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1.
江西永平Cu-W矿床是钦杭成矿带东部一个大型Cu-W矿床。针对该矿床的成因,一直存在着海底喷流沉积型与矽卡岩型矿床的争论。文章针对该争论,通过对永平Cu-W矿床的白钨矿开展微量元素分析,研究了成矿流体性质、来源和矿床成因。永平Cu-W矿床发育3种类型白钨矿:退化蚀变阶段暗色均质白钨矿Ⅰ-1;亮色均质白钨矿Ⅰ-2;石英-硫化物阶段具有环带结构的白钨矿Ⅱ。白钨矿中Mo含量和Eu异常能够指示成矿流体氧化还原性。白钨矿Ⅰ-1富集Mo元素,并呈负Eu异常,指示氧化性;白钨矿Ⅰ-2和白钨矿Ⅱ中Mo含量减少,并且呈正Eu异常,指示成矿流体的氧逸度降低。永平Cu-W矿床所有白钨矿均呈明显的轻稀土元素富集模式,与典型矽卡岩型白钨矿稀土元素特征相一致,而明显不同于石英脉型矿床白钨矿中稀土元素或重稀土元素富集模式。白钨矿具有高Mo和低Sr元素,与岩浆-热液白钨矿特征一致,而明显不同于变质来源的白钨矿,指示成矿流体来源于岩浆。白钨矿的Y/Ho比值范围为19~43,与似斑状黑云母花岗岩(Y/Ho=25~30)相似,明显不同于石炭系叶家湾组(Y/Ho=34~75),指示成矿流体主要来源于岩浆。白钨矿地球化学特征指示永平Cu-W矿床为矽卡岩型矿床。  相似文献   

2.
赵禹  赵玉岩  郝立波  陆继龙  赵新运 《地质通报》2014,33(10):1562-1570
成矿流体来源及性质是确定岩浆热液矿床找矿方向、建立找矿预测模型的重要依据。通过对紫金山铜金矿区内主要岩体岩石、典型矿石的对比分析,发现矿石与花岗闪长斑岩稀土元素特征相似,且花岗闪长斑岩岩体的形成年龄与成矿时间极为接近,可以为成矿流体提供足够的热量,因此推断该矿床的成矿流体最初来源于深部隐伏花岗闪长斑岩岩体分异的岩浆热液。矿石中富集Th、Nb、Ta、Zr、Hf等高场强元素和轻稀土元素,Hf/Sm值和Nb/La值都大于1,表明成矿流体具有F含量多于Cl的性质。结合前人大量的研究资料,建立了二庙沟—中寮剖面找矿预测模型。  相似文献   

3.
大湖塘钨矿地处江南造山带中段,为一大型钨-钼-铜多金属矿田,由4个矿床组成,其中石门寺矿床规模最大.文章利用LA-ICP-MS对石门寺矿床石英脉型钨矿中的白钨矿进行单矿物原位微区分析,以揭示成矿流体演化过程.研究表明,石英脉中的白钨矿可划分为2期,其中,早期白钨矿与黑钨矿、黑云母及石英共生,而晚期白钨矿在石英大脉中仅与石英共生.前者表现为右倾型稀土元素配分模式,而后者则显示平坦型稀土元素配分模式,两者均具Eu正异常.此外,早期白钨矿较晚期白钨矿具有较高的ΣREE、Mo、Sn、Nb、Ta、Y含量,但Sr含量较低.早期白钨矿表现出LREE富集型和较高的ΣREE、Nb、Ta含量,说明成矿流体来源于岩浆热液,从早期到晚期成矿流体中Eu由Eu2+为主转变为Eu3+为主,表明流体演化过程中氧逸度升高,暗示成矿晚期有氧化性大气降水加入.早期高LREE、Sn、Nb、Ta含量的白钨矿的沉淀以及辉钼矿结晶显著改变成矿流体的组成,导致晚期白钨矿具平坦型REE配分模式和低Mo、Sn、Nb、Ta的特征.此外,在流体演化过程中,新元古代花岗闪长岩中斜长石因为蚀变分解持续为成矿热液提供Eu和Sr,造成白钨矿Eu正异常和晚期白钨矿中Sr含量的升高.  相似文献   

