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首页> 外文期刊>GSA Bulletin >Paleomagnetic and petrologic evidence bearing on the age and origin of uranium deposits in the Permian Cutler Formation, Lisbon Valley, Utah
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Paleomagnetic and petrologic evidence bearing on the age and origin of uranium deposits in the Permian Cutler Formation, Lisbon Valley, Utah

机译:与犹他州里斯本谷二叠纪卡特勒组铀矿床的年龄和成因有关的古磁和岩石学证据

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摘要

An approximate age for uranium deposits in red beds of the Permian Cutler Formation, Lisbon Valley salt anticline, Utah, was obtained using paleomagnetic techniques. Progressive thermal demagnetization of samples of mineralized sandstone isolates stable magnetization components having high (400 °C) unblocking temperatures that define a tilt-corrected mean direction of D = 358.1°, I = 65.5°, 95 = 3.3°. This direction is close to expected Late Cretaceous to middle Tertiary mean directions at Lisbon Valley. In contrast, thermal cleaning of samples of unmineralized sandstone isolates tilt-corrected southeasterly, shallow mean directions (D = 140.5°, I = –9.5°, 95 = 8.6°, and D = 155.9°, I = –4.4°, 95 = 10.9°, for two localities in the Lisbon Valley area). These results are closely similar to results from the Cutler Formation elsewhere on the Colorado Plateau and from other Lower Permian strata in North America. In unmineralized sandstone, the stable remanent magnetization is carried predominantly by martite of postdepositional or detrital origin, whereas in mineralized sandstone, the stable magnetization is carried largely by authigenic specular hematite as uranium- and vanadium-bearing clusters in interstitial areas, and it thus reflects the time of mineralization. Partial dissolution of martite grains and grain-coating ferric oxide pigment prior to formation of abundant interstitial specular hematite has minimized or eliminated the influence of late Paleozoic magnetic components in mineralized sandstone. These results, combined with information on the structural development of the Lisbon Valley area and on nearby uranium deposits in the Triassic Chinle Formation, suggest that the growth of the Lisbon Valley anticline during Late Cretaceous to early or middle Tertiary time promoted oxidative destruction of Chinle orebodies and led to a redistribution of uranium and iron from the Chinle into the Cutler. Acidic solutions generated during destruction of sulfide minerals in Chinle orebodies may account for the simultaneous transport of significant quantities of iron and uranium and for the partial dissolution of martite in the Cutler host beds. Neutralization of these solutions by reaction with host-rock constituents (especially calcite) caused precipitation of amorphous ferric oxide, which incorporated uranium by adsorption and which aged to form specular hematite.
机译:使用古磁技术获得了犹他州里斯本谷盐背斜的二叠系 Cutler组红层中铀矿床的近似年龄。矿化砂岩样品的逐步热退磁 分离出稳定的磁化 分量,这些分量具有较高的(400°C)解锁温度 ,定义了倾斜校正的平均方向D = 358.1°, I = 65.5°, 95 = 3.3°。这个方向接近于里斯本 谷的白垩纪至第三纪中期平均方向。相比之下,对未矿化的 砂岩样品进行热清洗可分离经倾斜校正的东南,浅均值 方向(D = 140.5°,I = –9.5°, 95 < / sub> = 8.6°, 且D = 155.9°,I = –4.4°, 95 = 10.9°,对于 的两个位置里斯本谷地区)。这些结果与来自科罗拉多高原其他地方的卡特勒组和北美其他下二叠系地层的结果非常相似。在未矿化的砂岩中,稳定的 磁化作用主要由沉积后的 或碎屑源的马氏体进行,而在矿化的砂岩中,进行稳定的 磁化主要由自生的镜面赤铁矿 作为间隙区域中含铀和钒的簇, 从而反映了矿化时间。在形成大量的间隙镜面赤铁矿之前,马氏体颗粒和部分包被的三氧化二铁颜料的部分溶解 已最小化或消除了晚古生代的影响。这些结果,结合有关里斯本谷地区构造发展的信息和附近的铀矿床的信息,结合了矿化砂岩中的磁性成分。sup> > 三叠纪Chinle形成,表明 里斯本谷背斜在白垩纪晚期至早期或中期 的第三纪生长促进了Chinle矿体的氧化破坏 ,并导致铀和铁从Chinle 重新分配到卡特勒。 Chinle矿体中硫化物矿物的破坏 期间产生的酸性溶液可能是 同时运输大量铁和 铀以及部分溶解的原因。卡特勒 床上的石。通过与 基质岩石成分(尤其是方解石)反应中和这些溶液,导致非晶态三氧化二铁沉淀 ,该三氧化二铁通过吸附 掺入铀,并且老化形成镜面赤铁矿。

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  • 来源
    《GSA Bulletin》 |1985年第6期|719-730|共12页
  • 作者单位

    U.S. Geological Survey, Federal Center, Box 25046, Denver, Colorado 80225;

    U.S. Geological Survey, Federal Center, Box 25046, Denver, Colorado 80225;

    U.S. Geological Survey, Federal Center, Box 25046, Denver, Colorado 80225;

    U.S. Geological Survey, Federal Center, Box 25046, Denver, Colorado 80225;

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