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1.
In the Sandıklı (Afyon) region, western Taurides, the Late Proterozoic rocks of the Sandıklı basement complex are composed of low-grade meta-sedimentary rocks (Güvercinoluk Formation) intruded by felsic rocks (Kestel Cayı Porphyroid Suite, KCPS). The KCPS is a deformed and highly sheared, dome-shaped rhyolitic body with a granitic core. Quartz porphyry dikes intrude both the slightly metamorphic igneous and the sedimentary rocks of the basement complex. Both the quartz porphyries and rhyolites were converted into mylonites with relict igneous textures. Geochemical data show that these felsic igneous rocks are subalkaline and mainly granitic in composition with SiO2 >72 wt% and Al2O3 >11.5 wt%. The chondrite-normalized incompatible trace element patterns are characterized by distinct negative Rb, Nb, Sr, P, Ti, and Eu with enrichment in Th, U, La, Ce, Nd, Sm, and Zr. The REE patterns of the felsic rocks indicate a strong enrichment in LREE but display slightly flat HREE patterns. According to geochemical characteristics and petrogenetic modeling, extrusive and intrusive rocks of the KCPS were probably derived from an upper continental crustal source (partial melting of granites/felsic rocks) by 18–20% fractional melting plus 18–20% Rayleigh fractional crystallization, which seems to be the most effective igneous process during the crystallization of the KCPS. Single zircon age data from the granitoids and fossils from the disconformably overlying sedimentary successions indicate that the metamorphism and the igneous event in the Taurides are related to the Cadomian orogeny. Based on the geological, geochemical and petrogenetic correlation of the post-collisional granitoids it is further suggested that the Tauride belt in western central Turkey was in a similar tectonic setting to the Gondwanan terranes in North Africa (Younger Granitoids) and southern Europe (Spain, France, Bohemia, Brno Massifs) during the Late Cadomian period.  相似文献   
2.
The wave velocity for two types of granitoids was measured using the analytic method of full-wave vibration at high pressure and high temperature. The laws of velocity changes for them differ with the pressure boost and temperature rise, and the velocity change of S-type is more violent than that of I-type. The “softening point” of compressional wave velocity (V μ) is also revealed during the measurement for two types of granitoids imitating the pressure and temperature at a certain depth. But the depth of “softening”, Vp after “softening” and the percentage of Vp’s drop around the “sofrening point” for two types of granitoids are obviously different. The depth of “softening” is 15 km approximately and Vp after “softening” is 5.62 km/s for S-type granitoid. But for I-type granitoid the depth of “softening” is 26 km approximately and Vp after “softening” is 6. 08 km/s. Through careful analysis of rock slices after the experiment, it was found that the “softening” of elastic-wave velocity is caused by the partial melting of granite. Combined with the results of geophysical prospecting, these results suggest that the low-velocity layers developing in the interior of Earth crust are related to thc partial melting of different types of granitoids. The formation of the low-velocity layer in the upper-middle Earth crust is closely related to the development of S-type granitoid, but that in the lower Earth crust is closely related to the development of I-type granitoid.  相似文献   
3.
The Shah-Kuh granitic pluton of eastern Central Iran was emplaced 165 Ma ago, in an active continental margin setting. It is made of two main units: a granodioritic unit (SiO2=63–71 wt%) to the north–west and a syenogranitic unit (SiO2=73–77 wt%) to the south–east. The former unit displays seriate medium-grained textures and contains locally abundant mafic enclaves. The latter unit is medium- to coarse-grained and porphyritic, with 0.5–3 cm long K-feldspar megacrysts. Fine-grained granitic bodies are present in both units. The rocks are metaluminous to slightly peraluminous (I-type) and peraluminous (S-type) and belong to the ilmenite-series granites. Fractional crystallization appears to have been a very effective differentiation process in both units, and the fractionated mineral assemblages are determined by mass balance calculations. Isotopic data (Sri=0.7065 and εNdt=−2.5) are consistent with a young upper crustal protolith. Tin mineralization in sheeted quartz-tourmaline (-cassiterite) veins is spatially associated with the granodioritic unit. The veins formed by hydraulic fracturing when the granodioritic to monzogranitic magma became water-saturated and exsolved a fluid phase during crystallization. The reduced nature of this magma is responsible for the incompatible behaviour of Sn, likely to favour Sn concentration in the residual melt and then in the exsolved fluid. Another fluid phase was exsolved by the syenogranitic magma and was responsible for local greisenized granites, characterized by high Y and HREE-contents and non-fractionated REE distribution patterns. Field and mineralogical data show that the (B, Sn) vein-forming fluid was different from the (F, Li) greisen-forming fluid.  相似文献   
4.
