Applications of the Osmium Isotopic System and Rhenium-Platinum Group Element Concentrations in Organic-Rich Mud Rocks from the Eagle Ford Formation, Texas: A Geochemistry and Redox Study

dc.contributor.advisorBrandon, Alan D.
dc.contributor.committeeMemberFu, Qi
dc.contributor.committeeMemberBergman, Steven C.
dc.creatorSullivan, Daniel Louis 1990-
dc.date.accessioned2019-09-14T01:26:19Z
dc.date.available2019-09-14T01:26:19Z
dc.date.createdMay 2017
dc.date.issued2017-05
dc.date.submittedMay 2017
dc.date.updated2019-09-14T01:26:19Z
dc.description.abstractThe concentration of Re and platinum group elements (Re-PGE) and 187Os/188Os ratios have been measured from ocean anoxic event 2 (OAE 2; ~94.87 - ~93.92 Ma) sediments from a West Texas core. The paleo-location of the core is the Comanche shelf near the southern mouth of the Cretaceous Western Interior Seaway (KWIS). Osmium geochemical data indicates a massive input of unradiogenic material to the oceans immediately before the onset of OAE 2. During OAE 2, two additional pulses of unradiogenic Os entered the oceans. One of these pulses correlates in time with the precipitation of mafic trace metals (e.g. Co, Cr, Sc) and the PGEs Pt, Ir, Ru, and Pd from ~94.60 Ma – 94.48 Ma, peaking at ~94.55 Ma. Osmium concentration has its third peak immediately before the peak of these elements at ~94.56 Ma, likely showing a high-resolution indication of when this PGE and trace metal-rich source entered the KWIS. These enrichments have been documented in other locations globally but the timings are not synchronous. In the Comanche Shelf, the time interval of the PGE and trace metal enrichment correlates with a shift to more oxic waters and cooling of global temperature. Some evidence includes bioturbation, a positive δ18O shift, and the reappearance of northern fauna Cyclonephelium compactum-C. membraniphorum into the KWIS via southward migration. The redox behavior of the PGEs in oceanic depositional settings is not well understood, but Cr is well studied. Chromium enrichment in oxic conditions is unusual because it creates mostly soluble species in such conditions. However, Cr6+ can precipitate in oxic conditions if replacing Mg in detrital sediments which is abundant in this interval. Iridium is known to complex with ferromanganese and organic material in oxic conditions, thus seeing a concentration increase in Ir makes sense. The source of these enrichments is most likely volcanic but an extraterrestrial source is also possible. Based on 187Os/188Os data, the end of massive LIP input to the oceans occurs at ~94.49 Ma and it takes ~570 Kyr for δ13C to shift back to pre-excursion values at ~93.92 Ma.
dc.description.departmentEarth and Atmospheric Sciences, Department of
dc.format.digitalOriginborn digital
dc.format.mimetypeapplication/pdf
dc.identifier.urihttps://hdl.handle.net/10657/4580
dc.language.isoeng
dc.rightsThe author of this work is the copyright owner. UH Libraries and the Texas Digital Library have their permission to store and provide access to this work. Further transmission, reproduction, or presentation of this work is prohibited except with permission of the author(s).
dc.subjectGeochemistry
dc.subjectOAE 2
dc.titleApplications of the Osmium Isotopic System and Rhenium-Platinum Group Element Concentrations in Organic-Rich Mud Rocks from the Eagle Ford Formation, Texas: A Geochemistry and Redox Study
dc.type.dcmiText
dc.type.genreThesis
thesis.degree.collegeCollege of Natural Sciences and Mathematics
thesis.degree.departmentEarth and Atmospheric Sciences, Department of
thesis.degree.disciplineGeology
thesis.degree.grantorUniversity of Houston
thesis.degree.levelMasters
thesis.degree.nameMaster of Science

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