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Glaciochemical reconnissance of a new ice core from Severnya Zemlya, Eurasian Arctic

机译:Glacio Chemical对来自欧亚北极地区Severnaya Zemlya的新冰芯进行侦察

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A deep ice core has been drilled on Akademii Nauk ice cap, Severnaya Zemlya, Eurasian Arctic. High-resolution chemical analysis has been carried out for the upper 53 m of this ice core to study its potential as an atmospheric aerosol archive, despite strong meltwater percolation. These records show that a seasonal atmospheric signal cannot be deduced. However, strong year-to-year variations have allowed the core to be dated, and a mean annual net mass balance of 0.46 m w.e. a(-1) was deduced. The chemical signature of an extraordinarily high peak in electrical conductivity at 26m depth pointed clearly to the eruption of Bezymianny, Kamchatka, in 1956. However, in general, peaks in the electrical conductivity are not necessarily related to deposition of volcanogenic sulphur aerosol. In contrast, maximum sulphate and nitrate concentrations in the ice could be related to maximum SO2 and NOX anthropogenic emissions in the 1970s, probably caused by the nickel- and copper-producing industries in Norilsk and on the Kola peninsula or by industrial combustion processes occurring in the Siberian Arctic. In addition, during recent decades sulphate and nitrate concentrations declined by 80% and 60%, respectively, reflecting a decrease in anthropogenic pollution of the Arctic basin.
机译:在欧亚北极地区Severnaya Zemlya的Akademii Nauk冰帽上钻了一个深冰芯。尽管有强烈的融水渗入,但仍对该冰芯的上部53 m进行了高分辨率化学分析,以研究其作为大气气溶胶档案的潜力。这些记录表明不能推断出季节性大气信号。但是,由于每年的变化很大,因此可以确定岩心的年代,平均年净质量平衡为46万w.e。推导了a(-1)。 1956年,堪察加半岛Bezymianny火山喷发时,在26m深度处的一个非常高的电导率峰的化学特征清楚地表明了这一点。但是,总的来说,电导率峰不一定与火山硫气溶胶的沉积有关。相比之下,冰中最大的硫酸盐和硝酸盐浓度可能与1970年代最大的SO2和NOX人为排放量有关,这可能是由于Norilsk和Kola半岛的镍和铜生产行业或在工业中发生的工业燃烧过程造成的。西伯利亚北极地区。此外,在最近几十年中,硫酸盐和硝酸盐的浓度分别下降了80%和60%,这反映了北极盆地人为污染的减少。

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