科罗拉多泥盆纪-石炭纪地层的物源:寒武纪和元古界的影响

Q3 Earth and Planetary Sciences
C. Holm-Denoma, W. Matthews, Linda K. Soar, M. Longman, J. Hagadorn
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引用次数: 2

摘要

我们报告了泥盆纪-石炭纪(密西西比)Chaffee群粉砂质至砂质石灰岩和白云岩以及钙质至白云质砂岩的新LA-ICP-MS U–Pb碎屑锆石年龄和沉积岩石学。我们还报告了晚寒武纪Sawatch石英岩的新碎屑锆石年龄,以及科罗拉多州西北部Eagle盆地下伏基底的中元古代晚期(1087.9±13.5 Ma)花岗岩的U–Pb锆石结晶年龄。Chaffee群的谷物种群大多为双峰型。超过84%的锆石集中在形成科罗拉多州大部分基底的亚瓦派省典型的古元古代(约1.78 Ga)模式和侵入该地区的a型花岗岩典型的中元古代早期(约1.42 Ga)。在一些Chaffee样品中存在一个显著的中元古代晚期(约1.08 Ga)模式,使这些样品具有三模态碎屑锆石年龄分布。这些二分或三分碎屑锆石年龄模式存在于古地理相邻序列的寒武纪、泥盆纪和石炭纪地层中,但Chaffee锆石与该地区的基底寒武纪砂岩Sawatch石英岩、平头砂岩和Ignacio石英岩之间的相关性最高,它们具有相似的锆石群(分别为1.08 Ga、1.43 Ga和1.70 Ga),并且缺乏>1.8 Ga的晶粒。这种相似性表明,Chaffee群中的大多数颗粒来源于这些基底砂岩的再循环,而很少的沉积物直接来源于新暴露的前寒武纪基底高点、北部的怀俄明州克拉通或西部和东北部的古元古代弧和造山带。Chaffee群中存在中太古代至古元古代早期(约3.00至2.40 Ga)的小颗粒,这是科罗拉多前山脉晚奥陶世哈丁砂岩的共同属性,但该地区下伏的寒武纪砂岩中没有这一属性,这表明寒武纪和奥陶纪沉积岩的一些再循环混合物。Chaffee群中不存在接近沉积年龄的颗粒。最年轻的颗粒是早泥盆纪(~417 Ma),比这些地层早4500万年。此外,古生代晶粒极为罕见(<0.1%;n=2927个晶粒)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Provenance of Devonian–Carboniferous strata of Colorado: The influence of the Cambrian and the Proterozoic
We report new LA-ICP-MS U–Pb detrital zircon ages and sedimentary petrology of silty to sandy limestones and dolostones, as well as calcareous to dolomitic sandstones of the Devonian–Carboniferous (Mississippian) Chaffee Group. We also report new detrital zircon ages from the late Cambrian Sawatch Quartzite, and a U–Pb zircon crystallization age on a late Mesoproterozoic (1087.9 ± 13.5 Ma) granitoid of underlying basement from the Eagle Basin of northwest Colorado. Grain populations in the Chaffee Group are mostly bimodal. More than 84% of zircons centered around a Paleoproterozoic (ca. 1.78 Ga) mode typical of the Yavapai province that forms much of the basement of Colorado and an early Mesoproterozoic (ca. 1.42 Ga) mode typical of A-type granites that intrude this region. A notable late Mesoproterozoic (ca. 1.08 Ga) mode exists in some Chaffee samples, giving those samples a trimodal detrital zircon age distribution. These bipartite or tripartite detrital zircon age modes exist in Cambrian, Devonian, and Carboniferous strata from paleogeographically adjacent successions, but the correlation between the Chaffee zircons is highest with the region’s basal Cambrian sandstones of the Sawatch Quartzite, Flathead Sandstone, and Ignacio Quartzite, which have similar (ca. 1.08 Ga, 1.43 Ga, 1.70 Ga, respectively) zircon populations, and a paucity of > 1.8 Ga grains. This similarity suggests that most grains in the Chaffee Group derive from recycling of these basal sandstones, and that little sediment was derived directly from thenexposed Precambrian basement highs, from the Wyoming craton to the north, or from Paleoproterozoic arcs and orogens to the west and northeast. Minor Mesoarchean to early Paleoproterozoic (ca. 3.00 to 2.40 Ga) grains exist in the Chaffee Group, an attribute shared by the Late Ordovician Harding Sandstone of Colorado’s Front Range, but that is absent from the region’s underlying Cambrian sandstones—suggesting some recycled mixture of Cambrian and Ordovician sedimentary rocks. No near-depositional age grains are present in the Chaffee Group. The youngest grain is Early Devonian (~417 Ma), > 45 million years (m.y.) older than these strata. Additionally, Paleozoic grains are extremely uncommon (< 0.1%; n = 2,927 grains).
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来源期刊
Rocky Mountain Geology
Rocky Mountain Geology Earth and Planetary Sciences-Geology
CiteScore
1.10
自引率
0.00%
发文量
4
期刊介绍: Rocky Mountain Geology (formerly Contributions to Geology) is published twice yearly by the Department of Geology and Geophysics at the University of Wyoming. The focus of the journal is regional geology and paleontology of the Rocky Mountains and adjacent areas of western North America. This high-impact, scholarly journal, is an important resource for professional earth scientists. The high-quality, refereed articles report original research by top specialists in all aspects of geology and paleontology in the greater Rocky Mountain region.
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