首页> 外文期刊>The Science of the Total Environment >Mercury wet deposition and speciated mercury air concentrations at rural and urban sites across New York state: Temporal patterns, sources and scavenging coefficients
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Mercury wet deposition and speciated mercury air concentrations at rural and urban sites across New York state: Temporal patterns, sources and scavenging coefficients

机译:纽约州农村和城市场所的汞湿沉降和特定的汞空气浓度:时间分布,来源和清除系数

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摘要

Measurements of ambient speciated mercury (Hg) concentrations and Hg wet deposition were made at two urban sites (Bronx, NY and Rochester, NY) and one rural site (Potsdam, NY) in New York State in 2013 and 2014 to: 1) determine the factors influencing Hg wet deposition concentrations, 2) identify the contribution of gaseous oxidized Hg (GOM) and particulate bound Hg (PBM) scavenging to Hg wet deposition concentrations, and 3) identify potential source areas associated with high concentration events. The Bronx had the highest mean gaseous elemental Hg (GEM) and GOM concentrations, Rochester had the highest mean PBM and the lowest GOM concentrations, and Potsdam had the lowest mean GEM and PBM concentrations. The annual volume weighted mean (VWM) Hg concentrations and Hg wet deposition fluxes in the Bronx, Rochester, and Potsdam were significantly different with mean values of 10.3 ± 8.16, 10.2 ± 9.06, and 5.07 ± 1.79 ngL-1 and 8.45 ± 0.64, 6.65 ± 0.21, and 5.25 ± 0.49 μg/m2 year-1, respectively. Hg wet deposition flux and precipitation depth were positively correlated at all three sites as were Hg concentration in precipitation and weekly GOM concentrations at the Bronx and Potsdam sites. Scavenging coefficients (SC) of 680, 630, 850 for GOM and 410, 320, and 410 for PBM at Bronx, Rochester, and Potsdam, respectively, suggest GOM is responsible for most of the scavenged Hg. Measured GOM and PBM concentrations were relatively constant before precipitation events and Hg concentrations in precipitation did not vary significantly during precipitation events implying the scavenging process mainly occurred in clouds. VWM Hg concentrations, monthly accumulated Hg flux, and SCs for GOM and PBM were higher at the urban sites and significantly different for non-snow and snow events. Local sources appeared more important at the rural site while regional sources affected high urban concentrations.
机译:2013年和2014年分别在纽约州的两个城市站点(纽约州布朗克斯和纽约州罗彻斯特)和一个农村站点(纽约州波茨坦)进行了环境中特定汞(Hg)浓度和汞湿沉降的测量,以:1)确定影响汞湿沉降浓度的因素; 2)确定气态氧化汞(GOM)和颗粒结合汞(PBM)清除对汞湿沉降浓度的贡献,以及3)确定与高浓度事件相关的潜在源区。布朗克斯区的平均气态元素汞(GEM)和GOM浓度最高,罗切斯特的平均PBM值最高,最低的GOM浓度,波茨坦的GEM和PBM均值最低。布朗克斯,罗切斯特和波茨坦的年体积加权平均(VWM)汞浓度和汞湿沉降通量存在显着差异,平均值分别为10.3±8.16、10.2±9.09和5.07±1.79 ngL-1和8.45±±0.64,分别为6.65±0.21和5.25±0.49μg/ m2·year-1。汞湿沉降通量和降水深度在所有三个地点都呈正相关,在降水中的汞浓度和布朗克斯和波茨坦地点的每周GOM浓度也正相关。在布朗克斯,罗彻斯特和波茨坦,GOM的清除系数(SC)分别为680、630、850和PBM的410、320和410,表明GOM负责了大部分清除的汞。在降水事件发生之前,测得的GOM和PBM浓度相对恒定,而降水过程中降水中的汞浓度变化不大,这意味着清除过程主要发生在云中。城市地区的GOM和PBM的VWM汞浓度,每月累积的Hg通量以及SC较高,而非雪和雪事件则显着不同。在农村地区,本地资源显得更为重要,而区域资源则影响了城市的高度集中。

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