4.
广西博白油麻坡钨钼矿床地质特征及找矿标志   总被引:1,自引:0,他引:1  
杨拓 《矿产与地质》2013,(5):381-387
广西博白县油麻坡钨钼矿区位于博白-岑溪铅锌钨锑金银多金属成矿带内,矿体产于泥盆系下统与花岗闪长斑岩接触的矽卡岩带中或黑云母花岗闪长斑岩、花岗压碎岩、绢云石英片岩中。根据以往勘查成果及综合研究,结合区域矿床对比,认为博白县油麻坡钨钼矿床属中-高温热液-矽卡岩型钨钼矿床和花岗闪长斑岩石英脉型辉钼矿床。该区具有良好的钨钼成矿条件和找矿前景。  相似文献   

5.
湖南黄沙坪钨钼多金属矿床位于中国南岭成矿带中段,是一个以矽卡岩型为主的多金属矿床。对矿床内矽卡岩、围岩(灰岩、大理岩)和与矽卡岩形成相关的花岗斑岩岩体进行地球化学分析表明:在主量元素方面,Fe、Al、Mg、Si等元素在花岗斑岩与矽卡岩中发生了迁入迁出,矽卡岩SiO2含量与MgO、MnO、CaO、Fe2O3+FeO含量呈线性递减的关系;在稀土元素方面,矽卡岩具有明显的LREE富集,HREE亏损,发育有明显的Eu负异常。花岗斑岩具有与矽卡岩相同的REE配分模式,其成岩年龄也与矽卡岩型辉钼矿的Re-Os同位素年龄(158.4±1.3 Ma)相一致,说明两者在成因上具有一定联系。同时根据矿床内矽卡岩几乎不发育Ce异常,说明形成矽卡岩的流体中没有海水的混合。结合矿床内不同岩石的地球化学特征,强烈的轻、重稀土分异,明显的Eu负异常,推测黄沙坪地区矽卡岩是由岩浆热液流体的接触交代作用形成的。  相似文献   

6.
湖南香花铺钨矿床含钙矿物的稀土元素地球化学   总被引:9,自引:3,他引:6  
香花铺矿床是湘南地区唯一的萤石-白钨矿型矿床。本文利用高精度LA-ICP-MS对该矿白钨矿和方解石中的稀土元素进行了原位分析。结果表明,该矿的白钨矿表现为LREE富集和正Eu异常特征,方解石则具有LREE富集型和相对平坦型两种稀土配分模式,且均呈现负Eu异常特征。该矿属于与岩浆活动有关的热液矿床,成矿流体在还原环境下的运移过程中,首先结晶出白钨矿和LREE富集型方解石,而后沉淀形成了具有相对平坦型REE模式的方解石。此外,稀土元素在该区矿物中的分布存在明显的不均一现象,在不同微区REE的含量、配分模式以及分异程度等均可能存在差异,其原因除了结晶过程中水动力学条件的变化,还可能与矿物结晶后颗粒外表层受流体作用的改造有关。  相似文献   

7.
冈底斯成矿带以斑岩型铜矿(伴生钼矿)为主体,通常作为"挤压型"陆缘岩浆弧—"碰撞裂谷带"斑岩成矿的典型代表而被广泛关注,但层矽卡岩型钨铜钼矿和斑岩型独立钼矿的勘查和研究却未能引起足够的重视,尤其是层矽卡岩型白钨矿的发现,填补了区带矿种的空白;在雅鲁藏布江缝合带边部发现的隐伏斑岩型钼矿,突破了"挤压型"陆缘成矿认识的传统误区。中国冶金地质总局新近发现的冈底斯东段则当钨铜钼矿,既是一处大型钨铜钼矿详查开发基地,又是一组统一于陆缘走滑断裂构造成矿体制作用的钨、铜、钼矿床组合,称为"泽当矿田"。在NWW向雅鲁藏布江缝合带陆缘走滑断裂作用下,早期(68~40.3Ma)拉分型转换构造——NEE向剥离断层,控制了层矽卡岩型钨铜钼矿的形成;在NEE向冲木达陆缘走滑断裂作用下,晚期(30.26~23.62Ma)推闭型转换构造——NWW向逆冲断层,控制了隐伏斑岩型钼矿的形成。层矽卡岩型矿床形成和改造于68~66Ma和57~40.3Ma,叠加富集于斑岩型矿床的形成阶段——30.26~23.62Ma。  相似文献   

