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首页> 外文期刊>Atmospheric chemistry and physics >Ten-year trends in atmospheric mercury concentrations, meteorological effects and climate variables at Zeppelin, Ny-?lesund
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Ten-year trends in atmospheric mercury concentrations, meteorological effects and climate variables at Zeppelin, Ny-?lesund

机译:纽约州齐柏林飞艇的大气汞浓度,气象影响和气候变量的十年趋势

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Results from ten years of gaseous elemental mercury (GEM) measurements at Zeppelin station, Ny-?lesund, Svalbard, show no overall annual trend between 2000 and 2009. Seasonal trend analysis showed significantly decreasing trends in January, February, March and June (-4.5 to -14.9 pg m-3 yr-1) and significantly increasing trends in May and July through December (1.5 to 28.7 pg m-3 yr -1). Results showed that atmospheric mercury depletion events (AMDEs) were equally distributed between April and May with only a few having been observed in March and June. A negative correlation between AMDEs and temperature is reported and supports earlier observations that AMDEs tend to occur at low temperatures. Lower concentrations of GEM were seen at lower temperatures below a threshold of 0 C. The occurrence of AMDEs and wind direction were well correlated with the lowest GEM measured when the wind direction was from the Arctic Ocean region. Wind speed was found to not correlate with AMDEs, but the lowest GEM concentrations were observed at low wind speeds between 4 and 11 m s-1. AMDEs and relative humidity did not correlate well, but the lowest GEM levels appeared when the relative humidity was between 80 and 90%. Diurnal variation was observed especially during the month of March and is probably due to daytime snow surface emission induced by solar radiation. Relationships between GEM concentration and the Northern Hemisphere climate indices were investigated to assess if these climate parameters might reflect different atmospheric conditions that enhance or reduce spring AMDE activity. No consistent pattern was observed.
机译:在2000年至2009年之间,在斯瓦尔巴特群岛Ny-?lesund的Zeppelin站的气态元素汞(GEM)十年测量结果未显示总体年度趋势。季节性趋势分析显示,在一月,二月,三月和六月(- 4.5至-14.9 pg m-3 yr-1)和5月和7月至12月的显着增加趋势(1.5至28.7 pg m-3 yr -1)。结果表明,大气汞消耗事件(AMDE)在4月和5月之间平均分布,而在3月和6月仅观察到少数事件。据报道,AMDE与温度之间呈负相关,这支持了先前的观察结果,即AMDE倾向于在低温下发生。在低于0 C阈值的较低温度下观察到较低的GEM浓度。当风向来自北冰洋地区时,AMDE的发生和风向与最低的GEM密切相关。发现风速与AMDE不相关,但是在4至11 m s-1之间的低风速下观察到最低的GEM浓度。 AMDE和相对湿度之间没有很好的相关性,但是当相对湿度在80%到90%之间时,最低的GEM值出现了。特别是在三月份,观察到昼夜变化,这可能是由于太阳辐射引起的白天雪面排放。研究了GEM浓度与北半球气候指数之间的关系,以评估这些气候参数是否可能反映出增强或降低春季AMDE活动的不同大气条件。没有观察到一致的模式。

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