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161.
We have determined the concentrations of 10Be and 26Al in GRV 99027 recovered by the 16th Chinese Antarctic expedition team, which are 14.1 ± 0.6 dpm/kg and 67.5 ± 3.4 dpm/kg, respectively. From the concentration of 10Be, we calculate a cosmic-ray exposure age of 4.4 ± 0.6 Ma for GRV 99027. The concentration of 26Al is too high compared to the 10Be exposure age, indicating extra production from solar ray. The exposure ages, petrologic and geochemical characteristics of mantle-derived Martian meteorites GRV 99027, LEW 88516, Y-793605, NWA 1950 and ALHA77005 are very similar, suggesting that these meteorites most probably were ejected from Mars in the same impact event. 相似文献
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Ellis DV 《Marine pollution bulletin》2005,50(3):244-246
Where contaminants in sediments correlate with biodiversity reductions, the contamination may not be the cause. Other physical factors may be responsible, and should be investigated so that any remedial action is directed properly. Two examples are given where unusual sediment mobility caused biodiversity reductions in sediments with elevated trace contaminants. 相似文献
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Regional-scale Proterozoic IOCG-mineralized breccia systems: examples from the Wernecke Mountains, Yukon, Canada 总被引:1,自引:0,他引:1
A large scale Proterozoic breccia system consisting of numerous individual breccia bodies, collectively known as Wernecke
Breccia, occurs in north-central Yukon Territory, Canada. Breccias cut Early Proterozoic Wernecke Supergroup sedimentary rocks
and occur throughout the approximately 13 km thick deformed and weakly metamorphosed sequence. Iron oxide–copper–gold ± uranium
± cobalt mineralization is associated with the breccia bodies and occurs as veins and disseminations within breccia and surrounding
rocks and locally forms the breccia matrix. Extensive sodic and potassic metasomatic alteration occurs within and around breccia
bodies and is overprinted by pervasive calcite and dolomite/ankerite, and locally siderite, alteration, respectively. Multiple
phases of brecciation, alteration and mineralization are evident. Breccia bodies are spatially associated with regional-scale
faults and breccia emplacement made use of pre-existing crustal weaknesses and permeable zones. New evidence indicates the
presence of metaevaporitic rocks in lower WSG that may be intimately related to breccia formation. No evidence of breccia-age
magmatism has been found to date.
相似文献
Julie HuntEmail: |
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