8.
南秧田钨矿床位于滇东南老君山W-Sn矿集区,地处扬子地块和印支地块的结合部位,地质背景复杂并遭受了多期岩浆活动和区域变质事件,其成矿时代和成因一直存在争议。本文对矽卡岩型和长石-石英脉型白钨矿开展了年代学、原位微量元素、Sr同位素研究,分析了两类白钨矿年龄、成因以及物质来源的差异。结果表明,长石-石英脉内与白钨矿共生辉钼矿的Re-Os同位素等时线年龄为151.0±1.3Ma,明显晚于矽卡岩矿体年龄,属于后期成矿事件。矽卡岩型白钨矿的轻稀土富集、重稀土强烈亏损,Eu呈明显负异常(δEu=0.46),∑REE平均含量为65.60μg/g,Mo平均含量为240.16μg/g,Sr平均含量为883.43μg/g;长石-石英脉型白钨矿稀土呈Eu正异常(δEu=2.8)的平坦型,∑REE平均含量为194.40μg/g,Mo平均含量为16.01μg/g,Sr平均含量为129.26μg/g。以上两者微量、稀土元素含量的差别显示它们具有性质明显不同的流体来源,Eu异常指示矽卡岩型白钨矿形成于氧逸度较高的环境,长石-石英脉型白钨矿形成于还原性环境。矽卡岩白钨矿~(87)Sr/~(86)Sr值相对较低,并且比较均一,介于0.71319~0.71491之间,表明成矿流体主要来自岩浆热液;长石-石英脉型白钨矿~(87)Sr/~(86)Sr值较高且变化范围大,介于0.71537~0.72803之间,平均0.72079,呈现出变质流体特征。两种不同类型白钨矿Sr同位素都具有二元混合的特征,显示长石-石英脉型白钨矿对矽卡岩型白钨矿有叠加改造作用,成矿流体与围岩的强烈交代作用是白钨矿形成的关键。  相似文献   

9.
栾川西鱼库隐伏斑岩型Mo-W矿床地球化学及其意义   总被引:1,自引:0,他引:1  
西鱼库大型隐伏斑岩钼-钨矿床是近年来在栾川地区开展深部找矿勘查过程中的新发现。该矿床与南泥湖、上房沟钼矿不同,其矿体主要赋存于斑岩体内部而非岩体外接触带的矽卡岩或角岩中。与南泥湖和上房岩体相比,西鱼库隐伏斑岩体的Si O2、K2O含量略低,具有正Eu异常,表明西鱼库隐伏斑岩体比南泥湖和上房岩体分异程度略低,更接近成矿岩浆中心位置。  相似文献   

10.
对努日矿床白钨矿中稀土元素、微量元素的地球化学特征研究表明:白钨矿亏损V、Cs、Hf、Ta等元素,并具有异常低的Rb/Sr、Zr/Hf、Nb/Ta的比值,以及Hf/Sm、Nb/La、Th/La值也都远远小于1,指示原始富钨成矿流体来源于深部壳源岩浆结晶分异,并总体以富CL热液为主;采自不同位置的白钨矿样品其稀土元素组成基本一致,其球粒陨石配分曲线表现为明显轻稀土富集的右倾模式,具有明显的Ce正异常(δCe=1.066~1.107)和弱Eu负异常(δEu=0.768~0.910),表明白钨矿与流体之间稀土元素发生了不太明显的分异;白钨矿与夕卡岩化有密切关系的黑云母花岗岩的REE球粒陨石标准化配分曲线均为明显的右倾模式,ΣREE、δCe、δEu值基本一致,暗示岩体对努日白钨矿成矿物质的贡献。努日矿床初始热液流体为一中高温、中低盐度的流体,其沿着构造裂隙运移过程中,与比马组地层发生接触交代反应,体系中CO2和Ca含量的增加,流体的初始平衡体系被破坏,最终导致大量Ca2+与WO42-结合形成了巨量的白钨矿。  相似文献   

