首页> 外文期刊>Environmental Toxicology and Chemistry >SORPTION OF 2,4′-DICHLOROBIPHENYL AND FLUORANTHENE TO A MARINE SEDIMENT AMENDED WITH DIFFERENT TYPES OF BLACK CARBON
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SORPTION OF 2,4′-DICHLOROBIPHENYL AND FLUORANTHENE TO A MARINE SEDIMENT AMENDED WITH DIFFERENT TYPES OF BLACK CARBON

机译:2,4'-二氯联苯和氟蒽对不同类型黑碳改性海洋沉积物的吸附

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Recent studies demonstrate that sedimentary black carbon (BC) affects the sorption of some hydrophobic organic contaminants (HOCs) to a greater extent than sedimentary organic carbon (OC). Among HOC, polycyclic aromatic hydrocarbons (PAHs) are known to interact extensively with BC. Currently, data on the sorption of various kinds of HOCs to different types of BC are limited. In this study, we amended a marine sediment with BC from several different sources, humic acid, and inert sand. Equilibration studies with 14C fluoranthene and the polychlorinated biphenyl (PCB) 3H 2,4′-dichlorinated biphenyl were performed to determine the magnitude of sorption as a function of contaminant and BC type. The magnitude of sorption to the BC-amended sediments was greater for the PAH than the PCB as compared to the sediment alone, humic acid, and sand. For example, differences between the log partition coefficient (KP) for the PAH and PCB ranged from 0.41 to 0.69 log units for humic acid and sand treatments, while differences ranged from 0.88 to 1.57 log units for the BC-amended sediments. As a result, BC-normalized partition coefficients (log KBC) for the PAH averaged 6.41, whereas the PCB log KBC values averaged 5.33. These results demonstrate that PAH sorption and most likely bioavailability are influenced strongly by the presence of BC of different types, while sorption of a nonplanar PCB was affected to a lesser degree.
机译:最新研究表明,与沉积有机碳(OC)相比,沉积黑碳(BC)对某些疏水性有机污染物(HOC)的吸附影响更大。在HOC中,已知多环芳烃(PAH)与BC广泛相互作用。当前,关于各种HOC对不同类型的BC的吸附的数据是有限的。在这项研究中,我们用来自多种不同来源的腐殖酸和惰性沙子用BC修正了海洋沉积物。进行了14C荧蒽和多氯联苯(PCB)3H 2,4'-二氯联苯的平衡研究,以确定吸附量随污染物和BC类型的变化。与单独的沉积物,腐殖酸和沙子相比,PAH对BC修正的沉积物的吸附量大于PCB。例如,对于腐殖酸和砂处理,PAH和PCB的对数分配系数(KP)的差异在0.41至0.69 log单位之间,而对BC修正的沉积物的对数分配系数在0.88至1.57 log单位之间。结果,PAH的BC归一化分配系数(log KBC)平均为6.41,而PCB log KBC值平均为5.33。这些结果表明,PAH的吸附和最可能的生物利用度受到不同类型BC的强烈影响,而非平面PCB的吸附受到的影响较小。

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