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1.
四川牦牛坪稀土矿床矿物流体包裹体研究   总被引:18,自引:0,他引:18  
对矿物流体包裹体进行分析的结果表明,牦牛坪稀土矿床的矿物中存在4种类型包裹体:(1)液-所耵;(2)液-气-固相;(3)纯气相;(4)固相,矿物包裹体显微测温结果显示牦牛坪矿床成矿温度从423℃至122℃;成矿流体的盐度ω(NaCl)为11.46%-14.36%质量分数,包裹体的成分分析结果显示流体中富含CO2和其他挥发性组分,并富含大量的不同成分的矿物雏晶,根据矿床地质特征和矿物包裹体的研究结果,作者认为本矿床的成矿作用是由碳酸岩岩浆气液流体的沸腾、充填和交代过程而实现的。  相似文献   

2.
华阳川碳酸岩流体包裹体研究   总被引:2,自引:0,他引:2  
王林均  许成  吴敏  宋文磊 《矿物学报》2011,31(3):372-379
华阳川碳酸岩位于秦岭造山带与华北地块的交接部位的小秦岭,呈脉状产出,主要由方解石组成。通过流体包裹体测温和拉曼研究显示,华阳川碳酸岩流体包裹体主要由CO2一H20两相、CO2一H20三相(LHh2o+Vco2,+Lco2.)和含天青石子矿物三种类型组成,并且具有中低温(138—357℃)、中低盐度(11.05%一0.43%NaCl)特征,这说明该碳酸质流体富含CO2和sr等不相容元素,这与典型的碳酸岩流体包裹体特征相似,且该区碳酸岩C—O同位素组成也完全落在原始的火成碳酸岩范围内,并未受明显的后期热液作用,这也进一步表明,华阳川碳酸岩脉在侵位结晶前,已经发生了大量的矿物相的分离结晶,导致其富集挥发分和不相容元素,且具有温度和盐度相对较低的特征,因此它们可能是方解石的堆积体。  相似文献   

3.
河南省新县姚冲钼矿床流体包裹体研究   总被引:1,自引:1,他引:0  
河南省新县姚冲钼矿床产于大别造山带,属于陆-陆碰撞体制的斑岩型矿床,其流体成矿过程可以分为早、中、晚三个阶段,分别以石英+钾长石±黄铁矿±磁铁矿、石英±钾长石+辉钼矿±其他硫化物和石英±碳酸盐±萤石组合为标志.热液石英和萤石中发育纯CO2包裹体(PC型)、CO2-H2O型包裹体(C型)、水溶液包裹体(W型)和含子晶多相包裹体(S型).早阶段石英中发育纯CO2包裹体、CO2-H2O型包裹体和含子晶多相包裹体,中阶段的石英则发育CO2-H2O型包裹体、水溶液包裹体和含子晶多相包裹体,在晚阶段的无矿石英脉中发育水溶液包裹体和少量的CO2-H2O型包裹体,石英-碳酸盐-(萤石)脉石英与萤石中只发育水溶液包裹体.早阶段流体包裹体的均一温度为277~ 380℃,集中于300~ 360℃,盐度变化于3.0%~10.3% NaCleqv之间.中阶段包裹体均一温度介于185 ~ 351℃之间,集中在260~ 320℃,盐度介于2.4% ~9.3%NaCleqv;晚阶段包裹体均一温度为139 ~245℃,盐度介于0.7% ~6.3% NaCleqv之间.中阶段多相包裹体中常见黄铜矿和其他透明子矿物,表明流体具有还原性、过饱和的特征,是矿石矿物沉淀的主要阶段.估算早、中阶段流体捕获压力分别集中于47 ~ 131MPa和26 ~118MPa,所对应的成矿深度分别约为4.7km和2.6~4.2km.上述流体包裹体的研究表明姚冲钼矿床的初始成矿流体具有高温、高盐度、富CO2的特征,同时预测了深部找矿潜能.  相似文献   

