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1.
本文研究了花山花岗岩的岩石学、地球化学和同位素地质学特征,确定了花山岩体是一个由三期独立的、不同时代、不同成因和不同物质来源的花岗质岩浆岩所组成的复式岩体。第一期印支期牛庙石英二长岩和同安石英二长岩,属以幔源物质为主的壳幔混合来源,由上地幔分异岩浆上侵并同化混染了地壳物质而形成;第二期燕山早期花山主体花岗岩亦属壳幔混合来源,但其壳幔物质比值有所增高。上地幔沿东西向区域性深断裂的上拱和地壳物质(包括沉积组分和火成组分)受热重熔,是该期花岗岩的可能成因;第三期燕山晚期细粒花岗岩小岩体是由以沉积组分为主的地壳物质经部分熔融、重熔或深熔而成。  相似文献   

2.
姚村岩体位于下扬子江南造山带东北端,主要由中心相的中粗粒正长花岗岩和边缘相的细粒似斑状正长花岗岩组成。本文对该岩体进行了详细的锆石U-Pb年代学、主量元素、微量元素以及Nd-Hf同位素研究。LA-ICPMS锆石U-Pb定年表明姚村岩体的形成年龄为(127.6±1.4)Ma,为燕山晚期岩浆活动的产物。岩石地球化学研究表明姚村岩体属于A型花岗岩,具高硅、富铁,锆饱和温度高、轻重稀土分馏明显、富集Rb、Th、U、K、Pb等元素而亏损Ba、Nb、Sr和Ti等元素、铕负异常显著(Eu/Eu*=0.22~0.46)的特点。姚村岩体的全岩εNd(t)值与锆石εHf(t)值分别变化于-6.2~-5.7和-13.9~-5.0,两阶段Nd和Hf同位素模式年龄分别为T_(DM2)(Nd)=1439~1532 Ma和T_(DM2)(Hf)=1508~2062 Ma,Nd同位素的模式年龄重叠于Hf同位素模式年龄。结合区域地质研究成果认为,姚村岩体可能于早白垩世古太平洋板块俯冲作用之后伸展-拉伸环境下,由中元古代地壳重熔而成。  相似文献   

3.
湖南香花岭430花岗岩体Nd同位素特征及岩石成因   总被引:15,自引:1,他引:15       下载免费PDF全文
研究了香花岭地区430花岗岩体由深部到浅部以及线状云英岩、面状云英岩的εNd(t)、t2DM值、fND^A值变化特征。Nd同位素特征说明该花岗岩为壳—幔组分混合的花岗岩,同时反映了源自深部的幔源物质加入及其在岩体中分布的不均一性,认为地幔物质可能主要是以地幔流体的形式加入,在华南中生代岩石圈减薄的背景下,幔源流体底侵诱导中元古代地层重熔。  相似文献   

4.
对广西德保铜矿钦甲岩体不同单元中的锆石进行了Hf同位素的研究,结果表明,钦甲岩体中锆石εHf(t)值变化范围为-17.0~+7.8,Hf同位素两阶段模式年龄(tDMC)范围为0.93~2.49Ga,峰值为1.3~1.6Ga,表明它们的岩浆源区主要以中元古代地壳物质为主,同时在成岩过程中有地幔组分的参与,属壳幔混源花岗岩,推测钦甲岩体可能形成于岩石圈伸展的壳幔混合作用环境。华南地区加里东期花岗岩中锆石Hf同位素特征,表明岩浆形成过程中具有明显的地幔物质加入,暗示华南地区在早古生代发生过强烈的壳幔相互作用。  相似文献   

