Detrital zircon provenance of Pennsylvanian to Permian sandstones from the Wyoming craton and Wood River Basin, Idaho, U.S.A.

Q3 Earth and Planetary Sciences Rocky Mountain Geology Pub Date : 2014-09-01 DOI:10.2113/GSROCKY.49.2.115
P. Link, R. Mahon, L. Beranek, E. Campbell-Stone, R. Lynds
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引用次数: 29

Abstract

Pennsylvanian rocks of the northern U.S. Rocky Mountains are mature quartzose sandstones. This paper uses detrital zircon geochronology on seven samples from the Wood River Formation, Tensleep Sandstone, and Weber Sandstone to determine if these sandstones have a common provenance, representing eastern Laurentian and Appalachian sand reworked within shallow-marine and eolian environments from the Wyoming craton westward to the Pioneer thrust plate of south-central Idaho. Our work suggests that this continental sand blanket was mixed with local sources on the south in the Yavapai-Mazatzal provinces of the Ancestral Rocky Mountains and in samples from the western Cordilleran thrust belt in south-central Idaho. In total, these Pennsylvanian sandstones contain a broad spectrum of detrital zircon U-Pb ages including, from old to young: A) minor Archean-age (3300–2550 Ma) populations; B) Paleoproterozoic (2000–1600 Ma), Mesoproterozoic (1470–1350 Ma), and major “Grenvillian” (1250–950 Ma) populations; and C) Cryogenian- to Ediacaran-age (665–565 Ma) and minor Paleozoic (495–410 Ma) populations. We interpret these detrital zircon ages to represent provenance mainly from the Appalachian mountain belt of eastern North America; however, central Appalachian versus northern Appalachian derivation is not clearly distinguished. The Weber Sandstone from the north flank of the Uinta Mountains in northeast Utah contains a strong 1700–1640 Ma age population derived from the Yavapai-Mazatzal provinces in the adjacent Ancestral Rocky Mountains. The shallow-marine Hailey Member of the Wood River Formation in south-central Idaho yields a population of >1800 Ma detrital zircons reworked from the uplifted Mississippian Copper Basin Formation. Both the Hailey and Wilson Creek Members of the Wood River Formation contain unique 640–490 Ma grains that may represent provenance from the Big Creek-Beaverhead plutonic belt of east-central Idaho and/or eastern Klamath terrane in the Klamath Mountains of northwest California and southwest Oregon. These new data support published models for Pennsylvanian–Permian transport of siliciclastic sediment with sources mainly from the North American craton, north of the Ancestral Rocky Mountains, into continental margin basins.
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美国爱达荷州怀俄明克拉通和伍德河盆地宾夕法尼亚-二叠系砂岩碎屑锆石物源
美国北部落基山脉的宾夕法尼亚岩石是成熟的石英砂岩。本文采用碎屑锆石年代学方法对来自木河组、Tensleep砂岩和Weber砂岩的7个样品进行了地质年代学分析,以确定这些砂岩是否具有共同的物源,代表了从怀俄明州克拉通向西到爱达荷州中南部先锋逆冲板块的浅海相和风成环境中重新加工的东劳伦特和阿巴拉契亚砂岩。我们的研究表明,在落基山脉祖先的Yavapai-Mazatzal省南部,以及爱达荷州中南部科迪勒兰冲断带西部的样本中,这种大陆砂毯与当地的来源混合在一起。总的来说,这些宾夕法尼亚砂岩包含了广泛的碎屑锆石U-Pb年龄,从年老到年轻,包括:a)小太古宙(3300-2550 Ma)种群;B)古元古代(2000-1600 Ma)、中元古代(1470-1350 Ma)和主要的“Grenvillian”(1250-950 Ma)种群;C)低温-埃迪卡拉纪(665-565 Ma)和小古生代(495-410 Ma)种群。我们认为这些碎屑锆石的物源主要来自北美东部的阿巴拉契亚山脉带;然而,阿巴拉契亚中部和阿巴拉契亚北部的起源并没有明确区分。来自犹他州东北部乌塔山脉北侧的韦伯砂岩包含了来自邻近祖先落基山脉的Yavapai-Mazatzal省的1700-1640 Ma人口。爱达荷州中南部的伍德河组的浅海海相Hailey段,发现了一群从隆升的密西西比铜盆地组中重新加工而来的100 ~ 1800 Ma碎屑锆石。Wood River组的Hailey和Wilson Creek成员都含有独特的640-490 Ma颗粒,这些颗粒可能来自爱达荷州中东部的Big Creek- beaverhead深成带和/或加利福尼亚州西北部和俄勒冈州西南部克拉马斯山脉的克拉马斯地体东部。这些新数据支持了宾夕法尼亚-二叠纪时期主要来自北美克拉通(祖先落基山脉以北)的硅质碎屑沉积物向大陆边缘盆地迁移的已发表模型。
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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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