Title of article
Pyrite multiple-sulfur isotope evidence for rapid expansion and contraction of the early Paleoproterozoic seawater sulfate reservoir
Author/Authors
Scott، نويسنده , , Clint and Wing، نويسنده , , Boswell A. and Bekker، نويسنده , , Andrey and Planavsky، نويسنده , , Noah J. and Medvedev، نويسنده , , Pavel and Bates، نويسنده , , Steven M. and Yun، نويسنده , , Misuk and Lyons، نويسنده , , Timothy W.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2014
Pages
10
From page
95
To page
104
Abstract
Earthʼs oxygenation is often described in terms of two unidirectional steps at the beginning and end of the Proterozoic Eon, separated by a long-lived intermediate redox state. Recent work defines a more complicated path to oxygenation, exemplified by an apparent drop in oxidation state following the early Paleoproterozoic Lomagundi carbon isotope excursion. The timing of this proposed drop in oxidation state is not well constrained, and it is not clear how it relates to redox conditions during the remainder of the Proterozoic. Here we present a study of pyrite multiple-sulfur isotopes, supported by Fe speciation and organic carbon isotopes, from early Paleoproterozoic black shales. We find evidence for the rapid expansion of the seawater sulfate reservoir during the Great Oxidation Event at ca. 2.3 Ga followed by a subsequent contraction in the size of the seawater sulfate reservoir at ca. 2.05 Ga. This scenario is consistent with the emerging view of a rise and fall in surface oxidation state during the early Paleoproterozoic. Comparison of our new data to other records of the seawater sulfate reservoir suggests that the elevated sulfate concentrations that characterize the early Paleoproterozoic did not return until the late Neoproterozoic.
Keywords
sulfur isotopes , Black Shales , Precambrian , seawater sulfate
Journal title
Earth and Planetary Science Letters
Serial Year
2014
Journal title
Earth and Planetary Science Letters
Record number
2332216
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