5.
瑶坑岩体位于闽浙交界沿海地区,是闽浙沿海晚中生代 A 型花岗岩带中的一个典型碱性花岗岩体。锆石 LA-ICP-MS U-Pb 同位素定年表明,该岩体的形成年龄为91.3±2.5 Ma(MSWD=3.7,2σ),属晚白垩世岩浆活动的产物。岩石发育特征的微文象结构和晶洞构造,含有典型的碱性铁镁矿物钠铁闪石。地球化学上,该岩体富硅、碱,贫钙、镁,富 K、Rb、Cs、Th、U,贫 Sr、Ba、P、Ti、Sc。其 Nb、Ta、Zr、Hf 和 Ga 等元素的含量也较高,(Ga/Al)×10~4值变化于3.64~4.41,并具显著的铕负异常(δEu=0.15~0.20)。与闽浙沿海 A 型花岗岩带中的其它岩体相比,瑶坑岩体具有偏高的ε_(Nd)(t)值(=-0.7~-1.4)和偏低的二阶段 Nd 模式年龄(t_(2DM)=0.95Ga~1.01Ga),指示幔源组分对该岩体的形成具有更重要的贡献。在 A 型花岗岩亚类的判别上,瑶坑岩体以较低的 Y/Nb 比值和较高的 Nb/Ta 比值相似于 Eby(1992)区分的 A_1型花岗岩,而明显有别于岩带主体属A_2型的特点。岩石产出构造背景及地球化学特征的综合分析表明,多组深断裂交汇,进而引发多量幔源组分参与成岩过程,是导致瑶坑岩体元素-同位素组成与区内其它同类岩体有较明显差别的主要原因。  相似文献   

6.
陈吉琛 《地质科学》1991,(2):174-183
澜沧江西侧的临沧花岗岩带和怒江以西的腾冲花岗岩带是滇西最主要的两个花岗岩带,它们形成于不同构造环境。Pb、Sr 同位素研究表明,腾冲花岗岩主要来源于1200-2000Ma 的上地壳(或未分异的地壳)物质,同位素组成变化范围较小,说明源区物质组分较均一。临沧带 Pb 同位素组成变化较大,其物源是上地壳、造山带和上地幔不均匀的混合物,基底时代为800-1600Ma。因此,临沧地区和腾冲地区的基底时代和性质不同,应视为两个不同的基底地体。  相似文献   

7.
笔者主要以锶同位素为着眼点,对根雨深成花岗岩体的镁铁质包裹体及寄主花岗岩进行了研究。将全部分析数标绘于一种既定的等时线上,得出~(87)Sr/~(86)Sr初始比值为0.70475±0.00001,年龄为65.0±0.3百万年。在山阴带白垩纪到早第三纪侵入岩中,根雨岩体锶同位素初始比值最低,一般小于0.706。此结果与这样一种解释相一致,即:根雨岩体岩浆来源于上地幔或下部壳层并未受上部壳层物质严重混染。从地质、岩相和同位素等证据推断,该花岗岩与镁铁质包裹体是同源的。  相似文献   

8.
新疆富蕴县滴水泉-畜牧办侵入体出露于卡拉麦里断裂以南,呈北西西向带状分布,以碱长花岗岩体为主,也可见规模较小的角闪辉长岩体。碱长花岗岩体的岩石组合为碱长花岗斑岩+碱长花岗岩,高硅(SiO_2=71.07%~76.71%),富碱(Na_2O+K_2O=7.41%~9.07%)、K_2ONa_2O(平均为1.10),显示出A型花岗岩的特点。角闪辉长岩体涌动侵入于碱长花岗岩体之中,二者接触带附近发育浆混性质的石英闪长岩。辉长岩+花岗岩的双峰式岩石组合、构造判别图解R2-R1及区域地质背景指示滴水泉侵入体形成于陆内伸展环境,且花岗岩体具有"钉合岩体"的作用,穿插了卡拉麦里蛇绿岩带。结合岩体的LA-ICP-MS锆石年龄(碱长花岗岩的206Pb/238U加权平均年龄为321±2Ma,角闪辉长岩的206Pb/238U加权平均年龄为319±3Ma)可知,卡拉麦里洋盆在晚石炭世早期(321Ma)之前已经闭合。同位素及微量元素特征显示,碱长花岗岩为年轻地壳部分熔合融的产物,而角闪辉长岩则来源于亏损的软流圈地幔及俯冲交代的地幔楔物质,代表了同期花岗岩的底侵岩浆演化的产物。辉长岩与花岗岩相似的εNd(t)值及明显的岩浆混合作用表明该区的花岗岩体并非来源于底侵岩浆的高度分异或底侵体的部分熔融,而最可能为底侵体之上的年轻地壳的部分熔融,这一结论与最近一些学者研究的断裂以北的花岗岩体成因机制相同。晚石炭世早期幔源底侵体的发现,为卡拉麦里地区后碰撞花岗岩类的幔源底侵作用提供了可靠的地质依据。  相似文献   

