期刊文献+

新疆西天山备战铁矿成矿作用初探 被引量:12

Primary Study on Mineralization of Beizhan Iron Deposit in Xitianshan Area
在线阅读 下载PDF
导出
摘要 该文在野外地质调查基础上,对备战铁矿区内的火山岩和矿石进行了详细的矿物学和岩石地球化学研究,并深入讨论了矿床成因。研究表明,该区的主要赋矿围岩为火山岛弧玄武岩,其与磁铁矿有着类似的稀土元素配分模式,说明二者有成因上的联系。成矿物质可能来源于北天山洋块向伊犁板块之下俯冲过程中软流圈上涌形成的富铁玄武质岩浆。受洋块俯冲作用影响,富铁玄武质岩浆沿北天山压扭性深大断裂底侵,并经历了一定的结晶分离或同化混染作用,最后在中地壳形成一套演化的玄武质(安山质)岩浆,并在岩浆晚期阶段发生富铁岩浆和硅酸盐岩浆的分离,此时,火山岩中的普通辉石受岩浆晚期的热液作用影响蚀变为透辉石,发生了Si,Ca,Mg的富集和Fe,Al,Ti的缺失,一定程度上促进了含铁矿浆的富集。 On the basis of geological field survey,mineralogy and rock geochemistry of magmatic rocks and ore bodies have been studied in detail,and the origin of this deposit has been discussed as well.It is showed that main ore hosting rocks are volcanic island arc basalts,which have similar REE patterns with magnetite.It indicates that there is a relation between them.Ore forming materials may be iron rich basaltic magma which were formed by asthenosphere during the subduction period of Beitianshan ocean to Yili plate.Affected by the subduction of ocean-ic blocks,iron rich basaltic magma intruded along Beitianshan deep shear belt,and experienced a certain amount of separation or crystallization assimilation effect.Finally,a series of evoluted basaltic crust(andesitic)magma has been formed in the middle crust,and the separation of iron rich silicate magma and lava magma occurred in the late stage.Meanwhile,augite in magmatic rocks turned into diopside affected by late magmatic hydrothermal altera-tion impact,occurred the absence of Si,Ca,Mg and enrichment of Fe,Al,Ti.It has promoted the enrichment of iron ore bearing magma in a certain extent.
出处 《山东国土资源》 2014年第5期28-36,共9页 Shandong Land and Resources
基金 中国地质调查局天山成矿带地质矿产调查评价项目(项目编号:1212011120497) 山东省金属矿产成矿地质过程与资源利用重点实验室开放基金(2013014) 山东省"泰山学者"建设工程专项经费联合资助的成果
关键词 岩浆矿床 结晶分离 富铁岩浆 备战铁矿 阿吾拉勒 新疆西天山 Magmatic deposit crystallization and separation iron rich silicate magma Beizhan iron deposit Awu-lale area
  • 相关文献

参考文献31

  • 1Wager L B., Brown G M and Wadsworth W J. Types of igneous cu- mulates[ J]. Jour. Petrology, 1960, ( 1 ) :73 - 85.
  • 2Mackin, J. H. Iron ore deposits of the Iron Springs district, South-wester Utah, in Ridge, J . D. , ed. , Ore deposits of the United States, 1 933 -1967 (Graton- Sales vol. ) :New York, Am. Inst. Mining, Metall [ J ]. Petroleum Engineers, 1968, ( 2 ) : 992 - 1019.
  • 3Taylor R P. Rare earth element lithogeochemistry of ranitoid min- eral deposits: Canadian [ J]. Mining Metall. Bull. , 1983,76 (12) : 74 -84.
  • 4Nystroem, J. O & Henriquez, F. Magmatic features of iron ores of the Kiruna type in Chile and Sweden; ore textures and magnetite geochemistry [ J ]. Economic Geology, 1994,89 (4) : 820 - 839.
  • 5Kontak, D. J. , Michelle Y. De Wolfe De Young & Jaroslav Dostal. Late - stage crystallization history of the jurassic North Mountain Basalt, Nova Scotia, Canada. I. Textural and chemical evidence for pervasive development of silicate - liquid immiscibili- ty [ J ]. Canada Mineralogist, 2002, (40) : 1287 - 1311.
  • 6Jiang N, Chu X L, Toshio M, Daizo I and Mi J G. A magnetite - apatite deposit in the Fanshan alkaline uhramafic complex, North- em China[J]. Economic Geology, 99:397-408.
  • 7Torah F M and Lehmann B. Magnetite - apatite deposits of the Bafq district, Central Iran: apatite geochemistry and monazite geo- chronology Mineral Mag, 2007, (71) : 347 -363.
  • 8Chen H Y, Clark A H and Kyser T K. The Marcona Magnetite De- posit, Ica, South - Central Peru : A Product of Hydrous, Iron Ox- ide - Rich Melts [ J]. Economic Geology, 2010, ( 105 ) : 1441 - 1456.
  • 9Valley P M. Hanchar J M and Whitehouse M J. 2011. New in- sights on the evolution of the Lyon Mountain Granite and associated Kiruna - type magnetite - apatite deposits, Adirondack Mountains, New York State [ J ]. Geosphere, 2011, (7) :357 - 389 ( Peter M. Valley ).
  • 10李大鹏,杜杨松,庞振山,涂其军,张永平,葛松胜,沈立军,王开虎.西天山阿吾拉勒石炭纪火山岩年代学和地球化学研究[J].地球学报,2013,34(2):176-192. 被引量:37

二级参考文献55

共引文献139

同被引文献67

引证文献12

二级引证文献21

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部