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Identification of Inorganic and Organic Inclusions in the Subglacial Antarctic Lake Vostok Ice with Raman Spectroscopy

机译:用拉曼光谱法鉴定南极冰湖沃斯托克冰中的无机和有机包裹体

摘要

The investigation of inclusions entrapped into the accretion ice of the subglacial Lake Vostok in Antarctica gives an insight into former times of the Antarctic history. Terrestrial (of biological and geologically-mineralogical origin) as well as extraterrestrial (meteorites) materials are hermetically embedded in the Vostok ice core and provide information about the conditions and events on Earth existed/occurred during last million years. Confocal Raman spectroscopy is well suited for the analysis of the inclusions without melting the ice and, therefore, preventing undesirable contamination with present-day material. It is a nondestructive method for material identification with depth resolving capability. It permits a locally precise statement about the chemical-mineralogical composition and allows the context information preservation of several side by side inclusions. udHere, we present first results of our Raman measurements of the inclusion embedded in the Lake Vostok ice sample 5G-3 3607-4 (3607 m depth). The results obtained confirm that Raman spectroscopy is a very useful method for the exploration of inclusions entrapped into lattice of any natural ice. As Raman spectroscopy is already planned to be applied in upcoming missions in space research (ExoMars, Mars 2020, to the icy moons) a co-operation of the space science community with the Antarctica-Lake Vostok community is suggested to test the space instrumentation under the extreme environment of the Central East Antarctica and conditions of the subglacial Lake Vostok.
机译:对南极冰湖伏斯托克湖吸积冰中夹杂物的调查,使人们对南极历史的前途有了深刻的了解。 (生物和地质矿物学起源的)陆地和地球(陨石)材料被气密地嵌入沃斯托克冰芯中,并提供有关过去一百万年来存在/发生过的地球状况和事件的信息。共焦拉曼光谱非常适合分析夹杂物而不会使冰融化,因此可以防止当今材料产生不希望的污染。这是一种具有深度解析能力的无损材料识别方法。它允许对化学矿物学组成进行局部精确的陈述,并允许保存多个并列夹杂物的上下文信息。 ud这里,我们展示了对沃斯托克湖冰样5G-3 3607-4(深度3607 m)中嵌入的包裹体进行拉曼测量的第一个结果。所获得的结果证实,拉曼光谱法是一种非常有用的方法,用于探索包裹在任何天然冰晶格中的夹杂物。由于已经计划将拉曼光谱学应用于即将进行的太空研究任务(ExoMars,2020年火星,到冰冷的卫星),因此建议太空科学界与南极洲-Vostok界进行合作,以测试在南极东部中部的极端环境和沃斯托克湖下冰川的状况。

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