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First measurement of atmospheric mercury species in Qomolangma Natural Nature Preserve, Tibetan Plateau, and evidence oftransboundary pollutant invasion

机译:青藏高原珠穆朗玛峰自然保护区中大气汞物种的首次测量以及跨界污染物入侵的证据

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Located in the world's “third pole” and a remote region connecting the Indian plate and the Eurasian plate, Qomolangma National Nature Preserve (QNNP) is an ideal region to study the long-range transport of atmospheric pollutants. In this study, gaseous elemental mercury (GEM), gaseous oxidized mercury (GOM) and particle-bound mercury (PBM) were continuously measured during the Indian monsoon transition period in QNNP. A slight increase in the GEM concentration was observed from the period preceding the Indian summer monsoon ( 1.31±0.42 ng?m sup?3/sup ) to the Indian summer monsoon period ( 1.44±0.36 ng?m sup?3/sup ), while significant decreases were observed in the GOM and PBM concentrations, with concentrations decreasing from 35.2±18.6 to 19.3±10.9 pg?m sup?3/sup ( p??0.001 ) for GOM and from 30.5±12.5 to 24.9±19.8 pg?m sup?3/sup ( p??0.001 ) for PBM. A unique daily pattern was observed in QNNP with respect to the GEM concentration, with a peak value before sunrise and a low value at noon. Relative to the (low) GEM concentrations, GOM concentrations (with a mean value of 21.4±13.4 pg?m sup?3/sup , n=1239 ) in this region were relatively high compared with the measured values in some other regions of China. A cluster analysis indicated that the air masses transported to QNNP changed significantly at different stages of the monsoon, and the major potential mercury (Hg) sources shifted from northern India and western Nepal to eastern Nepal and Bangladesh. As there is a large area covered in glaciers in QNNP, local glacier winds could increase the transboundary transport of pollutants and transport polluted air masses to the Tibetan Plateau. The atmospheric Hg concentration in QNNP in the Indian summer monsoon period was influenced by transboundary Hg flows. This highlights the need for a more specific identification of Hg sources impacting QNNP and underscores the importance of international cooperation regarding global Hg controls.
机译:珠穆朗玛国家自然保护区(QNNP)位于世界“第三极”,是连接印度板块和欧亚板块的偏远地区,是研究大气污染物远距离迁移的理想区域。在这项研究中,在QNNP的印度季风过渡期连续测量了气态元素汞(GEM),气态氧化汞(GOM)和颗粒结合汞(PBM)。从印度夏季风之前(1.31±0.42 ng?m ?3 )到印度夏季风之前的时期(1.44±0.36 ng?m ),GEM浓度略有增加。 ?3 ),而GOM和PBM的浓度却显着降低,浓度从35.2±18.6 pg?m ?3 (p ?? 0.001)下降到19.3±10.9 pg?m(p ?? 0.001) GOM和PBM为30.5±12.5至24.9±19.8 pg?m ?3 (p ?? 0.001)。在QNNP中,相对于GEM浓度观察到了独特的每日模式,日出前为峰值,中午时为低值。相对于(低)GEM浓度,该区域的GOM浓度(平均值为21.4±13.4 pg?m ?3 ,n = 1239)相对于某些地区的测量值相对较高。中国其他地区。聚类分析表明,输送到QNNP的气团在季风的不同阶段发生了显着变化,主要的潜在汞(Hg)来源从印度北部和尼泊尔西部转移到了尼泊尔东部和孟加拉国。由于QNNP的冰川覆盖面积很大,当地的冰川风可能会增加污染物的越境转移并将污染的空气团块运送到青藏高原。印度夏季风季QNNP中的大气Hg浓度受跨界Hg流量的影响。这突出表明需要更具体地识别影响QNNP的汞源,并强调就全球汞控制开展国际合作的重要性。

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