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首页> 外文期刊>The Science of the Total Environment >Temporal changes in atmospheric mercury concentrations at a background mountain site downwind of the East Asia continent in 2006-2016
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Temporal changes in atmospheric mercury concentrations at a background mountain site downwind of the East Asia continent in 2006-2016

机译:2006 - 2016年东亚大陆的背景山区大气汞浓度的颞汞变化

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Atmospheric mercury (Hg) has been monitored at the Lulin Atmospheric Background Station (LABS) in Taiwan since April 2006 and is still continuing. Here we reported the trend in gaseous elemental Hg (GEM) concentrations at LABS between April 2006 and December 2016, before the Minamata Convention on Mercury entered into force in 2017. Previous research indicated nighttime (0-8 am) data collected at LABS are better representative of regional influence. Therefore, only nighttime GEM data were used for trend analysis. A significant decreasing trend in GEM at a rate of - 1.5% yr(-1) (-0.022 ng m(-3) yr(-1), p 0.01) was found, comparable to the decreasing trends observed in Europe, North America, South Africa, and over the North Atlantic Ocean. Five major GEM source regions to the LABS were identified, including northern Indochina Peninsula, China, Northeast Asia, the Pacific Ocean, and South China Sea. Significant decreasing trends in GEM were found for air masses coming from northern Indochina Peninsula (-0.042 ng m(-3) yr(-1), - 2.6% yr(-1), p 0 .01), China (-0.041 ng m(-3)yr(-1), - 2.4% yr(-1), p 0.01), Northeast Asia (-0.031 ng m(-3) yr(-1), - 2.0% yr(-1), p 0.05), and the Pacific Ocean (-0.022 ng m(-3) yr(-1), - 1.7% yr(-1), p 0.05). Decreasing GEM trend (-0.020 ng m(-3) yr(-1), - 1.5% yr(-1)), but insignificant (p 0.05), was also found for air masses conning from South China Sea. The decreasing trends observed with air from the Pacific Ocean and South China Sea indicated declining background GEM concentrations in Northern Hemisphere. Decrease in GEM concentrations at the LABS was in agreement with the reduction in atmospheric Hg export from the East Asia continent caused by changes in Hg emission quantity and speciation, and temporal and spatial distribution in emission sources that have been suggested by recent research. Additionally, changes in the frequency distribution of air mass origins and transport paths may also contribute to the changes in GEM concentrations at LABS. (C) 2019 Elsevier B.V. All rights reserved.
机译:自2006年4月以来,在台湾的Lulin大气背景(实验室)监测了大气汞(HG),仍在继续。在这里,我们在2017年4月和2016年12月至2016年12月之间的实验室中报告了气体元素HG(GEM)浓度的趋势,在Minamata Mercury于2017年生效之前。上一篇关于在实验室收集的夜间(0-8AM)数据更好代表区域影响力。因此,只用于趋势分析的夜间宝石数据。发现Gem的显着降低率 - 1.5%YR(-1)(-1)(-0.022ng m(-3)Yr(-1),p <0.01),与北方欧洲观察到的下降趋势相当美国,南非和北大西洋。确定了实验室的五个主要的宝石源地区,包括北印度诺岛半岛,中国,东北亚,太平洋和南海。发现来自北印度靛蓝半岛的空气群众(-0.042 ng m(-3)Yr(-1), - 2.6%YR(-1),P <0.01),中国(-0.041)(-0.041) NG M(-3)Yr(-1), - 2.4%YR(-1),东北亚(-0.031 ng m(-3)Yr(-1), - 2.0%YR(-1 ),P <0.05)和太平洋(-0.022 ng m(-3)Yr(-1), - 1.7%YR(-1),P <0.05)。降低GEM趋势(-0.020ng m(-3)Yr(-1), - 1.5%YR(-1)),但也有微不足道(p> 0.05),用于从南海突出的空气群众。从太平洋和南海的空气观察到的减少趋势表明了北半球的背景宝石浓度下降。实验室的GEM浓度降低符合由近期研究提出的汞排放量和物业的变化和近期研究提出的排放来源的时间和空间分布造成的大气HG导出的大气培养。另外,空气质量起源和运输路径的频率分布的变化也可能有助于实验室的GEM浓度的变化。 (c)2019 Elsevier B.v.保留所有权利。

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