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大氧化事件之前大陆架上的完全含氧水柱。

Fully oxygenated water columns over continental shelves before the Great Oxidation Event.

作者信息

Ostrander Chadlin M, Nielsen Sune G, Owens Jeremy D, Kendall Brian, Gordon Gwyneth W, Romaniello Stephen J, Anbar Ariel D

机构信息

School of Earth and Space Exploration, Arizona State University, Tempe, AZ, USA.

NIRVANA Laboratories, Woods Hole Oceanographic Institution, Woods Hole, MA, USA.

出版信息

Nat Geosci. 2019;12:186-191. doi: 10.1038/s41561-019-0309-7.

Abstract

Late Archaean sedimentary rocks contain compelling geochemical evidence for episodic accumulation of dissolved oxygen in the oceans along continental margins before the Great Oxidation Event. However, the extent of this oxygenation remains poorly constrained. Here we present thallium and molybdenum isotope compositions for anoxic organic-rich shales of the 2.5 billion-year-old Mount McRae Shale from Western Australia, which previously yielded geochemical evidence of a transient oxygenation event. During this event, we observe an anti-correlation between thalium and molybdenum isotope data, including two shifts to higher molybdenum and lower thalium isotope compositions. Our data indicate pronounced burial of manganese oxides in sediments elsewhere in the ocean at these times, which requires that water columns above portions of the ocean floor were fully oxygenated: all the way from the air-sea interface to well below the sediment-water interface. Well-oxygenated continental shelves were likely the most important sites of manganese oxide burial and mass-balance modeling results suggest that fully oxygenated water columns were at least a regional-scale feature of early-Earth's oceans 2.5 billion years ago.

摘要

太古宙晚期的沉积岩含有令人信服的地球化学证据,表明在大氧化事件之前,大陆边缘的海洋中曾间歇性地积累溶解氧。然而,这种氧化作用的程度仍然受到很大限制。在这里,我们展示了来自西澳大利亚25亿年前麦克雷山页岩的缺氧富含有机质页岩的铊和钼同位素组成,该页岩此前曾提供过短暂氧化事件的地球化学证据。在这一事件期间,我们观察到铊和钼同位素数据之间呈反相关,包括两次向更高钼和更低铊同位素组成的转变。我们的数据表明,此时海洋其他地方的沉积物中有大量锰氧化物埋藏,这意味着海底部分区域上方的水柱完全被氧化:从海气界面一直到沉积物 - 水界面以下很远的地方。充分氧化的大陆架可能是锰氧化物埋藏的最重要场所,质量平衡模拟结果表明,25亿年前地球早期海洋中充分氧化的水柱至少是区域尺度的特征。

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