陈明辉,胡详昭,孙际茂,徐军伟,鲍振襄,包觉敏.湖南省寒武系黑色岩系页岩型钒矿概论[J].地质找矿论丛,2012,27(4):410-420
湖南省寒武系黑色岩系页岩型钒矿概论
Overview on the Cambrian black shale-hosted vanadium deposit in Hunan
投稿时间:2012-09-11  修订日期:2012-10-11
DOI:10.6053/j.issn.1001-1412.2012.04.004
中文关键词:  钒矿  黑色岩系  钒的赋存状态  生物成矿作用  沉积矿床  湖南省
英文关键词:vanadium deposit  black rock series  occurrence of vanadium  biogenic mineralization  sedimentary deposit  Hunan province
基金项目:
作者单位E-mail
陈明辉 中南大学地球科学与信息物理学院, 长沙 410083
湖南省有色地质勘查局二四五队, 湖南 吉首 416007 
xxjscmh@163.com 
胡详昭 中南大学地球科学与信息物理学院, 长沙 410083  
孙际茂 湖南省有色地质勘查局二四五队, 湖南 吉首 416007  
徐军伟 湖南省有色地质勘查局, 长沙 410082  
鲍振襄 湘西矿产资源综合研究发展中心, 湖南 乾州 416007  
包觉敏 湘西矿产资源综合研究发展中心, 湖南 乾州 416007  
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中文摘要:
      湖南省寒武系黑色岩系蕴藏着丰富的钒矿资源,钒矿床产于寒武系底部富含有机质的碳、磷、硅质黑色岩系中;矿体呈层状、似层状,形态简单,产状稳定。多项测试结果表明,钒的载体岩石为黑色页岩(碳质页岩、硅质碳质页岩);钒主要呈类质同象形式赋存于伊利石晶格中;矿石类型主要为钒矿石,少数矿床中石煤钒矿石也是重要的矿石类型;钒的价态以V3+为主。钒的富集主要发生在沉积阶段,与黑色岩系的沉积过程一致;矿床形成于缺氧环境中,大部分钒被黏土质吸附,随有机质、黏土质和硅质呈胶态腐泥沉入海底;在成岩过程中,云母类黏土矿物结构发生再结晶,将原有表面吸附的钒(V3+)转化为类质同象形式进入云母晶格中取代部分铝(Al3+),形成含钒伊利石并聚集成为钒矿床。研究表明,本区黑色岩系及其有关的钒矿在沉积成岩成矿过程中都离不开生物地球化学作用,矿床成因属于在热水作用参与下沉积形成的海相化学和生物地球化学沉积矿床,矿床类型为黑色页岩型钒矿。
英文摘要:
      The Cambrian black shale is abundant with non-ferrous, precious, rare-earth metal and stone-coal, barite mineral resources in Hunan, especially for vanadium which is widely distributed with large resource potential and unique superior mineral resource of China. The vanadium deposit occurs at bottom of the black Cambrian organic material-rich, siliceous, carbonaceous and phosphorus shale. Ore bodies are stable in simple layer or layroid forms. Vanadium occurs as isomorph in illite crystal lattice. V-bearing black shale (carbonaceous shale, carbonaceous-siliceous shale) is the main vanadium ore type. However, in some vanadium deposits include stone-coal vanadium ore.V3+are dominant and vanadium is concentrated and syn-sedimented with the black shale under anaerobic condition. Most of the vanadium is absorbed by the clay minerals and precipitated at sea floor along with colloidal organic matter, clay minerals and siliceous materials. During diagenesis mica minerals were recrystalized into illite with involvement of the vanadium3+ substitution for A13+ in the mineral lattices.The study shows that bio-geochemical process plays an important role during rock-forming of the black shale and ore-forming of the vanadium deposits. Genetically, the vanadium deposits are marine chemical and biageochemical sedimentary type and generally they are the black shale-hosted ore deposit.
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