11.
Scheelite is the main ore mineral in skarn-type tungsten (W-Mo, W-Sn, and W-Cu) deposits, and is also a good proxy for ore-fluid evolution and mineralization. The Bastielieke deposit is the first medium-size W-polymetallic skarn deposit discovered in the Chinese (Xinjiang, NW China) Altay. Scheelite grains at Bastielieke are distributed in biotite granite, skarn and quartz-fluorite veins. They exhibit different textures, and can be divided into four types and six subtypes, including those in granite (Schm), prograde skarn (SchI), retrograde-altered rocks (SchII), and those in late-stage quartz-fluorite veins (SchIII).SchIa and SchIb were formed in the early and late prograde stage, respectively. SchI displays homogeneous texture, enrichments of light rare earth elements (LREEs) relative to heavy REEs (HREEs), and significantly negative Eu anomalies. SchIa has higher Sr-Mo contents and LREE/HREE than SchIb. SchII shows patchy texture by overgrowth and dissolution-reprecipitation, and can be subdivided into dark (SchIIa) and light (SchIIb) zone based in CL imaging. All SchII grains are LREE-enriched with negative Eu anomalies and relatively low LREE/HREE ratios. SchIIb has much higher W-Mo-Nb-Sr contents than SchIIa, which is ascribed to late-stage hydrothermal modifications. Schm and SchIII display homogeneous texture and similar MREE-enriched patterns, as well as very low Mo-W-Sr and different Nb contents.The texture and compositional variations in Bastielieke scheelites reveal that two magmatic fluids derived from different granitic magma reservoirs were involved in the mineralization. The earlier ore-fluid is relativly oxidized and has low HREE contents, forming the early prograde skarn-stage mineralization. Episodic influxes of later F-rich granitic magmatic fluids may have modified the earlier scheelite compositions, leading to multistage W enrichment and varying intragrain compositions.  相似文献   

12.
黄沙坪矿床是湘南地区最大的铅锌矿床,除铅、锌外,可供开采利用的矿种还包括钨、锡、钼、铜、铁、硫等。矿区内岩浆作用复杂、成矿元素多样、矿化类型丰富,是研究湘南地区斑岩-矽卡岩-热液脉型Cu多金属与矽卡岩W-Sn多金属复合成矿作用的理想对象。为查明矿区Cu多金属与W多金属复合成矿机理,本文在已有研究的基础上,从岩石学、矿物学及元素地球化学等方面分别对区内石英斑岩和花岗斑岩这两类成矿岩体开展了系统研究。结果表明,两类岩体具有相似的源区特征,但在源区性质及其演化过程方面仍存在差异:石英斑岩侵位深度更浅,具有相对较高的氧逸度和较低的形成温度;而花岗斑岩则侵位相对更深,具有更高的形成温度和极高的分异演化程度、更低的氧逸度。这些地球化学特征差异可能是制约石英斑岩成铜矿而花岗斑岩成钨矿的重要原因。  相似文献   

13.
行洛坑钨矿位于武夷山成矿带中部,是该带目前规模最大的钨矿床。钨矿体主要产于强烈蚀变的似斑状黑云母花岗岩岩株顶部,发育细脉浸染状、网脉状及大脉状多种矿化类型,黑钨矿与白钨矿含量近1∶1。关于矿床的流体演化过程与成矿机制目前仍不清楚,成因存在较大争议。本文在详细成矿阶段划分的基础上,对不同阶段产出的不同世代白钨矿开展了系统的原位LA-ICP-MS微量元素和Sr同位素、以及流体包裹体和H-O同位素的研究工作。行洛坑钨矿由早至晚可以划分为3个成矿阶段:细脉浸染状白钨矿-辉钼矿阶段(阶段Ⅰ)、钾长石-白钨矿-黑钨矿-绿柱石阶段(阶段Ⅱ)及硫化物-黑钨矿-白钨矿-碳酸盐阶段(阶段Ⅲ)。流体包裹体研究显示成矿流体为中高温、低盐度的Na Cl-H_2O-CO_2体系。H-O与Sr同位素表明成矿流体主要为岩浆流体,仅成矿晚期阶段有少量的大气降水加入。阶段I白钨矿相对富REE、Mo、Na和Nb,贫Sr;而随着流体演化,白钨矿REE、Mo、Na、Nb含量逐渐降低,Sr含量显著升高。阶段I白钨矿呈自形-半自形粒状,CL图像显示细密的、均匀的震荡环带,稀土元素主要与Na和Nb结合进入白钨矿晶格;阶段Ⅱ、阶段Ⅲ白钨矿呈半自形-他形,不发育或仅发育宽缓的、不规则震荡环带,稀土元素与Ca(Ca的离子空位)结合置换白钨矿中的Ca。结合蚀变与矿化特征,认为阶段I白钨矿形成于低水岩比环境,由初始岩浆流体沿微小裂隙渗透交代而形成;而阶段Ⅱ、Ⅲ白钨矿形成于高水岩比环境,CO_2的不混溶作用伴随强烈的水岩反应导致了钨的富集沉淀。结合矿床地质特征,认为行洛坑钨矿属于广义的斑岩型钨矿,细脉浸染状矿化构成了钨成矿的基础,而网脉状、大脉状矿化的叠加是钨进一步富集的关键。  相似文献   

