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在超大陆形成过程中,大气中的硫被循环到结晶大陆地壳中。

Atmospheric sulfur is recycled to the crystalline continental crust during supercontinent formation.

机构信息

Département de géologie et de génie géologique, Université Laval, Pavillon Adrien-Pouliot 1065, av. de la Médecine, Bureau 4309, Québec, QC, G1V 0A6, Canada.

Centre for Exploration Targeting, ARC Centre of Excellence for Core to Crust Fluid Systems (CCFS), School of Earth Sciences, University of Western Australia, 35 Stirling Highway, Crawley, WA, 6009, Australia.

出版信息

Nat Commun. 2018 Oct 22;9(1):4380. doi: 10.1038/s41467-018-06691-3.

Abstract

The sulfur cycle across the lithosphere and the role of this volatile element in the metasomatism of the mantle at ancient cratonic boundaries are poorly constrained. We address these knowledge gaps by tracking the journey of sulfur in the assembly of a Proterozoic supercontinent using mass independent isotope fractionation (MIF-S) as an indelible tracer. MIF-S is a signature that was imparted to supracrustal sulfur reservoirs before the ~2.4 Ga Great Oxidation Event. The spatial representation of multiple sulfur isotope data indicates that successive Proterozoic granitoid suites preserve ΔS up to +0.8‰ in areas adjacent to Archean cratons. These results indicate that suturing of cratons began with devolatilisation of slab-derived sediments deep in the lithosphere. This process transferred atmospheric sulfur to a mantle source reservoir, which was tapped intermittently for over 300 million years of magmatism. Our work tracks pathways and storage of sulfur in the lithosphere at craton margins.

摘要

岩石圈中的硫循环以及这种挥发性元素在古老克拉通边界地幔交代作用中的作用还没有得到很好的控制。我们通过使用质量独立同位素分馏(MIF-S)作为不可磨灭的示踪剂来追踪前寒武纪超大陆组装过程中硫的旅程,从而解决了这些知识空白。MIF-S 是在~24 亿年前的大氧化事件之前赋予上地壳硫库的特征。多个硫同位素数据的空间表示表明,相邻太古克拉通的一系列元古代花岗岩套保留了高达+0.8‰的ΔS。这些结果表明,克拉通的缝合始于岩石圈深处俯冲沉积物的去挥发作用。这个过程将大气中的硫转移到地幔源储层,这个源储层间歇性地为超过 3 亿年的岩浆作用提供了硫。我们的工作追踪了克拉通边缘岩石圈中硫的路径和储存。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86f3/6197212/cf348d93a7cd/41467_2018_6691_Fig1_HTML.jpg

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