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磁铁石英岩型铁矿岩芯光谱编录研究 被引量:5

A DRILL CORE SPECTRAL LOGGING STUDY IN A MAGNETITE-QUARTZITE TYPE IRON DEPOSIT
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摘要 对河北省昌黎县闫庄铁矿床的磁铁石英岩型铁矿石261件样品进行了光谱反射率测量,并与其铁含量进行了相关关系研究,目的是对钻孔岩芯编录的新方法即高光谱岩芯编录在此类矿床中的可行性进行分析.研究结果表明,铁矿石反射率较低,一般为5%~20%,铁离子的吸收峰主要表现在400~1 100 nm范围内,铁矿石中铁含量与850~900 nm的反射率均值呈现显著指数负相关关系,为高光谱岩芯编录在此类矿床中的可行性提供了理论依据和技术途径. The authors examined the capability of reflectance spectroscopy for drill core logging in the Yanzhuang magnetite- quartzite type iron deposit of Changli county, Hebei province. 261 rock samples were collected for chemical analysis and spectral measurement. The results show that the reflectance of iron ore is low, generally between 5% - 20%. The absorption band of iron ion is in the range of 400 - 1100 nm. The content of iron shows significant negative exponent correlation with the average reflectance of 850 - 900 nm, and this provides a theoretical and technical basis for hyperspectral drill core logging in this kind of ore deposits.
出处 《国土资源遥感》 CSCD 2005年第3期70-73,共4页 Remote Sensing for Land & Resources
关键词 岩芯编录 光谱 铁含量 磁铁石英岩 Drill core logging Spectrum Iron content Magnetite - quartzite
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参考文献13

  • 1燕守勋,张兵,赵永超,郑兰芬,童庆禧,杨凯.矿物与岩石的可见—近红外光谱特性综述[J].遥感技术与应用,2003,18(4):191-201. 被引量:88
  • 2燕守勋,张兵,赵永超,郑兰芬,童庆禧,杨凯.高光谱遥感岩矿识别填图的技术流程与主要技术方法综述[J].遥感技术与应用,2004,19(1):52-63. 被引量:43
  • 3Kowalik W S,Sabins F F,Corea W C, et al.Multi-spectral scanning and digital processing of well cores[A].Proceedings of the Eighth Thematic Conference on Geologic Remote Sensing[C].Environmental Research Institute of Michigan(ERIM),ANN Arbor,MI(Ann Arbor,MI:ERIM).1991, 27-29.
  • 4Kruse F A.Identification and mapping of minerals in drill core using hyperspectral image analysis of infrared reflectance spectra[J].INT.J.Remote sensing,1996, 17(9): 1623- 1632.
  • 5Dramatic new core logging system[EB/OL].http://www.amira.com.au/documents/Events/core_logging.asp
  • 6Logging cores just got faster[EB/OL].http://www.abc.net.au/science/newsstories/s509234.htm
  • 7.[EB/OL].http://www.spectra-map.co.uk/,.
  • 8.[EB/OL].http://www.Min-eng.com/ana/35.html,.
  • 9.[EB/OL].http://www.rcom-bremen.de/English/Multi-Sensor_Core_Lo-gger.html,.
  • 10.[EB/OL].http://goldway.com.cn/product/cFeildSpec_ASD.htm,.

二级参考文献69

  • 1王晋年,郑兰芬,童庆禧.成象光谱图象光谱吸收鉴别模型与矿物填图研究[J].环境遥感,1996,11(1):20-31. 被引量:63
  • 2Tsuboi M. On the Positions of the Hydrogen Atoms in the Crystal Structure of Muscovite as Revealed by the Infrared Absorption Study [J].Bulletin of the Chemical Society of Japan, 1950, 3:83-88.
  • 3Sutherland G B B M. Infrared and X-ray Analysis of Crystal Structure [A]. Nuovo Cimento Supplemento, Ⅱ Serie [C].1955, 10:635-641.
  • 4Serratosa J P, Bradley W F. Determination of the Orientation of OH Bond Axes in Layer Silicates by Infrared Absorption[J]. Journal of Physical Chemistry, 1958, 6251164-1167.
  • 5Fripiat J J. Application of Infrared Spectroscopy to the Study of Clay Minerals [J]. Bulletin Groupe Francais Argiles,1960, 12:25-41.
  • 6Vedder W, McDonald R S. Vibration of the OH Ions in Muscovite [J]. Journal of Chemical Physics, 1963, 38 : 1583-1590.
  • 7Tuddenham W M, Lyon R J P. Infrared Techniques in the Identification and Measurement of Minerals [J]. Analytical Chemistry, 1960,3:1630-1634.
  • 8Hunt G R, Salisbury J W. Visible and Near-infrared Spectra of Minerals and Rocks: Ⅲ . Oxides and Hydroxides [J].Modern Geology, 1971, (2) :195-205.
  • 9Hunt G R, Salisbury J W. Visible and Near-infrared Spectra of Minerals and Rocks :Ⅳ . Sulphides and Sulphates [J].Modern Geology, 1971, (3) :1-14.
  • 10Hunt G R, Salisbury J W. Visible and Near-infrared Spectra of Minerals and Rocks, V . Halides, Arsenates, Vanadates And Borates[J]. Modern Geology,1972, (3),121-132.

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