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Volatile chalcophile, siderophile and lithophile trace elements in lunar meteorite Yamato-82192

机译:月球陨石Yamato-82192中挥发性的亲嗜性,亲嗜和亲石微量元素

摘要

Neutron activation analyses of Ag, Au, Bi, Cd, Co, Cs, Ga, In, Rb, Sb, Se, Te, Tl, U and Zn in whole-rock, melted and unmelted regolith samples of Yamato-82192 reveals a lunar highlands origin plus meteorite admixture, 2.4±0.8% Cl-equivalent for micrometeorites and ancient impact component. A small but real amount of mobile element loss occurred during the shock-melting episode that formed Y-82192. Differences in trace element and other trends indicate pronounced differences in the thermal histories of the parent regoliths of Allan Hills A81005 and Y-791197 and -82192 so that each must have been produced by a separate impact on the Moon.
机译:大和82192全岩石,熔化和未熔化的块石样品中的Ag,Au,Bi,Cd,Co,Cs,Ga,In,Rb,Sb,Se,Te,Tl,U和Zn的中子活化分析揭示了一个月球高地起源加上陨石混合物,微陨石和古代撞击成分的氯含量为2.4±0.8%。在形成Y-82192的震动融化过程中,发生了少量但真正的移动元素损失。痕量元素和其他趋势的差异表明,艾伦希尔斯(Allan Hills)A81005和Y-791197和-82192母体块石的热历史上存在明显差异,因此,每种都必须是由对月球的单独撞击而产生的。

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