4.7 Article

Rock magnetic identification and geochemical process models of greigite formation in Quaternary marine sediments from the Gulf of Mexico (IODP Hole U1319A)

期刊

EARTH AND PLANETARY SCIENCE LETTERS
卷 275, 期 3-4, 页码 233-245

出版社

ELSEVIER
DOI: 10.1016/j.epsl.2008.07.034

关键词

marine sediments; rock magnetism; Gulf of Mexico; IODP Expedition 308; greigite; pyrite; diagenesis; sulfate methane transition; non-steady state

资金

  1. U.S. National Science Foundation
  2. Jacobs University Bremen
  3. Deutsche Forschungsgemeinschaft [Do705/2]
  4. MARUM Center for Marine Environmental Sciences [C1]

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A 160 m mostly turbiditic late Pleistocene sediment sequence (IODP Expedition 308, Hole U1319A) from the Brazos-Trinity intraslope basin system off Texas was investigated with paleo- and rock magnetic methods. Numerous layers depleted in iron oxides and enriched by the ferrimagnetic iron-sulfide mineral greigite (Fe3S4) were detected by diagnostic magnetic properties. From the distribution of these layers, their stratigraphic context and the present geochemical zonation, we develop two conceptual reaction models of greigite formation in non-steady depositional environments. The sulfidization model predicts single or twin greigite layers by incomplete transformation of iron monosulfides with polysulfides around the sulfate methane transition (SMT). The oxidation model explains greigite formation by partial oxidation of iron monosulfides near the iron redox boundary during periods of downward shifting oxidation fronts. The stratigraphic record provides evidence that both these greigite formation processes act here at typical depths of about 12-14 mbsf and 3-4 mbsf. Numerous fossil greigite layers most likely preserved by rapid upward shifts of the redox zonation denote past SMT and sea floor positions characterized by stagnant hemipelagic sedimentation conditions. Six diagenetic stages from a pristine magnetite-dominated to a fully greigite-dominated magnetic mineralogy were differentiated by combination of various hysteresis and remanence parameters. (c) 2008 Published by Elsevier B.V.

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