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131.
东秦岭虎豹河砾岩砾石的地球化学特征及其构造意义 总被引:2,自引:1,他引:2
东秦岭虎豹河砾岩为复成分砾岩层。砾岩中火成央砾石显示了LILE中等富集,丰富变化不大,Bb(Ta)有一定亏损,Th-Ta比值高,并具有来自岛弧演化不同阶段的两个岩浆源区的地球化学特征,反映它们主要受消减物质影响,且地壳物贡献不大的岛弧钙碱性岩浆的成因特征。 相似文献
132.
133.
The Palaeo-Tethyan suture: A line of demarcation between two fundamentally different architectural styles in the structure of Asia 总被引:5,自引:0,他引:5
Abstract The Palaeo-Tethyan suture separates regions characterized by two fundamentally different tectonic styles in the structure of the Tethysides. North of the suture in Iran, Turkmenistan, Afghanistan, Tadjikistan, Kirgizstan, Uzbekistan, Kazakhstan and large parts of the Russian Federation and China, orogenic development is characterized by very large subduction-accretion complexes developed since the late Proterozoic. Magmatic arc axes migrated radially outwards from the 'Old Vertex of Eurasia' and consolidated the accretionary prisms into a 'basement complex' dominated by a pelitic composition. In such orogens, called the 'Turkic-type' after the dominant ethnic population of Central Asia, ophiolites are unreliable indicators of sutures, because they are present throughout the 'basement' as in-faulted shreds and rarely as nappes. By contrast, south of the Palaeo-Tethyan suture, orogeny was commonly characterized by a Sumatra- or Andean-type continental margin arc (e.g. the Transhimalaya arc) that in places became an island arc by back-arc basin rifting (e.g. the Black Sea behind the Rhodope-Pontide fragment) and later collided with an Atlantic- (as in the Himalaya) or California-type (as in the Alps) continental margin to create Alpine- or Himalayan-type orogenic belts. Turkic-type orogenic belts result from the exaggeration of the Himalayan-type as a result of the subduction of very large oceanic areas that contain great amounts of sediment. They contribute to the enlargement and also possibly the growth of the continental crust which has a composition more silicic than basalt. The Palaeo-Tethyan suture is thus a line across which the rate of continental enlargement by subduction-accretion changed dramatically. 相似文献
134.
V. C. Thakur 《Journal of Earth System Science》1990,99(2):169-185
The Indus Tsangpo suture zone in Ladakh lies between the Phanerozoic sequence of the Zanskar Zone of Tethys Himalaya in the
south and Karakoram zone in the north. The five palaeotectonic regimes recognized in the suture zone are: The Indus palaeosubduction
complex, the Ladakh magmatic arc, the Indus arc-trench gap sedimentation, the Shyok backarc and the Post-collision molasse
sedimentation. The Ladakh magmatic arc, comprising intrusives of the Ladakh plutonic complex and extrusives of the Dras, Luzarmu
and Khardung formations, owes its origin to the subduction of the Indian oceanic plate underneath the Tibet-Karakoram block.
The Indus Formation, lower Cretaceous to middle Eocene in age, was laid down in a basin between the magmatic arc and the subduction
complex. The Shergol and Zildat ophiolitic melange belts exhibit green-schist and blue-schist facies metamorphism and show
structural geometry and deformation history dissimilar to that of the underlying and overlying formations. The melange belts
and the flysch sediments of the Nindam Formation represent a palaeosubduction complex. The Shyok suture zone consists of tectonic
slices of metamorphics of the Pangong Tso Crystallines, Cretaceous to lower Eocene volcanics and sedimentaries, together with
ultramafic and gabbro bodies and molasse sediments. This petrotectonic assemblage is interpreted as representing a back-are
basin. Post-collision molasse sedimentaries are continental deposits of Neogene age, and they occur with depositional contact
transgressing the lithological and structural boundaries. Two metamorphic belts, the Tso Morari crystalline complex and the
Pangong Tso Crystallines, flank to the south and north respectively of the Indus suture zone in Eastern Ladakh. Three generations
of fold structures and associated penetrative (and linear) structures, showing a similar deformation history of both the metamorphic
belts, are developed. The shortening structures developed as a result of collision during the postmiddle Eocene time. 相似文献
135.
