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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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Twenty-two peat samples collected at different depths of a core including the layer affected by the 1908 explosion in Tunguska
area of Central Siberia, Russia, and three basalt samples collected near the site, are analyzed by ICP-MS. The concentrations
of Pd, Ni, Co, ΣREE, Ti and Sr in the event layers are 4–35 times higher than the background values in the normal layers.
The variation of Pd is closely related to Ni, Co and ΣREE in the event layers, but not to these elements in the normal layers.
It indicates that these excess elements came from the same source, i.e. the Tunguska explosion body. In addition, the patterns
of Cl-chondrite-normalized REE in the event layers ((La/Yb)N ≈2–3) are much flatter than those in the normal layers ((La/Yb)N ≈7–143), and differ from those in the three basalt samples. The concentrations of REE in the three basalt samples are tens
times higher than those in the event layers. It may be inferred that these excess elements could not be produced by the contamination
of the terrestrial material, but probably by the Tunguska explosion body. Additionally, the ratios of Ti/Ni and Sr/Co in the
event layers are close to those in comet. It implies that the solid part of the explosion body was compositionally similar
to carbonaceous chondrites (Cl) and more probably a small comet. In terms of the Pd excess fluxes in the explosion area, it
can be estimated that the celestial body that exploded over Tunguska in 1908 weighed more than 107 tons, corresponding to a radius of > 126 m. 相似文献
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东濮凹陷黄河南地区下第三系沉积体系与油气评价 总被引:2,自引:0,他引:2
为了加速东濮凹陷黄河南地区油气勘探的步伐,本文根据现代沉积体系理论,综合运用地质、测井和地震资料,首次在东濮凹陷黄河南地区下第三系中系统地确定了冲积扇、河流、扇三角洲、三角洲—滑塌浊积扇、滩坝、近岸水下扇和轴向重力流水道等7种类型的沉积体系,并描述了这些沉积体系在地质、测井和地震等方面的沉积特征。结合盆地断裂活动特点,指出充填盆地沉积体系的演化具有明显的阶段性,沉积体系的平面展布具有不对称性,从而建立盆地沉积体系演化模式。同时,结合油气勘探实践指出富集油气的有利相带。 相似文献
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本文探讨了利用地质统计学中的三种克立格方法进行井间储层参数预测的原理及方法,并在某油田中应用,通过最优性检验,建立起了适合研究区地质特点的各种储层参数的最佳估计模型,揭示了储层参数在三维空间的变化规律,为建立三维储层预测模型开辟了新的方法。 相似文献
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顺煤层断层的基本特征及其地质意义 总被引:40,自引:1,他引:40
顺煤层断层是指顺煤层发育的断面与煤层层面的交角较小或近于平行的断层。它的主要识别标志是断层面、构造煤和煤层厚度的强烈变化。顺煤层断层可独立存在,也可与其它地质构造相互转换,相伴出现。顺煤层断层具有特殊的选层性,这一特征与煤体较低的力学强度、煤层瓦斯压力及形变期顺煤层的剪切作用有关。顺煤层断层在煤田中分布广泛,它所产生的构造煤是瓦斯高聚集区,亦是瓦斯突出的危险区,其研究意义重大。 相似文献
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Linking the Sulu UHP belt to the Korean Peninsula: Evidence from eclogite, Precambrian basement, and Paleozoic sedimentary basins 总被引:13,自引:0,他引:13
Mingguo Zhai Jinghui Guo Zhong Li Daizhao Chen Peng Peng Tiesheng Li Quanlin Hou Qicheng Fan 《Gondwana Research》2007,12(4):388-403
Considerable debate on whether and how the Sulu Orogenic Belt extends eastward to the Korean Peninsula has remained over the past decade. New results reported here include the following: (1) an eclogite and retrograded eclogite-bearing complex (Hongseong Complex) is discovered in South Korea, in which the eclogite occurs as lenses in circa 810–820 Ma granitic gneiss. SHRIMP zircon dating of the eclogite yields 230 Ma for the metamorphic age and 880 Ma for the protolith age; (2) The basement of the Rangnim, Gyeonggi and Yeongnam massifs have affinities to the basement of the North China Block (NCB). However the Gyeonggi Massif encloses a minor amount of large or small slabs of the Hongseong Complex that are similar to the rocks of the Sulu Belt. (3) Two main Paleozoic basins within the Rangnim and Gyeonggi massifs have a similar Paleozoic tectono-stratigraphy to the NCB. (4) The Imjingang and Ogcheon belts do not exhibit any metamorphic characteristics of collisional orogenic belts. Based on these facts, we propose a crustal-detachment and thrust model and suggest that the collision belt between the Yangtze Block (YB) and NCB (Sino–Korea Craton) is preserved along the western margin of the Korean Peninsula. The lower part of the UHP metamorphosed lithosphere of the YB was subducted under the Korean Peninsula and not uplifted to the surface. The lower crust of the YB (the Hongseong Complex) was detached from the subducted lithosphere and thrust over the Korean Peninsula, and inserted into the basement rocks of the Gyeonggi Massif. The upper crust of the YB possibly was detached from the lower crust and overthrusted along the Honam and Chugaryong shear zones. The Imjingang and Ogcheon belts possibly represent the detached upper crust of YB and their present occurrences are controlled by a Mesozoic strike–slip shear structure. All these detached lower and upper crustal slabs were strongly deformed during the Late Jurassic and Early Cretaceous tectonic event leading to their present geological distribution and characteristics. 相似文献