Advanced Search

Indexed by SCI、CA、РЖ、PA、CSA、ZR、etc .

Volume 15 Issue 1
Mar 2004
Turn off MathJax
Article Contents
Da Zhang, Ganguo Wu, Yujiang Ye, Xiangxin Zhang, Runmin Peng, Jianshe Wu, Qunfeng Wang. Paleotectonic Setting of Dongyan Group of Middle and Upper Proterozoic in Central Fujian Province. Journal of Earth Science, 2004, 15(1): 29-35.
Citation: Da Zhang, Ganguo Wu, Yujiang Ye, Xiangxin Zhang, Runmin Peng, Jianshe Wu, Qunfeng Wang. Paleotectonic Setting of Dongyan Group of Middle and Upper Proterozoic in Central Fujian Province. Journal of Earth Science, 2004, 15(1): 29-35.

Paleotectonic Setting of Dongyan Group of Middle and Upper Proterozoic in Central Fujian Province

Funds:

the National Natural Science Foundation of China 40372050

the Project of Resources Assessment of Geological Survey 200310200064

the Major State Basic Research Program G1999043206

  • Received Date: 10 Nov 2003
  • Accepted Date: 25 Dec 2003
  • The central Fujian Province, situated on the juncture of paleo-uplift of Wuyishan, Yongmei Late Paleozoic depression and the eastern volcanic rift-faulting zone, is mainly composed of the outcropped metamorphic basements in the Middle-Late and Early Proterozoic, which constitute two upper and lower giant thick formations of Precambrian volcanic-sedimentary cycles, respectively. The formation of Dongyan Group is an important Middle-Upper Proterozoic component, and the Dongyan Group is directly related to massive sulfide deposit in this area. In recent years, plenty of lead, zinc, copper, silver and gold deposits have been found and explored. The Precambrian paleorift setting of the central Fujian Province served as a favorite metallogenic background for the formation of large- and superlarge-scale volcanic massive sulfide (VMS) lead and zinc polymetal deposits. The Dongyan Group consists chiefly of a set of ancient volcanic sedimentary formations that are composed mainly of greenschist. Its major lithologic types comprise greenschist, marble, quartzite and granofels class including various components. The metamorphic rocks of Dongyan Group are the main composition of Middle and Upper Proterozoic volcanic-sedimentary cycle. The original rock of Dongyan Group, a stable rock association, is volcanic sedimentation and normal marine sedimentation. But the original volcanic rocks, basic and acid, are bimodal. The volcanic rocks were formed in the extensional continental rift setting.

     

  • loading
  • Anhaeusser, C. R., 1981. The Relation of Mineral Deposits to Early Crustal Evolution. Economic Geology, 75: 42-46
    Bailes, A. H., Galley, A. G., 1999. Evolution of the Paleoproterozoic Snow Lake Arc Assemblage and Geodynamic Setting forAssociated Volcanic-Hosted Massive Sulphide Deposits, Flin Flon Belt, Manitoba, Canada. Canadian Journal of Earth Sciences, 36(11): 1789-1805 doi: 10.1139/e98-111
    Cas, R. A. F., 1992. Submarine Volcanism: Eruption Styles, Products, and Relevance to Understanding the Host Rock Successions to Volcanic Hosted Massive Sulfide Deposits. Economic Geology, 87: 511-541 doi: 10.2113/gsecongeo.87.3.511
    Cheng, X. H., 2000. Geological Characteristics and Genesis of Dingjiashan Lead and Zinc Deposit in Fujian Province. Fujian Geology, 19(2): 57-65 (in Chinese)
    Jiang, F. Z., 2001. Bimodal Volcanic Association and Massive Sulfide Deposits. Mineral Deposits, 20(4): 331-338 (in Chinese with English Abstract)
    Le, M., 1989. A Classification of Igneous Rocks and Glossary of Terms. Blackwell Sci. Publications, Oxford
    Pearce, J. A., 1983. Role of the Sub-continental Lithosphere in Magma Genesis at Active Continental Margins. In: Hawkesworth, C. J., Norry, M. J., eds., Continental Basalts and Mantle Xenoliths. Nantwich, Shiva. 230-249
    Sawkins, F. J., 1976. Massive Sulphide Deposits in Relation to Geotectonics. Special Paper, Geological Association of Canada, 14: 221-240
    Sillitoe, R. H., Hannington, M. D., 1996. High Sulfidation Deposits in the Volcanogenic Massive Sulfide Environment. Economic Geology, 91(1): 204-212 doi: 10.2113/gsecongeo.91.1.204
    Syme, E. C., Lucas, S. B., Bailes, A. H, et al., 1999. Contrasting Arc and MORB-Like Assemblages in the Paleoproterozoic Flin Flon Belt, Manitoba, and the Role of Intra-arc Extension in Localizing Volcanic-Hosted Massive Sulphide Deposits. Canadian Journal of Earth Sciences, 36(11): 1767-1788 doi: 10.1139/e98-084
    Vearncombe, S., Kerrich, R., 1999. Geochemistry and Geodynamic Setting of Volcanic and Plutonic Rocks Associated with Early Achaean Volcanogenic Massive Sulphide Mineralization, Pilbara Craton. Precambrian Research, 98(3-4): 243-270 doi: 10.1016/S0301-9268(99)00052-2
    Wang, H. N., Sun, C. Y., 1998. Trace Element Geochemistry and Tectonics Setting of Greenschists in the Central Part of Fujian Province. Geological Journal of China Universities, 4(4): 383392 (in Chinese with English Abstrat)
    Ye, S. Q., Tang, R. L., Zhang, Y. M., 1999. On the Metallogenic System of Central Fujian Rift. Geological Exploration for Non Ferrous Metals, 8(6): 400-403
    Zhang, K. B., Li, X. X., Li, J. H., 2000. The Division and Comparison of Mamianshan Group of Middle-Late Proterozoic Era. Fujian Geology, 21(3): 176-185 (in Chinese)
    Zhou, B., Gu, L. X., 1999. Geological Characteristics and Formation Environment of the MeixianMassive Sulfide Deposit. Mineral Deposits, 18(2): 99-109 (in Chinese with English Abstract)
    Zhou, L. Y., Wang, H. N., Sun, C. Y., 2001. Trace Element Geochemistry and Tectonics Setting for Proterozoic Metavolcanics of the Mamianshan Group in the Central Part of Fujian Province. Geological Journal of China Universities, 7(2): 164-174 (in Chinese with English Abstract)
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Figures(7)

    Article Metrics

    Article views(840) PDF downloads(34) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return