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Trace element inventory of meteoritic Ca-phosphates
by
Whitehouse, Martin J
, Bischoff, Addi
, Ward, Dustin
, Berndt, Jasper
, Roszjar, Julia
in
achondrites
/ Anomalies
/ Apatite
/ Ca-phosphates
/ Calcium
/ Carbonaceous chondrites
/ chemical fractionation
/ chondrites
/ Crystallization
/ Den föränderliga jorden
/ Earth
/ electron microscopy data
/ electron probe data
/ Enrichment
/ Eucrites
/ Extraterrestrial materials
/ feldspar group
/ Flat patterns
/ framework silicates
/ Geochemistry
/ Grain size
/ ICP mass spectra
/ ion probe data
/ Iron
/ Iron meteorites
/ Isotopes
/ LA-ICP MS
/ laser ablation
/ laser methods
/ Magma
/ Manganese
/ Martian meteorites
/ mass spectra
/ merrillite
/ metals
/ Metamorphism
/ Metamorphism (geology)
/ Meteorites
/ meteorites and tektites
/ Meteors & meteorites
/ Mineral assemblages
/ mineral composition
/ Minerals
/ Petrology
/ Phosphates
/ Plagioclase
/ Rare earth elements
/ rare earths
/ REE
/ Rocks
/ SEM data
/ shergottite
/ Shergottites
/ Silicates
/ SIMS
/ SNC Meteorites
/ spectra
/ stony meteorites
/ The changing Earth
/ Thorium
/ Trace elements
/ Zirconium
2017
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Trace element inventory of meteoritic Ca-phosphates
by
Whitehouse, Martin J
, Bischoff, Addi
, Ward, Dustin
, Berndt, Jasper
, Roszjar, Julia
in
achondrites
/ Anomalies
/ Apatite
/ Ca-phosphates
/ Calcium
/ Carbonaceous chondrites
/ chemical fractionation
/ chondrites
/ Crystallization
/ Den föränderliga jorden
/ Earth
/ electron microscopy data
/ electron probe data
/ Enrichment
/ Eucrites
/ Extraterrestrial materials
/ feldspar group
/ Flat patterns
/ framework silicates
/ Geochemistry
/ Grain size
/ ICP mass spectra
/ ion probe data
/ Iron
/ Iron meteorites
/ Isotopes
/ LA-ICP MS
/ laser ablation
/ laser methods
/ Magma
/ Manganese
/ Martian meteorites
/ mass spectra
/ merrillite
/ metals
/ Metamorphism
/ Metamorphism (geology)
/ Meteorites
/ meteorites and tektites
/ Meteors & meteorites
/ Mineral assemblages
/ mineral composition
/ Minerals
/ Petrology
/ Phosphates
/ Plagioclase
/ Rare earth elements
/ rare earths
/ REE
/ Rocks
/ SEM data
/ shergottite
/ Shergottites
/ Silicates
/ SIMS
/ SNC Meteorites
/ spectra
/ stony meteorites
/ The changing Earth
/ Thorium
/ Trace elements
/ Zirconium
2017
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Trace element inventory of meteoritic Ca-phosphates
by
Whitehouse, Martin J
, Bischoff, Addi
, Ward, Dustin
, Berndt, Jasper
, Roszjar, Julia
in
achondrites
/ Anomalies
/ Apatite
/ Ca-phosphates
/ Calcium
/ Carbonaceous chondrites
/ chemical fractionation
/ chondrites
/ Crystallization
/ Den föränderliga jorden
/ Earth
/ electron microscopy data
/ electron probe data
/ Enrichment
/ Eucrites
/ Extraterrestrial materials
/ feldspar group
/ Flat patterns
/ framework silicates
/ Geochemistry
/ Grain size
/ ICP mass spectra
/ ion probe data
/ Iron
/ Iron meteorites
/ Isotopes
/ LA-ICP MS
/ laser ablation
/ laser methods
/ Magma
/ Manganese
/ Martian meteorites
/ mass spectra
/ merrillite
/ metals
/ Metamorphism
/ Metamorphism (geology)
/ Meteorites
/ meteorites and tektites
/ Meteors & meteorites
/ Mineral assemblages
/ mineral composition
/ Minerals
/ Petrology
/ Phosphates
/ Plagioclase
/ Rare earth elements
/ rare earths
/ REE
/ Rocks
/ SEM data
/ shergottite
/ Shergottites
/ Silicates
/ SIMS
/ SNC Meteorites
/ spectra
/ stony meteorites
/ The changing Earth
/ Thorium
/ Trace elements
/ Zirconium
2017
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Journal Article
Trace element inventory of meteoritic Ca-phosphates
2017
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Overview
Most extraterrestrial samples feature the two accessory Ca-phosphates (apatite-group minerals and merrillite), which are important carrier phases of the rare earth elements (REE). The trace-element concentrations (REE, Sc, Ti, V, Cr, Mn, Co, As, Rb, Sr, Y, Zr, Nb, Ba, Hf, Ta, Pb, Th, and U) of selected grains were analyzed by LA-ICP-MS and/or SIMS (REE only). This systematic investigation includes 99 apatite and 149 merrillite analyses from meteorites deriving from various asteroidal bodies including 1 carbonaceous chondrite, 8 ordinary chondrites, 3 acapulcoites, 1 winonaite, 2 eucrites, 5 shergottites, 1 ureilitic trachyandesite, 2 mesosiderites, and 1 silicate-bearing IAB iron meteorite.Although Ca-phosphates predominantly form in metamorphic and/or metasomatic reactions, some are of igneous origin. As late-stage phases that often incorporate the vast majority of their host's bulk REE budget, the investigated Ca-phosphates have REE enrichments of up to two orders of magnitude compared to the host rock's bulk concentrations. Within a single sample, each phosphate species displays a uniform REE-pattern, and variations are mainly restricted to their enrichment, therefore indicating similar formation conditions. Exceptions are brecciated samples, i.e., the Adzhi-Bogdo (LL3-6) ordinary chondrite. Despite this uniformity within single samples, distinct meteorite groups do not necessarily have unique REE-patterns. Four basic shapes dominate the REE patterns of meteoritic Ca-phosphates: (1) flat patterns, smoothly decreasing from La-Lu with prominent negative Eu anomalies (acapulcoites, eucrites, apatite from the winonaite and the ureilitic trachyandesite, merrillite from ordinary chondrites); (2) unfractionated patterns, with only minor or no anomalies (mesosiderites, enriched shergottites, IAB-iron meteorite); (3) LREE-enriched patterns, with either positive or slightly negative Eu anomalies (chondritic apatite); and (4) strongly LREE-depleted patterns, with negative Eu anomalies (depleted shergottites). The patterns do not correlate with the grade of metamorphism (petrologic type), specific adjacent mineral assemblages or with Ca-phosphate grain size. Neither the proportions of different REE, nor particular REE patterns themselves are universally correlated to a specific formation mechanism yet Eu (i.e., magnitude of the Eu anomaly) is a sensitive indicator to evaluate the timing of plagioclase and phosphate crystallization. Based on our data, U and Th abundances in apatite increase (almost linearly) with the grade of metamorphism, as well as with the differentiation of their host rock.
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