4.
沈昆  张泽明  石超  王金丽 《岩石学报》2008,24(9):1987-2002
苏鲁超高压变质带南部的东海地区产出大量榴辉岩体,其中存在含蓝晶石-黝帘石/褐帘石-绿辉石-金红石(+磷灰石+锆石)石英脉,它们含有与榴辉岩主岩相近似的矿物组合,故应该是在与榴辉岩相近的超高压P—T奈件下形成的。这些脉体的褐帘石/黝帘石和金红石具有很高的稀土元素(REE)和高场强元素(HFSE)含量及变化的Sr、Ba、V和Cr含量。脉体的蓝晶石,特别是褐帘石和黝帘石含有丰富的固体与流体包裹体,包括:(1)多相固体包裹体(muhiphase solid inclusions,Ⅰ型);(2)多子晶流体包裹体(muhidaughter mineral—bearing fluid inclusions,Ⅱ型);(3)H2O-CO2包裹体(Ⅲ型);(4)高盐度盐水包裹体(Ⅳ型);和(5)中-低盐度H2O包裹体(Ⅴ型)。Ⅰ型和Ⅲ型包裹体主要存在于蓝晶石中,偶尔见于黝帘石中,呈孤立分布或沿晶内裂隙分布;Ⅱ型包裹体多沿褐帘石和黝帘石晶核密集或随机分布,或沿晶内裂隙分布;Ⅳ型和Ⅴ型包裹体多见于石英中,也见于褐帘石和黝帘石中,一般沿裂隙分布。能谱和激光拉曼探针分析表明Ⅰ型包裹体中的固相有钠云母、刚玉、方解石、菱铁矿、硬石膏、重晶石、磁铁矿和黄铁矿,以及未知相;Ⅱ型包裹体中的固相有白(钠)云母、硬石膏、方解石、磷灰石、天青石、磁铁矿和黄铁矿,以及未知含水硅酸盐等;Ⅲ型包裹体主要含H2O和CO2;Ⅳ型包裹体除含H2O液相外,常见固相有石盐、方解石和不透明矿物,而气相有时可合明显数量的CO2和N2。显微测温显示,多数Ⅱ型包裹体的冰点(Tmi)在-5℃~0℃,相应的盐度为0~7.86%NaCl equiv.。鉴于Ⅱ型包裹体含有多种子矿物,根据包裹体中固体总含量并结合溶解度资料估计,Ⅱa和Ⅱb型包裹体中溶质浓度可分别达到40%~70%和25%-40%,原始流体可能属于Na^+-Ca^2+(Sr^2+)-Mg^2+-Fe^2+-CO3^2--CO4^2-SiO3^2-±PO4^3--Cl^--H2O体系。Ⅳ型包裹体中CO2固相熔化温度为-58.1~-58.0℃,激光拉曼探针分析证实CO2相中还存在N2;CO2(-N2)相的均一温度(ThCO2)为9.8~18%,相应的CO2(-N2)相流体密度为0.739—0.784g/cm^3。加热时石盐熔化温度(Ta)为201~428℃,液-气均一温度(Th)从184到≥450℃,相应的含水相盐度为31.12%-≥53%NaCl。黝帘石和石英中V型包裹体Tc接近-21℃,Tmi分别为-4.5~-19.0℃和-3.2~-18.4℃,相应的盐度分别为7.17%~≥20.68%NaCl和5.26%~21.26%NaCl equiv.不等。高压脉体中存在丰富的流体包裹体证明这些脉体是在有自由流体相的条件下形成的。包裹体的产状和结构关系表明,原生Ⅰ型和Ⅱ型包裹体是在蓝晶石、褐帘石和黝帘石生长期间捕获的,流体可能来自于大陆板块深俯冲期间含水矿物的脱水反应。在超高压条件下,这种流体属于含水硅酸盐熔体一含水流体体系,含有大量溶质和微量元素。流体组成与岩石(矿物)类型有关,反映矿物结晶时与周围流体介质构成了局部的缓冲体系,并从周围流体介质中获取了所需要的组分,即产生榴辉岩相脉体的流体是就地来源的。由于超高压峰期变质后,苏鲁地体经历了快速折返和抬升,超高压条件下捕获的流体包裹体都经受了部分爆裂一再平衡,流体包裹体的密度大大降低;同时,流体包裹体有可能与主矿物腔壁相互作用,引起流体成分改变。  相似文献   