金沙江-哀牢山缝合带系三江特提斯构造域东缘一条重要的古特提斯缝合带,其南段哀牢山缝合带闭合的时限及其岩浆活动响应,尚缺乏精确的年代学与岩石地球化学制约。本文对出露于哀牢山缝合带南部绿春地区黄草岭的花岗岩类进行了SHRIMP锆石U-Pb年代学与全岩主量、微量元素地球化学研究,获得花岗岩的形成年龄为249.8±4.3Ma。地球化学特征表明,该花岗岩具有K、Rb、U、Th和Pb正异常、Nb、Ta、Ti、Hf和Eu(0.29~0.37)负异常、过铝质与高钾钙碱质特征,属于S型花岗岩,形成于岛弧构造背景中。年代学和地球化学特征表明,哀牢山洋在早三叠世向西俯冲消减,绿春地区已出现成熟岛弧,并向陆-陆碰撞过渡。 相似文献
136.
南海西沙海槽,一条古缝合线 总被引:19,自引:6,他引:19
西沙海槽是一条水深1500-3400m,长420km的水槽,新生代沉积厚2-6km。槽内发现北倾的地壳断裂。海槽的南北两侧之地壳结构差异很大。从区域地质资料看,我们认为西沙海槽一条印支时期的古缝合线。 相似文献
137.
勉略带三岔子蛇绿岩的变质特征及构造意义 总被引:1,自引:0,他引:1
勉略带是近年来秦岭造山带研究中揭示出来的代表晚古生代小洋盆的缝合带 ,组成复杂 ,它们经历了不同的变质、变形改造 ,构成了不同构造背景、不同构造层次、不同物质组成、具不同 PTt轨迹的蛇绿构造混杂带。文中 PTt轨迹揭示 ,秦岭造山带勉略带三岔子蛇绿岩中的变质辉长岩是由上地幔先处于伸展背景下等温快速降压、后又经历缓慢降压快速降温上升侵位的。变形前的早期变质可能发生在 60~ 70 km处的上地幔 ,然后变质辉长岩快速“底辟”构造侵位 ,上升至约4 0 km深处 ,可能与俯冲的冷洋壳并置 ,发生快速降温退变反应 ;因俯冲作用的开始 ,抑制了洋盆快速扩张 ,变质辉长岩在减速伸展环境下继续抬升减压 ;后期又由于仰冲推覆 ,最终出露地表。此外 ,变质作用 PTt轨迹还反映勉略小洋盆洋壳厚度与标准大洋型洋壳厚度差异较大。 相似文献
138.
Li GuanLong Liu Fei Yang JingSui Mu XiaoPing Zhang ChenJie Bo RongZhong Zhang QiZhi 《岩石学报》2022,(11):3375-3390
The ophiolite is an ancient oceanic lithosphere remnant emplaced on the continent, and it is the direct carrier to record the ancient ocean basin from formation to demise. Therefore, the study of ophiolite can provide strong evidence for revealing and restoring the tectonic system and evolution history of ancient oceans and continents. The field geological survey and mapping for ophiolite are the basis for the research on the petrogenesis of chromite, peridotite and oceanic crust units. According to the characteristics of mineral composition, structure and mineral chemistry of harzburgites in Dingqing ophiolite, it is divided into massive, inhomogeneous, pyroxene-oriented, spherulitic and mylonitized harzburgite. Five types of harzburgite were discovered for the first time in the Laraka survey area through 1 : 50000 special geological mapping, and there were obvious lithofacies zoning characteristics in the area of five types of harzburgites. The massive harzburgite lithofacies belts are distributed in the middle of the Laraka survey area, and the inhomogeneous harzburgite lithofacies appear symmetrically on both sides. A small amount of pyroxene-oriented harzburgite lithofacies is distributed in the interior or edge of massive harzburgite facies belt in a lenticular shape, and the production of a very small amount of spheroidal harzburgite is related to basic intrusive rocks. The mylonitized harzburgite lithofacies belt is a slender strip outcropping on the southern margin of the peridotite massif. There is a certain spatial correlation between the distribution, type and scale of chromite deposits