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淮北闸河矿区高岭石泥岩(K_2)矿床的地质特征及其工业利用前景 被引量:2
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作者 徐龙 刘文中 +2 位作者 贺兆惠 孔德化 盛方廷 《淮南矿业学院学报》 1994年第3期17-22,共6页
本文根据采样测试和资料分析,运用X衍射、电镜及红外光谱等实验手段,对淮北闸河矿区下石盒子组底部高岭石泥岩矿床的地质特征、形成条件及其工业利用前景进行了探讨和研究。认为该层高岭石泥岩为优质沉积型高岭土矿床,具有良好的开采和... 本文根据采样测试和资料分析,运用X衍射、电镜及红外光谱等实验手段,对淮北闸河矿区下石盒子组底部高岭石泥岩矿床的地质特征、形成条件及其工业利用前景进行了探讨和研究。认为该层高岭石泥岩为优质沉积型高岭土矿床,具有良好的开采和利用价值。 展开更多
关键词 安徽 淮北闸河矿区 高岭石泥岩矿床 地质特征 矿石结构 矿石构造 矿石化学成分 成矿条件
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略论安徽矿产资源优势与转化
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作者 项怀顺 《中国地质经济》 1989年第8期25-29,共5页
本文论述了安徽省矿产资源的优势状况,以及矿产资源开发中存在的主要问题和原因,在此基础上提出了将安徽省矿产资源优势转化为商品经济优势,振兴安徽经济的五条对策和建议。其中首先强调了要把开发矿产资源对发展本省经济的促进作用,提... 本文论述了安徽省矿产资源的优势状况,以及矿产资源开发中存在的主要问题和原因,在此基础上提出了将安徽省矿产资源优势转化为商品经济优势,振兴安徽经济的五条对策和建议。其中首先强调了要把开发矿产资源对发展本省经济的促进作用,提高到战略地位来认识;其次是要制定全省矿产发展规划和有关政策措施。 展开更多
关键词 安徽 矿产 资源
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安徽省区域地球化学场及其地质意义
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作者 陈济源 《地质与勘探》 CAS CSCD 北大核心 1991年第9期44-49,共6页
安徽省区域地球化学场与区域构造有密切关系.北部Cu、Pb、Cr、Co地化场反映中朝准地台南缘碳酸盐岩台地沉积物与蛇绿岩或绿岩带的地化特征;大别山Cr、Ni、Cu地化场反映其具有岛弧特征;中部沿江 Cu、Pb异常场反映碳酸盐岩台地和岩浆热液... 安徽省区域地球化学场与区域构造有密切关系.北部Cu、Pb、Cr、Co地化场反映中朝准地台南缘碳酸盐岩台地沉积物与蛇绿岩或绿岩带的地化特征;大别山Cr、Ni、Cu地化场反映其具有岛弧特征;中部沿江 Cu、Pb异常场反映碳酸盐岩台地和岩浆热液矿质的叠加;南部Pb、V、Cr异常反映早古生代地层与蛇绿岩套的混合地化场. 展开更多
关键词 区域 地球化学场 矿产 分布 安徽
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Reconstruction of Ore-controlling Structures Resulting from Magmatic Intrusion into the Tongling Ore Cluster Area during the Yanshanian Epoch 被引量:13
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作者 DENG Jun WANG Qingfei +5 位作者 YANG Liqiang GAO Bangfei HUANG Dinghua LIU Yah XU Hao JIANG Shaoqing 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2007年第2期287-296,共10页
The Tongling ore cluster area experienced intensive compression and associated shearing during the Indosinian-Yanshanian Epoch, which formed a trunk ore-controlling fold and fault system in the caprock. The magmatic i... The Tongling ore cluster area experienced intensive compression and associated shearing during the Indosinian-Yanshanian Epoch, which formed a trunk ore-controlling fold and fault system in the caprock. The magmatic intrusion in the Yanshanian Epoch induced a multi-stage unmixing of poly-phase fluids, resulting in mineralization characterized by multi-layer, wide-range, and multiform styles. The magmatic intrusion in the Tongling area not only supplied the essential ore-forming materials, but also reconstructed the ore-controlling structures according to a trend surface simulation of the following five strata boundaries: Silurian-Devonian, Devonian-Carboniferous, Carboniferous- Permian, Middle Permian-Upper Permian and Permian -Triassic. The result of this simulation shows that there exists a significant difference between the strata in the upper part and those in the lower. The lower trend surfaces are antiform whereas the upper trend surfaces are synform. In addition, superposing of the trend surfaces of adjacent bed boundaries (such as, Silurian-Devonian boundary superposed upon Devonian-Carboniferous boundary) shows that the lower trend surface always pierces the one above. Moreover, the position and orientation of the pierced parts of the different superposed trend surfaces are similar and show E-W-trending zonal distribution in accordance with the distribution of the regional E-W-trending magmatic-metallogenic belt. Based on comprehensive analysis of the mechanical properties of the strata, structural deformation mechanisms, and field phenomena, it seems that the special characteristics of the stratal trend surface resulted from jacking due to magmatic intrusion into the caprock previously controlled by an E-W-trending basement fault. Therefore, it is deduced that the major ore-controlling structures, which formed during regional horizontal compression, were reconstructed by the vertical jacking function of ore-forming magmas during the Yanshanian Epoch. During the ore-forming process, the local vertical jacking of magmas, coupled with the regional horizontal compression, optimized an extensive environment in the fluid- conduit network and accelerated the unmixing of poly-phase fluids following magmatic emplacement. Jacking also strengthened the vertical and lateral fluid-guiding structures, supplying more suitable physical conditions for multi-layer emplacement and wide-ranging transport of poly-phase fluids. 展开更多
关键词 magma trend surface multi-layer mineralization UNMIXING Tongling ore cluster area YANSHANIAN
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