5.
吴敏  许成  王林均  宋文磊 《矿物学报》2011,31(3):478-484
庙垭碳酸岩位于东秦岭武当山隆起的西南缘,呈岩株状产出,主要由方解石组成,富含稀土矿物,是我国大型轻稀土矿床。该区全岩的C.O同位素数据δ18O=11%o~12.49%o,δ13c=-3.79%。~5.68%0,落在了初始火成碳酸岩的范围之外,表明可能受到高温分离作用的影响。流体包裹体相态较单一,主要由气液两相包裹体和气液三相包裹体组成,均一温度120~400℃,为中低温,盐度为3.89%o一10.48%o为中低盐度,这与典型的碳酸岩中流体包裹体具有相似的特征。通过与牦牛坪典型的岩浆热液脉型REE矿床在C—O同位素、包裹体及微量元素的对比研究,发现两者的成因机制并不相同,庙垭稀土矿床是典型的岩浆型,缺少萤石等热液矿脉,大量矿物的分离结晶,特别是方解石的堆积结晶作用,导致其方解石具有相对较低的均一温度和盐度,这也使碳酸岩岩浆更富集REE,有利于REE成矿。  相似文献   

6.
阿尔泰铁木尔特铅锌矿床的碳质流体组合及其地质意义   总被引:10,自引:4,他引:6  
铁木尔特铅锌矿是阿尔泰克兰盆地内最主要的VMS型矿床。矿床受控于阿巴宫-库尔提断裂,铅锌矿体分布于该断裂NE逆冲盘的下泥盆统康布铁堡组地层绿泥石英片岩、大理岩或层状矽卡岩中。矿体形态多呈透镜状、似层状,并整合产于变质岩系中,发育多含矿化层。金属矿物有方铅矿、闪锌矿、黄铜矿、黄铁矿和磁黄铁矿等。铁木尔特铅锌矿床晚期发育多金属硫化物石英脉,至少可识别出3个流体包裹体组合(FIA)。FIO为高盐度流体包裹体组合,主要为含子矿物的多相包裹体(L-V-S型),部分为气液两相包裹体(L-V型),局限于单个石英颗粒内,包裹体呈无序分布,或呈孤立的单个包裹体分布,包裹体的最终均一温度322—422.5℃。F11为次生的CO2-H2O流体包裹体组合,主要由单相(LCO2)和两相(LCO2-LH2O)的富CO2包裹体组成,呈线性分布,穿透石英颗粒边界,明显属于次生包裹体范畴。FI2为碳质(CO2-CH4)流体包裹体组合,广泛发育,包裹体主要由单相(LCO2、LCO2-CH4或LCO2-N2)、少量两相(LCO2-LH2O)富CO2包裹体组成,大小5μm-20μm,成群定向分布,穿透石英颗粒边界并切断FI1,是晚于FI1的次生包裹体组合,反映晚期较大的构造一流体活动。对FI2的详细研究表明,LCO2型包裹体的TmCO2=-63.3~-57.7℃,ThCO2=-27.5~+29.7℃;LCO2-CH4型或LCO2-N2型包裹体的TmCO2=-80.5~-5.5℃,LhCO2=-56.0~-25.0℃;LCO2-LH2O型包裹体CO2相的ThCO2=-66.9--0.9℃,ThCO2=-13.3~+2.3℃,包裹体的最终均一温度Th,total=243.1—361.1℃。铁木尔特次生碳质流体组合,萨热阔布金矿主成矿阶段、赛都-多拉纳含金剪切带中早期透镜状石英脉碳质流体组合,以及阿舍勒等矿床的次生碳质流体组合,都具有相似的流体性质,均为高密度的CO2-CH4-N2流体,其来源与石炭-二叠造山作用主期的区域动力热流变质作用有关。  相似文献   

