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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Exchange fluxes of Hg between surfaces and atmosphere in the eastern flank of Mount Gongga, Sichuan province, southwestern China
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Exchange fluxes of Hg between surfaces and atmosphere in the eastern flank of Mount Gongga, Sichuan province, southwestern China

机译:表面之间的汞交换通量气氛在东部Gongga山的侧面,中国西南的四川省

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摘要

In situ total gaseous mercury (TGM) concentrations and mercury exchange fluxes from 17 sampling sites of three representative landscapes (agriculture, grassland, and forest) were intensively measured in the eastern flank of Mount Gongga area, Sichuan province, southwestern China, from October 2005 to September 2006. Average TGM concentrations in ambient air ranged from 1.60 to 5.10 ng m?3 in warm season, while the values were highly elevated in cold season with the highest mean TGM concentration of 7.65 ng m?3. Hg fluxes from agriculture and grassland sampling sites showed clearly seasonal distribution pattern with net depositions observed in cold season and net emissions observed in warm season. Mean Hg fluxes at agriculture and grassland field fell in the range from ?4.1 to 132.0 ng m?2 h?1 and from ?18.7 to 13.4 ng m?2 h?1, respectively, while mean Hg fluxes from forest sites varied from 0.5 to 9.3 ng m?2 h?1. Notable diurnal pattern of Hg fluxes were observed from all sampling sites, with the maximum Hg fluxes observed at midday and the minimum values observed during the nighttime. TGM concentrations in cold season significantly negatively correlated with Hg flux, suggesting that highly elevated TGM concentration could inhibit Hg emission even cause significant deposition. Vegetation acted as a great sink of air Hg in cold season, while in warm season, it could significantly inhibit Hg emission from surfaces.
机译:原位气态总汞浓度(电报)从17个采样和汞交换通量网站的三个代表性的景观(农业、草地和森林)集中在东部侧面来衡量山Gongga地区,四川省西南部中国,从2005年10月到2006年9月。环境空气的平均电报浓度范围从1.60到5.10 ng m ?值高高架在寒冷的季节意思是电报浓度最高的7.65ng m ? 3。抽样地点显示明显的季节性分布格局与净口供在寒冷的季节和净排放观察到在温暖的季节。农业和草原领域范围从4.1到132.0 ng米?13.4 ng米?从森林网站通量变化从0.5到9.3ng m ?从所有抽样观察网站,吗最大的汞通量观测和中午最小值在夜间观察。浓度在寒冷季节明显Hg通量呈负相关,表明高度电报浓度升高抑制汞排放甚至造成重大沉积。空气中汞在寒冷的季节,而在温暖的季节,它可以显著抑制汞排放的表面。

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