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Volcanic Fluxes Over the Last Millennium as Recorded in the Gv7 Ice Core (Northern Victoria Land, Antarctica)

机译:在GV7冰芯(维多利亚州北部,南极洲)中记录的最后一千年的火山通量

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Major explosive volcanic eruptions may significantly alter the global atmosphere for about 2–3 years. During that period, volcanic products (mainly H 2 SO 4 ) with high residence time, stored in the stratosphere or, for shorter times, in the troposphere are gradually deposited onto polar ice caps. Antarctic snow may thus record acidic signals providing a history of past volcanic events. The high resolution sulphate concentration profile along a 197 m long ice core drilled at GV7 (Northern Victoria land) was obtained by Ion Chromatography on around 3500 discrete samples. The relatively high accumulation rate (241 ± 13 mm we yr ?1 ) and the 5-cm sampling resolution allowed a preliminary counted age scale. The obtained stratigraphy covers roughly the last millennium and 24 major volcanic eruptions were identified, dated, and tentatively ascribed to a source volcano. The deposition flux of volcanic sulphate was calculated for each signature and the results were compared with data from other Antarctic ice cores at regional and continental scale. Our results show that the regional variability is of the same order of magnitude as the continental one.
机译:主要爆炸性火山爆发可能会显着改变全球气氛约2 - 3年。在此期间,火山产品(主要是H 2 SO 4)具有高停留时间,储存在平流层或较短时期,在对流层中逐渐沉积在极性冰盖上。因此,南极雪可以记录提供过去火山事件的历史的酸性信号。在GV7(维多利亚州北部土地)钻的高分辨率硫酸盐浓度剖面是通过约3500个离散样品的离子色谱法获得。相对较高的积累速率(我们的241±13mm,我们的YR?1)和5cm采样分辨率允许初步计数的年龄级。所获得的地层覆盖大致覆盖最后一千年,并鉴定了24个主要的火山爆发,并暂时归因于源火山。计算每种签名的火山硫酸盐的沉积通量,并将结果与​​来自区域和大陆等级的其他南极冰芯的数据进行比较。我们的研究结果表明,区域变异性与大陆单位相同。

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