7.
浙江八面山萤石矿床流体包裹体地球化学研究   总被引:2,自引:1,他引:1  
八面山萤石矿床流体包裹体可分为三大类型:Ⅰ气液包裹体,Ⅱ气体包裹体,Ⅲ含子矿物的多相包裹体;矿床成矿温度变化不大,主要集中在120~240°C之间。细粒条带状萤石矿石包裹体温度变化在115~250℃之间;巨晶块状萤石矿石和石英脉型萤石矿石包裹体温度集中在135~170℃之间。萤石矿床流体包裹体以低盐度成矿流体为主。成矿过程中起作用的成矿流体为KCl-H2O体系和CO2-CaF2-H2O体系,成矿溶液的离子类型属K+-Ca2+-HCO--F-型,KCl-H2O体系反映岩浆期后热液作用的结果,而CO2-CaF2-H2O体系可能反映了寒武纪矿源层成矿体系。通过包裹体研究,认为八面山萤石矿床是受地层-岩体-层间断裂共同控制"三位一体"的热液成因矿床。  相似文献   

8.
内蒙古鸡冠山斑岩钼矿床成矿时代和成矿流体研究   总被引:19,自引:6,他引:13  
内蒙古鸡冠山钼矿床是西拉沐伦钼成矿带上的典型斑岩矿床。矿床产于火山侵入杂岩中,矿化类型以细脉浸染状矿化为主。对矿床5件辉钼矿样品进行了铼-锇同位素分析,获得了151.1±1.3Ma的等时线年龄,表明成矿作用发生在晚侏罗世。成矿作用可划分为三个阶段:早阶段为石英-黄铁矿阶段,发育乳白色石英和粗粒浸染状黄铁矿;中阶段包括早期石英-多金属硫化物亚阶段和晚期石英-萤石-金属硫化物亚阶段;晚阶段为石英-碳酸盐细脉,穿切早、中阶段脉体和矿物组合。鸡冠山钼矿床流体包裹体岩相学研究表明,与成矿有关的包裹体主要有六种类型:富液相、富气相、含子晶多相、含CO2三相、纯CO2及纯液相包裹体。其中,早阶段以富气和富CO2包裹体为主,中阶段多种包裹体共存,晚阶段则主要为富液包裹体。冷热台显微测温和激光拉曼显微探针(LRM)成分分析结果表明,早阶段石英中原生包裹体的均一温度480℃,盐度最高66.75%NaCleqv,包裹体气相成分富含水和CO2,液相成分则以水为主,子晶矿物有石盐、黄铜矿以及指示氧化条件的赤铁矿等,同时也说明成矿流体是富含成矿金属元素的。中阶段早期石英中的流体包裹体均一温度为320~480℃,晚期石英和萤石中的流体包裹体的均一温度为180~320℃。中阶段流体盐度介于4.65%~56.76%NaCleqv。中阶段包裹体含石盐、方解石、黄铜矿、赤铁矿等子矿物,富气相、富液相与含子晶多相包裹体共存,且具有相近的均一温度,而盐度相差悬殊,指示流体发生了沸腾。晚阶段流体的温度降低至100~180℃,盐度则低于10.86%NaCleqv,流体包裹体成分主要为水。鸡冠山钼矿成矿流体演化从早至晚为:从早阶段高温、高盐度、高氧逸度、富CO2、富成矿物质以岩浆热液为主成矿流体,演化至晚期低温、低盐度、无子晶、贫CO2、以大气降水为主的流体。沸腾作用是鸡冠山钼矿形成的重要机制。  相似文献   

