Evolution of the Gallojavri ultramafic intrusion from U-Pb zircon ages and Rb-Sr, Sm-Nd and Lu-Hf isotope systematics

被引:2
|
作者
Orvik, Alf Andre [1 ]
Slagstad, Trond [2 ]
Sorensen, Bjorn Eske [1 ]
Millar, Ian [3 ]
Hansen, Harald [4 ]
机构
[1] Norwegian Univ Sci & Technol, Dept Geosci & Petr, SP Andersens Veg 15, N-7031 Trondheim, Norway
[2] Geol Survey Norway, Leiv Eirikssons Vei 39, N-7040 Trondheim, Norway
[3] British Geol Survey, Geochronol & Tracers Facil, Nottingham NG12 5GG, England
[4] UiT Arctic Univ Norway, Dept Geosci, Dramsveien 201, N-9037 Tromso, Norway
关键词
Crustal contamination; Karasjok Greenstone Belt; Magma conduit; Rb-Sr isotopes; Sm-Nd isotopes; zircon Hf; BEARING KEVITSA INTRUSION; BUSHVELD COMPLEX; THERMODYNAMIC MODEL; MAGMATIC EVOLUTION; LAYERED INTRUSION; GREENSTONE-BELT; SULFIDE DEPOSIT; IGNEOUS CENTER; NORTH NORWAY; WHOLE-ROCK;
D O I
10.1016/j.precamres.2022.106813
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The Karasjok-Central Lapland Greenstone Belt is one of the largest Palaeoproterozoic greenstone belts in the Fennoscandian Shield and includes multiple (ultra)mafic intrusions, some with notable ore reserves, formed during three episodes at 2.44, 2.22 and 2.05 Ga. This study presents new mineralogical, geochronological and isotopic data for the Gallojavri ultramafic intrusion, in the Karasjok Greenstone Belt, northern Norway. Previous petrogenetic modelling suggests that the intrusion was emplaced as a conduit system open for influx of melt with signs of polybaric fractionation and assimilation. Zircon U-Pb geochronology yields an age of 2051 +/- 8 Ma, interpreted to reflect magmatic crystallisation. Large variations in isotopic signature over decimetres to metres indicate incomplete magma mixing. In bulk samples, epsilon(Nd(t)) ranges from-15 to 4. Zircon epsilon(Hf(t)) ranges from-14 to-1. Bulk Sr-87/Sr-86(t) shows an apparent range from 0.5041 to 0.7072: the anomalously low values and general alteration indicates that Sr-87/Sr-86 is non-primary, whereas the less mobile Sm-Nd/ Lu-Hf systems are interpreted to represent primary magmatic signatures. We ascribe the large variations in the Nd and Hf isotopic signatures to local melting or dissolution of xenoliths and influx of variably contaminated melt into the semi-consolidated Gallojavri magma chamber, consistent with a conduit model involving variable replenishment and crustal interaction. The most evolved isotopic signatures cannot be accounted for by interaction with the local Archaean basement, indicating the presence of unidentified crustal components at depth. The Gallojavri intrusion shows many petrogenetic similarities to other c. 2.05 Ga (ultra)mafic intrusions in the Central Lapland Greenstone Belt.
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页数:16
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