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121.
长江口北支异常强盐水入侵观测与分析 总被引:2,自引:0,他引:2
长江口北支由于径流分流比很小,盐水入侵较强,特别是枯季大潮期盐水甚至倒灌进入南支,影响上海市和江苏省的水源地水质。为了进一步研究北支盐水入侵的规律及影响因素,2014年1月1-9日在北支进行了大小潮同步水文观测。本次观测到了北支异常强盐水入侵:小潮期发生强盐水入侵,且强度大于大潮期。小潮期强盐水入侵导致中下游河段被高浓度盐水控制,盐度从下游B01到中游B02几乎没有变化,且盐度的涨落潮变化几乎消失。分析认为,小潮观测期间长江入河口流量较小、河口潮差不是太小,加上强偏北风,三者的叠加是导致强盐水入侵的主要原因。 相似文献
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在甘肃北山勒巴泉一带赋存一套变质侵入岩。岩性主要为闪长质片麻岩、石英闪长质片麻岩、英云闪长质片麻岩、花岗闪长质片麻岩及二长花岗质片麻岩。Rb-Sr全岩等时线定年获得似斑状中细粒花岗闪长质片麻岩年龄值727±50Ma,锆石Pb-Pb定年获得中细粒花岗闪长质片麻岩年龄值766±49Ma,结合其与围岩的接触关系及强变形变质特征,形成时代为南华纪中晚期。其岩石地球化学特点为:岩石A12O3CaO+Na2O+K2O,A/CNK=1.30~1.38,属过铝质类型;σ=2.08~3.78,NK/A=0.32~0.61,属钙碱性系列。在微量元素组成上,富集LREE和大离子亲石元素(LILE),而亏损HREE、高场强元素(Nb、Ta、Yb),Eu异常具弱—明显Eu负异常—弱的Eu正异常(δEu=0.24~1.20)。这些花岗岩类总体具有俯冲的构造背景,岩浆的产生可能与北山地区在新元古代末古陆壳裂解作用有关。 相似文献
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杨北寨铜矿、施村金矿位于湖区,可利用的工作方法手段有限,找矿难度大。通过将以往所取得的两矿区片段地质资料的结合,在区域地质背景分析和与相邻的铜山铜矿成矿地质条件对比研究的基础上,明确找矿思路,进行预测定位,并经有效可行的物探方法再对比论证,优化设计方案。施工首孔于相应的设计部位打穿五通组顶板,各预测主要见矿部位均见矿体;其后的验证又获得很多重要发现:深部发现花岗闪长斑岩岩体、斑岩型钼矿化及赋存于不同部位的铜多金属矿化。经再次与相邻矿集区铜陵狮子山等矿田对比研究,认为杨北寨矿区具"多位一体"矿化特征,找矿潜力大,提出新的找矿思路,进行了新的预测定位;同时对池州其他地区的找矿也提出设想。 相似文献
124.
大埠岩体内及近外围铀、钨矿产信息丰富。地球化学特征显示大埠岩体花岗岩呈钙碱性、过铝质,具高硅(73.73%~77.89%)、富钾(3.99%~5.60%)和低钙(0.107%~0.660%)含量特点,铝饱和指数A/NCK为1.04~1.25、里特曼指数δ为1.66~2.34,稀土元素总量低(∑REE=37.28×10-6~177.49×10-6),稀土元素球粒陨石标准化图解表现为左高右低、具强负铕异常的"V"字型,大离子亲石元素K、Rb、Th、Sr等富集,Ta、P、Ti亏损,这些特点说明岩体的形成是古老陆壳物质熔融的结果。岩体地球化学特征与华南产铀花岗岩和含钨花岗岩地球化学特征相似,结合近年来铀、钨矿勘查取得的新成果,认为大埠岩体具较大的铀、钨成矿潜力。 相似文献
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The Ni-Cu-platinum group element sulfide ore deposits of the Kharaelakh Intrusion,Noril′sk Region,Siberia,represent a large concentration of sulfides associated with a small differentiated intrusion formed at the edge of the Siberian Craton in the roots of the Siberian Trap flood basalt.The deposit is associated with an intrusion that occupies a flanking periclinal structure adjacent to the Noril′sk-Kharaelakh Fault.The intrusion is strongly differentiated and comprises taxitic gabbrodolerites,picritic gabbrodolerites,and gabbrodolerites within the main body which in turn forms a chonolith within a sheet-like intrusion that extends laterally to form extensive undifferentiated sills of gabbrodolerite.The intrusion substantially replaces the stratigraphy of the country rocks,and although it appears to have exploited the axis of structures developed in response to transtension,the intrusion has created space by both mechanical dilation of stratigraphy and magmatic replacement of pre-existing sedimentary rocks.The frontal lobes of the main intrusion have complex apophyses of gabrodolerite on a range of scales that demonstrate replacement of the sedimentary rocks and link to the development of an extensive metamorphic halo in the country rocks.This halo is much narrower over the main body of the intrusion,and these observations have implications for the thermal history of the intrusion.Mg-skarns and breccias are developed in the roof of the main body of the intrusion.Within the intrusion,the taxitic rocks contain vesicles and the blebby sulfides developed in the picritic and taxitic gabbrodolerites appear to have a linkage to volatile phases.Cuprous sulfide mineralization developed at the roof of the Kharaelakh Intrusion is associated with metamorphosed and skarn-bearing country rocks,and appears to have been generated by a combination of sulfide fractionation and associated metasomatism.The geological relationships appear consistent with a chonolith model for the development of the differentiated intrusion and mineralization,but the extent of metasmorphism of the country rocks appears to be related to the unusual thickness of gabbrodolerite apophyses at the flanks of the intrusion rather than metamorphism produced by the passage of mafic magma through the intrusion.Variations in disseminated sulfide compositions and metasomatic textures in the skarns are described,and a model is proposed which balances traditional views on the evolution of the magma conduits with the impact of magmatic fluids transported through the magma column(i.e.transmagmatic fluids).The importance of structures in controlling the nature of the conduit,and the resultant small intrusions with excess sulfide is a feature of many other Ni-Cu sulfide deposits including Voisey′s Bay,and it is suggested that the sulfides are more likely to have beentransported from depth into their final resting place rather than developed by in-situ equilibration of sulfide with fresh magma in the chonolith. 相似文献
127.
