JUVENILE CO2 IN ENDERBITES OF TROMOY NEAR ARENDAL, SOUTHERN NORWAY - A FLUID INCLUSION AND STABLE-ISOTOPE STUDY

被引:0
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作者
VANDENKERKHOF, AM
TOURET, JLR
KREULEN, R
机构
[1] UNIV UTRECHT,INST EARTH SCI,DEPT CHEM GEOL,3508 TA UTRECHT,NETHERLANDS
[2] FREE UNIV AMSTERDAM,FAC EARTH SCI,1081 HV AMSTERDAM,NETHERLANDS
关键词
BAMBLE SECTOR; CARBON ISOTOPES; FLUID INCLUSIONS; ENDERBITE; GRANULITE;
D O I
暂无
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
The enderbites from Tromoy in the central, granulite facies part of the Proterozoic Bamble sector of southern Norway contain dominantly CO2 and N2 fluid inclusions. CO2 from fluid inclusions in quartz segregations in enderbites was extracted by mechanical (crushing) and thermal decrepitation and the deltaC-13 measured. Measurement was also made on samples washed in 10% HCl, oxidized with CuO at high temperatures, and step-wise extracted with progressive heating. Results between the different techniques are systematic. The main results show deltaC-13 of -4.5 +/- 1.5 parts per thousand. for crushing and -7 +/- 2 parts per thousand for thermal decrepitation. deltaC-13 is about constant for CO2 extracted at different temperatures and points to a homogeneous isotopic composition. Due to the presence of carbonate particles and/or induced contaminations for the extraction by thermal decrepitation, the results for the crushing experiments are assumed the most reliable for fluid-inclusion CO2. Very low values of deltaC-13 have not been found in enderbite samples and deltaC-13 combined with deltaO-18 of the host quartzes (8-11 parts per thousand) indicates juvenile values. In addition, the fluid inclusions were examined by microthermometry and Raman analysis and host quartz by acoustic emission and cathodoluminescence. CO2 fluid inclusions have varying densities with a frequency maximum of 0.92 g cm-3 and generally do not concur with trapping densities at granulite conditions. Textures show that CO2 must have been trapped in fluid inclusions in one early event, but transformed to different extents during late isothermal uplift without important fractionation of isotope compositions. The present data support a model of intrusion and crystallization of a CO2-rich enderbitic magma at granulite conditions.
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页码:301 / 310
页数:10
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