Geochemistry and ND-SR isotope signature of tektite-like objects from Siberia (urengoites, south-Ural glass)

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We report Sr-Nd isotope parameters, REE, and major element data for isolated findings of tektite-like objects from Western Siberia (urengoites, South-Ural glass), as well as for two indochinites. The latter were recovered in Vietnam and their overall geochemical characteristics equal those of other tektites from the indochinite subgroup of the Australasian strewn field. The three about 24 Ma urengoites are extremely silica-rich (89 to 96 wt% SiO2); and their REE abundances vary between 45 and 76 ppm. With LaN/YbN ranging from 7.6 to 10.4, and EuN/Eu between 0.69 and 0.75, their REE distribution patterns match that of average upper crust. The urengoites have present day Sr of +155 to +174, and Nd ranging from -18 to -23. Their model ages in [Ma] are: TSrUR = 1200 up to 4060 and TNdCHUR = 1570 up to 2070. Data points for the urengoites plot colinear in the Rb-Sr evolution diagram. The age corresponding to the slope is 183 30 Ma (2), indistinguishable from the intercept age of 211 Ma in the TSrUR vs. 1/fRb diagram. Rb-Sr and Sm-Nd systematics of the urengoites indicate a heterogeneous precursor material, derived from Paleoproterozoic continental crust, which underwent Rb/Sr fractionation and partial Sr isotope homogenization in Jurassic times. Any relation between the urengoites and the Haughton impact crater, having within 2 ( errors an identical age, can be excluded on the basis of isotope relationships and geochemical data. The only known, about 6.2 Ma South-Ural glass is characterized by intermediate SiO2 (65 wt%), high Al2O3 (14 wt%) and CaO (12 wt%), and low FeOTOT (0.4 wt%) contents. This unique tektite-like object contains 110 ppm REE displaying a steeply negative C1 normalized distribution with LaN/YbN of 17, and EuN/Eu of 0.71. Rb abundance (10 ppm) and Rb/Sr ratio are low, and combined with a "crustal" 87Sr/86Sr ratio of 0.722, yielding an unrealistic TSrUR age of 2.5 Ga. The Rb-Sr systematics imply a rather recent parent/daughter element decoupling. The TNd CHUR age of the South-Ural glass is about 1690 Ma. Geochemical data suggest that urengoites and the South-Ural glass belong to two discrete groups of tektites, whose source craters remain to be discovered.

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