9.
十杭带是华南内陆一条重要的北北东向、具有高εNd (t )值和低t DM值的花岗岩带,该带在湘南—桂北段的花岗质岩体(千里山、骑田岭、西山、金鸡岭、花山和姑婆山等)均形成于151~163 Ma间。但从西南往东北方向,形成时代有逐渐变年轻的趋势。这些岩体在地球化学组成上显示出较为相似的特征,岩石均富碱、高钾,富含Rb,Th,U等大离子亲石元素(LILE)和REE,Nb,Ta,Zr,Hf等高场强元素(HFSE)。在地球化学图解上均落入A型花岗岩区域,因此该花岗岩带应属于一条A型花岗岩带。进一步划分,这些花岗岩应该属于A2亚类。这些花岗岩均具有较低的(87Sr/86Sr)i 值、较高的εNd (t )值和相对低的Nd模式年龄值,但从西南往东北方向,εNd (t )值具有逐渐降低的趋势。在这些花岗质岩体中暗色包体非常发育,岩石学和地球化学,特别是锆石的Hf同位素组成,指示这些花岗质岩石是通过壳-幔岩浆混合作用形成的,幔源岩浆端元来自亏损地幔,可能是软流圈地幔物质的直接参与。该A型花岗岩带可能形成于古太平洋板块俯冲引起的弧后或弧内拉张构造环境,软流圈地幔上涌及诱发的幔源岩浆沿超壳深断裂底侵,导致了强烈的壳幔岩浆混合作用,形成了该花岗岩带。该拉张事件从西南往东北方向进行,拉张强度由强变弱,混入花岗岩中的地幔物质也由多变少。该花岗岩带也是我国 一条重要的W-Sn多金属成矿带。研究表明,这些花岗岩均属于富Sn花岗岩,但Sn在这些花岗岩中的富集机制与传统的结晶分异富集的方式不同。该区锡矿化类型十分丰富,除了存在传统的岩浆热液演化成矿外,还存在新类型的绿泥石化花岗岩锡矿化,丰富了A型花岗岩的成矿理论。  相似文献   

10.
徐楠  吴才来  郑坤  高栋 《地质学报》2020,94(5):1431-1449
南阿尔金造山带位于柴达木盆地和祁连-昆仑造山带之间,是一条重要的大陆俯冲-碰撞造山带,带中分布的大量早古生代花岗岩蕴含着造山带构造演化的重要信息。茫崖A型碱长花岗岩对限定南阿尔金进入造山后伸展环境的时限以及壳幔相互作用具有指示意义,然而该岩体的成因类型、物质来源和形成的构造环境缺乏详细研究。因此,本文利用岩相学、岩石地球化学、LA-ICP-MS U-Pb年代学和Lu-Hf同位素分析对碱长花岗岩进行系统的研究,并探讨岩浆活动对造山带构造演化的响应。碱长花岗岩显示高硅、富铁、富碱、贫钙和镁的特点,并强烈亏损Ba、Sr、P、Eu和Ti,属于A2型花岗岩;岩体的结晶年龄为403~424Ma,是中—新元古代新生地壳(新生长英质物质或钙碱性花岗岩类)部分熔融的产物,岩浆源区可能存在少量富Ca斜长石残留相;南阿尔金造山带在424Ma之后进入造山后的伸展环境,不同块体之间的均衡调整导致深部幔源物质持续上涌,造成地壳的部分熔融,形成了这一期A型花岗岩。  相似文献   

