Research Institute of Environment, Agriculture, and Fisheries, Osaka Prefectural Government, 1-3-62 Nakamichi, Higashinari-ku, Osaka 537-0025, Japan.
J Hazard Mater. 2011 Sep 15;192(3):1340-9. doi: 10.1016/j.jhazmat.2011.06.046. Epub 2011 Jun 23.
A comparative study on atmospheric polycyclic aromatic hydrocarbons (PAHs) in particulate matter and the gaseous phase was performed at an urban and a residential site in Osaka, Japan, during 2005-2006. PAH concentrations at the urban site were found to be approximately twice higher than those at the residential site. At both sites, particulate PAH concentrations increased mainly in winter while the trends of temporal change in gaseous PAH concentrations were not clearly observed. The main sources of PAHs were estimated to be local traffic, e.g., diesel engines with catalytic converter. PAH concentrations did not significantly negatively correlate with ozone concentrations and meteorological parameters. Gas-particle partitioning coefficients of representative PAHs with low molecular weight (LMW) significantly negatively correlated with ambient temperature, showing that temporal change in the LMW PAH concentrations in PM could be attributable to the shift of their gas-particle distribution caused by the change in ambient temperature. For the first time, we studied the effect of the formation of atmospherically stable layer following an increase in PAH concentrations in Japan. At the urban site, PAHs showed a significant positive correlation with potential temperature gradients, indicating that temporal variability in PAH concentrations would be dominantly controlled by the formation of atmospherically stable layer in Osaka area.
在日本大阪的市区和居民区进行了大气多环芳烃 (PAHs) 在颗粒物相与气相中浓度的对比研究。研究发现,市区的 PAH 浓度大约是居民区的两倍。在这两个地点,颗粒物相中的 PAH 浓度主要在冬季增加,而气相中 PAH 浓度的时间变化趋势则不明显。PAHs 的主要来源估计是当地交通,例如装有催化转化器的柴油机。PAH 浓度与臭氧浓度和气象参数没有显著的负相关关系。具有低分子量 (LMW) 的代表性 PAHs 的气-粒分配系数与环境温度呈显著负相关,表明 PM 中 LMW PAH 浓度的时间变化可能归因于环境温度变化引起的其气-粒分布的转移。我们首次研究了日本 PAH 浓度增加后大气稳定层形成的影响。在市区,PAHs 与位温梯度呈显著正相关,表明大阪地区大气稳定层的形成将主要控制 PAH 浓度的时间变化。