14.
《China Geology》2022,5(3):510-527
The Shimensi deposit is a recently discovered W-Cu-Mo polymetallic deposit located in the Jiangnan porphyry-skarn W belt in South China. The deposit has a resource of 0.74×106 t of WO3 accompanied by 0.4×106 t Cu and 28000 t Mo and other useful components like Ga, making it one of the largest W deposits in the world. This paper is aimed to reveal the ore-controlling mechanisms of the Shimensi deposit, involving the role of the ore-related granites, the tectonic background for its formation, and the metallogenesis model. The systematic geological survey suggests multi-types of alteration are developed in the deposit, mainly including greisenization, potassic-alteration, sericitization, chloritization, and silicification. Drilling engineering data and mining works indicate that the Shimensi deposit consists of two main orebodies of I and II. Therein, the W resource has reached a supergiant scale, and the accompanied Cu, Mo, Au, Bi, Ga, and some other useful components are also of economic significance. The main ore-minerals consist of scheelite, wolframite and chalcopyrite. Disseminated mineralization is the dominant type of the W-Cu-Mo polymetallic orebodies, and mainly distributes in the inner and external contact zone that between the Neoproterozoic biotite granodiorite and the Yanshanian granites. The main orebody occurs at the external contact zone, and the pegmatoid crust near the inner contact zone is an important prospecting marker of the W mineralization. Of them, the disseminated W ores within the wall rock of the Neoproterozoic biotite granodiorite is a new mineralization type identified in this paper. Combining previous geochronological and isotopic data, we propose that the mineralization of the Shimensi deposit is closely related to the intruding of the Yanshanian porphyritic biotite granite and granite porphyry. Geochemical data suggest that the biotite granodiorite is rich in Ca and had provided a large amount of Ca for the precipitation of scheelite in this area. Thus, it is a favorable wall rock type for W mineralization. The Shimensi deposit belongs to granitic-type W polymetallic deposit related to post-magmatic hydrothermal, and the ore-forming fluid was initially derived from the Yanshanian magmas.©2022 China Geology Editorial Office.  相似文献   

15.
《International Geology Review》2012,54(13):1646-1672
ABSTRACT

Southern Hunan Province, located in the Cathaysia Block where the Shi–Hang zone and Nanling belt meet, is characterized by extensive Mesozoic magmatism and coeval polymetallic mineralization. The Huangshaping W–Mo–Pb–Zn–(Cu) deposit is representative in this area. However, the petrogenesis of the granitoids associated with the Huangshaping deposit, and their relationships with mineralization, remain undetermined. In this paper we focus on zircon U–Pb dating, whole-rock geochemistry, and Sr–Nd–Pb–Hf isotopic compositions in order to further our understanding of these issues, as well as their regional implications. The Huangshaping granitoids are characterized by two pulses of intrusive activity: a first-stage quartz porphyry and a second-stage felsite and granite porphyry, our new data show that the quartz porphyry and felsite formed at 160.5 ± 1.3 and 156.6 ± 1.4 Ma, respectively, representing a period of Late Jurassic magmatism. Granitic enclaves within the quartz porphyry crystallized at 160.2 ± 1.6 Ma, and zircons and apatites from the enclaves exhibit Hf isotopic and geochemical compositions that suggest a Palaeoproterozoic lower crustal melt as one end-member of the magma that formed the quartz porphyry, whereas another likely end-member was coeval mantle-derived magma, as indicated by the geochemistry and Sr–Nd–Pb–Hf isotopes. However, both the felsite and granite porphyry were probably derived from the melting of metamorphic basement rocks in the upper crust. The felsite clearly formed as a result of the rapid ascent and cooling of magma, whereas the granite porphyry underwent fractional crystallization. The magma sources and evolution of the granitoids, as well as their association with the Huangshaping mineralization, suggest that melting of upper crustal components controlled the W–Mo and Pb–Zn mineralization, whereas dehydration of a subducted slab provided the Cu mineralization in southern Hunan Province.  相似文献   