11.
Surface samples of peridotites and hornblendite mylonites from St. Paul's Rocks, and dredge samples from the flanks of the massif, have been analyzed for Sr, Nd and Pb isotopic ratios and Rb, Sr, and REE concentrations. This data, coupled with previous K and REE data, are used to develop a self-consistent model for the genesis of these ultramafic rocks. This model involves metasomatism of an ocean island-type mantle about 155 m.y. ago by a strongly light-REE-enriched metasomatic fluid, probably derived from the same mantle. This metasomatism produced light-REE-enriched materials which were isotopically homogeneous on a small scale (100 m), and isotopically heterogeneous on a large (km) scale. The geochemical relationships between the peridotites and the hornblendites were established by metamorphic equilibration on a relatively small scale (<10 m). The average mantle produced by these events is characterized by87Sr/86Sr=0.7034,143Nd/144Nd=0.51291,206Pb/204Pb=19.33 and 207/204=15.63. An alkali basalt which postdates the mylon-itization of the ultramafic massif has an isotopic character which is identical to the average ultramafic massif; it also lies on the five-dimensional isotopic mantle plane of Zindler et al. (1982). With respect to major elements, trace elements, and Sr, Nd and Pb isotopes, the average ultramafic rock of the St. Paul's massif is an ideal candidate for a mantle source from which alkali basalts can be derived by partial melting; the St. Paul's massif is in fact the first such example of an ultramafic rock which meets all the requirements to be an alkali basalt source.  相似文献   

12.
This work addresses the isotopic heterogeneity of the Archean lithospheric mantle by the example of high-Mg, moderate-alkali, LILE and LREE-enriched Panozero sanukitoid massif, which is located in the Central Karelia, southeastern Baltic Shield. Initial Nd and Sr isotope characteristics were determined for mantle source of the massif. ?Nd(T) in the source are plotted below DM line, varying from + 0.7 to + 1.4 (+1.1, on average). The 87Sr/86Sr(T) ~ 0.7017 significantly exceeds that of depleted mantle and reflects change of Rb/Sr ratio in the source due to metasomatic reworking of mantle. Data on Pb isotope composition of potassium feldspars indicate that source of monzonites of the Panozero Massif had lower μ (238U/204Pb) = 8 and higher (238Th/232U) = 4.05 relative to primitive mantle.  相似文献   

13.
For the first time Pb isotope composition was established in Lovozero rocks and raremetal ores, which is important for identifying their sources. The world’s largest layered intrusion of agpaitic nepheline syenite-the Lovozero alkaline massif—is located near the center of the Kola Peninsula in Russia. This superlarge complex plutonic body hosts the economically important loparite and eudiallyte deposits [1]. These deposits contain immense resources of REE, Nb, Ta, Zr, and constitute a world class mineral district. The Lovozero massif belongs to the Kola ultramafic alkaline and carbonatitic province (KACP) of Devonian age. Previous bulk rock studies have shown that the initial Sr and Nd isotope ratios of Lovozero rocks plot in the depleted mantle quadrant of Sr-Nd diagrams [2]. More recently, Hf isotope data obtained by Kogarko et al. (3) confirm that the Lovozero and Khibina massifs with ?Hf between 6 and 8 are derived predominantly from a depleted mantle source. It was shown that Sr, Nd, and Hf abundances are significantly elevated in the Kola alkaline rocks, and thus their isotopic compositions are relatively insensitive to minor contamination by the overlying crustal rocks. By contrast, Pb in the KACP rocks is a much more sensitive indicator of a crustal component. In this paper we investigate the lead isotopic signature of all resentative types of Lovozero rocks (Table 1) in order to further characterize their mantle sources. The Lovozero massif consists of four intrusive phases. Rocks of phase I (mostly nepheline syenites) comprise about 5% of the total volume, phase II (urtites, foyaite, lujavrites) forms the main portion of the massif comprising 77% in volume, and phase III (eudialyte lujavrites) contributes about 18%. Country rocks are represented by Devonian effusive rocks and Archean gneisses.  相似文献   

