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81.
琼东南盆地深水区新近系海底扇沉积特征与资源潜力 总被引:1,自引:1,他引:0
综合利用钻井、岩心、薄片及分析化验资料研究了琼东南盆地深水区新近系海底扇沉积特征,并利用最新的三维地震资料,通过井震精细标定、多属性融合技术、方差体切片、三维地貌砂体镂空等综合技术手段,精细刻画了海底扇砂体的空间分布特征。研究结果表明,深水区新近系海底扇是由陆架区的砂体滑塌并二次搬运形成,形成过程具有多期次性。受不同物源的影响,海底扇岩性和物性存在较大的差异。海底扇岩性及沉积构造具有砂质滑塌、碎屑流、浊流和深水底流改造的特征。海底扇的沉积微相、厚度、砂泥比和砂泥岩空间配置关系直接控制了地震振幅反射强度和频率的变化。砂体纵向叠置,横向连片,并被后期泥质水道切割分块形成多个岩性圈闭。综合分析认为,深水区海底扇砂体发育区烃源条件优越,储盖配置关系和圈闭条件良好,具备形成大中型岩性油气藏的有利条件,具有较大的油气勘探潜力。 相似文献
82.
对湖北大洪山地区一套紫红色砂-砾岩系沉积年代的再认识——碎屑锆石U-Pb年龄及其地质意义 总被引:1,自引:0,他引:1
湖北大洪山地区花山群六房咀组之上不整合覆盖了一套紫红色砂-砾岩。这套岩石的沉积时代存在争议,一种观点认为是南华纪早期;另一种观点认为是晚侏罗世。利用LA-ICP-MS分析技术,对这套碎屑沉积岩进行了碎屑锆石U-Pb测年,获得有效年龄数据125组,年龄值变化范围较大(3223~771Ma),主要集中于新太古代末—古元古代早期(约2500Ma)、古元古代(约2000Ma)和新元古代(约800Ma)3个时间段。对比鄂东南地区和三峡地区莲沱组岩石学特征和碎屑锆石年龄分布特征,认为其具有相似的物源,这套岩系沉积时代应该为南华纪早期而非晚侏罗世。综合分析扬子地块的前寒武纪年龄,认为扬子地块可能存在大量未岀露的新太古代末—古元古代早期(约2500Ma)基底,约2500Ma的岩石应该是扬子地块深部基底的重要组成部分。扬子地块存在广泛的古元古代(约2000Ma)岩浆活动,这期岩浆活动可能是Columbia超大陆聚合在扬子地块的响应。新元古代(约800Ma)扬子地块北缘存在Rodinia超大陆裂解同期裂谷,裂谷内基性岩可能为大洪山地区南华纪地层中基性岩砾石的物源。 相似文献
83.
WANG Xiaohu SONG Yucai ZHANG Hongrui LIU Yingchao PAN Xiaofei GUO Tao 《《地质学报》英文版》2018,92(4):1486-1507
The Lanping Basin in the Nujiang‐Lancangjiang‐Jinshajiang (the Sanjiang) area of northeastern margin of the Tibetan Plateau is an important part of eastern Tethyan metallogenic domain. This basin hosts a number of large unique sediment‐hosted Pb‐Zn polymetallic deposits or ore districts, such as the Baiyangping ore concentration area which is one of the representative ore district. The Baiyangping ore concentration area can be divided into the east and west ore belts, which were formed in a folded tectogene of the India‐Asia continental collisional setting and was controlled by a large reverse fault. Field observations reveal that the Mesozoic and Cenozoic sedimentary strata were outcropped in the mining area, and that the orebodies are obviously controlled by faults and hosted in sandstone and carbonate rocks. However, the ore‐forming elements in the east ore belt are mainly Pb‐Zn‐Sr‐Ag, while Pb‐Zn‐Ag‐Cu‐Co elements are dominant in the west ore belt. Comparative analysis of the C‐O‐Sr‐S‐Pb isotopic compositions suggest that both ore belts had a homogeneous carbon source, and the carbon in hydrothermal calcite is derived from the dissolution of carbonate rock strata; the ore‐forming fluids were originated from formation water and precipitate water, which belonged to basin brine fluid system; sulfur was from organic thermal chemical sulfate reduction and biological sulfate reduction; the metal mineralization material was from sedimentary strata and basement, but the difference of the material source of the basement and the strata and the superimposed mineralization of the west ore belt resulted in the difference of metallogenic elements between the eastern and western metallogenic belts. The Pb‐Zn mineralization age of both ore belts was contemporary and formed in the same metallogenetic event. Both thrust formed at the same time and occurred at the Early Oligocene, which is consistent with the age constrained by field geological relationship. 相似文献
84.
