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1.
周雄  周玉  谭洪旗  岳相元 《地质学报》2022,96(4):1380-1396
松潘-甘孜造山带中部大面积分布西康群浊积岩,为一套厚度巨大(2000~3000 m)的泥质碎屑复理石建造,以深海-次深海海底扇沉积为特征.本文通过对甲基卡稀有金属矿集区分布的西康群砂岩进行主量元素、微量元素及粒度分析,从而揭示该区砂岩构造背景和物源属性.研究结果表明,砂岩样品SiO2、CaO、MgO、Al2 O3、Fe...  相似文献   

2.
万加亮  王志洪 《岩石学报》2012,28(8):2629-2646
本文对五台地区侵入于原北金岗库组的雁门关镁铁-超镁铁岩体进行了详细的岩石学、矿物学和岩石地球化学分析研究.雁门关岩体在矿物成份上,特别是单斜辉石、尖晶石和角闪石,具有阿拉斯加型侵入岩体和俯冲带或弧相关的岩浆特征,其元素地球化学特征也可与阿拉斯加型侵入杂岩体类比,具有明显的Nd (Ta),Zr (Hf),Y和Ti负异常.从构造环境判别图来看,雁门关岩体主要为与俯冲相关的成因,具大陆边缘弧的性质.因此,雁门关岩体是侵入在大陆边缘弧环境的岩浆经历了橄榄石和单斜辉石的分离结晶作用的产物.它与恒山-五台-阜平地区广泛分布的同时代花岗岩和火山岩一起,构成了华北克拉通中部造山带内一期重要的古元古代大陆边缘岛弧岩浆活动.  相似文献   

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4.
The discovery of the Gouap banded iron formations(BIFs)-hosted iron mineralization in the northwestern of the Nyong Group(Ntem Complex)in southwestern Cameroon provides unique insights into the geology of this region.In this contribution,we firstly report detailed study of geochemistry,isotopic and geochronology of well preserved samples of the Gouap BIFs collected from diamond drillcores.The Gouap BIFs consist mainly of amphibole BIFs and amphibole-pyrite BIFs characterized by dominant Fe2O3+SiO2contents and variable contents of CaO,MgO and SO3,consistent with the presence of amphibole,chlorite,epidote and pyrite,formed during amphibolite facies metamorphism and overprinted hydrothermal event.The amphibole–pyrite BIFs are typically enriched in trace and rare earth elements(REE)compared to the amphibole BIFs,suggesting the influence of detrital materials as well as secondary hydrothermal alteration.The Post Archean Australian Shale(PAAS)-normalized REE–Y profiles of the Gouap BIFs display positive La,Eu anomalies,weak negative Ce anomalies,indicating a mixture of low-temperature hydrothermal fluids and relatively oxic conditions probably under relative shallow seawater.We present here the first isotopic data of BIFs within the Ntem Complex.Theδ30SiNBS28values of the quartz from the Gouap BIFs vary from-1.5‰to-0.3‰and from-0.8‰to-0.9‰for the amphibole BIFs and amphibole–pyrite BIFs,respectively.The quartz hasδ18OV-SMOW values of 6.8‰–9.5‰(amphibole BIFs)and 9.2‰–10.6‰(amphibole–pyrite BIFs).The magnetite from the Gouap BIFs showsδ18O values ranging from-3.5‰to-1.8‰and from-3‰to-1.7‰for the amphibole BIFs and amphibole–pyrite BIFs,respectively.Moreover,the pyrite grains in the amphibole–pyrite BIFs displayδ34S values of 1.1‰–1.8‰.All isotopic data of the Gouap BIFs confirm that they might have precipitated from low-temperature hydrothermal fluids with detrital input distant from the volcanic activity.According to their geochemical and isotopic characteristics,we propose that the Gouap BIFs belong to the Superior type.In situ U–Pb zircon dating of BIFs was conducted to assess the BIF depositional age based on strong evidence of zircon in thin section.The Gouap BIFs were probably deposited at 2422±50 Ma in a region where sediments extended from continental shelf to deep-water environments along craton margins like the Caue Formation of the Minas Supergroup,Brazil.The studied BIFs have experienced regional hydrothermal activity and metamorphism at 2089±8.3 Ma during the Eburnean–Transamazonian orogeny.These findings suggest a physical continuity between the protocratonic masses of both Sao Francisco and Congo continents in the Rhyacian Period.  相似文献   