9.
河南汤家坪钼矿床流体成矿作用研究   总被引:11,自引:1,他引:10  
汤家坪大型斑岩型钼矿床位于大别造山带。对流体包裹体的岩相学、显微测温及激光拉曼显微探针分析表明,汤家坪钼矿床的流体包裹体可划分为富(含)CO2包裹体、水溶液包裹体和含子晶包裹体3类;均~温度集中在126,7-472.1℃,盐度集中在(0.18-14.21)wt%和(33.10~54.37)wt%.密度为O.38~1.21g/cm^3;子矿物含石盐及金属硫化物等。从矿体中心向外围.流体包裹体的温度、盐度有逐渐变小的趋势;从成矿早阶段到晚阶段.由高盐度低密度岩浆流体逐渐变为低盐度低密度流体,压力逐渐变小,深度变浅。辉钥矿的Re-Os模式年龄集巾在113~118Ma.表明成矿略晚于母岩岩体的成岩时代.其成岩成矿的构造背景为华北与扬子板块碰撞造山晚期的伸展构造体制。  相似文献   

10.
辽宁肖家营子矽卡岩型钼(铁)矿床高盐度流体特征及演化   总被引:2,自引:1,他引:1  
肖家营子矿床是一个与中-基性侵入岩有关的矽卡岩型钼(铁)矿床,矿体主要赋存于矽卡岩体中。流体包裹体研究表明,辉钼矿化阶段以含子矿物包裹体和气液两相包裹体为主,含子矿物包裹体通过子矿物最终消失而均一,均一温度为203-440℃,盐度(NaCleq)为32.0%~52.0%,气液两相包裹体通过气泡消失而均一,均一温度为146~340℃,盐度(NaCleq)为4.3%-18.4%;石榴石矽卡岩阶段和磁铁矿化阶段主要为含子矿物包裹体,含子矿物包裹体通过气泡消失而均一,包裹体均一温度分别为505~560℃和435-541%,盐度(NaCleq)分别为43.4%-50.0%和44.9%~56.9%。流体包裹体特征和氢氧同位素分析表明,肖家营子矿床含矿流体由含一定金属成矿元素的高温、高盐度的岩浆热液和低温、低盐度的地层水或大气水组成。成矿早期为含一定金属成矿元素的高温、高盐度流体,这类流体是在降压、降温的过程中由岩浆热液演化而成;辉钼矿阶段流体为中温、高盐度流体和中.低温、低盐度的混合流体。含矿流体在演化的过程中,高温、高盐度流体由于压力和密度的转化对磁铁矿沉淀富集具有重要影响;中温、高盐度与低盐度流体的混合有利于辉钼矿富集成矿。  相似文献   

11.
萤石经常以脉石矿物存在于各类金属矿床中,但以矿石矿物与金属矿物共存较为少见。布拖小洞子铅锌矿体和萤石矿体是赋存在震旦系灯影组不同部位的典型矿床,受四开-交际河断裂的次级断层带控制,是该区较为特殊,研究程度较低的一类矿床。其中萤石矿床产于与黑色燧石条带白云岩相关的断裂构造,矿石矿物以萤石为主。本文通过对震旦系灯影组下部萤石矿床开展稀土元素地球化学研究,结果表明轻稀土元素富集,重稀土元素略亏损,LREE/HREE介于0.96~1.61,(La/Yb)_N为1.19~3.23,稀土元素配分图表现出略微右倾的特征,具Eu正异常和Ce负异常特征。Tb/Ca-Tb/La、Y/Ho-La/Ho及La/Yb-∑REE等图解表明小洞子萤石矿床主要为同一体系不同阶段的热液产物,破碎带充填交代型矿床成因,其成矿物质来源与灯影组地层和峨眉山玄武岩热液有关。  相似文献   

