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Gas-particle partitioning and seasonal variation of polycyclic aromatic hydrocarbons in the atmosphere of Zonguldak, Turkey

机译:土耳其宗古尔达克大气中多环芳烃的气体颗粒分配和季节变化

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摘要

Atmospheric concentrations and gas-particle partition coefficients were determined for polycyclic aromatic hydrocarbons (PAHs) in the atmosphere of Zonguldak, Turkey between May 2007 and April 2008. Total concentrations of PAHs ranged from 0.52 ng m~(-3) to 636 ng m~(-3) in the particle phase and from 5.60 ng m~(-3) to 725 ng m~(-3) in the gas phase. The annual mean concentrations of PAHs in the particle and gas phase were found to be 114ngm~(-3) and 184 ngm~(-3), respectively. Significant seasonal variations of particle and gas phase PAH concentrations were observed with higher levels during cold period. The distribution of PAHs between the particle and gas phase was investigated and it was found that three ring PAHs were associated primarily with the gas phase, four ring PAHs were distributed almost equally between the two phases and five and six ring PAHs were mainly associated with the particle phase. Gas-particle partition coefficients (K_p) of PAHs have been calculated and correlated with their subcooled liquid vapor pressures (P_L°). The slopes (m_r) varied from -0.63 to -0.23 were far from the theoretical value (-1) due to the short distance between the sampling point and the emission sources. The relationships between temperature and gas phase partial pressures of PAHs were examined using the Clausius-Clapeyron equation and the obtained positive slopes indicated that PAH concentrations increased with decreasing air temperature as a result of high dominance of local emissions.
机译:在2007年5月至2008年4月期间,确定了土耳其宗古尔达克大气中多环芳烃(PAHs)的大气浓度和气体颗粒分配系数。PAHs的总浓度范围为0.52 ng m〜(-3)至636 ng m〜。 (-3)在粒子相中,而从5.60 ng m〜(-3)到725 ng m〜(-3)在气相中。颗粒和气相中PAHs的年平均浓度分别为114ngm〜(-3)和184ngm〜(-3)。在寒冷时期,颗粒和气相PAH浓度的明显季节性变化,含量较高。研究了颗粒和气相中PAHs的分布,发现三环PAHs主要与气相有关,四环PAHs在两相之间几乎均等地分布,五环和六环PAHs与气相有关。粒子相。已计算出多环芳烃的气体颗粒分配系数(K_p),并将其与过冷液体蒸气压(P_L°)相关。由于采样点和排放源之间的距离较短,因此斜率(m_r)从-0.63到-0.23变化,远离理论值(-1)。使用Clausius-Clapeyron方程检查了PAHs的温度与气相分压之间的关系,所获得的正斜率表明,由于局部排放量占主导地位,PAH浓度随着空气温度的降低而增加。

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