首页> 外文期刊>Journal of Sedimentary Research >The Middle Proterozoic Mescal Paleokarst, Central Arizona, U.S.A.: Karst Development, Silicification, and Cave Deposits
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The Middle Proterozoic Mescal Paleokarst, Central Arizona, U.S.A.: Karst Development, Silicification, and Cave Deposits

机译:美国亚利桑那州中元古代中古生界古喀斯特:岩溶发育,硅化作用和洞穴沉积

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摘要

A regionally extensive paleokarst developed on the Mescal Limestone of the middle Proterozoic Apache Group in central Arizona prior to deposition of the overlying middle Proterozoic Troy Quartzite and before intrusion of 1.1 Ga diabase sills. Intense weathering of middle Proterozoic basalt lavas overlying the Mescal released abundant silica that led to widespread silicification of the underlying paleokarst. Dissolution of the host carbonate allowed insoluble early diagenetic cherts of the Mescal to accumulate in their original stratigraphy while the remaining carbonate underwent nearly complete replacement by secondary silica phases. Silicified collapse breccias, cave-filling sandstone lenses, thinly laminated cave-floor siltstone, and newly discovered flowstone indicate extensive development of caves and cave deposits during the karst event. The geographic distribution of silicification was controlled by adjacent uplift caused by movement along Precambrian monoclines cutting across the Sierra Ancha. The Mescal paleokarst is one of the best preserved silicified karsts on Earth and hosts some of the best preserved cave flowstone from the Precambrian.
机译:之前在亚利桑那州中部元古代阿帕奇群的Mescal石灰岩 上发育了一个区域广泛的古岩溶,沉积了上覆的中元古代特洛伊石英岩 ,并且侵入1.1 Ga辉绿岩基岩之前。覆盖在Mescal上的中元古代玄武岩熔岩的强烈风化 丰富的硅石导致了 下古喀斯特广泛的硅化作用。基质碳酸盐的溶解使 不溶的Mescal早成岩石在其原始地层中积累 ,而其余的碳酸盐 几乎全部被次生置换。二氧化硅相。 硅质崩塌角砾岩,溶洞砂岩透镜, 薄层状的层积粉砂岩和新发现的 流石表明洞穴的广泛发育和岩溶事件期间的洞穴沉积物 。硅化作用 的地理分布是由沿前寒武纪 山体横穿塞拉山脉的运动引起的邻近隆升控制的。梅斯卡尔古火山岩 是地球上保存最完好的硅化岩溶之一, 拥有一些前寒武纪保存最完好的洞穴流石。

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  • 来源
    《Journal of Sedimentary Research》 |2007年第12期|1046-1062|共17页
  • 作者单位

    Arizona State University, Department of Geological Sciences, P.O. Box 871404, Tempe, Arizona 85287-1404, U.S.A.;

    Arizona State University, Department of Geological Sciences, P.O. Box 871404, Tempe, Arizona 85287-1404, U.S.A.;

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