12.
Abundant fluid-melt inclusions are found in the aegirine-augite-barite pegmatite and carbonatite veins in the Mianning REE deposit,Sichuan,They were trapped in early stage fluorite and quartz from a salt-melt system at temperatures higher than 5000℃,Meanwhile,fluid inclusions are also present in alrge amounts in bastnaesite.Homogenized between 150 and 270℃,these inclusions are thought to be representative of the physico-chemical conditions of REE mineralization.These results show that the Mianning REE deposit is of typical hydrothermal origin developed from a salt-melt system.  相似文献   

13.
The Bamianshan fluorite deposit is a super-large one recently discovered in Zhejiang Province of China. This paper presents an analysis of its geological background, orebody and ore characteristics, petrochemical characteristics of host rocks, rare earth elements (REE) of rocks and ores, fluid inclusions in fluorite and Sm-Nd isotopic features in an effort to study its sedimentary mineralization. The result shows that the super-large Bamianshan fluorite deposit is of hydrothermal sedimentation genesis, deformed by the later hydrothermal fluid. Integrated with host rocks and orebody characteristics, it is inferred that the deposit originates from the Cambrian sedimentary rocks. And the later magmatic activities deformed some orebodies in different degrees, forming steeply dipping vein orebodies in the tectonic belts regionally.  相似文献   

14.
The giant Bayan Obo REE–Nb–Fe deposit consists of replacement bodies hosted in dolomite marble made up of magnetite, REE fluorocarbonates, fluorite, aegirine, amphibole, calcite and barite. Two or three phase CO2-rich, three phase hypersaline liquid–vapor–solid, and two phase liquid-rich inclusions have been recognized in mineralized fluorite and quartz samples. Microthermometry measurements indicate that the carbonic phase in CO2-rich inclusions is nearly pure CO2. Fluids involving in REE–Nb–Fe mineralization at Bayan Obo might be mainly of H2O–CO2–NaCl–(F–REE) system. Coexistences of brine inclusions and CO2-rich inclusions with similar homogenization temperatures give evidence that immiscibility happened during REE mineralization. An unmixing of an original H2O–CO2–NaCl fluid probably derived from carbonatitic magma. The presence of REE-carbonates as an abundant solid in fluid inclusions shows that the original ore-forming fluids are very rich in REE, and therefore, have the potential to produce economic REE ores at Bayan Obo.  相似文献   

15.
微山稀土矿位于华北克拉通东南缘的鲁西地块,为与碱性岩相关的伟晶岩型稀土矿床.根据单颗粒云母Rb-Sr定年,其形成于119.5 Ma,属于华北克拉通早白垩世大规模成矿事件的一部分.稀土矿物氟碳铈矿和独居石的激光Nd同位素研究表明,稀土矿的成矿物质与其围岩碱性岩一样,来源于富集地幔.对稀土矿脉中的石英、萤石和重晶石的流体包...  相似文献   

16.
The recently discovered Xiaobeigou fluorite deposit is situated in the southern part of the Southern Great Xing'an Range metallogenic belt. Fluorite‐bearing veins are rather common over the whole area. So far, 11 mineralized veins have been delineated at the Xiaobeigou deposit. Orebodies of the deposit are mainly hosted in Permian and Jurassic volcano‐sedimentary rocks. The orebodies in this mining district exhibit a well‐developed vertical zonation: from top to bottom, the orebodies can be divided into upper, central, and lower zones. The central zone is the most important part for mining operations, and it shows lateral zonation of fluorite mineralization. Rare earth element (REE) contents of the investigated samples are relatively low (less than 30.2 ppm). Furthermore, the REE contents of the fluorite grains from early to late ore stages exhibit a decreasing trend. All the fluorite samples show no or slightly positive Eu anomalies. Three types of fluid inclusions (FIs) are distinguished in the quartz and fluorite samples, including pure‐liquid single‐phase (PL‐type), liquid‐rich two‐phase (L‐Type), and vapor‐rich two‐phase (V‐type) FIs. The FIs hosted in early‐stage quartz were homogenized at 159.5–260.7°C (mainly 160–240°C); their salinities range from 0.18 to 1.22 wt.% NaCl eqv. The FIs hosted in early‐stage fluorite yield slightly lower homogenization temperatures of 144.4–266.8°C (peaking at 140–220°C), which correspond to salinities of 0.18–0.88 wt.% NaCl eqv. Homogenization temperatures and salinities for the late stage are 132.5–245.8°C (mainly 160–180°C) and 0.18–1.40 wt.% NaCl eqv., respectively. Laser Raman spectroscopy of FIs shows that both the vapor and liquid compositions of the inclusions are dominated by H2O. The H–O isotopic compositions at Xiaobeigou suggest that the ore‐forming fluids are predominantly of meteoric water origin. The Xiaobeigou deposit can be classified as a typical low‐temperature hydrothermal vein‐type fluorite deposit. Combined with regional data, we infer that the fluorite mineralization occurred during the Late Mesozoic in an extensional setting.  相似文献   

