矿带

kuàng dài
  • ore belt;ore zone
矿带矿带
矿带[kuàng dài]
  1. 北西向紧密线型褶皱、断裂及其次级构造控制矿带的展布。

    The NW - trending tight linear folds and fractures and their secondary structures control the distribution of the ore belt .

  2. 在矿带上有明显的地球化学异常显示,且具垂直和水平分带特征。

    The geochemical anomaly observed over the ore belt shows a distinct vertical and horizontal zoning .

  3. 本文以华蓥山锶矿带为例,介绍了运用GIS技术进行矿产预测的方法。

    This paper introduces the application of GIS to prediction of mineral resources by taking the Huayingshan Sr mineralization belt as an example .

  4. Cu、Pb、Mo、W、Hg皆可显示较明显的异常,但宽度均小于含矿带的宽度。

    Cu , Pb , Mo , W and Hg can all show obvious anomalies , but their width are all less than the mineralization zone .

  5. 超越影像数码影像兰坪铅锌矿带MSS影像地质特征

    The digital image processing for Lanping lead-zinc ore zone and its effects of Geology and mineral resource

  6. 东太平洋CC区多金属结核矿带的形成应归于海底板块扩张活动的一种资源效应和经后期表生地质作用改造的结果。

    The formation of the polymetallic nodule belt in the CCZ is attributed to the effect of resources of plate tectonics and seafloor spreading , and the reworking of the late-stage supergene geological processes .

  7. 基于金矿体赋存规律的研究,并结合EH-4勘查技术,提出在101矿带深部和南部具有很好的找矿前景。

    Based on gold ore occurrence regularity , combined with EH-4 prospecting technique , it is suggested that there is a very good prospecting perspective in the depth and south of101 ore belt at Shihu .

  8. 银昆构造成矿带试论成矿岩浆的成因机理

    YINCHUAN-KUNMING TECTONIC METALLOGENIC BELT On the Genetic Mechanism of Ore-forming Magma

  9. 铜矿分西矿带和东矿带。

    Copper deposits are divided into west and east ore belts .

  10. 北祁连成矿带地球化学块体含矿性评价

    Ore-bearing potentials of geochemical blocks in the North Qilian metallogenic belt

  11. 我国宝玉石矿带划分及矿床分类

    Zoning and classification of gem ( jade ) mineral deposits in China

  12. 汞矿带中金矿成矿条件及赋存规律

    The Forming Condition and Existing Regularity of Au Mineralization in Hg-ore Belt

  13. 在露天矿带式输送机上进行托辊寿命试验

    Working life test of belt conveyor idler used at open pit mine

  14. 区域上构成了东、西两个硅灰石矿带。

    There are two wollastonite ore belts in the east and west .

  15. 银昆构造成矿带新疆阿尔泰金矿分布地质特征

    YINCHUAN-KUNMING TECTONIC METALLOGENIC BELT The geological features of goldmine distribution in Aite Xinjiang

  16. 贵州务川汞矿带推覆构造初探

    The First Try on the Overthrust Tectonic of Wuchuan Mercury Belt in Guizhou

  17. 文章探讨了水城铅-锌矿带的成矿地质背景和控矿地质条件。

    Pb-Zn metallogenic background and geologic ore-controlling conditions is discussed in the paper .

  18. 南矿带-80m中段西部的采矿方法

    Mining method in the west of - 80m sublevel of the south ore zone

  19. 广西丹池矿带锡-多金属矿床地质地球化学特征及成矿作用

    Geological and geochemical characteristics and mineralizing process of the Dan-chi tin-polymetallic mineralized belt , Guangxi

  20. 贵州水城铅锌-矿带成矿条件及控矿因素与成因

    Study of ore controlling conditions and metallogenic regularity in Shuicheng lead-zinc ore zone , guizhou

  21. 而且更晚期的断裂构造活动造成矿带差异性抬升及剥蚀。

    Furthermore , later phase structural activity made the mineralization belt diverse uplift and denudation .

  22. 柿竹园三矿带高分段采矿新工艺

    The Application of New High-Gradient Mining Technique

  23. 硒是湘黔汞矿带标型微量指示元素。

    Selenium is the guide trace element in the western Hunan - eastern Guizhou mercury deposit .

  24. 矿带内,铜多金属矿床赋存于下泥盆统康布铁堡组中。

    Copper polymetallic deposite in this belt are hosted in Kang-Bu-Tie-Bao group , Lower Devonian Series .

  25. 湘黔边境铅锌矿带硫铅同位素组成特征

    S and Pb Isotope Form Feature of Lead-zinc Ore - belt in the Border of Guizhou-Hunan

  26. 武山铜矿南北矿带混合矿选别工艺的研究

    Study on mineral processing technology of mixed ore from north and South belt at Wushan Copper Mine

  27. 甘肃马泉金矿床四号矿带控矿因素及找矿标志中条山早元古代铜矿成矿作用与演化

    Ore-control factors and prospecting criteria of No. 4 ore zone of Maquan gold deposit in Gansu Province

  28. 湘西黔东汞矿带两类不同矿体的产状特征

    Mode of occurrence of two different types of orebodies in the western Hunan-Eastern Guizhou mercury ore belt

  29. 陕西丁马矿带金龙山丘岭金矿含金黄铁矿特征及其演化

    Features and Evolution of Au bearing Pyrite in the Jinlongshan Qiuling Au-deposit of Ding-Ma ore Belt , Shanxi

  30. 两个矿带成矿作用的差异,主要与所处的区域地质背景不同有关。

    The difference of these two belts in mineralization is mainly related to the different regional geological setting .