or mineralization points and the peridotite facies zoning. More than 20 high -chromium -type chromite deposits are distributed in the inhomogeneous harzburgite, but the massive harzburgite lithofacies have few chromite deposits or mineralizations. The A -A' peridotite lithofacies measured profile in the Lallaka survey area and its corresponding mineral chemical profile further confirm the existence of lithofacies zoning. Cr-spinels in different types of harzburgites show different mineral chemical characteristics. The Cr-# of Cr-spinel in massive harzburgite, in inhomogeneous harzburgite, in pyroxene oriented harzburgite and in the spheroidal harzburgite is 65. 59 similar to 69. 37, 49. 99 similar to 57. 86, 75.19 similar to 85.24 and 57.66 similar to 80.04, respectively. The Cr# of Cr-spinel in inhomogeneous -> massive -> pyroxene-oriented harzburgite gradually increases from 49. 99 to 85.24, indicating that these harzburgite have experienced 23% similar to 43% medium -high partially melted. The mineral chemistry data of massive and pyroxene-oriented harzburgite in the mineral chemistry diagram both fall in the fore -arc peridotite environment, and the inhomogeneous harzburgite falls in the overlapping area of deep-sea and fore -arc peridotite. The Fo of olivine in the spherulite harzburgite is 86.43% similar to 87.05%, and the En of orthopyroxene is 84.66% similar to 85.78%, which are bronzite, indicating magmatic origin. The mylonitized harzburgite is the result of tectonic emplacement of the massif. Different types of peridotite and their lithofacies zoning were identified in the Dingqing ophiolite, which provides a new idea for us to deeply study the multi -stage magmatism of the oceanic lithosphere and the genesis of peridotite and chromite. 相似文献
139.
羌塘地体西南缘布木错—雄巴日—羌多—赛登地区分布着大量呈岩株或岩枝状的中酸性-基性侵入岩,其岩石地球化学特点是低SiO2(67.99%~73.32%)、高Al2O3(12.82%~15.02%),属于过铝质花岗岩,里特曼指数(2.09~2.63)σ<3.3,属钙碱性花岗岩类;稀土元素显示为轻稀土较强富集和重稀土强亏损的特征,岩浆结晶分异程度较高。岩石地球化学特征和稀有元素特征图解指示花岗岩构造环境有一定的差异性,以I型为主,其形成及侵位应与古特提斯洋的闭合、新特提斯洋的扩张有关,属同碰撞型造山花岗岩。通过对该区多个花岗岩体锆石LA-ICPMS 测定,测得其形成年代为116~107 Ma,与早白垩世晚期羌塘地体南缘的陆-陆碰撞作用时间相吻合。 相似文献
140.
班公湖-怒江缝合带及其两侧广泛分布早白垩世岩浆岩,它们是班公湖-怒江洋俯冲消减及拉萨地块与南羌塘地块碰撞过程的直接响应,为研究特提斯大洋演化、青藏高原早期陆块聚合提供了重要素材。本文报道了班公湖-怒江缝合带中段那曲地区黑云母二长花岗岩的锆石U-Pb定年、岩石地球化学和锆石Hf同位素分析结果。锆石LA-ICP-MS U-Pb定年结果表明,黑云母二长花岗岩形成于114~113 Ma(早白垩世晚期)。地球化学分析表明,岩石显示出高钾钙碱性—钾玄岩系列特征,同时具有高的Ga/Al×10000比值(介于2.02~3.15之间,平均为2.61)和Zr+Nb+Ce+Y含量(平均为524.87×10-6)。此外,锆饱和温度和锆石Ti温度计共同指示岩浆形成于高温的环境(>800℃),这些特征与典型的A型花岗岩相一致。黑云母二长花岗岩中锆石具有低的εHf(t)值(10.1~6.4),对应的Hf同位素二阶段模式年龄(tDM2)为1852~1547 Ma,指示其岩浆可能源自安多微陆块中下地壳古老结晶基底的部分熔融。结合区域研究成果,认为那... 相似文献