首页> 外文期刊>GSA Bulletin >Zircon U-Th-Pb and whole-rock Rb-Sr age patterns of lower Mesozoic igneous rocks in the Santa Rita Mountains, southeast Arizona: Implications for Mesozoic magmatism and tectonics in the southern Cordillera
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Zircon U-Th-Pb and whole-rock Rb-Sr age patterns of lower Mesozoic igneous rocks in the Santa Rita Mountains, southeast Arizona: Implications for Mesozoic magmatism and tectonics in the southern Cordillera

机译:亚利桑那州东南部圣塔塔山下中生代火成岩的锆石U-Th-Pb和全岩石Rb-Sr年龄型式:对南部山脉南部中生代岩浆作用和构造的影响

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摘要

Volcanic and plutonic rocks and associated sediments in the Santa Rita Mountains, southeast Arizona, represent one of the most complete Mesozoic sections in the Cordillera. Zircon from the lower member of the Mt. Wrightson Formation, the oldest of the dated units, has lost radiogenic lead and contains a component of older zircon. Accordingly, only an imprecise maximum age of 220 Ma could be obtained for an andesite from near the middle of this unit. The lower member is intruded by the Piper Gulch granodiorite, which gave a concordant zircon U-Th-Pb age of 188 ± 2 (2) Ma. Complex isotopic systematics of zircon from dacite in the middle member of the Mt. Wrightson Formation allow its age to lie between 172 and 190 Ma. Because the Piper Gulch is interpreted to also cut the base of the middle member, a hiatus of no longer than 30 m.y. is likely to separate the lower and middle members. This stratigraphic break marks the change from early predominantly basaltic and andesitic volcanism to later dacitic to rhyolitic lavas and tuffs. The silty to conglomeratic red beds and minor volcanic rocks of the Gardner Canyon Formation, for which we obtained a nearly concordant U-Th-Pb age of 200 ± 5 Ma on an abraded fraction of zircon, may identify a rift-dominated tectonic regime and mark the transition to felsic volcanism. A second cycle of andesite and rhyolitic volcanism and sedimentation, represented by the Temporal and Bathtub Formations, was dated at 151 ± 5 (2) Ma by the whole-rock Rb-Sr isotopic method. Compared to previous age estimates, our results suggest an earlier initiation of arc magmatism in this part of the Cordillera. Apparently, by the Late Triassic, this area was already an uplifted continental arc margin, analogous to the present-day Andes, shedding volcanic material to what is now the Colorado Plateau. The volcanic rocks we dated fall within the range of ages measured for cobbles of similar lithology from the Upper Triassic Chinle Formation in the Colorado Plateau. Therefore, it is not necessary to invoke the tectonic removal of an early Mesozoic arc terrane along the proposed Mojave-Sonora megashear.
机译:亚利桑那州东南部的圣塔里塔山中的火山岩和深成岩以及相关的沉积物代表了山脉中最完整的中生代剖面之一。来自 山下层的锆石。 Wrightson编队是年代最久的单位中的 ,失去了放射源铅,并且包含较老的锆石的 成分。因此,从该单元中间的 只能获得安山岩的不精确的最大 年龄,为220 Ma。下构件由Piper Gulch花岗闪长岩侵入,锆石的U-Th-Pb年龄一致,为188±2(2)Ma。芒特中部达西特锆石 的复杂同位素系统。赖特森组 允许其年龄在172至190 Ma之间。因为Piper Gulch被解释为也切割了中间构件的底部,所以 裂孔不超过30m.y。可能会将 下级成员和中级成员分开。这种地层断裂标志着 从早期主要的玄武质和安第斯山脉的火山 到后来的高寒到流纹岩的熔岩和凝灰岩的变化。 Gardner 峡谷组的 砾岩红层和次火山岩,我们获得了几乎一致的 U-Th-Pb年龄在磨损的锆石上的200±5 Ma范围内, 可能识别出以裂谷为主的构造体制,并标志了 向长石质火山的过渡。由时间和 巴斯图特岩层代表的安山岩和流纹岩 火山活动和沉积的第二个周期以 为151±5(2)Ma。 sup>整体岩石Rb-Sr同位素方法。 与以前的年龄估计相比,我们的结果表明在山脉的这一部分弧岩浆作用的早期 开始。 显然,到了三叠纪晚期,该地区已经是一个隆起的 大陆弧边缘,类似于当今的安第斯山脉, 将火山物质脱落到现在 我们所测得的火山岩属于 测得的年龄范围,该岩层来自上三叠统Chinle 科罗拉多高原。因此,沿着拟议的莫哈韦-索诺拉巨型剪切带,不必 调用早期中生代弧地层的构造移除。

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  • 来源
    《GSA Bulletin》 |1990年第7期|961-968|共8页
  • 作者单位

    Laboratory of Isotope Geochemistry, Department of Geosciences, University of Arizona, Tucson, Arizona 85721;

    U.S. Geological Survey, M.S. 963, Federal Center, Denver, Colorado 80225;

    Laboratory of Isotope Geochemistry, Department of Geosciences, University of Arizona, Tucson, Arizona 85721;

    Laboratory of Isotope Geochemistry, Department of Geosciences, University of Arizona, Tucson, Arizona 85721;

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