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对斯图尔特雪球地球的 Re-Os 地质年代学和 Os-Sr 同位素耦合约束。

Re-Os geochronology and coupled Os-Sr isotope constraints on the Sturtian snowball Earth.

机构信息

Department of Earth and Planetary Sciences, Harvard University, Cambridge, MA 02138.

出版信息

Proc Natl Acad Sci U S A. 2014 Jan 7;111(1):51-6. doi: 10.1073/pnas.1317266110. Epub 2013 Dec 16.

Abstract

After nearly a billion years with no evidence for glaciation, ice advanced to equatorial latitudes at least twice between 717 and 635 Mya. Although the initiation mechanism of these Neoproterozoic Snowball Earth events has remained a mystery, the broad synchronicity of rifting of the supercontinent Rodinia, the emplacement of large igneous provinces at low latitude, and the onset of the Sturtian glaciation has suggested a tectonic forcing. We present unique Re-Os geochronology and high-resolution Os and Sr isotope profiles bracketing Sturtian-age glacial deposits of the Rapitan Group in northwest Canada. Coupled with existing U-Pb dates, the postglacial Re-Os date of 662.4 ± 3.9 Mya represents direct geochronological constraints for both the onset and demise of a Cryogenian glaciation from the same continental margin and suggests a 55-My duration of the Sturtian glacial epoch. The Os and Sr isotope data allow us to assess the relative weathering input of old radiogenic crust and more juvenile, mantle-derived substrate. The preglacial isotopic signals are consistent with an enhanced contribution of juvenile material to the oceans and glacial initiation through enhanced global weatherability. In contrast, postglacial strata feature radiogenic Os and Sr isotope compositions indicative of extensive glacial scouring of the continents and intense silicate weathering in a post-Snowball Earth hothouse.

摘要

经过近十亿年的时间,没有冰川作用的证据,至少在 7.17 亿至 6.35 亿年前,冰曾两次推进到赤道纬度地区。尽管这些新元古代雪球地球事件的启动机制仍然是个谜,但罗迪尼亚超大陆裂解、大规模火成岩省在低纬度地区的就位以及斯图尔特冰期的开始具有广泛的同步性,这表明存在构造驱动。我们提出了独特的 Re-Os 年代学和高精度 Os 和 Sr 同位素剖面,这些数据可以限定加拿大西北部 Rapitan 群的斯图尔特冰期冰川沉积物的年龄。结合现有的 U-Pb 年代数据,662.4 ± 3.9 Mya 的后冰川 Re-Os 年龄代表了同一大陆边缘上 Cryogenian 冰川作用开始和结束的直接地质年代学约束,表明斯图尔特冰期持续了 5500 万年。Os 和 Sr 同位素数据使我们能够评估古老放射性地壳和更年轻的、地幔源基底的相对风化输入。前冰川同位素信号与通过增强全球风化性向海洋中输入更多年轻物质以及引发冰川作用相一致。相比之下,后冰川地层的放射性 Os 和 Sr 同位素组成表明,在雪球地球温室效应结束后,大陆经历了强烈的冰川侵蚀和强烈的硅酸盐风化。

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