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Rock Deformation, Component Migration and 18O/16O Variations during Mylonitization in the Southern Tan-Lu Fault Belt

YANG Xiaoyong LIU Deliang FENG Min YU Qingni WANG Kuiren

地质学报(英文版)2007,Vol.81Issue(2):297-311,15.
地质学报(英文版)2007,Vol.81Issue(2):297-311,15.

Rock Deformation, Component Migration and 18O/16O Variations during Mylonitization in the Southern Tan-Lu Fault Belt

Rock Deformation, Component Migration and 18O/16O Variations during Mylonitization in the Southern Tan-Lu Fault Belt

YANG Xiaoyong 1LIU Deliang 2FENG Min 1YU Qingni 1WANG Kuiren1

作者信息

  • 1. CAS Key Laboratory of Crust-Mantle Materials and Environments,School of Earth and Space Sciences,University of Science and Technology of China,Hefei,Anhui 230026
  • 2. CAS Key Laboratory of Isotope Geochronology and Geochemistry,Guangzhou Institute of Geochemistry,Guangzhou,Guangdong,510640
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摘要

Abstract

This paper discusses the relationship between the volume loss, fluid flow and component variations in the ductile shear zone of the southern Tan-Lu fault belt. The results show that there is a large amount of fluids flowing through the shear zone during mylonitization, accompanied with the loss of volume of rocks and variations of elements and oxygen isotopes. The calculated temperature for mylonitization in different mylonites ranges from 446 to 484℃, corresponding to that of 475 to 500℃for the wall rocks. The condition of differential stress during mylonization has been obtained between 99 and 210 MPa, whereas the differential stress in the wall rock gneiss is 70-78 MPa. The mylonites are enriched by factors of 1.32-1.87 in elements such as TiO2, P2O5, MnO, Y, Zr and V and depleted in SiO2, Na2O, K2O, Al2O3, Sr, Rb and light REEs compared to their protolith gneiss. The immobile element enrichments are attributed to enrichments in residual phases such as ilmentite, zircon, apatite and epidote in mylonites and are interpreted as due to volume losses from 15% to 60% in the ductile shear zone. The largest amount of SiO2 loss is 35.76 g/100 g in the ductile shear zone, which shows the fluid infiltration. Modeling calculated results of the fluid/rock ratio for the ductile shear zone range from 196 to 1192 by assuming different degrees of fluid saturation. Oxygen isotope changes of quartz and feldspar and the calculated fluid are corresponding to the variations of differential flow stress in the ductile shear zone. With increasing differential flow stress, the mylonites show a slight decrease of δ18O in quartz, K-feldspar and fluid.

关键词

mylonitization/ductile shear zone/component migration/oxygen isotopes/southern TanLu fault belt

Key words

mylonitization/ductile shear zone/component migration/oxygen isotopes/southern TanLu fault belt

分类

天文与地球科学

引用本文复制引用

YANG Xiaoyong,LIU Deliang,FENG Min,YU Qingni,WANG Kuiren..Rock Deformation, Component Migration and 18O/16O Variations during Mylonitization in the Southern Tan-Lu Fault Belt[J].地质学报(英文版),2007,81(2):297-311,15.

基金项目

This study is supported by the National Natural Science Foundation of China (Grant 40473021), the National 973-Project of the Ministry of Science and Technology of China (2003CB214600), and the Foundation of the State Key Laboratory of Geological Processes and Mineral Resources,China University of Geosciences, and the jointed project of Max-Planck-Institute of Society and Chinese Academy of Sciences in Max-Planck-Institute of Nuclear Physics,Heidelberg, Germany. (Grant 40473021)

地质学报(英文版)

1000-9515

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