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Urban atmospheric mercury: The impact of local sources on deposition and ambient concentration in Detroit, Michigan.

机译:城市大气中的汞:密歇根州底特律的当地来源对沉积物和环境浓度的影响。

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Elevated levels of mercury in effluent from the Detroit Waste Water Treatment Plant led to a study of the impact of atmospheric deposition on the overall loading of mercury at the head of the plant. The data generated in this study has allowed the most comprehensive evaluation of mercury cycling in an urban environment to date, and has provided new insight into the differences between urban and rural pollutant behavior. Measurements were made of ambient vapor-phase and particle-phase mercury, mercury dry and wet deposition flux, as well as runoff mercury flux at three sites in Detroit, from April through October of 1996. An intensive evaluation of the behavior of trace elements in runoff was performed to investigate the importance of traffic on mercury levels in runoff. Comparison of the behavior of mercury in the urban environment to that of a suite of other trace metals sampled concurrently elucidates the unique aspects of the urban mercury cycle and the relative impact of different source categories (e.g. coal-burning, steel production, and waste incineration). The importance of the dry deposition of particle phase mercury to the urban mercury cycle was clearly defined. Dry deposition fluxes of mercury displayed a strong spatial gradient, directly reflecting the proximity of the sampling site to industrial mercury sources. The dry deposition flux of mercury at the most industrial sampling site averaged 51.1 ng m−2 day−1, while the mean dry deposition flux at the residential sampling site averaged 9.9 ng m−2 day−1 . In contrast, the wet deposition of mercury displayed little spatial gradient across the city over the course of this study, with the volume-weighted mean mercury concentration in precipitation ranging from 19.3 ng/L at the industrial site to 17.2 ng/L at the residential site. Dry and wet deposition contributed approximately equal amounts to the total mercury deposition in the most industrial area, whereas wet deposition mercury dominated at the residential site. The type of impervious surface (e.g. highway or street) appears to be a dominant factor in determining the magnitude of the impact of particle bound mercury in runoff in contrast to other trace metals, which is critical to consider in future studies of mercury deposition in urban environments.
机译:底特律废水处理厂的废水中汞含量升高,导致对大气沉积物对工厂顶部汞总量的影响进行了研究。这项研究产生的数据迄今为止可以对城市环境中的汞循环进行最全面的评估,并提供了有关城乡污染物行为之间差异的新见解。从1996年4月至10月在底特律的三个地点进行了环境蒸气相和颗粒相汞的测量,汞的干沉降和湿沉降通量以及径流汞通量的测量。进行径流以调查流量对径流中汞含量的重要性。将汞在城市环境中的行为与一系列同时采样的其他痕量金属的行为进行比较,可以阐明城市汞循环的独特方面以及不同来源类别(例如,燃煤,钢铁生产和垃圾焚烧)的相对影响)。明确定义了颗粒相汞干沉积对城市汞循环的重要性。汞的干沉降通量显示出很强的空间梯度,直接反映了采样点与工业汞源的接近程度。在大多数工业采样点,汞的干沉降通量平均为51.1 ng m -2 -1 ,而在居民采样点的平均干沉降通量为9.9 ng m −2 -1 。相比之下,在整个研究过程中,汞的湿沉降在整个城市中几乎没有空间梯度变化,降水中的体积加权平均汞浓度范围为工业场所的19.3 ng / L至住宅的17.2 ng / L。现场。在大多数工业区,干法和湿法沉积贡献的汞总量大致相等,而住宅区的湿法沉积汞占主导地位。与其他痕量金属相比,不透水表面的类型(例如高速公路或街道)似乎是决定径流中结合汞的影响大小的主要因素,这在将来对城市汞沉积的研究中必须考虑环境。

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