Detailed Information on Publication Record
2014
Phlogopite/matrix, clinopyroxene/matrix and clinopyroxene/phlogopite trace-element partitioning in a calc-alkaline lamprophyre: new constrains from the Krizanovice minette dyke (Bohemian Massif)
KRMÍČEK, Lukáš, Michaela HALAVINOVA, Rolf ROMER, Michaela VAŠINOVÁ GALIOVÁ, Tomáš VACULOVIČ et. al.Basic information
Original name
Phlogopite/matrix, clinopyroxene/matrix and clinopyroxene/phlogopite trace-element partitioning in a calc-alkaline lamprophyre: new constrains from the Krizanovice minette dyke (Bohemian Massif)
Authors
KRMÍČEK, Lukáš (203 Czech Republic, guarantor), Michaela HALAVINOVA (203 Czech Republic), Rolf ROMER (276 Germany), Michaela VAŠINOVÁ GALIOVÁ (203 Czech Republic, belonging to the institution) and Tomáš VACULOVIČ (203 Czech Republic, belonging to the institution)
Edition
Journal of Geosciences, Praha, CESKA GEOLOGICKA SPOLECNOST, 2014, 1802-6222
Other information
Language
English
Type of outcome
Článek v odborném periodiku
Field of Study
10406 Analytical chemistry
Country of publisher
Czech Republic
Confidentiality degree
není předmětem státního či obchodního tajemství
Impact factor
Impact factor: 1.405
RIV identification code
RIV/00216224:14740/14:00079353
Organization unit
Central European Institute of Technology
UT WoS
000341692300006
Keywords in English
calc-alkaline lamprophyres; mineralogy; partition coefficients; Bohemian Massif
Tags
Tags
International impact, Reviewed
Změněno: 18/3/2015 11:24, Mgr. Michaela Vašinová Galiová, Ph.D.
Abstract
V originále
Mineral/matrix and mineral/mineral partition coefficients were determined for clinopyroxene and phlogopite phenocrysts and their very fine-grained (chilled) groundmass from a Variscan calc-alkaline (agpaitic index = 0.6) lamprophyre dyke of minette composition from the Bohemian Massif (Krizanovice, Tepla-Barrandian Unit). This dyke is characterized by high MgO (8.9 wt. %; Mg-number = 69) at intermediate SiO2 content (53 wt. %). The partition coefficients (D) between clinopyroxene and matrix were determined for 23 elements by laser ablation-inductively coupled plasma-mass spectrometry. Calculated D-clinopyroxene/matrix values are very low, except for heavy rare earth elements (HREE) that range between 0.9 and 1.1. This suggests that HREE can be concentrated in clinopyroxene during crystallization from lamprophyre melt. In phlogopite, only 15 elements had contents above their respective detection limits. Phlogopite/matrix partition coefficients are on average higher than 1 (D-Ba = 1.1, D-Rb = 1.7 D-Ti = 1.5) and extremely low (<= 0.02) for light rare earth elements (LREE). On the other hand, D-phlogopite/matrix values for the majority of HREE could not be determined. Taken together, during simultaneous crystallization of clinopyroxene and phlogopite phenocrysts, Th, Zr, Hf, Y and LREE are preferentially partitioned into clinopyroxene and Ba with Rb and Ti into phlogopite.
Links
CZ.1.05/1.1.00/02.0068, interní kód MU |
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