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首页> 外文期刊>Atmospheric chemistry and physics >Micrometeorological measurement of hexachlorobenzene and polychlorinated biphenyl compound air-water gas exchange in Lake Superior and comparison to model predictions
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Micrometeorological measurement of hexachlorobenzene and polychlorinated biphenyl compound air-water gas exchange in Lake Superior and comparison to model predictions

机译:苏必利尔湖中六氯苯和多氯联苯化合物空气-水气体交换的微气象测量及与模型预测的比较

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Air-water exchange fluxes of persistent, bioaccumulative and toxic (PBT) substances are frequently estimated using the Whitman two-film (W2F) method, but micrometeorological flux measurements of these compounds over water are rarely attempted. We measured air-water exchange fluxes of hexachlorobenzene (HCB) and polychlorinated biphenyls (PCBs) on 14 July 2006 in Lake Superior using the modified Bowen ratio (MBR) method. Measured fluxes were compared to estimates using the W2F method, and to estimates from an Internal Boundary Layer Transport and Exchange (IBLTE) model that implements the NOAA COARE bulk flux algorithm and gas transfer model. We reveal an inaccuracy in the estimate of water vapor transfer velocity that is commonly used with the W2F method for PBT flux estimation, and demonstrate the effect of use of an improved estimation method. Flux measurements were conducted at three stations with increasing fetch in offshore flow (15, 30, and 60 km) in southeastern Lake Superior. This sampling strategy enabled comparison of measured and predicted flux, as well as modification in near-surface atmospheric concentration with fetch, using the IBLTE model. Fluxes estimated using the W2F model were compared to fluxes measured by MBR. In five of seven cases in which the MBR flux was significantly greater than zero, concentration increased with fetch at 1-m height, which is qualitatively consistent with the measured volatilization flux. As far as we are aware, these are the first reported ship-based micrometeorological air-water exchange flux measurements of PCBs.
机译:经常使用惠特曼两层膜(W2F)方法估算持久性,生物蓄积性和有毒(PBT)物质的空气-水交换通量,但是很少尝试对这些化合物在水上的微气象通量进行测量。我们于2006年7月14日使用改良的Bowen比率(MBR)方法在苏必利尔湖测量了六氯苯(HCB)和多氯联苯(PCB)的空气-水交换通量。使用W2F方法将测得的通量与估算值进行比较,并与内部边界层传输和交换(IBLTE)模型的估算值进行比较,该模型实现了NOAA COARE体积通量算法和气体传输模型。我们揭示了W2F方法通常用于PBT通量估计的水汽传输速度估计的不准确性,并证明了使用改进的估计方法的效果。通量测量是在三个站进行的,随着苏必利尔湖东南部海上流量的增加(15、30和60 km)。这种采样策略可以使用IBLTE模型比较测量流量和预测流量,以及通过获取对近地表大气浓度进行修改。将使用W2F模型估算的通量与通过MBR测量的通量进行比较。在MBR通量显着大于零的七种情况中,有五种在浓度为1-m时随浓度升高而浓度增加,这在质量上与测得的挥发通量一致。据我们所知,这是首次报告的基于船的多氯联苯微气象空气-水交换通量测量。

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