深时间北极气候档案:斯瓦尔巴群岛沉积记录的高分辨率岩心- SVALCLIME,研讨会报告

IF 1.6 Q3 GEOSCIENCES, MULTIDISCIPLINARY Scientific Drilling Pub Date : 2023-10-26 DOI:10.5194/sd-32-113-2023
Kim Senger, Denise Kulhanek, Morgan T. Jones, Aleksandra Smyrak-Sikora, Sverre Planke, Valentin Zuchuat, William J. Foster, Sten-Andreas Grundvåg, Henning Lorenz, Micha Ruhl, Kasia K. Sliwinska, Madeleine L. Vickers, Weimu Xu
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引用次数: 0

摘要

摘要我们于2022年10月18日至21日在挪威朗伊尔城举办了SVALCLIME“北极深时间气候档案:斯瓦尔巴群岛沉积记录的高分辨率岩心”研讨会,讨论了斯瓦尔巴群岛沉积记录中独特的新元古代至古近纪高分辨率气候档案的科学钻探。斯瓦尔巴群岛在全球范围内是独一无二的,因为它便于在相对较小的区域内跨越多个地层间隔进行科学取心。斯瓦尔巴群岛在中生代和整个新生代的极地位置使得斯瓦尔巴群岛的遗址与更容易到达的中纬度遗址高度互补,从而可以研究地质时期的极地放大效应。研讨会的重点是了解斯瓦尔巴群岛的地质历史如何提高我们预测未来环境变化的能力,特别是在高纬度地区。该主题与ICDP 2020-2030科学计划主题4“环境变化”和主题1“地球动力过程”高度相关。我们认为,对北极地区古生代、中生代和古近系沉积物的系统取芯将为深时气候变化事件和地球水圈-大气-生物圈系统的演化提供重要的新约束。我们制定了一项科学计划,通过在斯瓦尔巴群岛的陆上科学钻探来实现三个主要目标:a.通过对冰原期(“雪球/泥球地球”)和晚石炭世至早二叠纪的新元古代和古生代冰期和间冰期进行岩心取心,研究生命的共同进化和可能由轨道变化造成的反复的冰-温室气候转变。评估中生代大火成岩省侵位对快速气候变化和物种大灭绝的影响,包括二叠纪末物种大灭绝、三叠纪末物种大灭绝、詹金斯事件(Toarcian Oceanic缺氧事件)、侏罗纪Volgian碳同位素漂移和白垩纪Weissert事件和海洋缺氧事件。通过对古近纪沉积物取心,研究始新世早期的温室和随后向渐新世的冷库世界过渡,包括古新世-始新世热最大值、始新世热最大值2和始新世-渐新世过渡的记录。SVALCLIME科学团队制定了一个为期3年的钻井计划,使用两个平台:(1)用于约100米长的钻孔(4-6个地点)的轻型取心系统;(2)可钻深达约2公里(1 - 2个地点)的大型平台。现场电缆测井数据和流体样本将在井中收集,岩心描述和采样将在朗伊尔城的斯瓦尔巴德大学中心(UNIS)进行。拟议的科学钻探结果将与现有的工业和科学钻孔相结合,以建立跨越显生宙的几乎连续的地质环境数据。这些结果将极大地促进我们对地球内部和外部过程的相互作用如何与全球气候变化动力学、生命进化和大灭绝联系在一起的理解。
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Deep-time Arctic climate archives: high-resolution coring of Svalbard's sedimentary record – SVALCLIME, a workshop report
Abstract. ​​​​​​​We held the MagellanPlus workshop SVALCLIME “Deep-time Arctic climate archives: high-resolution coring of Svalbard's sedimentary record”, from 18 to 21 October​​​​​​​ 2022 in Longyearbyen, to discuss scientific drilling of the unique high-resolution climate archives of Neoproterozoic to Paleogene age present in the sedimentary record of Svalbard. Svalbard is globally unique in that it facilitates scientific coring across multiple stratigraphic intervals within a relatively small area. The polar location of Svalbard for some of the Mesozoic and the entire Cenozoic makes sites in Svalbard highly complementary to the more easily accessible mid-latitude sites, allowing for investigation of the polar amplification effect over geological time. The workshop focused on how understanding the geological history of Svalbard can improve our ability to predict future environmental changes, especially at higher latitudes. This topic is highly relevant for the ICDP 2020–2030 Science Plan Theme 4 “Environmental Change” and Theme 1 “Geodynamic Processes”. We concluded that systematic coring of selected Paleozoic, Mesozoic, and Paleogene age sediments in the Arctic should provide important new constraints on deep-time climate change events and the evolution of Earth's hydrosphere–atmosphere–biosphere system. We developed a scientific plan to address three main objectives through scientific onshore drilling on Svalbard: a. Investigate the coevolution of life and repeated icehouse–greenhouse climate transitions, likely forced by orbital variations, by coring Neoproterozoic and Paleozoic glacial and interglacial intervals in the Cryogenian (“Snowball/Slushball Earth”) and late Carboniferous to early Permian time periods.b. Assess the impact of Mesozoic Large Igneous Province emplacement on rapid climate change and mass extinctions, including the end-Permian mass extinction, the end-Triassic mass extinction, the Jenkyns Event (Toarcian Oceanic Anoxic Event), the Jurassic Volgian Carbon Isotopic Excursion and the Cretaceous Weissert Event and Oceanic Anoxic Event 1a.c. Examine the early Eocene hothouse and subsequent transition to a coolhouse world in the Oligocene by coring Paleogene sediments, including records of the Paleocene–Eocene Thermal Maximum, the Eocene Thermal Maximum 2, and the Eocene–Oligocene transition. The SVALCLIME science team created plans for a 3-year drilling programme using two platforms: (1) a lightweight coring system for holes of ∼ 100 m length (4–6 sites) and (2) a larger platform that can drill deep holes of up to ∼ 2 km (1–2 sites). In situ wireline log data and fluid samples will be collected in the holes, and core description and sampling will take place at The University Centre in Svalbard (UNIS) in Longyearbyen. The results from the proposed scientific drilling will be integrated with existing industry and scientific boreholes to establish an almost continuous succession of geological environmental data spanning the Phanerozoic. The results will significantly advance our understanding of how the interplay of internal and external Earth processes are linked with global climate change dynamics, the evolution of life, and mass extinctions.
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来源期刊
Scientific Drilling
Scientific Drilling GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
2.50
自引率
0.00%
发文量
12
审稿时长
27 weeks
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Drilling into a deep buried valley (ICDP DOVE): a 252 m long sediment succession from a glacial overdeepening in northwestern Switzerland Coring tools have an effect on lithification and physical properties of marine carbonate sediments Initial results of coring at Prees, Cheshire Basin, UK (ICDP JET project): towards an integrated stratigraphy, timescale, and Earth system understanding for the Early Jurassic Workshop on drilling the Nicaraguan lakes: bridging continents and oceans (NICA-BRIDGE) Poor Man's Line Scan – a simple tool for the acquisition of high-resolution, undistorted drill core photos
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