5.
The Neo-Archean Sonakhan Greenstone Belt (SGB) located in the north-eastern fringes of Bastar craton, Central India, is dominated by Basalts, Andesites, Dacites and Rhyolites association. Partial melting modeling on the SGB metabasalts indicates that these rocks were derived by 20% melting of spinel peridotite. Fractional crystallisation modeling with REE reveal that the most evolved samples represent the product of fractional crystallization of least evolved magma with 35% plagioclase, 35% clinopyroxene, 20% olivine, 5% magnetite and 5% ilmenite as fractionating minerals with 40% remaining magma. Depletion of HFSE with reference to the LILE and LREE/HFSE ratios and Nb, Zr anomalies in the multi-element diagram of the mafic rocks of SGB indicate Island arc magmatic setting. The enriched Th/Yb values further substantiate that the mantle arrays were modified by subduction-related fluids or melts. The general conclusions drawn indicate that the metabasalts from the SGB were formed as a result of subduction of an intraoceanic lithosphere in a fore-arc suprasubduction zone environment.  相似文献   

6.
Mesozoic alkaline intrusive complexes are widespread in the southern portion of the North China Craton and can provide some important constraints on the evolution of the Mesozoic lithosphere beneath the region. Three selected intrusive complexes (Tongshi, Hongshan, and Longbaoshan) are generally high in alkalis (K2O+Na2O=913 wt.%) and Al2O3 (1421.6 wt.%) and low in CaO and TiO2 (<0.6 wt.%), with high and variable SiO2 contents. Rocks from these complexes are all enriched in LREE and LILE (Cs, Rb, Ba, U, Th), depleted in Nb and Ti, have a highly positive Pb anomaly, and are characterized by lack of a clear Eu anomaly despite trace element abundances and isotopic ratios that vary greatly between complexes. The Tongshi complex has high Cs (2.68.5 ppm) and REE abundances (∑REE=112.6297 ppm, (La/Yb)N=13.130.9) and MORB-like Sr–Nd–Pb isotopic ratios ((87Sr/86Sr)i<0.704; εNd>0; (206Pb/204Pb)i>18). The Hongshan complex has low REE concentrations (∑REE=28.2118.7 ppm, (La/Yb)N=4.614.7) and is moderately enriched as demonstrated by their Sr–Nd isotopic ratios ((87Sr/86Sr)i>0.706; εNd<−7). The Longbaoshan complex is extremely REE enriched (∑REE=211.3392.6 ppm, (La/Yb)N=32.460.9) and has an EM2-like Sr–Nd isotopic character ((87Sr/86Sr)i>0.7078; εNd<−11). We suggest that the Tongshi complex originated from the asthenosphere and the Hongshan complex and the Longbaoshan complex were derived from the partial melting of previously subduction-modified lithospheric mantle, in response to post-collisional lithospheric extension and asthenospheric upwelling. The occurrence of these alkaline intrusive complexes demonstrates that the lithosphere beneath the region must have been considerably thinned at the time of intrusion of these complexes. This study also shed light on the temporal evolution of the Mesozoic lithosphere and the timing of the lithospheric thinning.  相似文献   

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The study area forms part of an emerging iron ore province of southern Cameroon. Geochemistry analyses reveal that the siliceous itabirite has a very simple chemical composition, with Fe2O3 and SiO2 representing more than 96 wt.% of the average composition; suggesting chemical precipitates of silica and iron. Low Al2O3 and TiO2 concentrations and a weak positive correlation between them point to a minor detrital component in the precipitated marine sediments. The Si/Al ratio (average 52.7) indicates the hydrothermal origin of the studied itabirite. The Al–Si discrimination diagram supports this interpretation through the plot of all data in the hydrothermal field. The studied samples have low iron content (about 39.32% Fe), high gangue content (40.97% SiO2 and 1.3 % Al2O3) and low concentration of the deleterious elements (0.16 % P and < 0.01% S). The main gangue mineral is silica which can be efficiently removed from iron ores during preparation of raw materials for the blast furnace process. According to commercial standards for crude iron ores, it may be concluded that the Zambi iron ores are a low‐grade magnetic ore that can be profitably exploited for the production of iron for steel production.  相似文献   

