伍皓, 夏彧, 周恳恳, 梁薇, 李炼鹏, 雷星, 孔然, 李松柏, 唐喜, 包大林. 0: 腾冲砂岩型铀矿成矿特征及其成因探讨. 地质通报. DOI: 10.12097/gbc.2023.07.019
    引用本文: 伍皓, 夏彧, 周恳恳, 梁薇, 李炼鹏, 雷星, 孔然, 李松柏, 唐喜, 包大林. 0: 腾冲砂岩型铀矿成矿特征及其成因探讨. 地质通报. DOI: 10.12097/gbc.2023.07.019
    WU, Yu XIA, Kenken ZHOU, Wei LIANG, Lianpeng LI, Xing LEI, Ran KONG, Songbo LI, Xi TANG, Dalin BAO. 0: Metallogenic characteristics and genesis of the Tengchong sandstone-type uranium deposit.. Geological Bulletin of China. DOI: 10.12097/gbc.2023.07.019
    Citation: WU, Yu XIA, Kenken ZHOU, Wei LIANG, Lianpeng LI, Xing LEI, Ran KONG, Songbo LI, Xi TANG, Dalin BAO. 0: Metallogenic characteristics and genesis of the Tengchong sandstone-type uranium deposit.. Geological Bulletin of China. DOI: 10.12097/gbc.2023.07.019

    腾冲砂岩型铀矿成矿特征及其成因探讨

    Metallogenic characteristics and genesis of the Tengchong sandstone-type uranium deposit.

    • 摘要: 腾冲是我国砂岩型铀矿可地浸开采实验首获突破的地区,但铀矿成因仍充满争议。本文以龙川江盆地汗坝寨地区和梁河盆地朗普寨地区施工的10口钻孔岩心为主要研究素材,通过开展岩心沉积相编录、地球化学分析和电子探针测试等研究认为:汗坝寨地区铀多呈吸附态,铀矿物以化学简式总体接近Ca2U4(SiO4)3(PO4)3的纳米级未定名矿物为主,铀成矿受“断裂—热液—下部富有机质层”联合控制;朗普寨地区铀多呈吸附态和铀矿物形式,见磷铀矿、钙铀云母、铀石、沥青铀矿、钛铀矿,铀成矿受“断裂—热液—下部富有机质层”和基性岩(脉)侵位共同影响。进一步研究发现:铀不仅仍在通过深部还原性流体沿断裂搬运在浅部地层强还原带中富集成矿,而且铀成矿与具板内玄武岩地球化学特征的基性火山岩(脉)成岩时空基本耦合。结合腾冲温泉中Li-U-Au共生富集研究指示腾冲可能存在“现代地幔柱”的初步认识,提出腾冲砂岩型铀矿可能属“核源—地幔柱”成因,即:外地核中的金属铀呈铀氢化物或铀合金氢化物等形式沿地幔柱上升迁移,在浅部经断裂—热液(还原流体)和基性岩(脉)导入,在有利的构造—岩性叠合部位富集成矿。

       

      Abstract: Tengchong is the first area in China where the ground leaching experiment of sandstone type uranium ore has made a breakthrough, but the origin of uranium ore is still controversial. This paper takes the core of 10 boreholes constructed in Hanbazhai area of Longchuanjiang Basin and Langpuzhai area of Lianghe Basin as the main research materials. Through the research of core sedimentary facies recording, geochemical analysis and electron probe test, it is concluded that: Uranium is mostly adsorbed in Hanbazhai area, and the uranium minerals are mainly nano scale unnamed minerals with chemical formula generally close to Ca2U4(SiO4)3(PO4)3. Uranium mineralization is controlled by "fault-hydrothermal- bottom-organic rich layer". Uranium in Langpuzhai area is mostly in adsorbed state and form of uranium minerals, such as uranophenite, calcium-uranite, uranite, pitchblende, and uranium-titanite. Uranium mineralization is influenced by the "fault-hydrothermal-bottom-rich organic matter layer" and the emplacement of basic rocks (veins). it is also found that uranium is not only still being enriched and metallogenic in the shallow strata strong reduction zone by deep reducing fluid transport along the fault, but also that uranium mineralization is basically coupled with the basic volcanic rocks (veins) with the geochemical characteristics of intraplate basalt. Combined with the preliminary understanding that the Li-U-Au symbiont enrichment in Tengchong hot spring indicates that there may be "modern mantle plume" in Tengchong, it is proposed that the sandstone type uranium deposits in Tengchong may belong to "Earth core source - mantle plume" origin. i. e., the nature uranium in the outer core in the form of uranium hydride or uranium alloy hydride upward migration along the mantle plume, shallow fault hydrothermal (reduction fluid) and basic rock (vein) introduction, enrichment and mineralization in the favorable structure-lithology position.

       

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