高精度锆石CA-TIMS年代学追踪克拉通内盆地区域不整合

IF 7.2 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Gondwana Research Pub Date : 2024-11-30 DOI:10.1016/j.gr.2024.11.009
Claudio Andrade, Paulo M. Vasconcelos, Joan Esterle, Tracey Crossingham, Kasia Sobczak, Heinz-Gerd Holl, Suzanne Hurter, Corey Wall, James L. Crowley
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引用次数: 0

摘要

澳大利亚苏拉特盆地中-上侏罗统瓦隆煤系(WCM)与上侏罗统Springbok砂岩(SS)之间的接触处,新的高分辨率ID-TIMS锆石年代学揭示了一个区域可追溯的沉积时间中断~ 3-10 Ma。未压实沉降速率15-65米。WCM中的Ma−1下降到0 ~ 7 m的表观沉降速率。在WCM-SS转变附近,Ma−1再次上升至15-51 m。SS沉积过程中的Ma−1。U-Pb年代学确定了一个断陷——要么是沉积的停止,要么是确定区域不整合的侵蚀事件——这在沉积特征中是无法识别的,这突出了在确定克拉通内盆地层序地层学的关键边界面时需要高分辨率的年代学。确定WCM-SS过渡层下方和上方单元的岩性接触层的确切位置和岩石物性特征,对于量化其下方含气单元与不整合面上方区域含水层之间的连通性尤为重要。随着克拉通内沉积盆地煤层气和页岩气勘探在全球范围内的扩展,通过高分辨率地质年代学识别主要地层转变将有助于评估这些系统的经济潜力和环境脆弱性。
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Tracing regional unconformities in intracratonic basins with high-precision zircon CA-TIMS geochronology
New high-resolution ID-TIMS geochronology of zircon from tuff horizons reveals a regionally traceable temporal hiatus of ∼ 3–10 Ma in sedimentation along the contact between the Middle-Upper Jurassic Walloon Coal Measures (WCM) and the Upper Jurassic Springbok Sandstone (SS), Surat Basin, Australia. Undecompacted sedimentation rates of 15–65 m.Ma−1 in the WCM drop to apparent sedimentation rates of 0 to 7 m.Ma−1 near the WCM-SS transition, rising again to 15–51 m.Ma−1 during SS deposition. U-Pb geochronology identifies a hiatus – either a cessation in sedimentation or an erosional event defining a regional unconformity – not discernable from sedimentary features, highlighting the need for high-resolution geochronology in defining key bounding surfaces in sequence stratigraphy of intracratonic basins. Determining the exact position of lithological contacts and characterizing petrophysical properties of units below and above the WCM-SS transition are particularly important in quantifying connectivity between the gas-bearing units below with regional aquifers above the unconformity. As exploration for coal-seam and shale gas in intracratonic sedimentary basins expands globally, identification of major stratigraphic transitions through high-resolution geochronology will help assessing the economic potential and environmental vulnerabilities of such systems.
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来源期刊
Gondwana Research
Gondwana Research 地学-地球科学综合
CiteScore
12.90
自引率
6.60%
发文量
298
审稿时长
65 days
期刊介绍: Gondwana Research (GR) is an International Journal aimed to promote high quality research publications on all topics related to solid Earth, particularly with reference to the origin and evolution of continents, continental assemblies and their resources. GR is an "all earth science" journal with no restrictions on geological time, terrane or theme and covers a wide spectrum of topics in geosciences such as geology, geomorphology, palaeontology, structure, petrology, geochemistry, stable isotopes, geochronology, economic geology, exploration geology, engineering geology, geophysics, and environmental geology among other themes, and provides an appropriate forum to integrate studies from different disciplines and different terrains. In addition to regular articles and thematic issues, the journal invites high profile state-of-the-art reviews on thrust area topics for its column, ''GR FOCUS''. Focus articles include short biographies and photographs of the authors. Short articles (within ten printed pages) for rapid publication reporting important discoveries or innovative models of global interest will be considered under the category ''GR LETTERS''.
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