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Gold Science and Technology ›› 2016, Vol. 24 ›› Issue (6): 15-23.doi: 10.11872/j.issn.1005-2518.2016.06.015

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The Progressiveness of Structural Superimposed Halos for Method Prospecting Blind Ore body and Typical Examples of Ore Prospecting

LI Hui,YU Bin,MA Jiuju,LI Deliang,SUN Fengzhou,LI Yongcai,RUAN Yixiao,WEI Jiang,ZHAO Jiaxiang,WANG Jun,WANG Yida,LI Shang,WEI Zixin   

  1. Geophysical Exploration Academy of China Metallurgical Geology Bureau,Baoding   071051,Hebei,China
  • Received:2016-06-28 Revised:2016-08-05 Online:2016-12-28 Published:2017-01-22

Abstract:

The theory of primary halo superposition solved the problem of inverse zoning in primary halo,which made the characteristics of reverse zoning becoming an important indicator of predicting deep blind ore.According to the theory of structural superimposed halo,the blind method of primary superimposed halo was developed to structural superimposed halo.The advantages of structural superimposed halo method are shown in the following aspects:the information of blind ore is enhanced,the workload of sample collection,processing and analyasis is obviously reduced,and the accuracy of ore prediction is higher.The blind method of structural superimposed halo has been successfully applied in more than 80 gold and nonferrous metal mines to the prediction of deep blind ore deposits,and achieved remarkable results.

Key words: structural superimposed halo method, deep prospecting prediction, prospecting effect, gold, poly- metallic ore deposit

CLC Number: 

  • P618.51

[1] 李惠,张文华,常凤池,等.大型、特大型金矿盲矿预测的原生叠加晕模型[M].北京:冶金工业出版社,1998.
[2] 李惠,张国义,禹斌,等.金矿区深部盲矿预测的构造叠加晕模型及找矿效果[M].北京:地质出版社,2006.
[3] 李惠,禹斌,李德亮.构造叠加晕找盲矿法及找矿效果[M].北京:地质出版社,2011.
[4] 禹斌,李惠,李德亮,等.成矿区带构造叠加晕研究及成矿预测[M].北京:地质出版社,2011.
[5] 李惠,李青云,杨克祥,等.河南秦岭金矿深部预测的构造叠加晕研究及效果[M].北京:地质出版社,2013.
[6]  李惠,张国义,高延龙,等.秦岭金矿集中区深部第二富集带预测的构造叠加晕模型[J].物探与化探,2008,32(10):25-52.
[7]  李惠,禹斌,李德亮,等.胶东石英脉—蚀变岩型金矿床深部盲矿预测的构造叠加晕模型[J].黄金科技技术,2012,20(4):1-6.
[8] 李惠,禹斌,李德亮,等.构造叠加晕找盲矿法的创新与找矿新突破[J].黄金科学技术,2014,22(4):7-13.

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