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黔东震旦系—下寒武统黑色岩系稀土元素地球化学特征   总被引:9,自引:0,他引:9  
:通过对黔东丹寨南皋剖面和三都渣拉沟剖面的稀土元素分析发现:两条剖面的梅树村期与筇竹寺期 分界处大量稀土元素明显富集,黑色页岩中存在明显的Ce负异常和Eu、Y 正异常,表明为缺氧和热水沉积的产物。 这套黑色岩系总体沉积于缺氧和具热水注入的环境中,但发生缺氧和热水注入的时间和强度在不同地方会有不同 的表现。  相似文献   
2.
Wang  Minfang  Zhang  Xubo  Guo  Xiaonan  Pi  Daohui  Yang  Meijun 《Mineralogy and Petrology》2018,112(1):85-103
Mineralogy and Petrology - Electron probe microanalysis (EPMA) results are reported for newly identified silver–bearing minerals from the Xinhua deposit, Yunkaidashan area, South China. The...  相似文献   
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Clay minerals can hinder the transport of various contaminants in soil and aquifer, but how clay minerals affect the transport of nanoparticles in aquifers has not been investigated in depth. In this paper, the transport of surfactants dispersed multi-walled carbon nanotubes (MWCNTs) in well-defined quartz sand and mixtures of quartz sand and clay minerals (kaolinite and montmorillonite) with varying ionic strengths was studied. Sodium dodecyl benzenesulfonate (SDBS) and octyl-phenol-ethoxylate (TX100) MWCNT suspensions can migrate through quartz sand easily, but the presence of less than 2% w/w clay minerals in quartz sand can significantly hinder the transport of MWCNT suspensions, especially at high ion strength (0.6 mM CaCl2). The inhibition mechanism of clay minerals for surfactant-dispersed MWCNTs in porous media is the interception of MWCNTs. Kaolinite has stronger inhibition effect for MWCNTs transport than montmorillonite because more kaolinite can be retained in the quartz sand. Adsorption of surfactants by clay minerals does not affect the transport of MWCNTs significantly. This finding is important for the environmental assessment of MWCNT transport risks in soils and aquifers.  相似文献   
4.
研究了土壤水平分层条件下雷电电磁场的传播和衰减,分别利用Wait算法和Cooray算法对上下层土壤电导率存在差异的不同情况进行了计算,并利用FDTD精确算法对二者的计算结果进行了检验。结果表明:当下层土壤电导率小于上层土壤电导率时,Wait算法和Cooray算法的计算结果基本一致,均与FDTD精确算法结果较为吻合。而当下层土壤电导率大于上层时,相应的,其土壤复折射指数亦大于上层土壤,由于干涉效应的影响致使部分较高频段雷电电磁波发生选择性增大,衰减因子的幅值大于1,从而出现振荡现象。对比表明,Wait算法较好地反应了该现象,而Cooray算法则出现一定误差。  相似文献   
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The Neoproterozoic Doushantuo Formation on the Yangtze Platform, South China, documents a sedimentary succession with different sedimentary facies from carbonate platform to slope and to deep sea basin, and hosts one of the world-class phosphorite deposits. In these strata, exquisitely preserved fossils have been discovered: the Weng'an biota. This study presents carbon isotope geochemistry which is associated paired carbonate and organic matter from the Weng'an section of a carbonate platform (shelf of the Yangtze Platform, Guizhou Province) from the Songtao section and Nanming section of a transition belt (slope of the Yangtze Platform, Guizhou Province) and from the Yanwutan section (basin area of the Yangtze Platform, Hunan Province). Environmental variations and bio-events on the Yangtze Platform during the Late Neoproterozoic and their causal relationship are discussed. Negative carbon isotope values for carbonate and organic carbon (mean δ^13Corg = -35.0‰) from the uppermost Nantuo Formation are followed by an overall increase in δ^13C up-section. Carbon isotope values vary between -9.9‰ and 3.6‰ for carbonate and between -35.6‰ and -21.5‰ for organic carbon, respectively. Heavier δ^13Ccarb values suggest an increase in organic carbon burial, possibly related to increasing productivity (such as the Weng'an biota). The δ^13C values of the sediments from the Doushantuo Formation decreased from the platform via the slope to basin, reflecting a reduced environment with minor dissolved inorganic carbon possibly due to a lower primary productivity. It is deduced that the classical upwelling process, the stratification structure and the hydrothermal eruption are principally important mechanisms to interpret the carbon isotopic compositions of the sediments from the Doushantuo Formation.  相似文献   
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The Yunkai Area is located at the southern South China Block and is part of the Qinzhou Bay-Hangzhou Bay Metallogenic Belt, which is a famous polymetallic mineralization belt. The Xinhua Pb–Zn–(Ag) deposit is located in the western part of Yunkai Area, with an abundance of Pubei batholiths. Zircon U–Pb geochronology of Pubei batholiths shows that crystallization age ranges from 251.9 ± 2.2 to 244.3 ± 1.8 Ma, thus belonging to Indosinian orogeny. Geochemistry and Sr isotopic compositions of the Pubei batholiths show that it is derived from the partial melting of large scale crustal melting during the stage of exhumation and uplifting of the lower-middle crust. In addition, strontium isotope of sphalerite from the Xinhua Pb–Zn–(Ag) deposit, has limited ranges in 87Rb/86Sr and 87Sr/86Sr, ranging from 0.4077 to 1.0449, and 0.718720 to 0.725245, respectively. The initial 87Sr/86Sr ratios of sphalerite ranges between 0.718720 and 0.725245, which is higher than that of upper continental crust and lower than that of the Pubei batholiths, illustrating the fluid might be derived from the mixing of Pubei pluton and upper continental crust.  相似文献   
7.
中上扬子地块周缘巨型成矿带是多旋回多阶段构造演化背景下成矿作用的产物。主要的成矿系统包括沉积-热水沉积成矿系统类、后生盆地流体成矿系统类、岩浆热液成矿系统类三大类。南华纪沉积-热水沉积锰成矿系统、震旦纪沉积-热水沉积铅锌成矿系统、震旦纪—寒武纪沉积-热水沉积银钒多金属成矿系统、二叠纪沉积-热水沉积锰成矿系统主要发育在古大陆边缘且形成于大地构造挤压向拉张的转换期,大型、超大型矿床定位受大陆边缘构造网络系统的制约,成矿的有利环境是拉张断裂控制的裂陷槽,同生断裂系统和深部含矿流体的持续补给是关键的控矿要素。印支—燕山早期后生盆地流体Pb-Zn成矿系统是本区主要的成矿系统且发育在盆山结合带,大型、超大型矿床定位主要受断裂、层位与岩性联合控制。燕山期岩浆热液型Pb-Zn多金属成矿系统受侵入接触构造体系控制,Pb-Zn矿体主要发育在外带;燕山期岩浆热液型Au多金属成矿系统主要发育在盆山结合带,大型、超大型矿床定位受断裂、褶皱构造和隐伏花岗岩的联合控制。本文初步构建了中上扬子地块周缘主要金属矿床成矿谱系。  相似文献   
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