地球科学进展 ›› 2002, Vol. 17 ›› Issue (5): 787 -788. doi: 10.11867/j.issn.1001-8166.2002.05.0787

研究简报 上一篇    下一篇

欧洲有机质成矿作用研究进展
金瞰昆,杜振川,李世峰   
  1. 河北建筑科技学院资源系,河北 邯郸 056038
  • 收稿日期:2001-07-02 修回日期:2001-11-03 出版日期:2002-12-20
  • 通讯作者: 金瞰昆(1959-),男,副教授,主要从事地质与勘探、矿产资源开发研究.E-mail:jinkankun@263.net E-mail:jinkankun@263.net
  • 基金资助:

    教育部留学回国人员科研启动基金资助项目“有机质在成矿中的作用”(编号:1998[679])资助

  • Received:2001-07-02 Revised:2001-11-03 Online:2002-12-20 Published:2002-10-01

中图分类号: 

[1]刘文均.有机质在铅锌矿形成中的作用[A].见:叶连俊主编.生物有机质成矿作用[C].北京:海洋出版社,1998.285-310.
[2]Barton P B. The many roles of organic matter in the genesis of mineral deposits[Z].Geological Society of America, Abstracts with Programs, 1982.
[3]Bechtel A, Püttmann W. The origin of the Kupferschiefer-type mineralization in the Richelsdorf Hills, Germany, as deduced from stable isotope and organic geochemical studies[J]. Chemical Geology,1991,91: 1-18.
[4]Bechtel A, Püttmann W. Combined isotopic and biomarker investigations of temperature- and facies-dependent variations in the Kupferschiefer of the Lower Rhine basin, northwestern Germany[J]. Chemical Geology,1992, 102: 23-40.
[5]Bechtel A,et al. Biodegradation of hydrocarbons and biogeochemical sulfur cycling in the salt-Dome environment-inferences from sulfur isotope and organic geochemical Investigations of the bahloul formation at the Bou-Grine Zn/Pb Ore Deposit,Tunisia[J]. Geochemica et Cosmochimica Acta,1996, 60: 2 833-2 855.
[6]Kucha H. Noble metals associated with organic matter, Kupferschiefer, Poland[A]. In: Parnell J, Kucha H, Landais P, eds. Bitumens in Ore Deposits, Special Publication of the Society for Geology Applied to Mineral Deposits 9[C]. 1993.153-170.
[7]Machel H G, Krouse H R, Sassen R,  Products and distinguishing criteria of bacterial and thermochemical sulfate reduction[J]. Applied Geochemistry, 1995,10: 373-389.
[8]Püttmann W, Hagemann H W, Merz C,et al. Influence of organic material on mineralization processes in the Permian Kupferschiefer Formation, Poland[J]. Organic Geochemistry,1988,13: 357-363.
[9]Püttmann W, Fermont W J J,Speczik S. The possible role of organic matter in transport and accumulation of metals exemplified at the Permian Kupferschiefer formation[J]. Ore Geological Review, 1991,6: 563-579.
[10] Sawlowicz Z.Organic matter in Zechstein Kupferschiefer from Fore-Sudetic Monocline (Poland); I, Bitumens[J]. Mineralogia Polonicas,1989, 20: 69-89.
[11] Saxby J D.The significance of organic matter in ore genesis[A]. In: Wolf K H, ed. Handbook of Strata-bound and Stratiform Ore Deposits 2, Geochemical Studies[C]. Amsterdam: Elsevier, 1976. 111-133.
[12] Schmidt F P, Friedrich G. Geological setting and genesis of Kupferschiefer mineralization in West Germany[A]. In: Friedrich G H, Herzig P M, eds. Base Metal Sulfide Deposits in Sedimentary and Volcanic Environments[C]. Berlin, Heidelberg:Special Publication 5,1988.
[13] Sun Y Z, Püttmann W.  Speczik Differences in the environment of Kupferschiefer deposition in the North-Sudetic Syncline and the Fore-Sudetic Monocline (Southwest Poland): implication for base metal mineralization[J]. Organic Geochemistry,1995. 23: 819-835.
[14] Sun Y Z, Püttmann W. Relationship between metal enrichment and organic composition in Kupferschiefer of structure-controlled mineralization from Oberkatz Schwelle[J]. Applied Geochemistry,1996, 11: 567-581.
[15] Sun Y Z. Geochemical evidence for multi-stage base metal enrichment in Kupferschiefer[M]. Shaker Verlag, Aachen, Germany,1996.
[16] Sun Y Z. Influences of secondary oxidation and sulfide formation on several maturity parameters in Kupferschiefer[J]. Organic Geochenistry, 1998,29: 1 419-1 429.
[17] Sun Yuzhuang, Influences of the Basin Brines on Organic Matter in the Kupferschiefer from Southwest Poland[M]. Ottawa: Scientific Publishing Canada, 1999.
[18] Sun Y Z, Püttmann W.  The role of organic matter during metal accumulation in Permian Kupferschiefer from the Sangerhausen Basin, Germany[J]. Organic Geochemistry,2000, 31(11): 1 143-1 161.
[19] Sun Y Z,Püttmann W.  Oxikdation of organic matter in the transition zone of the zechetein Kupferschiefer from the Sangerhuasen Basin, Germany[J]. Energy and Fuel, 2001,15: 817-829.

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