8.
辽吉南部古元古代花岗岩极为发育,其中最著名的是具有条痕状构造的正长花岗岩,俗称辽吉花岗岩。因该花岗岩具有条带状、条痕状和似层状构造特征,而被前人认为是由太古宙或元古宙沉积地层经变质变形作用形成,或是交代成因的混合岩。本文通过对分布于吉林南部通化地区辽吉花岗岩的典型代表一钱桌沟岩体的详实野外地质填图及地球化学研究,确定该岩体属岩浆成因的“A”型花岗岩,其岩浆侵位年龄为2160Ma左右。结合目前获得的该区古元古代地层的碎屑锆石年龄,本文认为辽吉花岗岩是辽吉地区古元古代地层沉积的基底岩石,是地层沉积之前地壳拉张作用的结果,属于一种非造山型花岗岩。  相似文献   

9.
张家界地区志留系出露有兰多弗里统及文洛克统,其中兰多弗里统泥岩中SiO2含量平均61.59%,SiO2/Al2O3值平均3.63,K2O/ Na2O值平均4.80,Al2O3/(K2O+Na2O)值平均3.49,∑REE含量平均238.58×10-6,LREE含量平均213.89×10-6, LREE/HREE值平均8.68, B含量平均98.29×10-6,B/Ga值平均3.99,Th/U值平均5.61。通过构造环境判别图解认为: 兰多弗里统泥岩以活动大陆边缘物源为主,混入部分大陆岛弧物源,其古老物源则可能来自被动大陆边缘; 已经拼合在一起的华夏、扬子陆块,在志留纪时期继续向北西挤压,形成多处隆升(黔中隆起、雪峰隆起等),随着进一步挤压,雪峰隆起升出海面,为张家界地区提供了泥质沉积物,挤压导致岛弧形成并提供了部分物源。  相似文献   

10.
The eastern part of the Voronezh Crystalline Massif hosts coeval S- and A-granitoids. The biotite-muscovite S-granites contain elevated concentrations of Si, Al, and alkalis (with K predominance) and relatively low concentrations of Ca, Mg, Ti, Sr, and Ba, show pronounced negative Eu anomalies, and have low concentrations of Y and HREE. The biotite A-granitoids are enriched in Fe, Ti, P, HFSE, REE and have strongly fractionated REE patterns with deep Eu minima. According to their Rb/Nb and Y/Nb ratios, these rocks are classified with group A2 of postcollisional granites. The SIMS zircon crystallization age of the granitoids lies within the range of 2050–2070 Ma. Both the A- and the S-granitoids have positive ?Nd(T) values, which suggests that they should have had brief crustal prehistories and were derived from juvenile Paleoproterozoic sources. The simultaneous derivation of the A- and S-granites was caused by the melting of the lower crust in response to the emplacement of large volumes of mafic magma in an environment of postcollisional collapse and lithospheric delamination with the simultaneous metamorphism of the host rocks at high temperatures and low pressures. The S-granites are thought to be derived via the melting of acid crustal material in the middle and lower crust. The A2 granites can possibly be differentiation products of mafic magmas that were emplaced into the lower crust and were intensely contaminated with crustal material.  相似文献   

11.
藏南洛扎地区过铝质花岗岩的地球化学特征及构造背景   总被引:26,自引:8,他引:18  
洛扎及其以南地区分布有规模不等、产状不同的过铝质二云母(白云母)二长花岗岩和电气石二长花岗岩,这些岩体侵位的时代为中新世,构成了高喜马拉雅花岗岩带的东延部分。岩体以高铝、低镁铁组分,高锶、氧同位素比值为特征,地球化学研究显示它们是泥质岩的深熔作用和岩浆的结晶分异作用所形成的产物。过铝质花岗岩是在后碰撞造山作用阶段的大规模伸展拆离作用背景下沿拆离构造带侵位的,形成于藏南拆离系韧性活动阶段的晚期,是一种典型的后碰撞过铝质花岗岩。  相似文献   

