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61.
HAN Ke YANG Xingke CHAO Huixi HE Hujun RUAN Shiqi GAO Yunfeng ZHANG Weisheng ZHU Wei JIN Gang 《《地质学报》英文版》2021,95(2):500-516
A W-Mo mineralized region is located along the northern margin of the South Qinling tectonic belt of China. WMo mineralization occurs mainly in Cambrian–Ordovician clastic and carbonate rocks, and the ore bodies are structurally controlled by NW–SE-and NNE–SSW-striking faults. Evidence for magmatism in the area is widespread and is dominated by intermediate–felsic intrusives or apophyses, such as the Dongjiangkou, Yanzhiba, Lanbandeng, and Sihaiping granitic bodies. Quartz-vein-type mineralization and fault-controlled skarn-type mineralization dominate the ore systems, with additional enrichment in residual deposits. At present, there are few or insufficient studies on(1) the age of mineralization,(2) the relationship between intermediate–felsic granite and W-Mo mineralization,(3) the source of ore-forming materials,and(4) the metallogenic and tectonic setting of the mineralized area. In this paper, we present geochronology results for numerous intrusive granitic bodies in the South Qinling tectonic belt. U-Pb zircon geochronology of the Lanbandeng monzogranite and Wangjiaping biotite monzogranite yields ages of 222.7 ± 2.3 and 201.9 ± 1.8 Ma, respectively. In contrast to the Late Triassic age of the Lanbandeng monzogranite, the age of the newly discovered Wangjiaping biotite monzogranite places it at the Triassic–Jurassic boundary. Re-Os molybdenite geochronology on the Qipangou W-Mo deposit yielded a model age of 199.7 ± 3.9 Ma, indicating the deposit formed in the early Yanshanian period of the Early Jurassic. Granitoid intrusions in the mineralized area are characterized by composite granite bodies that crystallized at ca.240–190 Ma. While there were multiple stages of intrusion, most occurred at 210–220 Ma, with waning magmatic activity at 200–190 Ma. The Re-Os age of molybdenite in the region is ca. 200–190 Ma, which may represent a newly discovered period of W-Mo metallogenesis that occurred during the final stages of magmatism. The heat associated with this magmatism drove ore formation and might have provided additional ore-forming components for metallogenesis(represented by the Wangjiaping biotite monzogranite). Ore materials in the mineralized area were derived from mixed crustal and mantle sources. Enrichment of the region occurred during intracontinental orogenesis in the late Indosinian–Yanshanian, subsequent to the main Indosinian collision. At this time, the tectonic environment was dominated by extension and strike-slip motion. 相似文献
62.
云南宁蒗地区喜山期斑岩体岩石化学特征与成矿性及其岩浆来源探讨 总被引:1,自引:0,他引:1
宁蒗地区喜山期斑岩带受近现北向的包都-波罗弧形断裂带控制,由壳幔混源型岩浆浆被动侵位耐成,总结上呈向北逐渐倾伏的趋势。该斑岩带斑岩属钙碱性系列、中酸性岩类。通过对该斑岩带各斑岩体(群)地质特征、岩石化学特征的综合分析,表明其为含铜斑岩或铜(钼)斑岩,具良好的成矿前景。 相似文献
63.
准噶尔盆地结构及其圈闭类型 总被引:12,自引:0,他引:12
准噶尔盆地是复合叠加前陆盆地 ,其原型分别形成于板块俯冲、碰撞、造山带后期复活、拗拉槽回返和板内皱陷作用有关的大地构造环境。其古生代盆地的形成与相邻的阿尔泰山和东、西准噶尔山、天山及博格达山的造山作用相关。中新生代盆地的形成和改造与其南部特提斯域板块俯冲碰撞造山引起的盆地相邻造山带的复活有关。相邻造山带时空上不均一的造山作用对盆地的影响不同 ,形成了盆地独特的结构。各坳陷均由与其形成有关的造山带前缘冲断带、陡坡带、山前凹陷、缓坡带和前隆及前缘皱陷等构成 ,前隆之间的叠加构成了盆地的大型隆起 ,皱陷叠加构成了盆地的中央坳陷。不同类型的圈闭在坳陷中有规律地分布着 相似文献
64.
