4.5 Article

Constraints on the late Ediacaran sulfur cycle from carbonate associated sulfate

期刊

PRECAMBRIAN RESEARCH
卷 290, 期 -, 页码 113-125

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.precamres.2017.01.004

关键词

Sulfur isotopes; Neoproterozoic; Ediacaran; Superheavy pyrite; Method development; Carbonate-associated sulfate

资金

  1. NERC's Life
  2. Planet project [NE/1005978/1]
  3. NERC [NE/P013643/1, NE/I00596X/1, NE/J017930/1] Funding Source: UKRI
  4. Natural Environment Research Council [NE/I00596X/1, NE/J017930/1, NE/P013643/1, 1220713] Funding Source: researchfish

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We report new sulfur isotope compositions (delta S-34) in carbonate associated sulfate (CAS) and pyrite from the lower Nama Group, Namibia (similar to 550 to <547 Ma), and use these data to interrogate terminal Ediacaran sulfur cycle dynamics. Our extraction method utilizes an improved pre-leaching procedure that reduces the likelihood of contamination from matrix-bound sulfur. Data generated with the improved extraction method show CAS delta S-34 as much as 12%, higher (S-34-enriched) than previously reported which suggests a reevaluation of the phenomenon of 'superheavy' pyrite. The average delta S-34 of seawater sulfate increases from 30 to 38%0 in the lower Nama Group, and we correlate this rise in delta S-34 among contemporaneous marine basins. Global seawater sulfate delta S-34 >35% is highly unusual in Earth history, and in the terminal Ediacaran is best explained by a high pyrite burial flux. Pyrite in the Nama Group is close in isotopic composition to coeval sulfate, but the sulfur isotope fractionation between sulfate and pyrite varies widely among different studied basins, suggesting highly heterogeneous redox and depositional conditions. (C) 2017 Elsevier B.V. All rights reserved.

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