16.
《China Geology》2021,4(2):230-244
The giant Dahutang tungsten (W) deposit has a total reserve of more than 1.31 Mt WO3. Veinlet-disseminated scheelite and vein type wolframite mineralization are developed in this deposit, which are related to Late Mesozoic biotite granite. Four major types of alterations, which include albitization, potassic-alteration, and greisenization, and overprinted silicification developed in contact zone. The mass balance calculate of the four alteration types were used to further understanding of the mineralization process. The fresh porphyritic biotite granite has high Nb, Ta, and W, but low Ca and Sr while the Jiuling granodiorite has high Ca and Sr, but low Nb, Ta, and W concentrations. The altered porphyritic biotite granite indicated that the Nb, Ta, and W were leached out from the fresh porphyritic biotite granite, especially by sodic alteration. The low Ca and Sr contents of the altered Neoproterozoic Jiuling granodiorite indicate that Ca and Sr had been leached out from the fresh granodiorite by the fluid from Mesozoic porphyritic biotite granites. The metal W of the Dahutang deposit was mainly derived from the fluid exsolution from the melt and alteration of W-bearing granites. This study of alteration presents a new hydrothermal circulation model to understand tungsten mineralization in the Dahutang deposit.  相似文献   

17.
高硅花岗岩对于理解浅部岩浆房的行为具有重要意义。本文对西藏甲玛矿区南坑矿段的花岗斑岩开展了岩相学、岩石地球化学及黑云母矿物学研究。结果显示,该花岗斑岩具有高SiO2(73.39%~77.99%)、高K2O(4.34%~6.45%)和低P2O5(0.03%~0.06%)特征,铝饱和指数为0.97~0.98,富集Rb、Th、U和Pb,明显亏损Ba、Nb、Ta、Sr、P、Ti和Eu等,属准铝质高分异I型花岗岩类;其中的黑云母具有高Al2O3(9.87%~10.92%)、高MgO(13.38%~14.64%)、高F(0.56%~1.11%)和高Cl(0.07%~0.12%)特征,Mg#为0.61~0.63,属镁质黑云母,黑云母源区为壳幔混合源。研究认为,该区花岗斑岩可能为甲玛矿区浅部埃达克质二长花岗斑岩的岩浆经矿物结晶分异演化出高硅残余熔体,并以岩脉形式上侵就位,而残留在岩浆房的物质结晶形成似斑状二长花岗岩,二者构成互补的关系,即主体为似斑状二长花岗岩,补体为高分异花岗斑岩。  相似文献   

18.
丁绵绵  车旭东  饶灿  李晓峰  李伟 《地质学报》2023,97(11):3825-3845
稀有金属铌钽在我国华南存在多时代成矿特征,前人对其最晚成矿期晚白垩世成矿事件报道较少。本文以浙东南的吴小垟铌矿床为研究对象,结合野外调查、岩石学、矿物原位微区分析和同位素年代学等研究,确定矿床铌成矿岩体为细粒黑云母花岗岩,成岩成矿年龄分别为89.2±0.8 Ma和86.5±1.0 Ma,揭示了该区存在晚白垩世花岗岩侵位及其相关铌成矿事件。铌除了以独立矿物的形式赋存在铌铁矿、铌铁金红石、铅烧绿石中,还有部分铌赋存于黑云母中。在岩浆-热液作用下,云母类型发生了从铁云母→黑鳞云母→铁锂云母的变化。铁云母Nb含量最高可达1253×10-6,黑鳞云母-铁锂云母铌含量最高至794×10-6,黑云母极度富铌的特征,指示该花岗岩具有非常好的铌找矿潜力,富铌黑云母可以作为一种铌钽找矿指示性矿物。综合上述矿物学特征,得出吴小垟矿床存在两阶段铌成矿事件:岩浆期原生铌铁矿族矿物、原生富铌黑云母和铌铁金红石的形成;以及后期热液作用下铌从岩浆和原生含铌矿物中迁移出形成次生的含铌氧化物。  相似文献   