滇西亲冈瓦纳微古植物的发现及其地质意义 总被引:6,自引:1,他引:6
本文首次报道滇西保山丁家寨组孢子花粉40属55种,其中新种Plicatipolenitesbaoshanensis1个。丁家寨组的孢子花粉组合是一个以冈瓦纳植物地理区分子为主,兼有少量华夏植物地理区和其它植物地理区分子。丁家寨组的Parasacitesdistinctus-Microbaculisporafentula(DF)孢子带可与冈瓦纳植物地理区Parasacites孢子带比较,时代为阿舍尔阶(Aselian)萨克马尔阶(Sakmarian)。丁家寨组的微古植物研究不仅有重要的地层学和古生物学意义,而且对研究冈瓦纳大陆与欧亚大陆之间的关系有着十分重要的意义。 相似文献
65.
矾山岩浆岩型磷(铁)矿床成矿地质背景分析 总被引:1,自引:1,他引:1
在矾山磷(铁)矿床生成的海西─印支期,各方向深大断裂同时活动,为岩体和矿床源源不断地提供物源;张宣幔枝构造外围拆离滑脱带为其提供容岩空间;岩体在复盖层下的巨厚沉积盖层中分异、演化,同时伴随着印支期开阔宽缓的褶皱。它充分反映了矿床生成于准地台活化初期的大地构造背景环境。 相似文献
66.
大别山北部蛇绿岩的地球化学制约 总被引:7,自引:1,他引:7
常量元素,微量元素,稀土元素,Nd同位素及氧同位素地球化学特征表明,太别山北部变质镁铁-超镁铁质岩带中存在变质的蛇绿岩,它主要由变质橄榄岩,辉长岩(-辉绿岩?)和基性熔岩三部分组成,其中,变质的基性熔岩的亏损地幔模式年龄tDM/Ma=1036.8~1293.8,εNd(t)=7.2~7.7,表明它可能代表1000Ma左右形成于中等扩张速率(2cm/ad左右)洋盆条件下的洋壳残片。 相似文献
67.
68.
热穹隆构造及其对金矿的控矿作用 总被引:5,自引:2,他引:5
热穹隆构造是在一个构造活动(逆冲)带中,由沿走向发生的地壳差异性升降运动(走向波浪机制)产生的构造穹隆中的热(液)活动事件,或是在这些部位由于中浅成岩浆岩的底辟式侵入而产生的热力性穹隆构造,它对金矿成矿的控制机理主要体现在适宜的浅层构造空间,贯深性构造通道及深源(下地壳)的岩浆源和矿质热液源的有机统一,主要的容矿空间为穹隆构造所产生的放射状(或束状)及环状构造裂隙系统。 相似文献
69.
《International Geology Review》2012,54(6):654-685
The degree of element mobility in subduction metamorphism has generated much debate; some workers advocate considerable mobility during metamorphism, whereas others postulate minimal mobility. We assess this issue by examination of major and trace element concentrations and Pb-, Nd-isotopic data for 39 mafic metavolcanic rocks from the Franciscan subduction complex, related units of coastal California, and the Feather River ultramafic belt of the northern Sierra Nevada, California; these samples span a wide range of metamorphic grade. We conclude that these rocks, despite their metamorphism up to eclogite facies, preserve protolith major and trace elemental compositions and isotopic ratios, with the exception of some mobile large ion lithophile elements such as Ba, Pb, and to a smaller extent La, U, and Sr. Thus subduction metamorphism of these metabasalts occurred in a largely closed system. Lack of light rare earth element enrichment in the rocks demonstrates lack of chemical exchange with subducted metasediments. Relatively low SiO2 content (<48 wt.%) of many of the metamorphic rocks and the lack of correspondence between silica depletion and metamorphic grade suggests that the silica depletion resulted from seafloor hydrothermal alteration before subduction. In spite of demonstrated mobility of Pb, and possible mobility of Nd, isotopic ratios of Pb and Nd were not modified during subduction metamorphism. In contrast to our results from metabasaltic rocks, our analysis of actinolite-rich rinds from high-grade Franciscan mélange blocks suggests some chemical exchange between metachert and the overlying mantle. The increasing enrichment in Ba and Pb with increasing metamorphic grade suggests that Ba- and Pb-rich fluids interacted more intensely with metabasalt at the higher grades of metamorphism. Comparison of these results with studies of the active Mariana forearc suggests that fluids interacting with the mantle wedge up-dip of the region of magma genesis are derived from subducting sediments overlying the down-going plate. 相似文献
70.