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81.
滇东华宁盘溪火车站以北的金山—大石山地区发育中、晚泥盆世的丘状珊瑚礁。以Alveolites和Thamnopora为代表的床板珊瑚为造礁生物。纵剖面上岩相变化的记录清楚地表明,该礁体经历了定殖、繁殖和衰亡三个阶段。海水变浅及其盐化是导致礁体衰亡的直接原因  相似文献   
82.
张宏飞  张本仁 《地质学报》1997,71(2):142-149
本文对东秦岭造山带内27个花岗岩类央体48件长石样品进行了铅同位素成分的测定,结果表明,本区的南秦岭不同时代花岗岩类以贫铀铅和钍铅为特征,具有明显的铅同位素块体效应,反映它们属地同一个铅同位素构造-地球化学省;而本区的北秦岭区岗岩类从晚元古代到早古生长,长石铅同位素组成以富铀铅和钍铅的为特征,但从晚古生长开始,花岗岩类长石铅同位素组成明显发生变化,以贫铀铅和钍铅为特征,反映晚古生长及其后形成花岗质  相似文献   
83.
研究区自加里东期运动以来,经历了复杂的构造-岩浆-热演化过程。在分析岩浆活动特征及其形成的构造环境的基础上,探讨了研究区沉积岩系及其中有机质的热变质作用。  相似文献   
84.
硅岩在雅鲁藏布江缝合带广泛发育。在 1∶ 2 5万萨嘎县幅、桑桑区幅区域地质调查中 ,在缝合带及其南侧宗卓组中识别出 3种硅岩沉积组合 :1嘎学群内与玄武岩伴生的硅岩 ;2构造混杂带内夹于页岩中的硅岩 ;3宗卓组内夹于页岩—岩屑石英杂砂岩的硅岩。在硅岩中分离出的放射虫组合时代为白垩纪。运用地球化学研究手段 ,对硅岩岩石组合、岩石化学、微量元素和稀土元素特征进行了综合分析 ,与玄武岩伴生的硅岩 Al/ (Al Fe Mn)为 0 .5 33~ 0 .5 4 6 <0 .6 19(除 9号样外 ) ,Ce/ Ce* 为 0 .6 7(平均 ) ,L an/ Ybn为 0 .83~ 1.37和 L an/ Cen为0 .82~ 2 .2 3;夹于页岩中的硅岩 Al/ (Al Fe Mn)为 0 .5 5 7~ 0 .6 19,Ce/ Ce*为 0 .995~ 1.35 0 ,L an/ Ybn为 0 .71~ 1.0 3和 L an/ Cen为 0 .6 8~ 0 .98;宗卓组内的硅岩 Al/ (Al Fe Mn)为 0 .6 15~ 0 .70 7>0 .6 19,Ce/ Ce* 为 0 .94~1.14 ,L an/ Ybn 为 1.4 4~ 1.6 6和 L an/ Cen 为 0 .85~ 1.0 7。研究证实 ,3种背景的硅岩均反映非热水或生物成因。嘎学群内与玄武岩伴生的硅岩具深水盆地沉积特征 ;宗卓组中的硅岩具典型大陆边缘沉积环境特征 ;构造混杂带内的硅岩形成于近大陆边缘环境中  相似文献   
85.
加强埃达克岩研究,开创中国Cu、Au等找矿工作的新局面   总被引:36,自引:27,他引:36  
埃达克岩与浅成低温热液Au-Ag及斑岩型Cu、Cu-Au矿床有密切的关系,环太平洋地区多数大型和世界级的斑岩铜矿均与埃达克岩有关。埃达克岩有利于成矿的关键因素与埃达克岩形成时角闪石转变为石榴石的脱水作用有关,而水能萃取出在地幔和基性岩中富集的金属元素。因此,埃达克岩集中分布的地区有利于铜、金等矿化的聚集。中国铜矿资源严重不足,解决这个紧迫问题的出路在寻找斑岩铜矿。全球铜矿主要分布在环太平洋地区,中国与环太平洋类似的地区不是中国东部,而是古亚洲洋造山带、东北吉黑东部和西藏冈底斯。从国家目标出发,建议实施铜、金等找矿工作的战略转移,把浅成低温热液和斑岩型Au、Cu、Ag等矿床找矿的重点放在古生代的古亚洲洋造山带、晚古生代-中生代的吉黑东部和中-新生代的冈底斯地区。古亚洲洋造山带首选阿尔泰西南缘-东准噶尔、东天山和内蒙古中部3个地区。埃达克岩可以作为找矿标志来使用,因此,在找矿思路上也应当有一个变化,即:先找埃达克岩,再找矿。  相似文献   
86.
