梁涛,罗照华,卢仁,樊秉鸿,杨宗锋,程黎鹿.安妥岭钼矿EH4测深剖面的透岩浆流体解释[J].地质找矿论丛,2013,28(4):594-603
安妥岭钼矿EH4测深剖面的透岩浆流体解释
Interpretation of EH4 Magnetotelluric section at Antuoling Molybdenum deposit by metallogenic theory on transmagmatic fluids
投稿时间:2013-02-28  修订日期:2013-06-08
DOI:10.6053/j.issn.1001-1412.2013.04.016
中文关键词:  安妥岭  高频大地电磁法  斑岩钼矿  透岩浆流体  深部找矿  太行山地区
英文关键词:Antuoling  EH4 magnetotelluric section  porphyry Mo deposit  Transmagmatic fluids  deep ore prospecting  Taihang Mountain
基金项目:中国地质调查局地质调查项目(编号:1212011220921);河南省国土资源厅科技攻关项目(编号:2011-622-25,2011-622-36);天津华北地质勘查总院科研项目(编号:KY2008-2)联合资助。
作者单位
梁涛 河南省有色金属地质勘查总院, 郑州 450052 
罗照华 中国地质大学地质过程与矿产资源国家重点实验室, 北京 100083 
卢仁 河南省有色金属地质勘查总院, 郑州 450052 
樊秉鸿 天津华北地质勘查总院, 天津 300181 
杨宗锋 中国地质大学地质过程与矿产资源国家重点实验室, 北京 100083 
程黎鹿 中国地质大学地质过程与矿产资源国家重点实验室, 北京 100083 
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中文摘要:
      河北省涞水县安妥岭钼矿是一个大型斑岩钼矿,有望成为超大型钼矿床。文章以安妥岭斑岩钼矿EH4测深剖面所揭示的深部精细电阻率结构为基础,结合钻孔(ZK1004和ZK1403)岩心编录成果分析,认为物性结构的分布型式与透岩浆流体的自组织行为有关,见矿深度位于电阻率急剧变化的位置,进而提出地质体地质结构的地质学完整性+地球物理学不完整性可作为找矿标志。
英文摘要:
      High resolution resistivity structure features of geologic units from surface to -1000m underground by EH4 Magnetotelluric method in Antuoling porphyry Mo deposit are recognized. Double-layered structure of higher resistivity anomalies in four EH4 sections has been shown vividly and is characterized by discontinuous and small size higher resistivity anomalies in upper part, continuous and bigger size higher resistivity anomalies in lower part. According to the geologic features and drill hole logging, higher resistivity anomalies distributed in south and north part of EH4 sections are the representation of gneiss, and higher resistivity anomalies in shallower and deeper of middle area in EH4 sections are the representation of quartz porphyry, granodiorite porphyry and breccia resulted mainly from granodiorite porphyry. Lower resistivity anomalies in deeper EH4 sections are match of the products of alteration, which has suggested the lower resistivity anomalies are likely to be the record of deep fluid activities. Both higher and lower resistivity anomalies are complex shape, and the contacts of them are gulf-like contours that are considered the interaction between deep fluid and incomplete consolidation magma. In process of secondary boiling and cryptoexplosion resulted from deep fluid (transmagmatic fluids) injecting into incomplete consolidated magma, mineralization materials was unloaded because of the sharp pressure decrease, and effectively enclosed by shallower magma and wall rock of gneiss. Three exploration targets are discussed in EH4 sections of Antuoling porphyry Mo deposit on the basis of combination between geologic integrality and geophysical unintegrality, such as lower resitivity anomalies under -1000m in EH4 sections, occurrence torsion part of deeper igneous body, and the top of bigger size higher resistivity anomalies displayed resistivity dispersional structure.
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