Search results for "DIAGENESI"

showing 10 items of 130 documents

High-resolution records of past and modern Pb exposure: Laser-ablation ICPMS profiles from tooth enamel

2006

We present compositional and isotopic profiles of past and modern tooth enamel aimed at reconstructing in-vivo Pb exposure at high spatial and time resolution. Focus is on dental enamel because of its sequential mineralization preserving time-series information, and due to its resistance to post-mortem diagenetic alteration. Examples include medieval Pb–Ag miners from SW Germany (Black Forest), the port of ancient Rome (Isola Sacra) for an assessment of the ‘Pb poisoning hypothesis’, and a modern Pb–Zn smelter village in NE NSW. (Sub-)ppb levels of U, LREEs, Y in soil-buried enamel resembling modern enamel are utilized as indicators for the preservation of pristine in-vivo concentrations. T…

Laser ablationEnamel paintDental enamelLife timeMineralogyHigh resolutionTime resolutionTooth enamelDiagenesisstomatognathic diseasesmedicine.anatomical_structurestomatognathic systemGeochemistry and Petrologyvisual_artvisual_art.visual_art_mediummedicineGeologyGeochimica et Cosmochimica Acta
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A genetic link between synsedimentary tectonics-expelled fluids, microbial sulfate reduction and cone-in-cone structures

2018

14 pages; International audience; The late Jurassic (Tithonian) marlstones of the Boulonnais area (English Channel, France) contains diagenetic carbonate beds and nodules. Some nodules exhibit cone-in-cone structures on their lower face. We studied such nodules using various techniques of imaging and chemical (major and trace-elements) and isotopic analyses (Ccarb, Corg, O and S stable isotopes). We interpret the cone-in-cone to be the end product of carbonate-nodule formation during early diagenesis. The diagenetic carbonate precipitation was induced by microbial activity (bacteria and(?) archeae) fueled by upward-migrating fluids. Fluid expulsion was itself triggered by synsedimentary fau…

Late jurassicgenetic structures010504 meteorology & atmospheric sciencesStratigraphyCone-in-cone structuresGeochemistryBoulonnais areaFault (geology)010502 geochemistry & geophysicsOceanography01 natural scienceschemistry.chemical_compound[SDU.STU.GC]Sciences of the Universe [physics]/Earth Sciences/GeochemistryHydrocarbon source-rocksSulfateEarly diagenesis0105 earth and related environmental sciencesgeographygeography.geographical_feature_categoryStable isotope ratioGeologyCarbonate nodulesDiagenesisTectonicsGeophysicschemistry[SDU.STU.ST]Sciences of the Universe [physics]/Earth Sciences/StratigraphyAnaerobic oxidation of methaneCarbonateEconomic Geologysense organsAnaerobic oxidation of methaneGeologyMarine and Petroleum Geology
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Prediction of alkaline earth elements in bone remains by near infrared spectroscopy.

2016

An innovative methodological approach has been developed for the prediction of the mineral element composition of bone remains. It is based on the use of Fourier Transform Near Infrared (FT-NIR) diffuse reflectance measurements. The method permits a fast, cheap and green analytical way, to understand post-mortem degradation of bones caused by the environment conditions on different skeletal parts and to select the best preserved bone samples. Samples, from the Late Roman Necropolis of Virgen de la Misericordia street and En Gil street located in Valencia (Spain), were employed to test the proposed approach being determined calcium, magnesium and strontium in bone remains and sediments. Coef…

Mean squared errorMineralogychemistry.chemical_element02 engineering and technologyResidual01 natural sciencesBone and BonesAnalytical Chemistrysymbols.namesakeMetals Alkaline EarthSpectroscopy Fourier Transform InfraredHumansMagnesiumBone mineralStrontiumSpectroscopy Near-InfraredChemistryFossils010401 analytical chemistryNear-infrared spectroscopyReproducibility of Results021001 nanoscience & nanotechnology0104 chemical sciencesDiagenesisFourier transformSpainStrontiumsymbolsCalciumDiffuse reflection0210 nano-technologyTalanta
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The late Hauterivian Faraoni "Oceanic Anoxic Event" at Río Argos (southern Spain): an assessment on the level of oxygen depletion.

