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加拿大拉布拉多地区Superior湖型铁建造成矿模式及资源潜力分析 被引量:3

Metallogenic model and potential analysis of the Canadian Labrador Lake Superior-type iron formation
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摘要 全球生产的大多数铁矿石(>90%)来自富铁硅质沉积岩及其变质岩或通常总称为"铁建造"的次生衍生物。文章利用典型矿床、物化探及地质资料,结合拉布拉多地区Superior湖型铁建造成矿带的成矿地质特征及演化规律,初步判定拉布拉多地区特有的Superior湖型铁建造是介于条带状含铁建造与粒状含铁建造之间过渡的(火山)沉积变质型铁建造。通过分析其成矿规模、成矿环境、成矿演化特征,推断拉布拉多地区Superior湖型铁建造具有良好的资源潜力。 Most of the global iron ore production (〉 90%) comes from the iron rich siliceous sedimenta- ry rocks and their metamorphic derivatives usually referring to as iron formation. Based on typical depos its, geophysical and geochemical data and geological and metallogenic characteristics and evolution pattern of Superior Lake iron formation belt, it is roughly determined that Superior Lake iron formation is a vol- canic sedimentary-metamorphic iron formation, a transition type between banded iron formation and gran- ular iron formation. The metallogenic pattern, environment and evolution characteristics show great po tential of iron resource in Canadian Labrador Lake Superior-type iron formation.
出处 《地质找矿论丛》 CAS CSCD 2015年第1期36-42,共7页 Contributions to Geology and Mineral Resources Research
基金 中央地勘基金项目"北美-格陵兰重要成矿带成矿规律与优势矿产资源潜力评价研究"(编号:2011D3-09-2)资助
关键词 拉布拉多地区铁建造 新魁北克造山带 沉积机制 资源潜力 加拿大 iron formation in Labrador area New Quebec orogenic belt deposition mechanism re- source potential Canada
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  • 1沈保丰.中国BIF型铁矿床地质特征和资源远景[J].地质学报,2012,86(9):1376-1395. 被引量:83
  • 2王长乐,张连昌,刘利,代堰锫.国外前寒武纪铁建造的研究进展与有待深入探讨的问题[J].矿床地质,2012,31(6):1311-1325. 被引量:25
  • 3Gross G A. A classification of iron-formation based on deposi- tional environments[J]. Canadian Mineralogist, 1980,18: 215 -222.
  • 4Low A P. Report on exploration in the Labrador Peninsula a long Eastmain, Koksoak, Manikuagan and portions of other riversFR:. Geological Survey of Canada, Annual Report, VI II, L,1985:98.
  • 5Clark T,Wares M. Lithotectonic and metallogenic synthesis of the New Quebec Orogen (Labrador Trough)[M]. Ministate des Ressourees naturelles, Quebec, MM, 2005 : 175.
  • 6Neal H E. Iron deposits of the Labrador Trough[J]. Explora- tion and Mining Geology, 2000,9(2) :113 - 121.
  • 7James H L, Trendall A F. Banded iron formation: Distribu- tion in time and paleoenvironmental signifieance[C]// Holland H D,Schidlowski M. Mineral deposits and evolution of the bi- osphere. New York: Springer Verlag Press, 1982 : 199 - 218.
  • 8Stubbins J B, Blais R A. Zajac, I.S. Origin of the soft iron ores of the Knob Lake Range[J]. Canadian Mining and Metal- lurgieal Bulletin, 1961, 585:43 - 58.
  • 9Zajae, I.S. The stratigraphy and mineralogy of the Sokoman iron formation in the Knob Lake area, Quebec and New- foundland[R]. Geological Survey of Canada, Bulletin, 1974, 220 : 159.
  • 10Clout J M F,Simonson B M. Preeambrian iron formation and iron formation-hosted iron ore deposits[J]. Economic Geolo-gy, 2005, 100:643-679.

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