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钍/铀、钍/钾和铀/钾比值对铀矿化的遗传意义:以埃及东部沙漠的埃尔-米西卡特和埃尔-埃雷迪亚剪切带为例

Genetic implications of Th/U, Th/K, and U/K ratios for U mineralizations: A case study from El-Missikat and El-Erediya shear zones, Eastern Desert, Egypt.

作者信息

Abdel-Hakeem Mahmoud, El-Tahir Mohamed, Zeid Ehab Abu, Rageh Hassan

机构信息

Department of Geology, Faculty of Science, South Valley University, Qena, Egypt.

Nuclear Materials Authority, Maadi, Cairo, Egypt.

出版信息

Geochem Trans. 2023 Oct 17;24(1):3. doi: 10.1186/s12932-023-00083-3.

Abstract

The current work is an attempt to reveal the possible utilization of the radiometric measurements to build-up a complete genetic scenario for magmatic, hydrothermal, and supergene uranium mineralization. For this purpose, ground gamma-ray survey was performed through the exploratory tunnels dug perpendicular to El-Missikat and El-Erediya shear zones, the Central Eastern Desert of Egypt. Contents of U, Th, and K were measured for the host pink granite (e.g., avg.15.94 U ppm, 35.62 Th ppm, and 6.63% K), alteration zones (brecciation, silicification, greisenization, kaolinization and hematitization) (e.g., avg. 124.01 U ppm, 63.67 Th ppm, and 3.13% K), and mineralized silica veins (e.g., avg. 312.65 U ppm, 92.22 Th ppm, and 2.62% K). All of these data were graphically represented as correlation plots of Th vs. U, Th/U vs. U, Th vs. K, and U/K vs. Th/K. The overall results indicate magmatic, hydrothermal, and supergene sources of El-Missikat and El-Erediya U mineralization. The magma-derived U contents are enclosed mainly in the pink granite that is mostly characterized by normal Th/U (2.5-5) and Th/K ratios (3-510). The hydrothermal processes through the alteration zones and mineralized silica veins are reflected by the weak correlation of Th with U (e.g. r = 0.13 and - 0.39), the strong negative correlation of Th/U ratio with U (e.g. r = - 0.82), 2.5˃Th/U˃0.1, Th/K˃510, Th/K < 3*10, and the strong positive correlation of U/K with Th/K (e.g. r = 0.91) as well as the occurrence of thorite, columbite, xenotime and hydrothermal zircon (0.5 > Th/U ≤ 0.1). Afterwards, the hydrothermal mineralization underwent some degrees of chemical weathering that resulted in supergene U mineralization whose fingerprints can be traced by the occurrence of secondary U minerals (e.g. kasolite and uranophane), Th/U ratios ≤ 0.1, and the weak correlation between Th/K and U/K (e.g. r = 0.39 and - 0.11).

摘要

当前的研究旨在揭示放射性测量在构建岩浆、热液和表生铀矿化完整成因模式方面的潜在应用。为此,通过在埃及中东部沙漠垂直于埃尔 - 米西卡特和埃尔 - 埃雷迪亚剪切带挖掘的勘探巷道进行了地面伽马射线测量。测量了主体粉色花岗岩(例如,平均铀含量15.94 ppm、钍含量35.62 ppm和钾含量6.63%)、蚀变带(角砾化、硅化、云英岩化、高岭土化和赤铁矿化)(例如,平均铀含量124.01 ppm、钍含量63.67 ppm和钾含量3.13%)以及矿化硅脉(例如,平均铀含量312.65 ppm、钍含量92.22 ppm和钾含量2.62%)中的铀、钍和钾含量。所有这些数据都以钍与铀、钍/铀与铀、钍与钾以及铀/钾与钍/钾的相关图形式进行了图形表示。总体结果表明了埃尔 - 米西卡特和埃尔 - 埃雷迪亚铀矿化的岩浆、热液和表生来源。岩浆源的铀含量主要包含在粉色花岗岩中,其大多具有正常的钍/铀(2.5 - 5)和钍/钾比值(3 - 5×10)。通过蚀变带和矿化硅脉的热液过程表现为钍与铀的弱相关性(例如,r = 0.13和 - 0.39)、钍/铀比值与铀的强负相关性(例如,r = - 0.82)、2.5>钍/铀>0.1、钍/钾>5×10、钍/钾<3×10以及铀/钾与钍/钾的强正相关性(例如,r = 0.91),以及钍石、铌钽铁矿、磷钇矿和热液锆石的出现(0.5>钍/铀≤0.1)。之后,热液矿化经历了一定程度的化学风化,导致了表生铀矿化,其特征可通过次生铀矿物(如钙铀云母和铀石)的出现、钍/铀比值≤0.1以及钍/钾与铀/钾之间的弱相关性(例如,r = 0.39和 - 0.11)来追踪。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/825b/10580569/0c96df01b4df/12932_2023_83_Fig1_HTML.jpg

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