Neoproterozoic igneous rocks are widely distributed in the Kuluketage block along the northern margin of the Tarim Craton. However, the published literature mainly focuses on the ca. 800 Ma adakitic granitoids in the area, with the granites that intrude the 735–760 Ma mafic–ultramafic rocks poorly studied. Here we report the ages, petrography and geochemistry of two granites in the Xingdi mafic–ultramafic rocks, in order to construct a new view of the non-adakitic younger granites. LA-ICP-MS zircon U–Pb dating provided weighted mean 206Pb/238U ages of 743.0 ± 2.5 Ma for the No.I granite (G1) and 739.0 ± 3.5 Ma for the No.II granite (G2). A clear core-rim texture of similar age and a high zircon saturation temperature of ca. 849 ± 14 °C were observed for the No.I granite; in contrast, G2 has no apparent core-rim texture but rather inherited older zircons and a lower zircon saturation temperature of ca. 763 ± 17 °C. Geochemical analysis revealed that G1 is an alkaline A-type granite and G2 is a high-K calc-alkaline I-type granite. Both granites share similar geochemical characteristics of arc-related magmatic rocks and enriched Sr–Nd–Hf isotopes, likely due to their enriched sources or mixing with enriched magma. Whereas G1 and its host mafic rocks form typical bimodal intrusions of the same age and similar Sr–Nd–Hf isotope compositions, G2 is younger than its host mafic rocks and its Sr–Nd–Hf isotope composition indicates a lower crust origin. Although they exhibit arc-related geochemical features, the two granites likely formed in a rift setting, as inferred from thier petrology, Sr–Nd–Hf isotopes and regional tectonic evolution. 相似文献
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区域化探全国扫面计划获得的海量地球化学数据在基础地质和矿产勘查研究中已发挥了重要作用。全国矿产资源潜力评价化探工作组将全国陆地国土划分为5个地球化学域(古亚洲地球化学域、秦祁昆地球化学域、特提斯地球化学域、扬子地球化学域和滨太平洋地球化学域)和25个地球化学省。在全国地球化学图中位于云南西部地区的花岗岩类侵入体具有显著富K2O、Th、U、La、Y、Zr而贫Co、Ni、V、Cr、Ti、Fe2O3的特征。基于云南西部地区区域化探数据利用因子分析确定了高场强元素组合(F2)和相容元素组合(F1)两个公因子:F2=0.87Th+0.86Y+0.77U+0.77Zr+0.67La+0.61K2O+0.58Al2O3+0.53Be,F1=0.95Fe2O3+0.93V+0.93Ti+0.92Co+0.81Cr+0.80Ni。利用二者因子得分比值(F2/F1)构建了推断花岗岩类侵入体的区域地球化学综合指标和推断模型。以F2/F1为例介绍了制作地球化学图和地球化学异常图的方法技术。在F2/F1地球化学图中的高值区或在其地球化学异常图中的异常区与云南西部地区花岗岩类侵入体的地表出露范围十分吻合,从而验证了地球化学推断花岗岩类侵入体模型的可行性。基于构建的推断模型在全国近7百万平方千米的范围内进行推演并绘制F2/F1的地球化学图和地球化学异常图。选择华南中部地区进行详细分析,结果发现模型指标异常区与实测花岗岩类侵入体在空间形态和规模上十分吻合,尤其在韶关至桂林、贺州一带花岗岩类侵入体边界与F2/F1异常区边界几乎一致。这一结果不仅证实了针对花岗岩类侵入体所建立的区域地球化学推断模型的可行性,而且该模型在基础地质研究方面具有潜在应用价值。 相似文献