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86.
四川盆地东部垫江凹陷三叠系嘉陵江组岩盐氯同位素特征与成钾指标研究 总被引:1,自引:0,他引:1
垫江凹陷位于四川盆地东部,是四川盆地三叠纪时期重要的成盐凹陷之一,但当时古卤水是否达到钾盐沉积阶段,是否具备形成海相钾盐的良好条件,一直存在争议。本文通过对垫江凹陷长平3井、高探1井和ZK001井嘉陵江组岩盐样品进行化学成分分析,以及对长平3井典型岩盐样品进行氯同位素分析来判断古卤水沉积阶段和成钾条件。结果发现垫江凹陷三叠系嘉陵江组岩盐δ37 Cl值均为负值,均小于-0.32‰,最低达到-1.18‰,绝大部分岩盐样品溴氯系数大于0.31,有很大一部分样品溴氯系数超过0.45,进一步表明垫江凹陷在嘉陵江期古卤水浓缩已达到钾石盐析出阶段,与岩盐包裹体成分分析结果一致。综合气候-物源-构造因素,认为垫江凹陷三叠纪嘉陵江期气候条件炎热,物质来源丰富,存在次级凹陷,古构造条件优越,具备良好的成钾潜力。 相似文献
87.
Qing-Bin Guan Bin Wang Xiong Wang Xing-An Wang Qiang Shi 《International Geology Review》2018,60(15):1883-1905
This study presents new zircon U–Pb geochronology, geochemistry, and zircon Hf isotopic data of volcanic and subvolcanic rocks that crop out in the Bayanhushuo area of the southern Great Xing’an Range (GXR) of NE China. These data provide insights into the tectonic evolution of this area during the late Mesozoic and constrain the evolution of the Mongol–Okhotsk Ocean. Combining these new ages with previously published data suggests that the late Mesozoic volcanism occurred in two distinct episodes: Early–Middle Jurassic (176–173 Ma) and Late Jurassic–Early Cretaceous (151–138 Ma). The Early–Middle Jurassic dacite porphyry belongs to high-K calc-alkaline series, showing the features of I-type igneous rock. This unit has zircon εHf(t) values from +4.06 to +11.62 that yield two-stage model ages (TDM2) from 959 to 481 Ma. The geochemistry of the dacite porphyry is indicative of formation in a volcanic arc tectonic setting, and it is derived from a primary magma generated by the partial melting of juvenile mafic crustal material. The Late Jurassic–Early Cretaceous volcanic rocks belong to high-K calc-alkaline or shoshonite series and have A2-type affinities. These volcanics have εHf(t) and TDM2 values from +5.00 to +8.93 and from 879 to 627 Ma, respectively. The geochemistry of these Late Jurassic–Early Cretaceous volcanic rocks is indicative of formation in a post-collisional extensional environment, and they formed from primary magmas generated by the partial melting of juvenile mafic lower crust. The discovery of late Mesozoic volcanic and subvolcanic rocks within the southern GXR indicates that this region was in volcanic arc and extensional tectonic settings during the Early–Middle Jurassic and the Late Jurassic–Early Cretaceous, respectively. This indicates that the Mongol–Okhotsk oceanic plate was undergoing subduction during the Early–Middle Jurassic, and this ocean adjacent to the GXR may have closed by the Late Middle Jurassic–Early Late Jurassic. 相似文献
88.
珠江口盆地东沙隆起南缘深水陆坡区(水深约900~2 600 m)是西北太平洋和南海水体交换的活跃区域,发育了类型丰富的等深流沉积体,但等深流沉积特征和成因机制尚不明确,相关研究仍缺乏足够证据。通过区域地震资料和ODP1144站钻井数据分析发现,该区第四系地层中可识别5种深水底流成因的等深流沉积:涂抹形漂积体、伸长形-丘形漂积体、限制形漂积体、沉积物波以及席状漂积体。根据等深流沉积特征、发育类型以及分布范围,从陆坡到深海平原大致依次出现涂抹形漂积体、伸长形-丘形漂积体、限制形漂积体和席状漂积体,而具有波状沉积底形的沉积物波主要发育于陆坡区。东沙隆起南缘第四系等深流沉积的形成、演化受控于多种因素,其中主控因素包括:西北太平洋与南海中-深层水体的"双层"环流结构、科里奥利力的"右偏"效应、冰期-间冰期海平面升降所诱导的底流与重力流交互作用机制以及新构造运动时期火山活动对海底地貌的改造。 相似文献
89.
