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Effect of late Cenozoic aridification on sedimentation in the Eastern Cordillera of northwest Argentina (Angastaco basin)

机译:晚新生代干旱化对阿根廷西北部东部山脉(安加斯塔科盆地)沉积的影响

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摘要

This study evaluates the effect of climate on facies, grain size, and sedimentation rates using sedimentology, geochronology, and stable isotope geochemistry for Miocene–Pliocene deposits in the Angastaco basin (Eastern Cordillera, northwest Argentina). U-Pb zircon data from ash layers constrain the transition between the finer grained fluvial-lacustrine Palo Pintado Formation and the coarser grained fluvial-alluvial San Felipe Formation to ca. 5.2 Ma and the first deposition of sediment derived from the present-day orographic barrier to ca. 4 Ma. 13C values from pedogenic carbonate nodules range from –15.4 to –10.2 for the Palo Pintado Formation and from –9.5 to –8.2 for the San Felipe Formation; this can be best explained by increased, sustained aridity since ca. 5 Ma. The 18O values range from –9.6 to –5.9 for the Palo Pintado Formation and from –6.1 to –5.2 for the San Felipe Formation, corroborating this interpretation. The shift toward more arid conditions correlates with a significant increase in grain size but no significant change in sedimentation rate. Because aridity precedes the development of an orographic effect, we interpret the grain size increase in the Angastaco basin since ca. 5 Ma to be a response of the sedimentary system to aridification resulting from regional climate change.
机译:这项研究使用沉积学,年代学, 和中新世-上新世沉积物的稳定同位素地球化学评估了气候对相,晶粒 和沉积速率的影响。 >在Angastaco盆地(阿根廷西北部的东部山脉)。 灰层中的U-Pb锆石数据约束了 细粒河流-湖相Palo Pintado组之间的过渡> 和较粗粒的河流冲积层San Felipe地层 5.2 Ma和 当今对ca. 4麻帕洛平达多组的 碳酸盐岩结核中的 13 C值在–15.4至–10.2之间,而在圣费利佩组中则在–9.5至–8.2之间。自以来 持续干旱增加,可以最好地解释这一点。 5毫Palo Pintado组的 18 O值 在–9.6至–5.9之间,圣费利佩组的 在–6.1至–5.2之间, 证实了这一解释。向更干旱 条件的转变与晶粒尺寸 的显着增加相关,但沉降速率没有显着变化。由于干旱 优先于地形效应的发展,因此我们解释 自约Ca.以来安纳斯塔科盆地的晶粒尺寸增加。 5 Ma 是沉积系统对区域气候变化导致的干旱化的响应。

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  • 来源
    《Geology》 |2010年第3期|235-238|共4页
  • 作者单位

    Department of Geology and Geophysics, University of Wyoming, 1000 E University Avenue, Laramie, Wyoming 82071, USA;

    Department of Geology and Geophysics, University of Wyoming, 1000 E University Avenue, Laramie, Wyoming 82071, USA;

    Department of Geology and Geophysics, University of Wyoming, 1000 E University Avenue, Laramie, Wyoming 82071, USA;

    School of Earth Sciences, Ohio State University, 275 Mendenhall Laboratory, 125 South Oval Mall, Columbus, Ohio 43210, USA;

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