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Geological and archaeological implications of strontium isotope analysis of exposed bedrock in the Chicxulub crater basin, northwestern Yucatan, Mexico

机译:墨西哥尤卡坦州西北Chicxulub火山口盆地裸露的基岩锶锶同位素分析的地质和考古意义

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摘要

The surface geology of the site of the Chicxulub impact crater in northwestern Yucatán, Mexico, has not been studied extensively since the discovery of the crater almost two decades ago. Strontium isotope (87Sr/86Sr) measurements in carbonate rock outcrops reveal near-uniform strontium signatures of 0.70905 inside the ring of cenotes (water-filled sinkholes), which represents the rim of the crater basin. Measured strontium isotope ratios were used to infer rock ages, employing the marine Sr isotope curve. We estimate the age of the exposed limestone within the Chicxulub crater basin to be late Miocene to early Pliocene, representing the age of the youngest sediment fill. Discovery of a large terrain of near-uniform strontium isotope ratios in northwestern Yucatán offers new geoarchaeological opportunities to track ancient Maya migration and determine sources of manufactured goods. Our results have implications for applying the Sr isotope method to Maya archaeological sites, such as Mayapán, the last Maya capital, and Chichén Itzá.
机译:自从发现火山口近二十年以来,尚未对墨西哥西北部尤卡坦州奇克苏鲁布撞击坑的表面地质情况进行过广泛的研究。 sup> ago。碳酸盐 岩石露头中锶同位素( 87 Sr / 86 Sr)的测量显示出0.70905 的锶特征几乎一致。在cenotes(充满水的污水坑)的环内,它表示火山口盆地的边缘。利用海洋中的Sr同位素 曲线,将测得的锶同位素比 用于推断岩石年龄。我们估计 Chicxulub火山口盆地中裸露的石灰石的年龄为中新世晚期至上新世早期, 代表了最年轻的沉积物填充的年龄。在尤卡坦州西北部发现一个具有近乎均匀的锶同位素比的大地形 ,提供了新的地质考古 机会,可以追踪古代玛雅人的迁徙并确定 制成品的来源。我们的研究结果对将Sr同位素方法应用于玛雅考古遗址(例如玛雅人的最后首都玛雅潘和奇琴伊察(Chechén Itzá))进行了启示。 sup>

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  • 来源
    《Geology》 |2009年第8期|723-726|共4页
  • 作者单位

    Geological Institute, ETH Zurich, Sonneggstrasse 5, 8092 Zurich, Switzerland|Department of Geological Sciences & Land Use and Environmental Change Institute (LUECI), University of Florida, 241 Williamson Hall, Gainesville, Florida 32611, USA;

    Department of Geological Sciences & Land Use and Environmental Change Institute (LUECI), University of Florida, 241 Williamson Hall, Gainesville, Florida 32611, USA|Godwin Laboratory for Palaeoclimate Research, Department of Earth Sciences, University of Cambridge, Downing Street, Cambridge CB2 3EQ, UK;

    Department of Geological Sciences & Land Use and Environmental Change Institute (LUECI), University of Florida, 241 Williamson Hall, Gainesville, Florida 32611, USA;

    Department of Geological Sciences & Land Use and Environmental Change Institute (LUECI), University of Florida, 241 Williamson Hall, Gainesville, Florida 32611, USA;

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