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中国黄海北部沿海大气中多环芳烃的气/粒分配。

Gas/particle partitioning of polycyclic aromatic hydrocarbons in coastal atmosphere of the north Yellow Sea, China.

机构信息

National Marine Environmental Monitoring Center, Dalian, 116023, China.

出版信息

Environ Sci Pollut Res Int. 2013 Aug;20(8):5753-63. doi: 10.1007/s11356-013-1588-y. Epub 2013 Mar 6.

Abstract

Samples of gas- and particle-phase polycyclic aromatic hydrocarbons (PAHs) were collected at three sampling stations (Xiaomai Island, Laohutan, and Zhangzi Island) in the north Yellow Sea, China during November 2008 and September 2009 to study their atmospheric transport potential and the gas/particle distributions. The composition of PAHs was dominated by gaseous compounds. The percentages of the particle-phase PAHs to the total concentrations were found to be higher during the heating period than the non-heating period. The ratios of naphthalene and acenaphthene to phenanthrene, chrysene and dibenzo(a,h)anthracene showed an increasing trend from Xiaomai Island to Zhangzi Island, which can be called as the local atmospheric distillation of PAHs. Gas/particle partitioning coefficients (K p) and their relationship with the sub-cooled liquid vapor pressures (pºL) of PAHs were investigated. The regressions of logK p versus logpºL gave significant correlations for all samples of the three sites with r (2) values in the range 0.56-0.66 (p<0.01). Both Junge-Pankow adsorption model and octanol-air partition coefficient absorption model tended to underestimate the sorption for most PAHs, but the absorption model appeared to be more suitable for predicting the particle fraction of PAHs than the Junge-Pankow model.

摘要

于 2008 年 11 月和 2009 年 9 月,在中国黄海北部的三个采样点(小麦岛、老虎滩和獐子岛)采集了气相和颗粒相多环芳烃(PAHs)样品,以研究它们的大气传输潜力和气相/颗粒分布。PAHs 的组成以气态化合物为主。发现颗粒相 PAHs 在加热期的比例高于非加热期。萘和苊烯与菲、蒽和二苯并(a,h)蒽的比值从小麦岛到獐子岛呈上升趋势,这可以称为 PAHs 的局部大气蒸馏。研究了气/粒分配系数(Kp)及其与 PAHs 的过冷液体蒸气压(pºL)的关系。对于三个采样点的所有样品,logKp 与 logpºL 的回归均给出了显著的相关性,r(2)值在 0.56-0.66 之间(p<0.01)。Junge-Pankow 吸附模型和辛醇-空气分配系数吸收模型都倾向于低估大多数 PAHs 的吸附,但吸收模型似乎比 Junge-Pankow 模型更适合预测 PAHs 的颗粒分数。

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