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991.
“超高压变质作用国际学术讨论会”于 2 0 0 2年 9月 2 0至 2 1日在北京中国科学院地质与地球物理研究所举行。讨论会由国际岩石圈计划第Ⅲ 8任务组主持 ,由国际岩石圈计划委员会、中国国家自然科学基金委员会、中国科协和国土资源部联合资助。国际岩石圈计划第Ⅲ 8任务组主席从柏林教授、国家自然科学基金委员会地球科学部副主任柴育成博士、国际岩石圈计划中国国家委员会秘书长王清晨博士分别在开幕式上致词 ,向来自 9个国家和地区的 75名科学家表示欢迎 ,并祝学术讨论会圆满成功。讨论会围绕“超高压变质地体的地球物理调查”、“超高压… 相似文献
992.
ZHANGYongbei WANGGuilan NIEJianfeng ZHAOChongshun XUChengyan QIUJiaxiang WangHao 《《地质学报》英文版》2003,77(2):204-211
The Mesoproterozoic Kunyang rift, which is located on the western margin of the Yangtze platform and the southern section of the Kangdian axis, is a rare massive Precambrian iron-copper polymetallic mineralization zone in China. The Mesoproterozoic Wulu (Wuding-Lufeng) basin in the middle of the rift is an elliptic basin controlled by a ring fracture system. Moreover, volcanic activities in the basin display zonation of an outer ring, a middle ring and an inner ring with carbonatitic volcanic rocks and sub-volcanic dykes discovered in the outer and middle rings. The Sm-Nd isochron ages have been determined for the outer-ring carbonatitic lavas (1685 Ma) and basaltic porphyrite of the radiating dyke swarm (1645 Ma) and the Rb-Sr isochron ages for the out-ring carbonatitic lavas (893 Ma) and the middle-ring dykes (1048 Ma). In combination of the U-Pb concordant ages of zircon (1743 Ma) in trachy-andesite of the corresponding period and stratum (1569 Ma) of the Etouchang Formation, as well as the Rb-Sr iso 相似文献
993.
Re-Os Age of Cu-Ni Ores from the Huangshandong Cu-Ni Sulfide Deposit in the East Tianshan Mountains and Its Implication for Geodynamic Processes 总被引:4,自引:0,他引:4
MAO Jingwen YANG Jianmin QU Wenjun DU Andao WANG Zhiliang HAN Chunming Faculty of Geosciences Resources China University of Geosciences Beijing E-mail: jingwenmao@.netInstitute of Mineral Resources Chinese Academy of Geological Sciences Beijing National Research Center of Geoanalysis Chinese Academy of Geological Sciences Beijing 《《地质学报》英文版》2003,77(2):220-226
An isochron age of 282±20 (95% conf. limit) Ma of the sulfide ores in the Huangshandong Cu-Ni sulfide deposit, the East Tianshan Mountains has been obtained through Re-Os isotopic measurement. The age implies that the Cu-Ni sulfide deposit and other related deposits in the same area occurred in a Permian extensional environment of post-collision instead of Devonian-Early Carboniferous ophiolite-related oceanic or island arc environments inferred before. It shares the same ages with the orogenic and epithermal gold deposit systems in the same area. An initial 187Os/188Os ratio of 0.25±0.04 (1σ) and a γos value of 99 on average display the participation of large quantities of crustal components into the rock-forming and ore-forming system during mineralization and magmatic emplacement. 相似文献
994.
SHI Nicheng BAI Wenji MA Zhesheng FANG Qingsong XIONG Ming YAN Binggang DAI Mingquan YANG JingsuiChina University of Geosciences Beijing E-mail: shinicheng@a-l.net.cn Institute of Geology Chinese Academy of Geological Sciences Beijing Liu Shuchun Zhu Xiling 《《地质学报》英文版》2003,77(3):326-331
Diamond was found in podiform chromitites of ophiolite and harzburgite from Luobusha, Tibet. There are silicate inclusions in some diamond grains from this area. In the present work, the CCD (charge coupled detector) technology of X-ray powder diffraction was applied to the study of the inclusion in diamond from the ophiolite of Tibet. Diffraction patterns are obtained even though the inclusion is only 20 μm in crystal size. The results show that the inclusion in diamond consists of talc and clinochrysotile. Therefore, it is clear that the diamond from the ophiolite of Luobusha, Tibet, is natural diamond rather than a synthetic one. 相似文献
995.
PAN Mingbao ZHANG Qinglong LU Huafu CHEN Huogen CHEN Shoujuand ZHU ShipengDepartment of Earth Sciences Nanjing University Nanjing Jiangsu Jiangsu Institute of Geological Survey Zhujiang Ro Nanjing Jiangsu E-mail: andypans@.com Hao Ziguo Zhu Xiling 《《地质学报》英文版》2003,77(3):332-337
From Donghai County of Jiangsu Province to Rongcheng County of Shandong Province on the southern border of the Sulu orogen, there exposes an ultramafic belt, accompanied with an ultrahigh-pressure metamorphic zone. It can be further divided into the Xugou belt (the northern belt), and the Maobei-Gangshang belt (the southern belt). One grain of diamond has been discovered from the Zhimafang pyrope peridotite in the southern belt using the heavy mineral method. The diamond grain is 2.13 mm × 1.42 mm × 0.83 mm in size and weighs 9.4 mg. The occurrence of the diamond suggests that the Zhimafang pyrope peridotite xenolith is derived from the lithospheric upper mantle. The tectonic emplacement mechanism of the pyrope peridotite xenoliths in granite-gneisses is obviously different from those in kimberlite. The Sulu orogen was located on the active continental margin of the Sino-Korean craton in the Neoproterozoic. The relatively cold and water-bearing oceanic crustal tholeiite slab subducted beneath the lith 相似文献
996.
Cascaded Evolution of Mantle Plumes and Metallogenesis of Core- and Mantle-derived Elements 总被引:1,自引:0,他引:1
NIU Shuyin HOU Quanlin HOU Zengqian SUN Aiqun WANG Baode LI Hongyang XU Chuanshi Institute of Geology Geological Survey Shijiazhuang College of Economics Shijiazhuang Hebei Institute of Geophysics Chinese Academy of Sciences Beijing Institute of Mineral Resources Chinese Academy of Geological Sciences Beijing 《《地质学报》英文版》2003,77(4):522-536
Mineral deposits are unevenly distributed in the Earth's crust, which is closely related to the formation and evolution of the Earth. In the early history of the Earth, controlled by the gravitational contraction and thermal expansion, lighter elements, such as radioactive, halogen-family, rare and rare earth elements and alkali metals, migrated upwards; whereas heavier elements, such as iron-family and platinum-family elements, base metals and noble metals, had a tendency of sinking to the Earth's core, so that the elements iron, nickel, gold and silver are mainly concentrated in the Earth's core. However, during the formation of the stratified structure of the Earth, the existence of temperature, pressure and viscosity differences inside and outside the Earth resulted in vertical material movement manifested mainly by cascaded evolution of mantle plumes in the Earth. The stratifications and vertical movement of the Earth were interdependent and constituted the motive force of the mantle-core movement. 相似文献
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