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安村金矿地球化学异常规模大,特征好,并具良好的成矿地质背景,以往做了一些地质工作.但找矿尚未突破。文章从火山构造控矿特征入手,通过对相关找矿信息的综合分析研究,初步建立了矿区火山构造控矿模型,在此基础上,优选了3处找矿靶区进行找矿预测评价。 相似文献
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安村金矿地球化学异常规模大,特征好,并具良好的成矿地质背景,以往做了一些地质工作,但找矿尚未突破.文章从火山构造控矿特征入手,通过对相关找矿信息的综合分析研究,初步建立了矿区火山构造控矿模型,在此基础上,优选了3处找矿靶区进行找矿预测评价. 相似文献
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河南栾川Mo多金属矿集区构造地球化学特征及找矿预测 总被引:1,自引:0,他引:1
栾川Mo多金属矿集区位于华北陆块南缘与北秦岭造山带的结合部。本文在对栾川Mo多金属矿集区地质特征、构造控岩控矿特征总结的基础上,运用数学地质的方法对矿集区构造裂隙地球化学特征进行分析,根据构造地球化学异常特征圈出有利找矿靶区,工程验证取得明显的找矿效果。这表明构造地球化学-数学地质方法具有良好的找矿效果,为栾川Mo多金属矿集区开展深部矿产勘查工作提供了科学依据。 相似文献
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二道甸子金矿具有独特的成因机制及成矿控制条件,通过对该矿主矿带金矿化作用与古生代邻碳变岩系,弧形构造带以及与海西期黑云母花岗岩侵入作用之间的关系分析,指出后者是金矿成矿的主要控制条件;并据此总结出金矿富集规律和矿体预测准则,指出在矿区外围及深部存在进一步工作的找矿靶区。 相似文献
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石泉──汉阴北部金矿带地质特征 总被引:12,自引:1,他引:12
本文以黄龙金矿床的地质特征为中心,叙述了石泉一汉阴北部金矿的地质特征,阐述了岩层、构造、热液蚀变三种控矿因素。指出了找矿前景和找矿靶区。并对这类低品位金矿开发利用做了浅析。 相似文献
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小秦岭金矿带潼峪矿集区金的成矿规律与找矿预测 总被引:2,自引:0,他引:2
在调查分析的基础上,结合变质核杂岩构造特征,研究了小秦岭金矿带潼峪矿集区金的成矿规律与控矿因素,指出潼峪矿集区金矿床的成矿物质来自太华群,并受晚期岩浆和构造的控制,尤其是变质核杂岩构造系统及其剥离(滑脱)构造控矿特征非常明显。综合研究认为,区内佛头崖-狮子包地段、东交沟—佛头崖一带、岳王庙-王排沟地区与复背斜倾伏端是重要的找矿靶区,值得进一步深入工作,并可为老矿区找矿提供示范。这对在老矿区深部寻找金矿,把小秦岭西段的深部找矿工作推向新阶段,实现找矿突破,具有重要的现实意义。 相似文献
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二道甸子金矿具有独特的成因机制及成矿控制条件。通过对该矿主矿带金矿化作用与古生代含碳变质岩系、弧形构造带以及与海西期黑云母花岗岩侵入作用之间的关系分析,指出后者是金矿成矿的主要控制条件;并据此总结出金矿富集规律和矿体预测准则,指出在矿区外国及深部存在进一步工作的找矿靶区。 相似文献
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Gilles Serge Odin 《Comptes Rendus Geoscience》2002,334(6):409-414
Lithostratigraphy, physicochemical stratigraphy, biostratigraphy, and geochronology of the 77–70 Ma old series bracketing the Campanian–Maastrichtian boundary have been investigated by 70 experts. For the first time, direct relationships between macro- and microfossils have been established, as well as direct and indirect relationships between chemo-physical and biostratigraphical tools. A combination of criteria for selecting the boundary level, duration estimates, uncertainties on durations and on the location of biohorizons have been considered; new chronostratigraphic units are proposed. The geological site at Tercis is accepted by the Commission on Stratigraphy as the international reference for the stratigraphy of the studied interval. To cite this article: G.S. Odin, C. R. Geoscience 334 (2002) 409–414. 相似文献
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正1 Introduction Geological studies established on several sections in Lanping-Simao basin have shown that the salt-bearing strata of Mengyejing formation(Yunlong Fm.in Lanping basin)are constituted by an alternation of salt layers and interbedded facies.The latter consists mainly of mudstones,and mudstone-rich conglomerate.The mineralogy and geochemistry of salt-bearing beds and 相似文献
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正On 22nd April 2014,with the approach of the 45th World Earth Day,China’s Ministry of Land and resources issued the status of China’s mineral resources in 2013.The first task of the prospecting breakthrough strategy action implemented in the last five years has been completed,and China’s security capacity for mineral resources has been significantly improved.In the 相似文献
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正There are more than 700 salt lakes with area of more than 1km2 on the Qinghai-Tibet Plateau of China.In recent years,an oilfield brine was also found in the Nanyishan Section of Qaidam Basin in the Qinghai-Tibet 相似文献
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正1 Introduction Physical and numerical models are constructed to investigate the evolution and mechanism of salt migration driven by tectonic processes.In recent years,we have designed and ran series of models to simulate salt 相似文献
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YUAN Qin LI Jianguo QIN Zhanjie WEI Haicheng SHENG Shurong SHAN Fashou 《《地质学报》英文版》2014,88(Z1):276-276
正The study of Cretaceous-Palaeogene salt-bearing strata of the Khorat Basin Laos and the Lanping-Simao Basin in Yunnan,China has an great significance not only in explaining the basin evolution and the genesis of potash 相似文献
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正Potash is one of the long-term scare deposits in China,and potash prospecting has long been listed as a key brainstorm project for our nation and geological prospecting units.There have been considerable studies in search for potash deposits in the Kuqa depression of the Tarim basin(Jackson et al.,1991;Gemmer et al.,2004;Vendeville,2005;Vendeville and Jackson,1992a,1992b), 相似文献
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正1 Introduction Qaidam Basin in Qinghai,including 43 salt lakes with multiple dominant mineral such as potassium,magnesium,lithium etc.,is the most intensive distribution of Saline 相似文献