村前铜多金属矿床位于钦杭成矿带东段,为一具有矽卡岩型矿化和斑岩型矿化的铜多金属矿床,含矿岩体为燕山早期花岗闪长斑岩,岩石具有富硅、富铝、富碱的特点,属于偏铝-过铝质钙碱性花岗岩类。岩体具有从深部向浅部蚀变增强,大部分组分活动性不明显,而成矿元素Cu-Mo-Fe-Pb-Zn-Au-Ag含量明显增加,Na2O、Sr含量降低,REE元素除Eu少量丢失外,其余均呈一致的迁入特征。岩体属Ⅰ型花岗质岩石,由具角闪石+石榴子石残留相的火成岩部分熔融形成的熔浆,混合或混染了地壳重熔型岩浆上侵就位而成。钦杭结合带东段,燕山期中酸性岩浆活动具有从176~150Ma的埃达克岩或具岛弧花岗岩特征的Ⅰ型花岗岩,至150~140Ma的S型花岗岩,向140~110Ma的A型花岗岩演化趋势,显示了地壳由厚减薄的过程,暗示其大地构造背景为岩石圈的伸展减薄环境,而形成于169.3±1.1Ma的村前斑岩体正处于伸展阶段早期。综合岩体成矿特征表明,钦杭成矿带东段及邻近地区,176~160Ma主要形成与Ⅰ型花岗质岩石有关的以Cu为主的多金属矿床;160~150Ma主要形成与Ⅰ型花岗质岩石有关的Cu-Mo矿床与W-Sn矿床;150~140Ma主要形成与S型花岗质岩石有关的以W-Sn-Mo为主的多金属矿床,以及以Ag-Pb-Zn为主的多金属矿床;140~110Ma主要形成与A型花岗质岩石有关的以W-Sn-Mo为主的多金属矿床,少量与Ⅰ型花岗质岩石有关的Pb-Zn矿床。  相似文献   
5.
朝鲜~19亿年侵入岩的岩石类型与构造背景初探   总被引:5,自引:5,他引:0  
彭澎  王冲  杨正赫  金正男 《岩石学报》2016,32(10):2993-3018
朝鲜半岛北部广泛发育~19亿年侵入岩,这些岩浆岩可以分为三个系列,分别为似斑状花岗岩系列(多为I型,以妙香山岩体为代表,年龄1900~1840Ma)、S型花岗岩系列(以嘉山岩体为代表,本文获得1862±5Ma锆石U-Pb年龄)和正长岩系列(以龙浦岩体为代表,本文获得1857±2Ma锆石U-Pb年龄)。似斑状花岗岩系列(I型花岗岩)大致对应朝鲜地质学家定义的Myohyangsan(妙香山)杂岩,以发育钾长石巨斑为特征,与麻粒岩相变质的火山岩-沉积岩系关系密切;S型花岗岩系列大致对应Ryonhwasan(莲花山)杂岩,以发育石榴石和堇青石等矿物为特征,与麻粒岩相变质的副变质岩共生:这说明前者可能与变质火山岩系相关,而后者可能和副变质岩相关。正长岩系列,朝鲜地质学家称为Sakju(朔州)杂岩,分布较为局限,仅见于朔州以及博川-定州之间,也见于邻区辽东,多为岩株。这三个系列岩浆岩稍早或者同期于角闪岩相-麻粒岩相变质(本文获得甑山"群"变质锆石U-Pb年龄1844±2Ma)。邻区辽东-吉南及胶东地区也发育这三个系列岩浆岩,但这两个地区~21亿年岩浆作用更为广泛。朝鲜半岛南部发育大量同期岩浆岩,但岩石类型以似斑状花岗岩为主,并发育紫苏花岗岩和斜长岩。我们推测,朝鲜半岛南北两侧基底属性存在差异,可能对应不同的古陆(华北与华南古陆)。综合分析表明,朝鲜~19亿年前广泛发育I型和S型花岗岩,并有幔源岩浆作用,同时发育正长岩类,并且这些岩浆活动与区域高级变质作用时代接近。考虑到本区存在太古宙基底,我们推测本区在古元古代可能处于类似现今活动大陆边缘弧背景。  相似文献   
6.
7.
