Search results for " Trace element"

showing 10 items of 75 documents

An overview of the geochemical characteristics of oceanic carbonatites: New insights from Fuerteventura carbonatites (Canary islands)

2021

The occurrence of carbonatites in oceanic settings is very rare if compared with their continental counterpart, having been reported only in Cape Verde and Canary Islands. This paper provides an overview of the main geochemical characteristics of oceanic carbonatites, around which many debates still exist regarding their petrogenesis. We present new data on trace elements in minerals and whole-rock, together with the first noble gases isotopic study (He, Ne, Ar) in apatite, calcite, and clinopyroxene from Fuerteventura carbonatites (Canary Islands). Trace elements show a similar trend as Cape Verde carbonatites, almost tracing the same patterns on multi-element and REE abundance diagrams. 3…

CalciteCape Verdelcsh:Mineralogylcsh:QE351-399.2010504 meteorology & atmospheric sciencesCape Verde Fuerteventura Noble gases isotopes Oceanic carbonatites Trace elementsnoble gases isotopesGeochemistrytrace elementsGeology010502 geochemistry & geophysicsGeotechnical Engineering and Engineering Geology01 natural sciencesLithospheric mantleMantle (geology)Cape verdeFuerteventurachemistry.chemical_compoundchemistryCarbonatiteoceanic carbonatitesGeology0105 earth and related environmental sciencesPetrogenesis
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Geochemical characteristics of waters in mineralised area of Peloritani Mountains (Sicily, Italy)

2009

Abstract This paper presents the results of a study on the geochemistry of waters circulating in the mineralised area of the south-eastern sector of Mt. Peloritani (north-eastern Sicily, Italy), aimed at basic understanding of the geochemical processes influencing their chemical composition. Chemico-physical parameters and data on 26 major and minor chemical elements are reported for 103 water samples. Water chemistry is mainly dominated by dissolution of carbonates and hydrolysis of aluminosilicate minerals. Total dissolved salts (TDS) range from 80 to 1398 mg/L. All the waters exhibit E H characteristic of an oxygenated environment. Excluding two samples, which show very high H + activity…

ChemistryDolomiteCarbonate mineralsGeochemistryTrace elementWeatheringPollutionSettore GEO/08 - Geochimica E Vulcanologiachemistry.chemical_compoundmineralised area trace elements hydrogeochemistryGeochemistry and PetrologyEnvironmental ChemistryKaoliniteCarbonateClay mineralsChemical compositionApplied Geochemistry
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Sicilian bottled natural waters: Major and trace inorganic components

2013

Sixteen bottled waters of various Sicilian brands, 11 natural mineral waters and five normal drinking waters, were analyzed for major and trace inorganic components by ion chromatography (IC) and inductively coupled plasma-mass spectrometry (ICP-MS), respectively. The bottled waters represent a variety of water types with significantly different compositions in terms of salinity, major components and trace elements. Chemically, they range from Ca–HCO3 and Ca–SO4 to Na–HCO3 types. Total dissolved solids ranges from 54 to 433 mg/L, total hardness from 25 to 238 mg/L CaCO3, and measured Na content from 5.7 to 57 mg/L. According to total dissolved ions, all the bottled waters were classified as…

ChemistryIon chromatographyBottled waterMass spectrometryTotal dissolved solidsPollutionSettore GEO/08 - Geochimica E VulcanologiaSalinityNutrientGeochemistry and PetrologyEnvironmental chemistryEnvironmental ChemistryWater qualitybottled natural waters major and trace elements municipal watersChemical compositionApplied Geochemistry
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The impact of the Little ice age on coccolithophores in the central Mediterranea Sea

2010

The Little Ice Age (LIA) is the last episode of a series of Holocene climatic anomalies. There is still little knowledge on the response of the marine environment to the pronounced cooling of the LIA and to the transition towards the 20th century global warming. Here we present decadal-scale coccolithophore data from four short cores recovered from the central Mediterranean Sea (northern Sicily Channel and Tyrrhenian Sea), which on the basis of <sup>210</sup>Pb activity span the last 200–350 years. The lowermost part of the record of one of the cores from the Sicily Channel, Station 407, which extends down to 1650 AD, is characterized by drastic changes in productivity. Specific…

Coccolithophorelcsh:Environmental protectionStratigraphyAntarctic sea iceLittle ice ageMediterranean seaWater columnlcsh:Environmental pollutionMediterranean SeaCoccolithophoreslcsh:TD169-171.8lcsh:Environmental sciencesHoloceneLIAlcsh:GE1-350Global and Planetary ChangebiologyCoccolithophores trace elements geochemistryGlobal warmingPaleontologybiology.organism_classificationOceanographyProductivity (ecology)lcsh:TD172-193.5Little Ice AgeHydrographyGeology
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Rare earths and trace elements contents in leaves: A new indicator of the composition of atmospheric dust

2017

The relationship between the trace element distribution in atmospheric particles and leaves of some exposed plants in the environment was recently demonstrated. This indication would suggest that the trace element analysis of leaves in these plants could provide information about the composition, nature and origin of the atmospheric dust dispersed in the environment. In order to corroborate this hypothesis, the distribution of trace elements and Rare Earths were studied in leaves of some endemic plants, in the atmospheric fallout and in soils of rural, urban and industrial ecosystems in Sicily. These elements have been chosen to discriminate the source and nature of different source on atmo…

