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Provenance of the ice-cored moraine at Mt. Achernar, Law Glacier, Antarctica

机译:冰山冰ora的来源南极法律冰川阿彻纳尔

摘要

Glacial till from the Mt. Achernar moraine (MAM) records pre- and post- last glacial maximum (LGM) compositional variability of an East Antarctic moraine sequence through time and space. Pebble lithology, detrital zircon geochronology, and till geochemistry were analyzed on samples from a 6.5 km transect. Hummocky topography occurs with the most recently exposed material along the active ice margin (Zone 1), followed by a relatively flat and low region (Zone 2), and then a series of ~2 m high parallel/sub-parallel ridges and troughs accompanied by distinct color changes that are directly related to the dominant lithology of the region (Zones 3–5). Zone 3 is dominated by ~38% more sedimentary rocks than adjacent zones and has an overall shape of a broad arch superimposed with smaller ridges. Zone 4 is composed of distinct colored bands that alternate between dominant sedimentary and mafic igneous lithologies. These dominant sedimentary and intermediate/mafic igneous rocks for all Zones are interpreted to be primarily the Beacon and Ferrar Supergroup rocks respectively. The U/Pb data from the till is consistent with a Beacon Supergroup source as samples consistently show significant populations from the Permian ~250-260 Ma, the Proterozoic ~565–600 Ma, ~950–1270 Ma, and ~2300-2320 Ma, as well as (and) the late Archean ~2700-2770 Ma. The Pagoda, Mackellar, Buckley, and Fremouw Formations are potential sources of the detrital zircons. When paired with surface exposure ages, the U/Pb data indicates that the debris source has been consistent over the past ~555 ka, implying relatively stable ice sheet behavior. However, ice sheet change is indicated by a trim line present on Mt. Achernar that can be traced back to the boundary between Zones 3 and 4, as well as a change in pebble lithology, geochemistry, and morphology of Zone 3. Zone 3 records a time of ice sheet thickening and a change in provenance during the LGM. Zone 4 is pre-LGM, Zone 2 records deglaciation, and Zone 1 is still actively connected to the Law Glacier. This study reveals the broader importance of using multiple provenance techniques when interpreting provenance changes in till over time.
机译:从山到冰川阿彻纳尔冰ora(MAM)记录了南极冰m序列在时间和空间上前后的最大冰期(LGM)组成变化。对6.5 km断面的样品进行卵石岩性,碎屑锆石年代学和直到地球化学的分析。丘状地形发生在活动冰缘上(区域1),最近暴露的物质,随后是一个相对平坦且较低的区域(区域2),然后出现一系列〜2 m的平行/次平行高脊和波谷通过与该地区主要岩性直接相关的明显颜色变化(区域3-5)。 3区的沉积岩比相邻3区多约38%,其总体形状为宽拱形,并有较小的山脊。 4区由明显的彩色带组成,这些带在主要的沉积岩性和镁铁质火成岩岩性之间交替。所有区域的这些主要沉积和中/基性火成岩分别被解释为主要是信标岩和费拉尔超群岩。到此为止的U / Pb数据与信标超群来源一致,因为样品始终显示出二叠纪〜250-260 Ma,元古代〜565-600 Ma,〜950-1270 Ma和〜2300-2320 Ma的大量种群,以及(和)已故的太古宙〜2700-2770 Ma。塔,Mackellar,Buckley和Fremouw地层是碎屑锆石的潜在来源。当与表面暴露年龄配对时,U / Pb数据表明,在过去〜555 ka期间,碎片源一直是一致的,这意味着冰盖行为相对稳定。但是,冰盖的变化由Mt上的修整线指示。 Achernar可以追溯到3区和4区之间的边界,以及卵石岩性,地球化学和3区的形态变化。3区记录了LGM期间冰盖增厚的时间和物源的变化。区域4是LGM之前的区域,区域2记录有冰消作用,区域1仍与Law Lawcier保持活跃连接。这项研究揭示了在解释耕种随时间推移的变化时,使用多种种源技术的更广泛的重要性。

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    Bader Nicole Ann;

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