14.
Based on the petrological studies of wall rocks, mineralized rocks, ores and veins from the Laowangzhai gold deposit, it is discovered that with the development of silification, carbonation and sulfidation, a kind of black opaque ultracrystalline material runs through the space between grains and amphibole cleavages, which is the product of fast condensing consolidation with magma mantle fluids turning into hydrothermal crustal fluids in the process of mineralization and alteration. It is thought that the water in ore-forming fluids mainly derived from magmatic water through research on H-O isotopes, and C as well as S isotopic compositions, has clear mantle-derived characteristics, and rock (mine) stones contain high 87Sr/86 Sr ratios, low 143Nd/144 Nd ratios and high 206Pb/204 Pb ratios, which also reflects the ore-forming fluids were derived from the metasomatically enriched mantle. In combination with the features of H-O-C-S isotopes and Sr-Nd-Pb isotopes described above, the ore-forming fluids of the Laowangzhai gold deposit in the northern part of the Ailao Mountains were derived mainly from the deep interior of the mantle, and their properties were transformed from magma fluids to hydrothermal fluids in the course of metasomatism and alteration, which initiated crust-mantle contamination simultaneously to be in favor of mineralization.  相似文献   

15.
北京西山髫髻山组火山岩的地球化学特征与岩浆起源   总被引:45,自引:1,他引:45  
对北京西山髫髻山组粗安岩斜长石Ar-Ar年龄测定获得全坪年龄和等时线年龄分别为148.91Ma±2.98Ma和146.60Ma±2.93Ma(相关系数r=0.9997),本文将其时代划为晚侏罗世.元素-同位素地球化学显示,西山髫髻山组火山岩主要为高钾钙碱性系列,低Ti\K,高Al\Ca和Na,轻稀土元素富集,Eu异常不明显,大离子亲石元素Rb\Sr\Ba等相对富集,高场强元素Nb\Ta\Ti\Zr\Hf相对亏损,Nd\Sr和Pb同位素比值较低,反映出火山岩形成于岛弧或活动大陆边缘,其源岩为富集地幔.据此认为髫髻山组火山岩形成于陆内挤压环境,由中生代玄武质岩浆底侵于下地壳-壳幔过渡带诱发古老(太古宙)的玄武质岩石部分熔融形成的.  相似文献   

16.
Three different types of gold and silver deposits in Zhejiang Province(Huangshan gold deposit, Zhilingtou gold-silver deposit and Haoshi silver deposit) showmarked differences in lead and strontium isotopic composition, suggesting three differentsources and geneses of these deposits. The Huangshan gold deposit features low initial Srisotope ratios and low μ values or low content of radiogenic Pb and its ore-forming materialscame primarily from the upper mantle; the Zhilingtou gold-silver deposit shows high initial Srisotope ratios and high μ values or high content of radiogenic Pb and the ore-forming materialswere derived mainly from the upper crust; and the Haoshi silver deposit has its Pb and Srisotope ratios between the above two cases with the ore-forming materials stemming from boththe mantle and the crust. The characteristic Pb isotopic composition may serve as an indicatorfor prospecting for different types of ore deposits.  相似文献   