12.
通过对出露在康古尔韧性剪切带西段的色尔特能超镁铁岩的野外地质调查和岩石学、岩石地球化学方面的分析研究工作,结果显示:色尔特能超镁铁岩发生了强烈蛇纹石化,基本蚀变成蛇纹岩;岩石主量元素具高Mg (w(MgO)=36.15%~37.96%)、高Cr (w(Cr2O3)=0.32%~0.36%)、高Ni (w(NiO)=0.17%~0.21%)、低Si (w(SiO2)=40.50%~41.92%)、贫Al (w(Al2O3)=1.19%~1.77%)、低Fe (w(TFeO)=6.98%~7.87%)特征,Mg#值为94.71~97.73,m/f值为8.03~9.42,属于典型镁质超镁铁岩,推测原岩为斜方辉石橄榄岩;稀土元素总量w(ΣREE)=1.44×10-6~2.92×10-6,配分模式为轻稀土微弱富集近平坦型,w(La)N/w(Yb)N=3.09~5.49,具一定程度的负Eu异常(δEu=0.48~1.09)和负Ce异常(δCe=0.53~0.60);微量元素富集Ba、U、Ta,亏损Nb、Ti。色尔特能超镁铁岩属变质橄榄岩,是SSZ型蛇绿岩的底部组成单元,由原始地幔经2%~10%部分熔融形成的亏损地幔岩,其形成于俯冲带环境中的洋内弧后盆地。  相似文献   

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西秦岭北缘新元古代花岗质片麻岩位于天水地区分隔北秦岭造山带和北祁连构造带的新阳-元龙韧性剪切带中。花岗质片麻岩具高Si、高Al的特征,属高钾钙碱性系列,A/CNK在1.104~1.389之间,为硅、铝过饱和类型,属典型的强过铝质S型花岗质岩石。轻、重稀土元素分馏较强,具中等负Eu异常。岩石富集大离子亲石元素(Cs、Rb、Ba、Th、U、K、La等),强烈亏损高场强元素(Nb、Ta、Ti、Hf等),明显的Ba、P、Sr负异常,相对富集Zr。该花岗质岩石是一种典型的壳源成因类型,主要为上地壳中以成熟度较低、含泥质成分较高的杂砂岩、岩屑杂砂岩为原岩的古元古界秦岭岩群中含水矿物相脱水部分熔融形成的,可能存在少量的分离结晶作用。该花岗质片麻岩具有同碰撞型花岗岩的特征,可能是北秦岭微地块与相邻地块在新元古代早期发生汇聚的产物,是Rodinia超大陆在西秦岭地区汇聚的响应。  相似文献   

14.
天津市宝坻区南部周良庄一带赋存较为丰富的地热资源。为查明该区各热储补给来源,地温场是否受断裂构造影响,利用人工地震结合钻探资料进行二次解译,分析该区地质构造背景和热储发育特征,同时在综合分析水化学和同位素等化探方法的基础上,对该区的地热成因进行探讨。查明该区主体构造为一背斜构造,地热属沉积盆地型层状热储,地热流体主要有孔隙型热水系统和基岩裂隙型热水系统2个类型,热储条件好。该区热流体矿化度较低的原因是接近补给区,补给水源来自北部山区大气降水;地热流体在深循环过程中与富氧岩石进行了氧交换,δ18O值存在不同程度的氧漂移。  相似文献   

15.
Hypotheses for the origin of the Moon involve variants on capture, double-planet, and fission processes. Double-planet and fission hypotheses are examined in the light of siderophile trace elements. The siderophile trace elements chosen (W, Re, Mo, P, Ga, Ge) have well understood geochemical behavior such that appropriate metal/silicate partition coefficients are available and their abundances in the lunar and terrestrial mantles 4.4–4.5 × 109 years ago may be reasonably inferred. The fission hypothesis of Ringwood (1979) is not consistent with the behavior of Re, Mo, and P. The hybrid fission hypothesis of Wankeet al. (1983) overcomes many of the deficiencies of ringwood's hypothesis, but is not readily reconcilable with the behavior of Re and Ir. The double-planet hypothesis as most recently advanced by Newsom and Drake (1982, 1983) appears to be consistent with siderophile element behavior in the Moon.  相似文献   