17.
湘南界牌岭矿床不仅是南岭地区发育的一个晚白垩世超大型锡多金属矿床,同时也是该区乃至中国重要的萤石产地,锡多金属矿及萤石的找矿勘查均具有重要前景.通过野外地质调查与岩石学研究,文章识别出多种类型的锡多金属与萤石矿化,并针对不同类型萤石开展原位LA-ICP-MS微量元素分析,研究表明:①矿体分为锡多金属矿体与萤石矿体2类,...  相似文献   

18.
Special methodology was used to study the distribution of REE and some other elements in zoned fluorites from the different deposits of Eastern Transbaikalia. Fluorites from the uranium and polymetallic ore fields sharply differ in their REE distribution pattern and the composition of fluid inclusions, which reflects the geochemical specifics and indicates the possible sources of parental solutions. A gradual change in REE distribution patterns established in the successive growth zones of fluorites clearly coincides with the gradual decrease of temperature and mineralization of fluid inclusions. It is suggested that a change in the REE distribution pattern was provoked by the crystallochemical differentiation related to the formation of nano-sized mineral admixtures of REE phosphates and/or fluorcarbonates, which possess an ability to the selective accumulation of different REE groups. It was found that the zoned fluorites from the Streltsovka and Garsonui deposits show an opposite trends in the change of REE pattern with zonation. With a general decrease in total REE contents, fluorite from the Streltsovka deposit shows a change from positive parabolic to subchondritic pattern, while that from the Garsonui deposit, varies from the negative via subchondritic to the positive patterns.  相似文献   

19.
论四川冕宁稀土矿床的成因   总被引:13,自引:5,他引:13  
牛贺才  林传仙 《矿床地质》1994,13(4):345-353
本文从实际出发,以寻求路网的满意养护对策,基于柔性中面网的灰色本质,为此,推导了预测路况PCI的多点激励有后效模型GM,并提出了一个灰色发展系数指标[a],它可从发展机制上保证对策满意性。而后,从满意对策的特点出发,建立了确定路网满意养护对策的灰色非线性优化模型,并给出了简化迭代算法。应用示例表明,该文方法确定的养护对策,不仅满意性得到了初步保证,而且使用效益也有较大程度的提高。  相似文献   

20.
Fluorite is one of the main gangue minerals in the Maoniuping REE deposit,Sichuan Province,China.Fluorite with different colors occurs not only within various orebodies,but also in wallrocks of the orefield.Based on REE geochemistry,fluorite in the orefield can be classified as the LREE-rich,LREE-flat and LREE-depleted types.The three types of fluorite formed at different stages from the same hydrothermal fluid source,with the LREE-rich fluorite forming at the relatively early stage,the LREE-flat fluorite in the middle,and the LREE-depleted fluorite at the latest stage.Various lines of evidence demonstrate that the variation of the REE contents of fluorite shows no relation to the color.The mineralization of the Maoniuping REE deposit is associated spatially and temporally with carbonatite-syenite magmatism and the ore-forming fluids are mainly derived from carbonatite and syenite melts.  相似文献   

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