In the Mikengshan-Yanbei area, a special region for the tin mineralization in South China, there are some Yanshanian granites and porphyries and associated porphyry tin deposits (e.g., Yanbei). Although the tin mineralization is closely associated with the granitoids magmatism, the age and petrogenesis of the granites remain controversial. The Mikengshan pluton, which intrudes into the rhyolitic tuff and pyroclastic rocks of the Upper Jurassic Jilongzhang Formation, is the largest one in Mikengshan-Yanbei area and mainly consists of K-feldspar bearing granites. In this study, we report new age and geochemical data for the Mikengshan K-feldspar bearing granites. LA-ICP-MS zircon U-Pb age dating shows that they were generated in the Early Cretaceous (~138 Ma). They have high SiO2 (74.42% to 76.69%), low Al2O3 (12.39% to 13.49%) and Mg# (11 to 19), and negative Eu, Sr and Ba anomalies, and are rich in potassium (most K2O/Na2O=1.37 to 1.94) and high field strength elements (HFSEs), and are weakly peraluminous (A/CNK=1.03 to 1.1) with high 10000×Ga/Al ratios (3.46 to 4.96) and slightly high zircon saturation temperatures (807 ℃ to 817 ℃), showing the characteristics of the typical A-type granites. Moreover, they have high Rb contents 842×10-6 to 1295×10-6, Rb/Sr (90 to 255) ratios and show rare earth elements (REE) tetrad effect, which are similar to those of high fractionated granites. Thus, we suggested that the Mikengshan K-feldspar bearing granites are high fractionated and aluminous A-type granite. Their slightly high εNd(t) values (-3.4 to -4.6) indicate that the mantle components should have played a role during their formation. Taking into account regional igneous rocks and tectonic setting data, we suggest that the Mikengshan K-bearing granites were formed in an extensional setting, which was probably related to the roll-back of the subducted Paleo-Pacific plate. © 2018, Science Press. All right reserved. 相似文献
90.
新疆东准噶尔地区自北向南发育额尔齐斯、阿尔曼太、卡拉麦里三条大型构造带,南北两条构造带已发现大量造山型金矿,而阿尔曼太构造带与南北构造带具有相似的成矿地质背景,却未见造山型金矿的报道。因此,笔者等选取了该构造带最重要的金矿床——顿巴斯套金矿,开展了详细的岩相学、矿相学研究以及构造解析。研究表明,该矿床具有区域性断裂的次级断裂控矿、脆—韧性剪切带控矿、背斜核部控矿“三位一体”的控矿特征,其中,NW—SE向脆—韧性剪切带是最重要的控矿构造,金矿化显著晚于矿区赋矿岩浆岩——石英闪长玢岩,且该矿床与相邻构造带典型的造山型金矿地质地球化学特征相似。结合成矿流体具有中低温、富CO2的特征,综合认为顿巴斯套金矿是典型的造山型金矿。将该矿床成矿过程划分为3期:① 以产出草莓状黄铁矿为典型特征的沉积期;② 以黄铁矿压实、结核、重结晶为特征的成岩期;③ 以产出热液脉和金的矿化为典型特征的热液期。热液期进一步划分为两个阶段:以脆—韧性变形为主的铁白云石—石英—黄铁矿阶段和由脆—韧性变形向脆性变形转变的石英—钠长石—方解石阶段。黄铁矿可划分为6个世代、毒砂可划分为3个世代:① Py1为沉积成因的黄铁矿,具有草莓状、胶状等特殊结构;② Py2为成岩作用形成的黄铁矿,具有顺层分布、呈结核状等特征;③ 热液期毒砂Apy1,粒度20~50 μm,自形、半自形,常与金共生;④ 热液期毒砂Apy2,自形,粒度80~200 μm;⑤ 热液期黄铁矿Py3,他形—自形,粒度50~150 μm,以内部包体多、孔洞多为显著特征;⑥热液期黄铁矿Py4,半自形—自形,粒度100~250 μm,以包体多,孔洞少,发育压力影为特征;⑦ 热液期Py5,以背散射下亮度高、显著富As为特征;⑧ 热液期毒砂Apy3:以颗粒粗大、自形、内部包体少、发育碎裂结构和压力影为特征;⑨ 热液期黄铁Py6:以颗粒粗大、半自形到自形、内部包体少、发育碎裂结构和压力影为特征。随着脆—韧性变形作用进行,黄铁矿、毒砂的粒度有序递增,自形程度逐渐升高,而品位逐渐降低,金的沉淀主要发生在脆—韧性变形阶段,脆性变形阶段无金矿化。主成矿阶段标志性的铁白云石化蚀变、微细浸染状的黄铁矿化、毒砂化蚀变可以作为找矿标志。 相似文献