苏扣林 《江苏地质》2018,42(2):197-205
广州从化区良口亚髻山霞石正长岩为典型岩石遗迹,在碱性岩体野外填图研究过程中,新发现东侧分布有黄田埔高分异花岗岩,形成时间约(146±13)Ma,为晚侏罗世岩浆活动产物。元素地球化学特征显示硅高、钾富、分异指数高、Rb/Sr比值高以及Rb/Ba、Nb/Ta、Zr/Hf、TFeO/MgO比值低;稀土元素ΣREE平均值为248 g/t,ΣCe/ΣYb平均值为2.34,δEu(0.16)负异常明显;Ga(×10~4)/Al比值较低(平均值为3.47),Zr+Nb+Ce+Y含量(平均值为264g/t)低于A型花岗岩(350 g/t);I(Sr)值为0.691 8~0.712 8,平均值为0.708 1;ε_(Nd)(t)值为-3.5~-10.0,平均值为-6.7。元素地球化学、同位素地球化学和同位素年代学综合研究结果表明,岩株的形成可能与上地幔岩浆分异有关,为高分异Ⅰ型花岗岩。  相似文献   
8.
位于西准噶尔南部的庙尔沟岩体主体由碱长花岗岩和少量紫苏花岗岩组成。本文在前人工作基础上,以岩体东南边缘新发现的花岗闪长斑岩为研究对象,开展岩石学、年代学和Hf同位素以及全岩地球化学研究,确定花岗闪长斑岩形成时代、揭示岩石成因类型及源区属性、探讨其与碱长花岗岩和紫苏花岗岩岩浆演化成因联系及其形成的深部动力学过程。锆石U-Pb定年结果显示,花岗闪长斑岩形成于317.4±1.9Ma,为晚石炭世早期岩浆活动的产物,明显早于紫苏花岗岩(~307Ma)和碱长花岗岩(~303Ma)。岩石地球化学数据表明,花岗闪长斑岩具有较高硅、中等铝,贫钙、铁、镁,富集Rb、K、Th、U,强烈亏损Nb、Ta、Ti的特征,为钙碱性弱过铝质I型花岗岩;紫苏花岗岩更多的表现出钙碱性-高钾钙碱性镁质I型紫苏花岗岩特征;碱长花岗岩为碱性准铝质-弱过铝质A型花岗岩。锆石Hf同位素分析结果表明,花岗闪长斑岩、紫苏花岗岩和碱长花岗岩均具有高正的ε_(Hf)(t)值(+11.6~+15.8)和年轻的二阶段模式年龄(325~600Ma),表明其原始岩浆主要起源于亏损地幔新衍生的年轻地壳物质。综合分析认为,庙尔沟岩体花岗闪长斑岩形成于晚石炭世早期洋壳俯冲背景,由底侵的、受流体交代的幔源基性岩浆与其诱发的年轻下地壳酸性岩浆在深部混合而成。紫苏花岗岩和碱长花岗岩形成于弧后伸展背景,前者是伸展初期继续底侵于下地壳的幔源玄武质岩浆降温释放大量的水和热诱使早期侵位于下地壳的镁铁质岩石再次发生部分熔融的产物,后者是伸展后期大规模软流圈地幔上涌底垫加热年轻中下地壳使其部分熔融而成。  相似文献   
9.
中亚造山带东端兴安地块南段的包格德岩体由石英二长岩、二长花岗岩和花岗斑岩3种岩性组成,岩体锆石LA-ICP-MS U-Pb定年结果分别为368±1 Ma、364±1 Ma、355±1 Ma,为晚泥盆-早石炭世岩浆活动的产物;岩体的(Na_2O+K_2O)含量为7.62%~8.82%,K_2O/Na_2O值为0.93~4.21,具有富碱且相对富钾的特点,A/CNK为0.95~1.20,以准铝质-弱过铝质为主,成因上为高钾钙碱性系列的I型花岗岩;岩体具有偏低的稀土元素总量(83.60×10~(-6)~163.40×10~(-6)),中等的铕负异常(δEu=0.34~0.78),相对富集大离子亲石元素(Rb、Th、K)及轻稀土元素,不同程度亏损Ba、Sr、Ti及P等元素;岩体形成于活动大陆边缘弧的伸展环境,与古亚洲洋的演化有关。  相似文献   
10.
伊通县放牛沟地区早古生代岩浆演化特征及其与矿产关系   总被引:1,自引:0,他引:1  
贾大成 《吉林地质》1990,9(2):49-56
伊通县放牛沟早古生代岩浆活动较为强烈,其发展演化与放牛沟多金属硫化物矿床关系极为密切。岩浆活动特点是先喷发后侵入,先期形成钙碱系列的火山—沉积岩系,后期为Ⅰ型中酸性岩浆侵入。该矿床既有火山沉积特征,又有后期岩浆热动力改造特点,其形成受控于岛弧构造环境、火山活动形成的矿源层、后期热动力改造等因素。  相似文献   
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