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Geochernical behavior of radionuclides in highly altered zircon above the Bangombe natural fission reactor, Gabon

机译:Bangombe天然裂变反应堆加蓬上方高度蚀变的锆石中放射性核素的地球化学行为

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摘要

The isotopic compositions of rare earth elements (REE), Pb and U of highly altered zircons from the clay and black shale layers above the Bangombe natural reactor, Gabon, were determined by a sensitive high resolution ion microprobe (SHRIMP) to discuss the redistribution processes of elements into zircons under the supergene weathering. The clay layer trapped most of the fissiogenic Nd, Sm and Eu derived from the reactor and prevented them migrating into the black shale layer. on the other hand, only the Ce isotopic ratios of the clay and black shale layers have about 2 times larger variations than the other REE. This result suggests that a large chemical fractionation between Ce and other REE above the reactor occurred under the oxidizing condition. The U-Pb data of zircons suggest that the U-Pb system was largely disturbed by migration of chemically fractionated Pb and U from the 2.0 Ga-old uraninite in association with recent weathering.
机译:通过灵敏的高分辨率离子微探针(SHRIMP)确定了来自Bangombe天然反应堆加蓬上方粘土和黑色页岩层的稀土元素(REE),Pb和U的高度变化的锆石的同位素组成,以讨论再分布过程表生风化作用下锆石中的元素粘土层截留了来自反应堆的大部分裂变Nd,Sm和Eu,阻止了它们迁移到黑色页岩层中。另一方面,只有粘土和黑色页岩层的Ce同位素比的变化是其他REE的2倍左右。该结果表明,在氧化条件下,反应器上方的Ce与其他REE之间发生了较大的化学分馏。锆石的U-Pb数据表明,结合最近的风化作用,U-Pb系统在很大程度上受到了化学成分分离的Pb和U从2.0 Ga老的尿素矿中迁移的干扰。

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