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Modelling of air-water exchange of PCBs in the Great Lakes

机译:五大湖中多氯联苯的空气-水交换模型

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Volatilization from water may be an important emission or reemission process for PCBs. In previous work, we have expanded the community multi-scale air quality (CMAQ) model to simulate the transport, chemical transformation, gas/ aerosol partitioning, deposition and air-water surface exchange of PCBs. The air-water surface exchange algorithm is based on a two-film model of the air-water interface. Using this expanded version of CMAQ, we simulated the air-water exchange flux of gas-phase PCBs in the Great Lakes and examined the concentrations and deposition patterns of PCBs in North America for 2002. For gas-phase PCBs, the volatilization from water surfaces is often greater than the absorption (dry deposition) to the water surfaces. For example, the net flux of PCBs from the Great Lakes to the atmosphere is much larger than the dry and wet deposition of particle-phase PCBs to the Great Lakes. Thus, we conclude that the Great Lakes are currently a source rather than a sink for PCBs. For remote areas such as Lake Superior, this air-water exchange appears to be the most important source of PCBs emission. Anthropogenic emission, however, is still the dominant source when averaged across the whole North American modeling domain. Transfer resistance calculations show that the transfer resistance at the water side of the interface is the biggest resistance, while the aerodynamic and air side resistances are approximately at the same level. The total air-water transfer resistance is more sensitive to wind speed than to temperature.
机译:水的挥​​发可能是多氯联苯的重要排放或再排放过程。在以前的工作中,我们扩展了社区多尺度空气质量(CMAQ)模型,以模拟PCB的运输,化学转化,气体/气溶胶分配,沉积和气水表面交换。空气-水表面交换算法基于空气-水界面的两层模型。使用此扩展版本的CMAQ,我们模拟了大湖区气相PCBs的空气-水交换通量,并研究了2002年北美地区PCBs的浓度和沉积方式。对于气相PCBs,水表面的挥发通常大于对水表面的吸收(干沉降)。例如,多氯联苯从五大湖到大气的净通量要比颗粒相多氯联苯向干湖的干湿沉降大得多。因此,我们得出的结论是,五大湖目前是多氯联苯的来源而不是汇。对于苏必利尔湖这样的偏远地区,这种空气-水交换似乎是多氯联苯排放的最重要来源。但是,在整个北美建模领域进行平均时,人为排放仍然是主要来源。传递阻力的计算表明,界面水侧的传递阻力是最大的阻力,而空气动力学和空气侧的阻力大约处于同一水平。总的空气-水传递阻力对风速比对温度更敏感。

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