17.
青海德合龙洼金铜矿床地质地球化学特征   总被引:4,自引:0,他引:4       下载免费PDF全文
傅晓明  息朝庄 《地质找矿论丛》2010,25(2):124-128,140
通过对青海德合龙洼金铜矿床矿石稀土元素、微量元素、铅硫同位素地球化学特征的研究,稀土总量(ΣREE)为14.22×10-6~176.54×10-6;LREE/HREE为2.37~12.19,轻稀土富集,重稀土亏损,大部分具有正铕异常;微量元素中Ba,Sr,Ti亏损,低场强元素含量较低,高场强元素Sc,Th,U,Zr,Hf,Nb,Ta中,Zr的质量分数最高,亲铁元素中V强烈富集;硫同位素δ(34S)=+2.2×10-3~+7.0×10-3,平均值为+4.98×10-3,均一化程度较高;铅同位素的数据点主要分布于上地壳铅和造山带铅之间;认为德合龙洼金矿的成矿物质来源主要为壳幔混合源。  相似文献   

18.
紫木凼金矿床是黔西南卡林型金矿区一个重要的大型金矿床,其成矿物质来源尚不明确.对紫木凼金矿床不同类型矿石和赋矿围岩进行了S、C、O、Pb和Sr同位素组成对比研究.矿石中硫化物的δ34S值为-13.49‰~17.91‰(主要为-0.99‰~3.58‰),赋矿围岩的δ34S值为-26.23‰~-19.63‰,矿床成矿期硫主要来源于岩浆,部分来源于赋矿地层中成矿前黄铁矿.热液期方解石的δ13C和δ18O分别为-9.10‰~0.59‰和15.65‰~23.82‰,与赋矿围岩、区域地层的碳、氧同位素组成差别较大,成矿流体的碳、氧部分来源于碳酸盐岩溶解,部分可能来源于岩浆.矿石中硫化物的206Pb/204Pb、207Pb/204Pb和208Pb/204Pb比值分别为18.064~18.973、15.585~15.670和38.219~39.054,赋矿围岩的206Pb/204Pb、207Pb/204Pb和208Pb/204Pb比值分别为18.136~18.650、15.574~15.656和38.423~38.812,矿石铅的来源较复杂,赋矿地层和岩浆可能都为其提供了部分铅.矿石中石英和方解石(87Sr/86Sr)i比值为0.707 26~0.708 11,赋矿围岩的(87Sr/86Sr)i比值为0.707 28~0.707 31,成矿流体中的锶主要来源于赋矿地层.紫木凼金矿床成矿物质具壳幔混合来源特征,成矿物质主要来自矿床深部隐伏岩浆岩,部分来自二叠系-三叠系赋矿地层.   相似文献   

19.
秦岭显生宙地幔组成及其演化   总被引:2,自引:1,他引:2  
通过对秦岭造山带及扬子克拉通北缘显生宙时期 3个含地幔捕虏体的煌斑岩、钾镁煌斑岩、碱性玄武岩以及 11个不含捕虏体的辉石岩、辉长岩、玄武岩出露点的岩石地球化学对比研究 ,揭示出研究区地幔演化经历了自古生代的OIB亏损地幔到中生代的高度富集地幔再到中生代末期 -新生代的OIB MORB的亏损地幔的两次明显变更。制约这种变更的主要因素是熔融岩浆时源区发生的层圈相互作用类型。鉴于大陆岩石圈软流层体系的特征 ,有必要划分出岩石圈 /软流层相互作用带(过渡带 ) ,它是大陆岩浆作用的重要源区。  相似文献   

20.
鄂北地区碱性岩的时代及成因   总被引:7,自引:2,他引:7  
李石 《岩石学报》1991,7(3):27-36
产于鄂北的花山寨、观子山、杀熊洞和庙垭四个碱性岩体,其K-Ar、U-Pb和Rb-Sr同位素年龄值为215~306Ma,成岩时代属海西—印支期。根据~(87)Sr/~(86)Sr初始值,杀熊洞岩体(0.7032)和庙垭岩体(0.7029)的成岩物资来源于上地幔,观子山岩体(0.7041)的成岩物质属幔壳混源型,但仍以幔源为主,花山寨岩体(0.7092)的成岩物质则主要来源于下地壳。  相似文献   

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