首页> 外文期刊>Scientific Drilling >ICDP workshop on scientific drilling of Nam Co on the Tibetan Plateau: 1?million years of paleoenvironmental history, geomicrobiology, tectonics and paleomagnetism derived from sediments of a high-altitude lake
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ICDP workshop on scientific drilling of Nam Co on the Tibetan Plateau: 1?million years of paleoenvironmental history, geomicrobiology, tectonics and paleomagnetism derived from sediments of a high-altitude lake

机译:人发会议关于青藏高原南姆公司科学钻探的讲习班:源自高海拔湖泊沉积物的一百万年的古环境历史,地球微生物学,构造学和古磁学

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The Tibetan Plateau is of peculiar societal relevance as it provides freshwater from the so-called “Water Tower of Asia” to a large portion of the Asian population. However, future climate change will affect the hydrological cycle in this area. To define parameters for future climate change scenarios it is necessary to improve the knowledge about thresholds, timing, pace and intensity of past climatic changes and associated environmental impacts. Sedimentary archives reaching far back in time and spanning several glacial–interglacial cycles such as Nam Co provide the unique possibility to extract such information. In order to explore the scientific opportunities that an ICDP drilling effort at Nam Co would provide, 40?scientists from 13?countries representing various scientific disciplines met in Beijing from 22 to 24?May?2018. Besides paleoclimatic investigations, opportunities for paleomagnetic, deep biosphere, tectonic and paleobiological studies were discussed. After having explored the technical and logistical challenges and the scientific opportunities all participants agreed on the great value and need to drill this extraordinary archive, which has a sediment thickness of more than 1?km, likely covering more than 1?Ma.
机译:青藏高原具有特殊的社会意义,因为它从所谓的“亚洲水塔”向大部分亚洲人口提供淡水。但是,未来的气候变化将影响该地区的水文循环。为了定义未来气候变化情景的参数,有必要提高关于过去气候变化的阈值,时间,速度和强度以及相关环境影响的知识。沉积档案可以追溯到很久以前,并跨越了几个冰川-冰川间的循环,例如Nam Co,为提取此类信息提供了独特的可能性。为了探索ICDP在Nam Co开展的钻探工作将提供的科学机会,2018年5月22日至24日,来自13个国家的40名科学家分别代表了各个科学学科。除了古气候研究,还讨论了古磁学,深层生物圈,构造和古生物学研究的机会。在探讨了技术和后勤方面的挑战以及科学机遇之后,所有参与者都同意了其巨大的价值,需要钻研这个非凡的档案库,其沉积物厚度超过1?km,可能覆盖超过1?Ma。

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