从赋矿岩系岩石类型的多样性论羊拉铜矿的成因   总被引:17,自引:0,他引:17  
通过野外调查和室内工作,将羊拉铜矿床按矿石的矿物成分和组构分出9种类型,包括矽卡岩型、大理岩型、砂板岩型、角岩型、凝灰质流纹岩型、玄武岩-辉绿岩型、花岗质碎裂岩-花岗斑岩型、安山岩型和绢英岩型。矽卡岩型矿石是构成矿体的最主要矿石类型,但在不同矿段可由碳酸盐岩(里农)和凝灰质火山岩(贝吾)两种原岩形成。矿体在赋矿岩系中有3种产出形态:顺层呈层状.似层状;沿花岗岩与沉积岩接触面呈透镜状;贯穿岩体和沉积岩呈大脉状。它们均与后期构造密切相关,矿体无确定的顶、底板岩石,围岩蚀变以矿体为中心呈环带状分布。研究表明,矿床相对赋矿岩系显示出明显的后成性,属于印支期花岗岩-花岗斑岩与古生代混杂岩通过强烈的接触交代作用形成的矽卡岩型铜矿床。  相似文献   
87.
Zoned garnet and amphibole occur in metabasites of the KraubathMassif, Eastern Alps, that contain relic magmatic clinopyroxene.The amphibole composition gradually changes from core (XMg =0·83) to rim (XMg = 0·6–0·7). A numberof compositional varieties of garnet occur in the metabasite.An older porphyroblastic garnet (Py23–27, Alm41–43,Grs29–33) has two different compositional domains, onerelatively rich in Mg (Py27–30) and the other rich inCa (Grs35–38) with a low Mg (Py20–25) content. Theyoungest variety, which forms rims on, or microveins in, theporphyroblastic garnet, has high Ca and low Mg (Grs40–57,Py2–7, Alm46–51). The amphibole cores and garnetporphyroblasts are interpreted to represent minerals formedduring Variscan regional metamorphism under amphibolite-faciesconditions. Alpine metamorphism is represented by the most recentCa-rich and Mg-poor variety of garnet that coexists with theamphibole rims, epidote and chlorite. Fracturing in the porphyroblasticgarnet probably originated during retrogression of the Variscanamphibolite-facies assemblages. Textural relations suggest thatthe garnet in the microveins formed by dehydration of hydrousphases during an Alpine metamorphic overprint that reached PTconditions of 550–583°C at 1·0 GPa. KEY WORDS: microveins; garnet; metabasites; Kraubath Massif; Eastern Alps  相似文献   
88.
In the Vizianagaram area (E 83°29.442′; N 18°5.418′) of the Eastern Ghats Belt, India, a suite of graphite‐bearing calc‐silicate granulites, veined by syenitic rocks, developed wollastonite‐rich veins at 6–7 kbar and > 850 °C. During subsequent near‐isobaric cooling wollastonite was replaced by calcite + quartz and a graphic intergrowth of fluorite + quartz ± clinopyroxene. Titanite with variable Al and F contents is present throughout the rock. Combining the compositional variation of titanite and recent experimental data, it is demonstrated that the mineral assemblage, the composition of coexisting fluids and the mobility of Al exert a far greater control on the composition of titanite than pressure, temperature or the whole rock composition. Thermodynamically computed isothermal–isobaric logfO2– logfCO2 and logfF2– logfO2 grids in the systems Ca–Fe–Si–O–F (CISOF; calcite‐free) and Ca–Fe–Si–O–F–C–H (CISOFV; calcite‐present) demonstrate the influence of bulk rock and fluid compositions on the stability of the fluorite‐bearing assemblages in diverse geological environments and resolve the problem of the stability of titanite in fayalite + fluorite‐bearing rocks in the Adirondacks. The mineralogy of the studied rocks and the topological constraints tightly fix the logfO2, logfF2 and logfCO2 at ?15.8, ?30.6 and 4.1, respectively, at 6.5 kbar and c. 730 °C. Because of the similarity in the P–T conditions, the compositions of pore fluids in the fluorite‐bearing assemblages of the Adirondacks and the Eastern Ghats Belt have been compared.  相似文献   
89.
