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流体混合对砂岩型铀矿成矿作用的影响
引用本文:金若时,张成江,冯晓曦,汤超,朱强,李光耀.流体混合对砂岩型铀矿成矿作用的影响[J].中国区域地质,2014(2):354-358.
作者姓名:金若时  张成江  冯晓曦  汤超  朱强  李光耀
作者单位:[1]天津地质矿产研究所,天津300170 [2]成都理工大学,四川成都610059 [3]中国地质大学(武汉)资源学院,湖北武汉430074
基金项目:资助项目:中国地质调查局项目(编号:1212011220494)
摘    要:探讨不同类型盆地中不同来源、不同组成、不同性质的流体混合对砂岩型铀矿成矿的影响。流体混合不但改变流体的物理化学条件,更重要的是改变流体的化学组成,导致流体化学平衡的破坏,引起流体卸载成矿。不同构造背景下形成的盆地、流体特征及其对砂岩型铀矿成矿的影响不同。铀一油一煤共存盆地中,浅表层含铀氧化性流体与油气有关的有机还原性流体相互作用对铀成矿起重要的控制作用;挤压构造环境下的盆地,在形成过程中造山带流体与盆地深源流体混合对成矿的影响很大;而伸展背景下的断陷盆地或裂谷盆地,往往伴随有深部岩浆和热流体的活动,应重视热液对砂岩型铀矿的改造、叠加富集的作用。

关 键 词:产铀盆地类型  流体特征  流体混合  砂岩型铀矿

The influence of fluid mixing on the mineralization of sandstone type uranium deposits.
JIN Ruo-shi,ZHANG Cheng-jiang,FENG Xiao-xi,TANG Chao,ZHU Qiang,LI Guang-yao.The influence of fluid mixing on the mineralization of sandstone type uranium deposits.[J].Regional Geology of China,2014(2):354-358.
Authors:JIN Ruo-shi  ZHANG Cheng-jiang  FENG Xiao-xi  TANG Chao  ZHU Qiang  LI Guang-yao
Institution:1. Tianjin Institute of Geology and Mineral Resources, Tianjin 500170, China; 2. Chengdu University of Technology, Chengdu 610059, Sichuan, China; 3. Faculty of Earth Resources, China University of Geoscience ,Wuhan 430074, Hubei, China
Abstract:The influence of different sources, compositions and properties of fluid mixing in different types of basins on the sandstone type uranium deposits was discussed in this paper. Fluid mixing changes physical and chemical conditions of the fluid and, what is more important, changes the chemical composition of the fluid, leading to the destruction of fluid chemical equilibrium and causing unloading mineralization of the fluid. In basins formed in different tectonic backgrounds, the impacts of fluid characteristics on the sandstone type uranium mineralization are different. In the uranium-oil-coal coexistent basin, the interaction between the uraniumbearing oxidizing fluid in the shallow layer and the organic reducing fluids associated with oil and gas plays an important controlling role in uranium mineralization, whereas in the basin Under the tectonic environment, the mixing of orogenic belt fluid and basin deep source fluid exerts great influence on mineralization. However, in the rift basin under the extension environment, there often occur deep magmatic and hydrothermal fluid activities, and hence attention should be paid to the transformation and superposition enrich- ment role of the thermal fluid on sandstone type uranium deposits.
Keywords:types of uranium-bearing basins  fluid characteristics  fluid mixing  sandstone type uranium deposit
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