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Seasonal variation of polycyclic aromatic hydrocarbons (PAHs) in Pearl River Delta region, China

机译:珠江三角洲地区多环芳烃(PAHs)的季节变化

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摘要

A level IV fugacity model was applied to simulate the seasonal variation of polycyclic aromatic hydrocarbons (PAHs) in various bulk media in Pearl River Delta (PRD), China. The predictions were validated against monthly observed concentrations of gaseous and particulate phase PAHs in air and annual mean concentrations of all other bulk media. The uncertainty of the predictions was evaluated using Monte Carlo simulation. The influential parameters were identified using sensitivity analysis on both media concentrations and seasonal variations. The predicted concentrations and the patterns of seasonal variation generally agreed with the field observations. Concentrations of gaseous phase PAHs in air increased in the summer and decreased in the winter while concentrations of particulate phase PAHs in summer were lower than those in the winter. The relative variations of PAHs in the other bulk media were not as profound as those in air and the variation patterns were chemical compound dependent. Temperature and precipitation were the most important parameters leading to the seasonalities of PAH concentrations. Other key parameters included dry precipitation rate, advective water flow from upstream, and solid fractions in air and water.
机译:运用IV级逸度模型模拟了珠江三角洲(PRD)各种散装介质中多环芳烃(PAHs)的季节变化。相对于空气中每月观察到的气态和颗粒相PAHs浓度以及所有其他散装介质的年平均浓度,对预测进行了验证。预测的不确定性使用蒙特卡洛模拟进行评估。通过对培养基浓度和季节变化进行敏感性分析来确定影响参数。预测的浓度和季节变化的模式通常与现场观察一致。空气中的气相PAHs的浓度在夏季增加,而在冬季则降低,而夏季的颗粒相PAHs的浓度则低于冬季。其他散装介质中PAHs的相对变化不如空气中PAHs的变化深,且变化方式取决于化学化合物。温度和降水是导致PAH浓度季节性变化的最重要参数。其他关键参数包括干降水率,来自上游的对流水以及空气和水中的固体部分。

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