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Volume 11 Issue 1
Mar 2000
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Zhengwei Zhang, Bingquan Zhu, Keqin Cai, Jun Deng, Wei Wang, Lizhi Qiang. Lead Isotopic Steep-Dipping Zone and Mineralization—An Example from Mineral Deposits Concentrated Area in East Qinling, China. Journal of Earth Science, 2000, 11(1): 66-73.
Citation: Zhengwei Zhang, Bingquan Zhu, Keqin Cai, Jun Deng, Wei Wang, Lizhi Qiang. Lead Isotopic Steep-Dipping Zone and Mineralization—An Example from Mineral Deposits Concentrated Area in East Qinling, China. Journal of Earth Science, 2000, 11(1): 66-73.

Lead Isotopic Steep-Dipping Zone and Mineralization—An Example from Mineral Deposits Concentrated Area in East Qinling, China

Funds:

Fund of the National Climbing Project 95-pre-25-03

the Ministry of Geology and Mineral Resources Studying Project 9501107

  • Received Date: 22 Nov 1999
  • Accepted Date: 03 Jan 2000
  • Lead isotopic geochemical steep-dipping zone usually exists on inhomogeneous boundaries of earth blocks. Its crossing with the geophysical gradient zone often convergently occurs at giant deposits. Deep structures or concealed structural planes obviously have the coupling relationship with the convergent area of mineral deposits. The geochemical steep-dipping zone is usually distributed along the boundary of ancient continental blocks. Its crossing effect with geophysical gradient zone is usually presented as depression or swell of Moho discontinuity on the crossing direction with the ancient continental margin, which would lead to form deep fractures of earth crust at block margins or lead to adjustment of earth crust texture. The deep hydrothermal liquid would rise up along the structural planes to form the convergent areas of mineral deposits. For example, Luonan- Luanchuan area in east Qinling is a typical crossed area of the geochemical steepdipping zone and geophysical gradient zone. The mineral deposit belt extends along EW direction. It was controlled by the geochemical steepdipping zone equidistantly distributed along NE direction like a string of beads controlled by a gravity gradient zone in NE direction and a mantle depression slope. Along a plunging mantle syncline on EW plunging direction, from the east to the west, checkform was distributed which controls synergic crustmantle granoporphyry rocks. Therefore, a convergent mineralization area of Mo, W, Zn and Au giant deposits occurred.

     

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