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大氧化事件后有机质大规模氧化的同位素证据。

Isotopic evidence for massive oxidation of organic matter following the great oxidation event.

机构信息

Department of Geosciences, Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Science. 2011 Dec 23;334(6063):1694-6. doi: 10.1126/science.1213999. Epub 2011 Dec 1.

Abstract

The stable isotope record of marine carbon indicates that the Proterozoic Eon began and ended with extreme fluctuations in the carbon cycle. In both the Paleoproterozoic [2500 to 1600 million years ago (Ma)] and Neoproterozoic (1000 to 542 Ma), extended intervals of anomalously high carbon isotope ratios (δ(13)C) indicate high rates of organic matter burial and release of oxygen to the atmosphere; in the Neoproterozoic, the high δ(13)C interval was punctuated by abrupt swings to low δ(13)C, indicating massive oxidation of organic matter. We report a Paleoproterozoic negative δ(13)C excursion that is similar in magnitude and apparent duration to the Neoproterozoic anomaly. This Shunga-Francevillian anomaly may reflect intense oxidative weathering of rocks as the result of the initial establishment of an oxygen-rich atmosphere.

摘要

海洋碳的稳定同位素记录表明,元古宙的开端和结束都伴随着碳循环的剧烈波动。在古元古代(25 亿至 16 亿年前)和新元古代(10 亿至 5.42 亿年前),碳同位素比值(δ(13)C)异常高的延长间隔表明有大量的有机质埋藏和氧气释放到大气中;在新元古代,高δ(13)C 间隔被突然转为低δ(13)C 的急剧波动所打断,表明有机质的大规模氧化。我们报告了一个古元古代的负δ(13)C 漂移,其幅度和明显持续时间与新元古代的异常相似。这个 Shunga-Francevillian 异常可能反映了初始富氧大气形成时岩石的强烈氧化风化。

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