16.
拉拉铜矿含矿岩系地球化学特征及其构造意义   总被引:1,自引:0,他引:1  
四川会理拉拉铜矿床是我国著名大型富铜矿床,矿床的形成与古元古代河口群海相火山岩密切相关。河口群火山岩除个别样品Nb/Y较低,其他多数样品有一致高的Nb/Y比值(0.7~3.0),属碱性玄武系列;在Nb/Th-Zr/Nb和Zr/Y-Nb/Y图上,HFSE比值成分点主要投在EM1型富集地幔附近,落入洋岛玄武岩(OIB)范围;火山岩较陡的REE分布型式和"驼峰"状微量元素原始地幔标准化分配型式,以及缺乏Nb、Ta负异常,与大陆玄武岩十分吻合;岩石形成于板内裂谷环境。这些地球化学特征表明,河口群火山岩形成于陆间裂谷,来源于地幔深部,指示了矿床的火山喷流沉积成矿作用。同时,岩石大离子元素和轻稀土元素比值不太稳定,变化较大,Eu负异常与蚀变重晶石、萤石和矿化有关,还暗示了岩石遭受了后期变质作用,以及与之有关的矿床变质成矿成因。  相似文献   

17.
西藏东巧地区玄武岩地球化学特征及构造环境分析   总被引:2,自引:0,他引:2       下载免费PDF全文
东巧蛇绿岩出露于班公湖-怒江缝合带中段,是蛇绿岩组合单元出露较完整的地区。微量(稀土)元素分析结果表明,蛇绿岩中的玄武岩具有轻稀土元素(LREE)显著富集的右倾稀土元素配分模式。(La/Yb)N=7.05~12.02,Th、Nb、Ta、Zr和Hf略具有正异常的微量元素组成特征,属于典型的洋岛玄武岩(OIB),与洋中脊玄武岩(MORB)和板块汇聚环境下的岛弧玄武岩(IAB)存在明显差异。通过对其构造环境的判别,并结合蛇绿岩与相邻地质体的关系分析,认为东巧蛇绿岩中的玄武岩形成于大洋板内岩石圈上隆减压的洋岛环境,代表班公湖-怒江洋盆形成和发展阶段洋岛环境的大洋岩石圈残片。  相似文献   

18.
康明  岳长成  刘孝峰  陈宇  高超  原烨 《岩石学报》2017,33(6):1686-1704
内蒙古渣尔泰地区处于华北地台西北部,其分布的中生代火山岩划分为两大类,形成于两个喷发旋回。早白垩世早期喷发旋回以中基性火山岩为主,沿近东西向的深大断裂呈北东东向裂隙式喷发;晚期喷发旋回以酸性火山岩为主,沿近南北向断裂带呈裂隙-中心式喷发。中基性火山岩主要为橄榄玄武粗安岩和安粗岩,其SiO_2介于49.65%~56.64%;酸性火山岩包括次火山岩、火山碎屑岩、火山熔岩,其Si O2介于73.18%~83.82%;两者组成典型的宽双峰火山岩。中基性火山岩富碱(Na_2O+K_2O=6.70%~7.47%)、高Ti(TiO_2=2.29%~3.55%)、Fe,相对贫Ca、Mg,富含大离子亲石元素(LILE)(Rb、Ba),轻稀土相对富集,轻、重稀土元素分馏明显,LREE/HREE=4.50~6.47,(La/Yb)N=4.17~8.85,具微弱的负Eu异常(δEu=0.67~0.96),具有与洋岛玄武岩(OIB)相似的地球化学特征,其岩浆来源于交代富集的软流圈地幔,岩浆上升过程中地壳组分混染较少。酸性火山岩富Si、高K,贫Ca、Mg、Fe、Ti,富含大离子亲石元素(LILE)(Rb、Th、U)和高场强元素(HFSE)(Nb、Ta、Zr、Hf),富集轻稀土,LREE/HREE=2.91~14.3,轻、重稀土分馏明显,(La/Yb)N=2.53~28.4,(La/Sm)N=1.16~4.57,(Gd/Yb)N=1.22~5.04,负Eu异常明显(δEu=0.02~0.25),具有A型流纹岩的特征,为幔源岩浆底侵,使上覆的先存地壳岩石发生部分熔融的产物。结合区域地质背景,认为研究区双峰式火山岩形成于西伯利亚板块与华北板块碰撞造山期后陆内拉张的构造环境。  相似文献   

