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Concentrations and gas/particle partitioning of PCBs in Chicago

机译:芝加哥多氯联苯的浓度和气体/颗粒分配

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Thirty seven air samples were collected in Chicago, IL from June to October 1995 and analyzed for gas and particle concentrations of polychlorinated biphenyls (PCBs). Lower molecular weight (MW) PCBs dominated the samples and on average 95% of the Σ_(50)PCB concentration (gas + particulate) was in the vapor phase. Σ_(50)PCB concentrations were classified based on prevailing winds (lake and land). The Σ_(50)PCB concentration varied between 0.42 and 5.21 ng/m~3 (1.80 +- 1.70 ng/m~3) for lake and 0.53 and 8.31 ng/m~3 (2.41+- 2.15 ng/m~3) for land wind directions. Back trajectory analyses suggested that SW of Chicago can be an important local or regional source sector for PCBs. Partitioning between gas and particulate phases was modeled using the Junge-Pankow model. The measured particle phase concentrations for low MW PCBs were lower than those predicted by the model while the opposite was observed for high MW PCBs. Plots of gas/particle partition coefficient (log K_p) vs. subcooled liquid vapor pressure (log p_L~0) had reasonable correlations for individual samples but the slope varied among the samples. Samples that originated from over the lake had higher slopes than samples that originated from over the land.
机译:1995年6月至10月在伊利诺伊州芝加哥收集了37个空气样品,并分析了多氯联苯(PCB)的气体和颗粒浓度。样品中的低分子量(MW)PCBs占主导地位,平均Σ_(50)PCB浓度(气体+颗粒物)中的95%处于气相。 Σ_(50)PCB的浓度根据盛行的风(湖泊和陆地)进行分类。湖泊中Σ_(50)PCB的浓度在0.42至5.21 ng / m〜3(1.80 +-1.70 ng / m〜3)之间变化,在0.53至8.31 ng / m〜3(2.41 +-2.15 ng / m〜3)之间变化用于陆地风向。反向轨迹分析表明,芝加哥西南可以成为PCB的重要本地或区域来源部门。使用Junge-Pankow模型对气相和颗粒相之间的分配进行建模。低分子量PCBs的测得的颗粒相浓度低于模型预测的浓度,而高分子量PCBs则观察到相反的浓度。气体/颗粒分配系数(log K_p)与过冷液体蒸气压(log p_L〜0)的曲线对于单个样品具有合理的相关性,但斜率在样品之间变化。来自湖上的样本比来自陆地上的样本具有更高的坡度。

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