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    阴江宁, 肖克炎. 中国锰矿资源潜力分析及成矿预测[J]. 中国地质, 2014, 41(5): 1424-1437.
    引用本文: 阴江宁, 肖克炎. 中国锰矿资源潜力分析及成矿预测[J]. 中国地质, 2014, 41(5): 1424-1437.
    YIN Jiang-ning, XIAO Ke-yan. Resources potential analysis and metallogenic prospect of Mn resources in China[J]. GEOLOGY IN CHINA, 2014, 41(5): 1424-1437.
    Citation: YIN Jiang-ning, XIAO Ke-yan. Resources potential analysis and metallogenic prospect of Mn resources in China[J]. GEOLOGY IN CHINA, 2014, 41(5): 1424-1437.

    中国锰矿资源潜力分析及成矿预测

    Resources potential analysis and metallogenic prospect of Mn resources in China

    • 摘要: 提要: 锰矿是目前中国紧缺矿产, 依据全国矿产资源潜力评价数据和成果, 对全国锰矿资源进行了现状分析和潜力预测。中国锰矿形成的主要大地构造部位包括: ”①大陆边缘浅海; ②台内裂陷带(如华北地台之燕辽沉降带); ③造山带中裂陷海槽等。中国锰矿以泛扬子周边地区最为发育, 桂西南、湘黔渝为主要富集区。中国锰矿床的古地理展布表明, 具有重大工业价值的锰矿床均形成于海相环境中, 并主要为碳酸锰矿床。今后具有找矿潜力的锰矿类型主要有: 海相沉积型和风化壳型, 另外, 海相火山岩型和陆相沉积型也有一定的潜力。依据大地构造背景与成锰盆地性质之间的关系, 将中国锰矿划分为10个Ⅲ级成矿带, 14个成矿远景区, 对其主要含锰层位、成矿特征、主攻类型、资源潜力进行了分析, 提出了重点找矿部署区建议, 可为国家锰矿找矿突破提供支持。

       

      Abstract: Abstract: Manganese is an important metal which is in serious shortage in China at present. Based on dataset and achievements of national mineral resources assessment project, the authors made current situation analysis and potential prediction for manganese resources in China. The main ore-forming geotectonic positions of Mn in China are located in such areas as shallow sea near continental margin, chasmic belt (subsidence zone of Hebei-Liaoning), and marine depression in the orogenic belt. Mn deposits are developed mainly around Yangtze region in China. The ore concentration areas of Mn lies in southwest Guangxi, Hunan, Guizhou and Chongqing. The study of paleogeography of Mn deposits in China shows that most important Mn deposits with high industrial value formed in marine environment, mostly Mn carbonate. Mn deposits with tremendous resource potential in China lie in marine sediments and weathering crusts; in addition, marine volcanic and continental sediments also have some resource potential. According to relations between tectonic structures and ore-forming basins of Mn, ten three-level metallogenic zones and 14 metallogenic prospective areas were delineated. The ore-forming rocks, metallogenic features, main types, and resources potential were analyzed. Suggestions on key prospect deploy areas were made for support of national Mn prospecting breakthrough.

       

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