Search results for "LCA"

showing 10 items of 1995 documents

Halogens in Mafic and Intermediate-Silica Content Magmas

2018

As volatile and variably mobile components, halogens play key roles in magmatic, metasomatic, mineralizing, and volcanic processes by influencing the physical and chemical properties of melts, fluids, and minerals. Volcanic emission of halogens to the atmosphere leads to long- and short-term impacts on atmospheric chemistry that range from global perturbation of the stratospheric O3 budget to more localized life-threatening contamination of soils and fresh water. The concentrations of F, Cl, Br, and I in melts, fluids, and minerals provide crucial geochemical information and insights into magmatic processes ranging from partial melting to volcanic eruptions. Halogen research is useful for e…

Basaltgeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesChemistryAndesitePartial meltingGeochemistry010502 geochemistry & geophysics01 natural sciencesMantle (geology)Hydrothermal circulationVolcanoMaficMetasomatism0105 earth and related environmental sciences
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First gas and thermal measurements at the frequently erupting Gamalama volcano (Indonesia) reveal a hydrothermally dominated magmatic system

2020

Abstract The first gas and thermal measurements at the summit of the Gamalama volcano indicate that the system is dominated by hydrothermal processes. This is highlighted by the prevalence of H2S over SO2 (H2S/SO2 = 2–8), a high CO2/SO2 ratio (76–201), and a low heat transfer (3.0 MW) to the surface. A relative variation in gas composition is observed along the degassing fracture zone, possibly due to partial S scrubbing. Despite this surface hydrothermal signature, the system exhibits high gas equilibrium temperatures (425–480 °C), indicating that fluids are not exclusively derived from a boiling hydrothermal aquifer, but also sourced by cooling and crystallizing basaltic magma at deep tha…

Basaltgeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesGeochemistryDominated hydrothermal systemFracture zoneGeodynamicsGamalama volcano010502 geochemistry & geophysics01 natural sciencesHydrothermal circulationPhreatic eruptionDominated hydrothermal system Gamalama volcano Pressure and tensile strengthGeophysicsVolcanoImpact craterPressure and tensile strength13. Climate actionGeochemistry and Petrology[SDU]Sciences of the Universe [physics]MagmaGeology0105 earth and related environmental sciences
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Chemo-probe into the mantle origin of the NW Anatolia Eocene to Miocene volcanic rocks: Implications for the role of, crustal accretion, subduction, …

2017

Post-collisional Cenozoic magmatic activity in NW Anatolia produced widespread volcanism across the region. In the Biga Peninsula, in the west, medium-K calc-alkaline to ultra-K rocks with orogenic geochemical signature were emplaced at similar to 43-15 Ma (Biga orogenic volcanic rocks; BOVR). Volcanic activity in the Central Sakarya region, to the east, is mainly restricted to-53-38 Ma, but also continued during the Early Miocene with small basaltic extrusives (Sakarya orogenic volcanic rocks; SOVR). This study presents a new set of geochemical data (whole rock major and trace elements and Sr-Nd-Pb isotopic compositions), obtained from the Cenozoic calc-alkaline volcanic rocks from these t…

Basaltgeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesbiologySubductionGeochemistryGeologyVolcanism010502 geochemistry & geophysicsbiology.organism_classification01 natural sciencesMantle (geology)Volcanic rockVolcano13. Climate actionGeochemistry and PetrologyMagmatismLileGeology0105 earth and related environmental sciencesLithos
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Amygdaloidal basalts: Isotopic and petrographic evidence for non-diagenetic crustal source of carbonate inclusions

1980

Even though carbonate amygdules in volcanics are generally assumed to be diagenetic in origin, the authors are of the opinion that almost all carbonate inclusions in the investigated amygdaloidal volcanic rocks from Sicily (Italy), Pindos (Greece) and Bohemia (Czechoslovakia), have a different origin. On the basis of a mineralogical, petrological and geochemical study these “amygdules” are interpreted as being remains ofmagmatic incorporation of carbonate. Therefore, the identification of carbonate globules in volcanics purely on field observations, is inadequate to distinguish true amygdules from carbonate assimilation remnants. A nomenclature of the various types of inclusions is proposed…

Basaltgeographygeography.geographical_feature_categoryAmygduleAlkali basaltGeochemistryDiagenesisPetrographyVolcanic rockchemistry.chemical_compoundGeophysicschemistryGeochemistry and PetrologyMagmaCarbonatePetrologyGeologyTMPM Tschermaks Mineralogische und Petrographische Mitteilungen
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S, Cl and F degassing as an indicator of volcanic dynamics: The 2001 eruption of Mount Etna

2002

[1] The recent eruption of Mount Etna (July 2001) offered the opportunity to analyze magma-derived volatiles emitted during pre- and syn-eruptive phases, and to verify whether their composition is affected by changes in volcanic dynamics. This paper presents the results of analyses of F, Cl and S in the volcanic plume collected by filter-packs, and interprets variations in the composition based on contrasting solubility in magmas. A Rayleigh-type degassing mechanism was used to fit the acquired data and to estimate Henry's solubility constant ratios in Etnean basalt. This model provided insights into the dynamics of the volcano. Abundances of sulfur and halogens in eruptive plumes may help …

Basaltgeographygeography.geographical_feature_categoryEarth scienceGeochemistryVolcanic rockIgneous rockGeophysicsEffusive eruptionVolcanoVolcanic plumePanacheEarth and Planetary Sciences (miscellaneous)General Earth and Planetary SciencesVolatilesGeology
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Hafnium-Neodymium isotope, trace element and U-Pb zircon age constraints on the petrogenesis of the 3.44–3.46 Ga Dwalile greenstone remnant, Ancient …