19.
Garnet-bearing mantle peridotites, occurring as either xenoliths in volcanic rocks or lenses/massifs in high-pressure and ultrahigh-pressure terrenes within orogens, preserve a record of deep lithospheric mantle processes. The garnet peridotite xenoliths record chemical equilibrium conditions of garnet-bearing mineral assemblage at temperatures (T) ranging from ~700 to 1,400°C and pressures (P) > 1.6–8.9 GPa, corresponding to depths of ~52–270 km. A characteristic mineral paragenesis includes Cr-bearing pyropic garnet (64–86 mol% pyrope; 0–10 wt% Cr2O3), Cr-rich diopside (0.5–3.5 wt% Cr2O3), Al-poor orthopyroxene (0–5 wt% Al2O3), high-Cr spinel (Cr/(Cr + Al) × 100 atomic ratio = 2–86) and olivine (88–94 mol% forsterite). In some cases, partial melting, re-equilibration involving garnet-breakdown, deformation, and mantle metasomatism by kimberlitic and/or carbonatitic melt percolations are documented. Isotope model ages of Archean and Proterozoic are ubiquitous, but Phanerozoic model ages are less common. In contrast, the orogenic peridotites were subjected to ultrahigh-pressure (UHP) metamorphism at temperature ranging from ~700 to 950°C and pressure >3.5–5.0 GPa, corresponding to depths of >110–150 km. The petrologic comparisons between 231 garnet peridotite xenoliths and 198 orogenic garnet peridotites revealed that (1) bulk-rock REE (rare earth element) concentrations in xenoliths are relatively high, (2) clinopyroxene and garnet in orogenic garnet peridotites show a highly fractionated REE pattern and Ce-negative anomaly, respectively, (3) Fo contents of olivines for off-cratonic xenolith are in turn lower than those of orogenic garnet and cratonic xenolith but mg-number of garnet for orogenic is less than that of off-cratonic and on-cratonic xenolith, (4) Al2O3, Cr2O3, CaO and Cr# of pyroxenes and chemical compositions of whole rocks are very different between these garnet peridotites, (5) orogenic garnet peridotites are characterized by low T and high P, off-cratonic by high T and low P, and cratonic by medium T and high P and (6) garnet peridotite xenoliths are of Archean or Proterozoic origin, whereas most of orogenic garnet peridotites are of Phanerozoic origin. Taking account of tectonic settings, a new orogenic garnet peridotite exhumation model, crust-mantle material mixing process, is proposed. The composition of lithospheric mantle is additionally constrained by comparisons and compiling of the off-cratonic, on-cratonic and orogenic garnet peridotite.  相似文献   

20.
马圣钞 《地质学报》2014,88(1):72-82
虎头崖岩体位于青海东昆仑祁漫塔格成矿亚带,形成于中-晚三叠世,主要由黑云母二长花岗岩、正长花岗岩组成,局部含闪长质暗色包体。岩石高硅、高钾、富碱,SiO2含量为70.71%~77.67%;K2O含量平均为4.7%;Na2O K2O为7.86%~9.1%;K2O/Na2O平均为1.36。A/CNK比值为1.01,KN/A比值为0.86,属于高钾钙碱性系列的微过铝质I型花岗岩类。∑REE含量中等,平均为120.10μg/g;δEu值0.04~0.47;(La/Yb)值为1.52~8.06 ;稀土元素球粒陨石标准化曲线显示Eu负异常、HREE较平坦的右倾“V”型特征。岩体富集LIL和HFS元素,而Ba、Sr、Nb、Ti、P元素明显的负异常。结合区域地层岩性特征、A/MF-C/MF图解和岩体微量元素蛛网图,认为花岗岩是基性源区部分熔融和地壳物质混合的产物。结合地质特征、构造演化背景、元素判别图解等,认为包括虎头崖岩体在内的印支中晚期花岗岩形成于同造山阶段的后碰撞构造环境。印支中晚期花岗岩形成机制为:在二叠纪末-三叠纪初阿尼玛卿洋盆向北部昆仑微陆块俯冲碰撞造山并形成同碰撞/板内构造环境,期间发育与幔源岩浆底侵关系密切的源区基性岩浆岩;中-晚三叠世期,主碰撞之后挤压应力相对松弛,深部压力降低,因地壳增厚升温、岩石熔点降低而导致源区中-基性岩浆部分熔融,并在相对开放的环境下高侵位成岩  相似文献   

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