期刊文献+

弓长岭富铁矿氧化还原环境的形成机制 被引量:8

The Formation Mechanism of the Redox Environment in the Rich Iron Deposits of Gongchangling
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摘要 通过分析弓长岭二矿区铁矿中变质矿物与铁矿物的组合规律,特别是石墨、堇青石和铁铝榴石这三个矿物,分析得出该矿区中的石墨是原始泥质沉积物经区域变质作用形成的.通过物理化学计算得出铁氧化物在纯水条件下的赋存形式是赤铁矿,在石墨存在的条件下,铁氧化物的赋存形式是磁铁矿.由该地区部分赤铁矿与磁铁矿紧邻的关系得出由纯水离解产生的O2具有很低的活跃性,并由此观点解释了该矿区以及鞍本地区出现的"两头大,中间小"的有趣现象以及该矿区地下500 m假象赤铁矿产生的原因. The environment of mineral preservation was indificated by the mineral component of the metamorphic.The graphite came from muddy sediments which formed by metamorphism according to the mineral assembled,especially the graphite,cordierite and garnet in the second iron ore of Gongchangling.By the calculation of physical chemistry,the iron oxide can form hematite under the conditions of pure water while it can form magnetite under the conditions of graphite.The activity of the O2 which comes from H2O is very low by the relation of hematite and magnetite.The results can be used to explain the appearance of "two sides are large,the intergrade is small" and the appearance of the martite which is undergroud 500 m.
出处 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2011年第11期1643-1646,共4页 Journal of Northeastern University(Natural Science)
基金 教育部高等学校博士学科点专项科研资金资助项目(N100401006 N090601002)
关键词 矿物组合 物理化学 氧化还原环境 纯水 石墨 minerals assemblages physical chemistry redox environment pure water graphite
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参考文献11

  • 1刘洪波.鞍山式铁矿的地球化学自组织作用[J].东北大学学报(自然科学版),1994,15(5):481-484. 被引量:6
  • 2李曙光.弓长岭富磁铁矿床成因的地球化学模型[J].地球化学,1982,11(2):113-121. 被引量:16
  • 3李曙光,支霞臣,陈江峰,王俊新,邓衍尧.鞍山前寒武纪条带状含铁建造中石墨的成因[J].地球化学,1983,12(2):162-169. 被引量:27
  • 4张湖.辽宁鞍本地区弓长岭型富铁矿成矿的垂直分带[J].地球化学,1982,11(3):260-269. 被引量:6
  • 5Posth N R, Hegler F, Konhauser K O, et al. Alternating Si and Fe deposition caused by temperature fluctuations in Precambrian oceans[J]. Nature Geoscience, 2008,1(8) :703-708.
  • 6Klein C. Some Precambrian banded iron-formations (BIFs) from around the world: their age, geologic setting, mineralogy, metamorphism, geochemistry, and origin [J]. American Mineralogist, 2005,90(10):1473-1499.
  • 7Angerer T, Steffen G. The BIF-hosted high-grade iron ore deposits in the Archean koolyanobbing greenstone belt, western Australia: structural control on synorogenic-and weathering-related magnetite, hematite, and goethiterich iron ore[J]. Economic Geology, 2010,105(5) :917-945.
  • 8Wang Y F, Xu H F, Merino E, et al. Generation of banded iron formations by internal dynamics and leaching of oceanic crust[J ]. Nature Geoscierzce, 2009,2( 11 ) : 781-784.
  • 9Boyd P W, Ellwood M J. The biogeochemieal cycle of iron in the ocean [ J ]. Natare Geoscoence, 2010,3 (9) : 675-682.
  • 10Landis C A. Graphitization of dispersed carbonaceous material in metamorphic rocks[J ]. Contr Mineral Petrol, 1971(30) :30-45.

二级参考文献4

  • 1刘洪波,1992年
  • 2张秋生,长春地质学院学报,1976年,1期,52页
  • 3关广岳,地质学报,1961年,41卷,1期,65页
  • 4程裕淇,地质学报,1957年,37卷,2期,153页

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