A 39-km-long deep seismic reflection profile recorded during two field campaigns in 1996 and 2002 provides a first detailed image of the deep crust at the eastern margin of the Eastern Alps (Austria). The ESE–WNW-trending, low-fold seismic line crosses Austroalpine basement units and extends approximately from 20 km west of the Penninic window group of Rechnitz to 60 km SSE of the Alpine thrust front.The explosive-source seismic data reveals a transparent shallow crust down to 5 km depth, a complexly reflective upper crust and a highly reflective lowermost crust. The upper crust is dominated by three prominent west-dipping packages of high-amplitude subparallel reflections. The upper two of these prominent packages commence at the eastern end of the profile at about 5 and 10 km depth and are interpreted as low-angle normal shear zones related to the Miocene exhumation of the Rechnitz metamorphic core complex. In the western portion of the upper crust, east-dipping and less significant reflections prevail. The lowermost package of these reflections is suggested to represent the overall top of the European crystalline basement.Along the western portion of the line, the lower crust is characterised by a 6–8-km-thick band of high-amplitude reflection lamellae, typically observed in extensional provinces. The Moho can be clearly defined at the base of this band, at approximately 32.5 km depth. Due to insufficient signal penetration, outstanding reflections are missing in the central and eastern portion of the lower crust. We speculate that the result of accompanying gravity measurements and lower crustal sporadic reflections can be interpreted as an indication for a shallower Moho in the east, preferable at about 30.5 km depth.The high reflectivity of the lowermost part of the lower crust and prominent reflection packages in the upper crust, the latter interpreted to represent broad extensional mylonite zones, emphasises the latest extensional processes in accordance with eastward extrusion.  相似文献   
90.
The Armutlu Peninsula and adjacent areas in NW Turkey play a critical role in tectonic reconstructions of the southern margin of Eurasia in NW Turkey. This region includes an inferred Intra-Pontide oceanic basin that rifted from Eurasia in Early Mesozoic time and closed by Late Cretaceous time. The Armutlu Peninsula is divisible into two metamorphic units. The first, the Armutlu Metamorphics, comprises a ?Precambrian high-grade metamorphic basement, unconformably overlain by a ?Palaeozoic low-grade, mixed siliciclastic/carbonate/volcanogenic succession, including bimodal volcanics of inferred extensional origin, with a possibly inherited subduction signature. The second unit, the low-grade znik Metamorphics, is interpreted as a Triassic rift infilled with terrigenous, calcareous and volcanogenic lithologies, including basalts of within-plate type. The Triassic rift was unconformably overlain by a subsiding Jurassic–Late Cretaceous (Cenomanian) passive margin including siliciclastic/carbonate turbidites, radiolarian cherts and manganese deposits. The margin later collapsed to form a flexural foredeep associated with the emplacement of ophiolitic rocks in Turonian time. Geochemical evidence from meta-basalt blocks within ophiolite-derived melange suggests a supra-subduction zone origin for the ophiolite. The above major tectonic units of the Armutlu Peninsula were sealed by a Maastrichtian unconformity. Comparative evidence comes from the separate Almacık Flake further east.Considering alternatives, it is concluded that a Mesozoic Intra-Pontide oceanic basin separated Eurasia from a Sakarya microcontinent, with a wider Northern Neotethys to the south. Lateral displacement of exotic terranes along the south-Eurasian continental margin probably also played a role, e.g. during Late Cretaceous suturing, in addition to overthrusting.  相似文献   
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