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41.
扬子克拉通北缘新元古代岛弧花岗岩类成分极性及成因的地球化学探讨 总被引:3,自引:1,他引:3
对扬子克拉通北缘新元古代岛弧花岗岩类成分极性的地球化学研究表明,在SiO_2含量相近的条件下,由北向南岩石中K_2O、K_2O+Na_2O、K_2O/Na_2O逐渐增加,而CaO逐渐降低;从北向南,微量元素Rb、Ba、Th、Zr、Nb、Ta、 ∑REE及Rb/Th、Rb/Nb、∑LREE/∑HREE、(La/Yb)_N 逐渐增加或具增加趋势,而 Sr、Co、Ni和Sr/Ba具逐渐降低或具降低趋势;同位素组成由北向南δ~18O、εs_r(t)系统增高,而ε_(Nd)(t)逐渐降低。这些组分的空间变化规律与环太平洋带位于俯冲带上盘向陆一侧的岛弧或大陆边缘岩浆中出现的成分极性规律相一致.分析认为,大陆壳物质以不同比例的加入是影响俯冲带岛弧花岗质岩浆成分极性的一个重要因素,向陆一侧岩浆中陆壳物质所占的比例逐渐增高,而幔源物质所占比例逐渐降低。 相似文献
42.
冈底斯东段古新世朱拉岩体LA-ICP-MS锆石U-Pb定年和岩石地球化学特征 总被引:1,自引:0,他引:1
朱拉岩体位于冈底斯带东部,主要由黑云母二长花岗岩组成,其中发育闪长质包体,二者呈渐变过渡关系。3件寄主岩石LA-ICP-MS锆石U-Pb年龄加权平均值分别为64.6Ma±0.8Ma、64.3Ma±0.8Ma和63.9Ma±0.5Ma,含776Ma的继承岩浆锆石。1件闪长质包体样品年龄加权平均值为66.1Ma±0.3Ma。闪长质包体低Si,中Mg(Mg﹟平均41.1),属铝质高钾钙碱性系列,Nb/Ta值为22,Sr/Y值为3.69,稀土元素分馏较低,LREE/HREE平均值为1.92,Eu强烈亏损,富集大离子亲石元素(Rb、K、U、Th),亏损高场强元素(Nb、Ta、Sr、Ti),暗示岩浆成分主要为幔源。寄主岩石富Si、K,贫P,属铝质—偏铝质钙碱性—高钾钙碱性系列,Nb/Ta值15.9,富集大离子亲石元素(Rb、K、Th),亏损高场强元素(Nb、Ta、Ba、P、Ti),具有活动陆缘钙碱性岩系的微量元素分布特征。寄主岩石与闪长质包体具有密切的成生联系,闪长岩形成于富集俯冲带组分的地幔熔体,在上升过程中混染了一定量的壳源物质结晶分异产物,寄主岩石则为底侵作用产生的大量壳源熔体与少量幔源熔体混合并发生一定程度分离结晶后的产物。结合前人的研究成果,认为古新世朱拉岩体与雅鲁藏布江大洋的向北消减有关。 相似文献
43.
中俄阿尔泰山中生代花岗岩与稀有金属矿床的初步对比分析 总被引:8,自引:2,他引:6
中国阿尔泰山和俄罗斯阿尔泰山均属于阿尔泰山脉的组成部分,地理上互相连接,地质上具有相似的古生代演化历史,同样都发育中生代花岗岩及伴生的稀有金属矿床。中国阿尔泰山和俄罗斯阿尔泰山的中生代花岗岩及其稀有金属矿床既表现出一定的相似性,也存在一定的差别。两地与稀有金属矿床有关的中生代花岗岩主要为S型花岗岩,属于非造山花岗岩类,但在俄罗斯阿尔泰山发育以岩珠和岩脉型钨-钼、锂-钽为主的稀有金属矿床,时限为晚三叠世和早侏罗世,而中国阿尔泰山则发育以花岗伟晶岩脉型锂-铍-铌-钽为主的稀有金属矿床,时限从晚三叠世到晚侏罗世。这些花岗岩具有相似的Sr- Nd同位素特征,但~(87)Sr/~(86)Sr初始比值变化很大,可能是岩浆-流体作用的结果,而变化较小的ε_(Nd)(t)值与富集地幔来源的岩浆基本相当,或者可以解释为幔源岩浆与地壳物质混合的结果。 相似文献
44.
Garnet-sillimanite gneisses, locally known as khondalites, occur abundantly in the Chilka Lake granulite terrane belonging
to the Eastern Ghats Proterozoic belt of India. Though their chemistry has been modified by partial melting, it is evident
that the majority of these rocks are metapelitic, with some tending to be metapsammitic. Five petrographically distinct groups
are present within the khondalites of which the most abundant group is characteristically low in Mg:Fe ratios — the main chemical
discriminant separating the five groups. The variations in Mg:Fe ratios of the garnets, biotites, cordierites, orthopyroxenes
and spinels from the metapelites are compatible with those in the bulk rocks.
