黑色页岩铀同位素比值及其在铀矿缺氧条件检测中的作用

Zainab Z Al-Full, Mahmoud R. Khattab
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引用次数: 2

摘要

摘要黑色页岩被认为是乌姆博格玛组下部最重要的岩石单元之一,在此具有铀、重金属和稀土元素成矿作用。采用α光谱法对黑色页岩样品进行放射化学分析。研究样品中的铀大部分是自生的,Th/U比值证实了铀在还原环境中的沉积。黑色页岩样品的活度比值分别为234U/238U bbb1和230Th/234U < 1,表明铀在还原条件下从水中析出的时间较晚。由于氧化还原条件的变化,234U/235U和238U/235U的活性比相对偏离平衡。228Th/232Th的不平衡可能是由于228Ra的共沉淀和228Th从黑色页岩向渗透水中的迁移所致。因此,在3 × 105年的时间里,水不是通过岩石,而是通过古河道和溶洞渗透,引起铀的动员和分析,形成氧化还原界面。
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Uranium isotopic ratio of black shale and its role in detection of oxic-anoxic conditions of uranium depositions
Abstract The black shale is considered one of the most important rock units in the lower part of Um Bogma Formation, where it contains the uranium, heavy metals and rare earth elements mineralization. The black shale samples were analyzed radiochemically by using alpha spectrometry technique. Most of uranium in the studied samples is authigenic and the Th/U ratio confirms the deposition of uranium in reducing environment. The activity ratios of the studied black shale samples were characterized by 234U/238U > 1 and 230Th/234U < 1, which showed relatively recent precipitation of uranium from water in reducing conditions. 234U/235U and 238U/235U activity ratio was relatively deviated from equilibrium due to the changes in the oxidation-reduction conditions. The disequilibrium of 228Th/232Th can be due to the co-precipitation of 228Ra and the migration of 228Th from the black shale into the percolating water. So, the water was percolated through the paleochannels and caves instead of the rocks causing uranium mobilization and the fractionation of uranium, forming the oxidation-reduction interface in the periods from <6 × 104 to >3 × 105 year.
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