Geochemical petrography assessment method of cesium-rubidium associated mine

A technology of geochemistry and associated minerals, applied in the fields of resource ecological environment, comprehensive utilization of mine development resources, and mineral exploration technology
CN109725367AInactive Publication Date: 2019-05-07有色金属矿产地质调查中心

Patent Information

Authority / Receiving Office
CN · China
Current Assignee / Owner
有色金属矿产地质调查中心
Publication Date
2019-05-07
Estimated Expiration
Not applicable · inactive patent

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Abstract

The invention relates to a geochemical petrography assessment method of cesium-rubidium associated mine. The method comprises the following steps: (1) performing field structure petrography reconnaissance and investigation; (2) delineating a favorable mineralization area; (3) ore-containing petrofacies division; (4) combing exploration engineering distribution condition; (5) collecting a sample and specimen for geochemical petrography research; (6) developing petrography geochemical research; (7) determining occurrence states and geochemical parameters of the main industrial component and theassociated industrial component; and (8) developing the geochemical petrography research. The method disclosed by the invention not only can be extensively applied to a mineralization halation mechanism for explaining a mineral deposit and the genesis of the mineral deposit, but also can be used for explaining the geochemical ecological effect relation of the mine exploitation, thereby realizing aharmonious development relation among the ecology, the environment and the resource from a source, and the method can be extensively applied to the technical field of the mineral exploration, resource ecologic environment and the mine development resource comprehensive utilization.
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Description

technical field

[0001] The invention relates to the technical fields of mineral exploration technology, resource ecological environment and comprehensive utilization of mine development resources, and specifically refers to a geochemical petrographic identification method of cesium-rubidium co-associated ore. Background technique

[0002] Sedimentary basins were reformed by late tectonic-magmatic-thermal events, often forming complex diagenetic and mineralization systems. In the process of mineral exploration and evaluation, the determination of main minerals, paragenetic minerals and associated minerals is an inevitable requirement for mineral exploration evaluation and prospecting prediction. In the process of coordinated development of resource development and ecological environment, it is an inevitable requirement for resource development and environmental friendliness to identify co-occurring beneficial components and harmful components, realize maximum recycling of res...

Claims

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