pg TEQ/g and 6.6 × 10 −2 pg TEQ/g, respectively. Based on the characteristics comparison and correlation analysis of Cl/Br-PAHs in both sediment and ambient air, it was initially confirmed the contribution of atmospheric deposition to Cl-PAHs in sediments. However, there was no conclusion of Br-PAHs in sediment similar to Cl-PAHs in sediment. It was inferred that the sources of Br-PAHs in sediment were different from Cl-PAHs in sediment. • Characteristics of 37 Cl/Br-PAH congeners in surface sediment were reported. • Fifteen Cl/Br-PAH individuals were found in the sediments for the first time. • Water conservation area is a good area to study atmospheric deposition. • Atmospheric deposition contributed to the Cl-PAH levels in the surface sediments.
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