2013

14 pages; International audience; An integrated study of multiple geochemical proxies (TOC, δ13Ccarb, trace metallic elements, iron speciation) on the late Hauterivian Faraoni Oceanic Anoxic Event has been performed along the hemi-pelagic section of Río Argos (south-eastern Spain) in order to better constrain the environmental perturbations linked to this event in the Subbetic domain. In the studied section, the TOC is relatively low (b0.5 wt.%) except for one sample at the base of the Faraoni horizon, where it reaches 1.5 wt.%. The δ13Ccarb signal is characterized by a minor long-term increase, primarily attributed to an enhanced organic matter burial. However, both organic and isotopic si…

Mediterranean climate010504 meteorology & atmospheric sciences[SDE.MCG]Environmental Sciences/Global ChangesIron cycle010502 geochemistry & geophysics[ SDU.STU.ST ] Sciences of the Universe [physics]/Earth Sciences/Stratigraphy01 natural sciencesLate HauterivianCarbon cyclePaleontologyIron cycleGeochemistry and Petrology[SDU.STU.GC]Sciences of the Universe [physics]/Earth Sciences/GeochemistryFaraoni EventOrganic matter0105 earth and related environmental scienceschemistry.chemical_classificationHorizon (archaeology)GeologyCarbon cycle[ SDU.STU.GC ] Sciences of the Universe [physics]/Earth Sciences/GeochemistryAnoxic watersOAEDiagenesis[ SDE.MCG ] Environmental Sciences/Global ChangeschemistryProductivity (ecology)Oxygen concentration variations[SDU.STU.ST]Sciences of the Universe [physics]/Earth Sciences/StratigraphyGeology
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Carbonate precipitation in the alkaline lake Specchio di Venere (Pantelleria Island, Italy) and the possible role of microbial mats

2016

Abstract Alkaline lakes like the hydrothermally affected lake Specchio di Venere (Pantelleria Island, Central Mediterranean) are typical geological settings harbouring calcified microbial mats. The present work is focused on the discrimination between biotic and abiotic processes driving carbonate precipitation in this lake, using hydrochemical, mineralogical and isotopic data. Hydrochemical analyses demonstrate that the lake is nearly 10−fold supersaturated with regard to aragonite and seasonally reaches hydromagnesite supersaturation. Microscopic observations depict organosedimentary laminated structures consisting of microbial communities and aragonitic precipitates, which are rather dis…

Mediterranean climate010504 meteorology & atmospheric sciencesδ13CAragoniteGeochemistryAuthigenicengineering.material010502 geochemistry & geophysics01 natural sciencesPollutionDiagenesisAlkaline lake Carbonate precipitation Hydrochemistry Pantelleriachemistry.chemical_compoundchemistry13. Climate actionGeochemistry and PetrologyengineeringEnvironmental ChemistryCarbonate14. Life underwaterMicrobial matHydromagnesiteGeology0105 earth and related environmental sciences
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In situ evidence for an ancient aqueous environment at Meridiani Planum, Mars.

2004

Sedimentary rocks at Eagle crater in Meridiani Planum are composed of fine-grained siliciclastic materials derived from weathering of basaltic rocks, sulfate minerals (including magnesium sulfate and jarosite) that constitute several tens of percent of the rock by weight, and hematite. Cross-stratification observed in rock outcrops indicates eolian and aqueous transport. Diagenetic features include hematite-rich concretions and crystal-mold vugs. We interpret the rocks to be a mixture of chemical and siliciclastic sediments with a complex diagenetic history. The environmental conditions that they record include episodic inundation by shallow surface water, evaporation, and desiccation. The …

Meridiani PlanumGeologic SedimentsExtraterrestrial EnvironmentGeochemistryMineralogyMarsWeatheringengineering.materialFerric CompoundsLifeConcretionExobiologyComposition of MarsSpacecraftgeographyMineralsMultidisciplinarygeography.geographical_feature_categorySulfatesSilicatesSpectrum AnalysisWaterDiagenesisVolcanic rockengineeringSedimentary rockSiliciclasticGeologySulfurScience (New York, N.Y.)
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The Opportunity Rover's Athena Science Investigation at Meridiani Planum, Mars