19.
钨矿往往与酸性或中酸性侵入岩相关,对于复式岩体通常仅与某一特定期次岩浆相关,如何确定成矿相关岩体是找矿勘查的一道难题。朱溪矽卡岩型钨矿床位于江南古陆钨矿带,是一个世界级钨矿床。该矿床的形成主要与黑云母二长花岗岩和细粒花岗岩密切相关,此次研究发现黑云母二长花岗岩中的黑云母发生蚀变、分解过程中形成了大量含W金红石(w(WO_3)为0.01%~0.96%)。这类含W次生金红石同样出现在华南地区多个钨矿床的成矿相关岩体中,并且其WO_3含量显著高于与岩浆作用相关的锡矿床和斑岩型铜(金)矿床中的次生金红石的WO_3含量。此外,朱溪矿床中岩浆演化晚期形成的细粒花岗岩中结晶了一些自形板状的原生金红石,这些金红石同样显著富集W元素(w(WO_3)为0.06%~1.12%)。金红石中的Ti容易被W所替代,导致(岩浆)热液体系所经历的W元素富集过程会被结晶的金红石所记录。因此,通过花岗质岩体中黑云母发生蚀变或分解后形成的次生金红石,或岩浆演化晚阶段形成的细晶岩脉中的原生金红石的W元素含量,可以判断岩浆结晶演化过程中是否经历过W元素的富集及相应的富集程度,从而判断花岗质岩体是否具备形成钨矿床的潜力。  相似文献   

20.
江西省香炉山钨矿是江南古陆斑岩-矽卡岩钨多金属成矿带内具有代表性的早白垩世矽卡岩型钨矿床。矿床的WO3储量约为22万t,平均品位约为0.641%。矿床的矿体以似层状和透镜状产出于燕山期黑云母花岗岩和寒武系杨柳岗组泥灰岩的接触带。本文在详细厘定成矿阶段矿物组合的基础上,对不同阶段产出的不同世代的白钨矿开展了原位LA-ICP-MS微量元素的系统测试。香炉山钨矿床可以划分为四个成矿阶段:矽卡岩阶段、退化蚀变阶段、石英-硫化物-白钨矿阶段和方解石-萤石阶段。根据各阶段矿物组合及与白钨矿共生关系,本次研究划分出四个阶段六个世代的白钨矿,分别为阶段Ⅰ白钨矿(产于云英岩中)、阶段Ⅱa和阶段Ⅱb白钨矿(产于退化蚀变岩)、阶段Ⅲa和阶段Ⅲb白钨矿(产于硫化物条带,Ⅲa为白钨矿核部,Ⅲb为白钨矿边部)和阶段Ⅳ白钨矿(产于石英-硫化物-白钨矿脉)。白钨矿的球粒陨石标准化稀土元素配分图有下凹型(阶段Ⅰ、阶段Ⅱa、阶段Ⅲb)、右倾型(阶段Ⅳ)和下凹右倾型(阶段Ⅲa)。各阶段白钨矿的微量元素特征表明,香炉山钨矿床白钨矿的∑REE含量高于世界上绝大部分脉状金和钨矿床,也高于我国华南地区钨多金属矿床。白钨矿中REE3+与Ca2+主要的替代机制为3Ca2+=2REE3++Ca(为一个Ca空位)。白钨矿的REE和Eu异常由流体决定,可以用来示踪流体的演化过程,Eu的活动主要以Eu2+为主。香炉山钨矿床为还原性矿床,不同阶段白钨矿中Mo等元素含量的变化指示流体演化各阶段的还原性强弱有波动。不同阶段白钨矿的稀土和微量元素特征有较大变化。香炉山白钨矿稀土元素的超常富集原因和机制仍有待进一步研究和探讨。  相似文献   

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