A suite of granitoids containing garnet, K-feldspar, plagioclase and quartz, commonly referred to as leptynites in Indian
granulite terranes, are interlayered with khondalites on the scale of exposures; in a few spots, the intercalated layers are
thin. The peraluminous character of the leptynites and presence of sillimanite trails within garnets in some of them suggest
derivation of leptynites by partial melting of khondalites. Here we examine this connection in the light of results derived
from dehydration melting experiments of micas in pelitic and psammitic rocks.
The plots of leptynites of different chemical compositions in a (MgO + FeO)-Na2O-K2O projection match the composition of liquids derived by biotite and muscovite dehydration melting, when corrected for co-products
of melting reactions constrained by mass balance and modal considerations. The melt components of the leptynites describe
four clusters in the M-N-K diagram. One of them matches melts produced dominantly by muscovite dehydration melting, while
three clusters correspond to melting of biotite. The relative disposition of the clusters suggests two trends, which can be
correlated with different paths that pelitic and psammitic protoliths are expected to generate during dehydration melting.
Thus the leptynites evidently represent granitoids which were produced by dehydration melting in metapelites of different
compositions.
The contents of Ti, Y, Nb, Zr and Th in several leptynites indicate departures from equilibrium melt compositions, and entrainment
of restites is considered to be the main causative factor. Disequilibrium in terms of major elements is illustrated by leucosomes
within migmatites developed in a group of metapelites. But the discrete leptynites that have been compared with experimental
melts approach equilibrium melt compositions closely. 相似文献
46.
新疆北部的改造系列花岗岩演化由斜长花岗岩阶段、钾长花岗岩阶段至碱长花岗岩阶段,其稀土配分组成递降曲线簇.新疆北部的同熔型花岗岩类稀土配分基本为轻稀土富集型,具Eu负异常,有递增曲线簇和递降曲线簇两种情况.深源碱性系列轻重稀土比值大、Eu负异常一般不显著.文中还叙述了新疆北部的幔分异系列花岗岩类及一些古老花岗岩的稀土特征. 相似文献
47.
Nadezhda KANYGINA Andrey TRETYAKOV Dmitriy ALEXEIEV Kirill DEGTYAREV Anfisa SKOBLENKO Natalia SOLOSHENKO Boris ERMOLAEV 《《地质学报》英文版》2024,98(1):67-82
The combined petrographic, petrological, geochemical and geochronological study of the Neoproterozoic gneisses of the Sarychabyn and Baskan complexes of the Junggar Alataw of South Kazakhstan elucidate the Precambrian tectonic evolution of the Aktau–Yili terrane. It is one of the largest Precambrian crustal blocks in the western Central Asian orogenic belt. The U-Pb single-grain zircon ages indicate that granite-gneisses formed from the same source and crystallised in the early Neoproterozoic ca. 930–920 Ma. The chemical composition of gneisses corresponds to A2-type granites. The whole-rock Nd isotopic characteristics (εNd(t) = ?4.9 to ?1.0 and TNd(DM-2st) = 1.9 to 1.7 Ga) indicate the involvement of Paleoproterozoic crustal rocks in magma generation. Early Neoproterozoic ca. 930–920 Ma A-type granitoids in the Aktau–Yili terrane of South and Central Kazakhstan might reflect within-plate magmatism adjacent to the collisional belt or a local extension setting in back-arc areas of the continental arc. 相似文献
48.
Takamoto Okudaira Yasutaka Hayasaka Osamu Himeno Koichiro Watanabe Yasuhiro Sakurai Yukiko Ohtomo 《Island Arc》2001,10(2):98-115
Abstract The Ryoke metamorphic belt in south-west Japan consists mainly of I-type granitoids and associated low-pressure/high-temperature metamorphic rocks. In the Yanai district, it has been divided into three structural units: northern, central and southern units. In this study, we measured the Rb–Sr whole-rock–mineral isochron ages and fission-track ages of the gneissose granodiorite in the central structural unit. Four Rb–Sr ages fall in a range of ca 89–87 Ma. The fission-track ages of zircon and apatite are 68.9 ± 2.6 Ma and 57.4 ± 2.5 Ma (1σ error), respectively. Combining the newly obtained ages with previously reported (Th–)U–Pb ages from the same unit, thermochronologic study revealed two distinctive cooling stages; 1) a rapid cooling (> 40°C/Myr) for a period (~7 Myr) soon after the peak metamorphism (~ 95 Ma) and 2) the subsequent slow cooling stage (~ 5°C/Myr) after ca 88 Ma. The first rapid cooling stage corresponds to thermal relaxation of the intruded granodiorite magma and its associated metamorphic rocks, and to the uplift by a displacement along low-angle faults which initiated soon after the intrusion of the magma. Uplift by the later stage deformation having formed large-scale upright folds resulted in progress of the exhumation during the first stage. The average exhumation velocity of the stage is ≥ 2 mm/yr. During the second stage, the rocks were not accompanied by ductile deformation and were exhumed with the rate of 0.1–0.2 mm/yr. The difference in the exhumation velocity between the first and second cooling stages resulted from the difference in the thickness of the crust and in the activity of ductile deformation between the early and later stages of the orogenesis. 相似文献
49.
50.
以鄂东铁山、大王寨岩体为例,讨论了花岗岩类岩体中包体拟采取的应变测量方法,其中包括主应变值的测定、包体的原始轴比的确定以及包体与寄主岩存在明显粘性差条件下的应变测量方法。 相似文献