2020

Abstract The geodynamic setting of the 3.44–3.46 Ga Dwalile greenstone remnant (DGR) of the Ancient Gneiss Complex (Swaziland) and its relationship to other Greenstone belts of similar age is investigated in this contribution. We present Hf-Nd isotope, major and trace element data for komatiites, komatiitic basalts, basalts, basaltic andesites as well as felsic volcanic and sedimentary rocks, all metamorphosed at amphibolite-facies grade. Major and trace element compositions of metabasalts and metakomatiites indicate crustal contamination. The best-preserved samples yield 176Lu-176Hf and 147Sm-143Nd isochron ages of ca. 3500 and 3460 Ma, respectively, in line with U-Pb zircon ages of interl…

Basaltgeographygeography.geographical_feature_categoryFelsic010504 meteorology & atmospheric sciencesContinental crustGeochemistryTrace elementGeology010502 geochemistry & geophysics01 natural sciencesVolcanic rockGeochemistry and PetrologyGeology0105 earth and related environmental sciencesZirconPetrogenesisGneissPrecambrian Research
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Generation of early Archaean felsic greenstone volcanic rocks through crustal melting in the Kaapvaal, craton, southern Africa

2013

Abstract High-potassium felsic volcanic rocks interlayered with basalt and komatiite in early Archaean greenstone sequences in the Barberton Greenstone Belt of South Africa and Swaziland, previously considered to be derived from melting of mafic precursors, are shown to be the result of melting of significantly older felsic crust. This is documented by a combination of SHRIMP zircon dating with Hf-in-zircon and whole-rock Lu–Hf and Sm–Nd isotopic data. Zircons from felsic rocks of the oldest Barberton unit, the 3.53 Ga Theespruit Formation, yielded predominantly negative e Hf ( t ) -values, whereas whole-rock e Hf ( t ) - and e Nd ( t ) -data are slightly negative to slightly positive. Simi…

Basaltgeographygeography.geographical_feature_categoryFelsicArcheanGeochemistryGreenstone beltVolcanic rockCratonGeophysicsSpace and Planetary ScienceGeochemistry and PetrologyEarth and Planetary Sciences (miscellaneous)MaficPetrologyGeologyZirconEarth and Planetary Science Letters
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The Nevados de Payachata volcanic region (18�S/69�W, N. Chile) II. Evidence for widespread crustal involvement in Andean magmatism

1990

Volcanism extending over 11 Ma is represented in the rocks of the Nevados de Payachata region, culminating in the formation of two large composite stratocones within the last 500 000 years. Chemically distinct mafic magmas are erupted at a number of parasitic centers. These cannot be related to each other by crystal fractionation and do not appear to be direct parents for the differentiated suites of the composite cones. Two distinct trends are defined by the intermediate and evolved rocks; a high LILE (large ion lithophile element), TiO2 and Ce/Yb lineage among the youngest rocks (including the two major stratocones), and a more typical calc-alkaline trend among the older (>1 Ma) rock type…

Basaltgeographygeography.geographical_feature_categoryFelsicMantle wedgeGeochemistryVolcanic rockGeophysicsBasaltic andesiteGeochemistry and PetrologyMagmaRhyoliteMaficGeologyContributions to Mineralogy and Petrology
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40Ar-39Ar ages and petrogenesis of middle Eocene post-collisional volcanic rocks along the Izmir-Ankara-Erzincan suture zone, NE Turkey

2019

Abstract The central and northeastern of Turkey were shaped by the transition from collisional to post-collisional tectonics and coeval magmatism during Early Cenozoic. However, the temporal and spatial evolution of the magmatism during the middle Eocene remains elusive. In this paper, we provide petrological, isotopic and radiometric data from two middle Eocene volcano-sedimentary successions, from the northern (Almus) and southern (Yildizeli) parts of the Izmir–Ankara–Erzincan Suture Zone, and discuss their generation in the post-collisional setting. Our results indicate that the volcanic units from these regions display similar stratigraphic and petrological evolution during the narrow w…

Basaltgeographygeography.geographical_feature_categoryFractional crystallization (geology)LavaAndesiteGeochemistryGeologyVolcanic rockBasaltic andesiteMagmatismXenolithGeologyEarth-Surface ProcessesJournal of Asian Earth Sciences
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Geochemistry and early Palaeogene SHRIMP zircon ages for island arc granitoids of the Sierra Maestra, southeastern Cuba

2004

The Palaeogene volcanic arc successions of the Sierra Maestra, southeastern Cuba, were intruded by calc-alkaline, low- to medium-K tonalites and trondhjemites during the final stages of subduction and subsequent collision of the Caribbean oceanic plate with the North American continental plate. U‐Pb SHRIMP zircon dating of five granitoids yielded 206 Pb/ 238 U emplacement ages between 60.5F2.2 and 48.3F0.5 Ma. The granitoids are the result of subduction-related magmatism and have geochemical characteristics similar to those of magmas from intra-oceanic island-arcs such as the Izu Bonin‐Mariana arc and the New Britain island arc, Lesser Antilles. Major and trace element patterns suggest evol…

Basaltgeographygeography.geographical_feature_categoryFractional crystallization (geology)SubductionVolcanic arcGeochemistryGeologyGeochemistry and PetrologyOceanic crustMagmatismIsland arcGeologyZirconChemical Geology
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