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首页> 外文期刊>Palaeogeography, Palaeoclimatology, Palaeoecology: An International Journal for the Geo-Sciences >Revised magnetostratigraphy of the Plio-Pleistocene sedimentary sequence of the Olduvai Formation (Tanzania)
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Revised magnetostratigraphy of the Plio-Pleistocene sedimentary sequence of the Olduvai Formation (Tanzania)

机译:经修订的Olduvai组(坦桑尼亚)的Plio-更新世沉积序列的地层学

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摘要

The magnetic stratigraphy of the Plio-Pleistocene sedimentary formation of the Olduvai Gorge (Tanzania), which contains a well known series of prehistoric pebble cultures and hominid remains, has been reinvestigated. Sixty one sites were sampled along 90 metres of stratigraphic section extending from the base of Bed I into the Masek Beds. Palaeo- and rock-magnetic analyses reveal that magnetizations are stable, carried by low coercivity magnetic minerals (titano-magnetites) and are likely to be of depositional origin. A revised magnetostratigraphic scale is proposed. The base of the major normal magnetozone, N1, interpreted as the Olduvai sub-chron, lies ca 6 m below Tuff IA, i.e. significantly below the previously defined position. This revision, associated to 40Ar/39Ar ages recently determined on the Tuffs of Bed I, supports the validity of the astronomical calibration of the geomagnetic polarity time scale for the Olduvai sub-chron. The correlation of the normal magnetozone N2 with Jaramillo (or Jaramillo + Cobb Mountain), is suggested by the discovery of a reverse magnetozone (R3) in the uppermost part of the Pleistocene sequence (Masek Beds), and implies that the fossiliferous sequence of the Olduvai Formation was entirely deposited before the Brunhes/Matuyama boundary.
机译:奥杜瓦伊峡谷(坦桑尼亚)的上新世更新世沉积地层的磁性地层学已被重新研究,其中包含一系列著名的史前卵石文化和原始人类遗骸。在从第I层底部延伸至Masek层的90米地层剖面中,对61个位置进行了采样。古磁场和岩磁分析表明,磁化作用是稳定的,由低矫顽力磁性矿物(钛铁矿磁铁矿)携带,并且很可能是沉积成因的。提出了修订的磁地层学规模。主要的正常磁区N1的底部被解释为Olduvai次时,位于Tuff IA下方约6 m,即大大低于先前定义的位置。该修订版与最近在I床凝灰岩上确定的40Ar / 39Ar年龄有关,支持了Olduvai子年代的地磁极性时标的天文校准的有效性。正常磁区N2与Jaramillo(或Jaramillo + Cobb山)的相关性,是由在更新世序列最上部(Masek床)中发现的反向磁区(R3)所暗示的,这暗示了该区的化石序列。 Olduvai组完全沉积在Brunhes / Matuyama边界之前。

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