Environmental Engineering010504 meteorology & atmospheric sciencesHealth Toxicology and MutagenesisSettore AGR/13 - Chimica Agraria010501 environmental sciencesPlant Roots01 natural sciencesSoilREE La anomaly Leaves anthropogenic signature trace elementsEnvironmental ChemistryEcosystemSoil compositionSicily0105 earth and related environmental sciencesAtmosphereAnomaly (natural sciences)Public Health Environmental and Occupational HealthTrace elementDustGeneral MedicineGeneral ChemistryAtmospheric dustPollutionTrace ElementsSettore GEO/08 - Geochimica E VulcanologiaPlant LeavesTrace (semiology)Environmental chemistrySoil waterEnvironmental scienceMetals Rare EarthComposition (visual arts)Environmental MonitoringChemosphere
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Passive degassing at Nyiragongo (D.R. Congo) and Etna (Italy) volcanoes: the chemical characterization of the emissions and assessment of their uptak…

2014

Etna Nyiragongo trace elements emissions
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SEW – Save the Etna World

2017

At more than 3,330 m high and ~40 km wide, Mount Etna in Sicily, Italy, is the highestvolcano in Europe and one of the most active in the world. Etna stands majesticwherever you look at it, showing a distinctive skyline from each side. More than 200,000people live around its mid-slopes, while another 300,000 are in the biggest city, Catania,located at its southern lower slope. The volcano is so imposing that there are manydifferent landscapes and habitats, often highly dissimilar. Ente Parco dell’Etna (EtnaPark) is the institution, started in 1987, covering the core of the volcano, protecting itsbiodiversity, ecosystems and landscapes, and lastly promoting the sustainabledevelopment of loca…

Etna Trace elements VolcanoesSettore GEO/08 - Geochimica E Vulcanologia
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Dissolved major and trace elements in meteoric depositions on the flanks of Mt. Etna (Italy): the impact of volcanic activity on the environment

2019

In the framework of the “Save the Etna World” research project, which investigates the impact of the volcanic activity on the surrounding environment, three bulk collectors were deployed on the flank of the Mt. Etna volcano to collect the meteoric depositions. The sampling sites were at distances between 5.5 and 13 km from the summit vents of the volcano on its eastern flank, that is the most exposed to the volcanic plume due to the high-altitude prevailing winds direction. The sites were selected in order to have a gradient of exposition with respect to the volcanic emissions, the most exposed being CIT, the intermediate ILI and the least NIC. Samples were collected monthly from July 2017 …

Etna volcanic gases trace elements rainwaterSettore GEO/08 - Geochimica E Vulcanologia
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New data on the exploitation of obsidian in the mediterranean basin: The harbour of pyrgi and the trade in neolithic age

2020

The contribution shows the first results of ongoing research on the origins and prehistoric assumptions of the well-known Etruscan and Roman harbour of Pyrgi, an ancient Ceretan harbour in southern Etruria. In the light of recent land and submarine investigations, traces of ancient frequentations and contacts dating back to the Neolithic era are emerging when the coastal morphology and environmental characteristics of the site were very different from the current ones. The Etruscan port of Pyrgi, which continues its historical history in Roman and Medieval times, appears as the heir of one or more landing points frequented perhaps already in the Middle Neolithic. As part of this contributio…

Etruria LA-ICP-MS Neolithic period Obsidian Provenance Pyrgi Trace elementsSettore GEO/09 -Georis. Miner.e Appl.Mineral.-Petrogr. per l'Ambi.ed i B.Cult.
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Weathering of evaporites: natural versus anthropogenic signature on the composition of river waters

2015

Weathering of evaporites strongly influences the chemistry of continental runoff, making surface waters poorly exploitable for civil uses. In south-central Sicily, this phenomenon is worsened by the occurrence of abandoned landfills of old sulphur and salt mines. The industrial evolution of the Bosco-S. Cataldo mining site leaved two landfills from the early exploitation of a sulphur mine followed by that of a kainite deposit. In particular, the weathering of these landfills leads the dissolved salt (TDS) values up to about 200 g l−1 in the Stincone–Salito Stream waters. This process induces the V, Cr and Fe desorption from sediments and particulates in the aqueous phase under reducing cond…

Evaporitechemistry.chemical_elementWeathering010501 environmental sciencesengineering.material010502 geochemistry & geophysics01 natural sciencesEvaporites; Landfill; Salt waters; Trace elements; Earth and Planetary Sciences (all); Agricultural and Biological Sciences (all); 2300Salt waterScavenging0105 earth and related environmental sciencesGeneral Environmental ScienceHydrology2300ParticulatesSulfurSettore GEO/08 - Geochimica E VulcanologiaSalinityEvaporitechemistryAgricultural and Biological Sciences (all)Environmental chemistryengineeringTrace elementGeneral Earth and Planetary SciencesHaliteLandfillGeneral Agricultural and Biological SciencesSurface runoffEarth and Planetary Sciences (all)Geology
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