2004

The Mars Exploration Rover Opportunity has investigated the landing site in Eagle crater and the nearby plains within Meridiani Planum. The soils consist of fine-grained basaltic sand and a surface lag of hematite-rich spherules, spherule fragments, and other granules. Wind ripples are common. Underlying the thin soil layer, and exposed within small impact craters and troughs, are flat-lying sedimentary rocks. These rocks are finely laminated, are rich in sulfur, and contain abundant sulfate salts. Small-scale cross-lamination in some locations provides evidence for deposition in flowing liquid water. We interpret the rocks to be a mixture of chemical and siliciclastic sediments formed by e…

Meridiani PlanumGeologic SedimentsMineralsMultidisciplinaryExtraterrestrial EnvironmentAtmosphereSilicatesGeochemistryMarsWaterMineralogyWindMars Exploration Programengineering.materialFerric CompoundsDiagenesisImpact craterConcretionengineeringSiliciclasticSedimentary rockComposition of MarsSpacecraftEvolution PlanetaryGeologyScience
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Geochemical modeling of evaporation processes on Mars: Insight from the sedimentary record at Meridiani Planum

2005

New data returned from the Mars Exploration Rover (MER) mission have revealed abundant evaporites in the sedimentary record at Meridiani Planum. A working hypothesis for Meridiani evaporite formation involves the evaporation of fluids derived from the weathering of martian basalt and subsequent diagenesis. On Earth, evaporite formation in exclusively basaltic settings is rare. However, models of the evaporation of fluids derived from experimentally weathering synthetic martian basalt provide insight into possible formation mechanisms. The thermodynamic database assembled for this investigation includes both Fe2+ and Fe3+ in Pitzer's ion interaction equations to evaluate Fe redox disequilibr…

Meridiani PlanumMartianEvaporiteGeochemistryengineering.materialDiagenesisGeophysicsSpace and Planetary ScienceGeochemistry and PetrologyJarositeEarth and Planetary Sciences (miscellaneous)engineeringSedimentary rockComposition of MarsGeologyGeochemical modelingEarth and Planetary Science Letters
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Provenance and diagenesis of the evaporite-bearing Burns formation, Meridiani Planum, Mars

2005

Abstract Impure reworked evaporitic sandstones, preserved on Meridiani Planum, Mars, are mixtures of roughly equal amounts of altered siliciclastic debris, of basaltic provenance (40 ± 10% by mass), and chemical constituents, dominated by evaporitic minerals (jarosite, Mg-, Ca-sulfates ± chlorides ± Fe-, Na-sulfates), hematite and possibly secondary silica (60 ± 10%). These chemical constituents and their relative abundances are not an equilibrium evaporite assemblage and to a substantial degree have been reworked by aeolian and subaqueous transport. Ultimately they formed by evaporation of acidic waters derived from interaction with olivine-bearing basalts and subsequent diagenetic alterat…

Meridiani PlanumProvenanceEvaporiteGeochemistryHematiteCementation (geology)DiagenesisGeophysicsSpace and Planetary ScienceGeochemistry and Petrologyvisual_artEarth and Planetary Sciences (miscellaneous)visual_art.visual_art_mediumSiliciclasticSedimentologyGeologyEarth and Planetary Science Letters
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An astrobiological perspective on Meridiani Planum

2005

Sedimentary rocks exposed in the Meridiani Planum region of Mars record aqueous and eolian deposition in ancient dune and interdune playa-like environments that were arid, acidic, and oxidizing. On Earth, microbial populations have repeatedly adapted to low pH and both episodic and chronic water limitation, suggesting that, to a first approximation, the Meridiani plain may have been habitable during at least part of the interval when deposition and early diagenesis took place. On the other hand, the environmental conditions inferred for Meridiani deposition would have posed a challenge for prebiotic chemical reactions thought to have played a role in the origin of life on Earth. Orbital obs…

Meridiani PlanummicrobiologyGeochemistryastrobiologyMarsMars Exploration ProgramHematiteenvironmental historyAstrobiologyDiagenesisGeophysicsSpace and Planetary ScienceGeochemistry and PetrologyAbiogenesisMartian surfacevisual_artEarth and Planetary Sciences (miscellaneous)visual_art.visual_art_mediumAeolian processesSedimentary rockMeridiani PlanumGeology
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