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1.
杨宗文  刘灵 《贵州地质》2014,31(2):105-108,146
对贵州黔东镇远金堡铅锌矿床碳—氧、硫同位素及流体包裹体温度、盐度地球化学特征研究,方解石和白云石碳同位素在-5.7‰-6.9‰,落在典型的火成碳酸岩区域(-5‰-7‰);氧同位素在11.2‰12.2‰之间,略高于火成碳酸岩。闪锌矿硫同位素分布集中,在11.5‰14.2‰之间,结合该区域的碳同位素,暗示成矿物质来自于深部地幔或岩浆作用。流体包裹体均一温度在106 238℃之间,冰点温度在-1.8-24℃之间,对应的盐度为2.926.1 wt%NaCl eq.,判断该矿床成矿流体属中低温、中高盐度的成矿流体。从闪锌矿流体包裹体均一温度-盐度变化趋势分析,成矿温度及盐度范围变化较大,成矿流体经历了不混溶过程,可能是岩浆热液在降温减压的过程中发生不混溶现象而形成的。结合区域地质条件及矿床地质特征分析研究,认为镇远金堡铅锌矿床成矿热液来源及其可能与岩浆热液有关。  相似文献   

2.
辽宁白云金矿床稳定同位素地球化学特征及矿床成因   总被引:1,自引:0,他引:1  
白云金矿床是辽东地区的一个大型金矿床,其成矿物质来源及矿床成因一直存在争议。本文系统地研究了白云金矿床的氢、氧、硫和碳同位素地球化学特征。研究结果显示:成矿流体中δ~(18)OV-SMOW值变化范围为13.5‰15.9‰,δD_(V-SMOW)为-107‰-83‰,表明成矿流体以岩浆水为主;矿石中黄铁矿的δ~(34)S_(V-CDT)为-8.3‰2.9‰,以富轻硫和贫重硫为特征,与辽河群围岩中黄铁矿的硫同位素组成(δ~(34)S_(V-CDT)为7.0‰18.7‰)有明显差异;矿石中方解石的碳同位素δ~(13)C_(V-PDB)为-2.2‰-0.4‰,类似于火成碳酸岩或地幔包体来源的碳同位素特征,也与辽河群大理岩的碳同位素组成明显不同。成矿元素特征对比也显示,成矿物质来源与辽河群没有必然联系。综合矿床地质特征和地球化学特征,认为白云金矿床是与深部岩浆流体活动有关的岩浆热液型金矿床。  相似文献   

3.
湖南常宁康家湾铅锌矿床同位素地球化学研究   总被引:2,自引:0,他引:2  
在详细的野外地质工作基础上,本文通过矿石硫、铅同位素,含矿石英的氢、氧同位素,以及含矿方解石的碳、氧同位素组成等综合研究,探讨康家湾铅锌矿床成矿物质来源和形成机制。结果显示矿石的δ34SVCDT介于-2.71‰~-0.90‰之间,均值为-1.42‰,表明矿石中的硫主要来自深部岩浆,可能受到地壳物质混染。矿石铅同位素206Pb/204Pb介于18.227~18.573之间,均值为18.485;207Pb/204Pb介于15.661~15.695之间,均值为15.682;208Pb/204Pb介于38.673~38.964之间,均值为38.820;铅同位素组成比较均一,具有放射铅的特征,表明成矿物质主要来源地壳,混有少量地幔物质。含矿石英中的δDSMOW介于-68.00‰~﹣60.00‰之间,均值为-64.00‰;δ18OH2O介于-7.25‰~-5.17‰之间,均值为-6.23‰;氢、氧同位素组成研究显示,成矿流体早期以岩浆水为主,后期混有大气降水。含矿方解石中的δC VPDB介于-0.50‰~0.30‰之间,均值为0‰;δ18OSMOW介于14.10‰~16.80‰之间,均值为14.40‰;含矿方解石中的碳、氧同位素与地层灰岩中的碳、氧同位素值大致相近,表明矿石中碳主要来源于晚古生代地层中的灰岩。以上研究表明,康家湾铅锌矿床的成矿物质主要来自地壳,混有少量地幔物质,混合作用可能是矿床形成的主要机制。  相似文献   

4.
对湖北省庙垭铌-稀土矿床火成碳酸岩全岩进行了碳-氧同位素分析结果显示,庙垭碳酸岩δ13C值为-5.84‰~-3.46‰,与正常地幔和初始火成碳酸岩值基本一致,δ18O值为11.3‰~13.4‰,明显高于正常地幔和初始碳酸岩值,与富CO2-H2O流体交代后的碳酸盐岩的C-O同位素结果相似。结合矿物学、岩石学和流体包裹体观察和研究结果,初步判断庙垭碳酸岩可能经历了后期热液蚀变作用改造过程。应用水-岩交换模型计算进一步获得热液蚀变温度为约400~600°C,水/岩比为10~200。通过与区域上杀熊洞碱性-碳酸岩杂岩体和内蒙古白云鄂博Nb-Fe-REE矿床中碳酸岩的C-O同位素组成进行对比,初步认为后期热液流体交代蚀变作用过程对与火成碳酸岩相关的超大型Nb-REE矿床形成可能具有重要意义。  相似文献   

5.
湖南祁东清水塘铅锌矿床成矿物质来源同位素示踪   总被引:3,自引:0,他引:3       下载免费PDF全文
清水塘铅锌矿床位于湖南省祁东县北东部,是一个中型矿床。在详细的野外地质调查基础上,本文通过矿石硫、铅同位素,含矿石英氢、氧同位素和含矿方解石碳、氧同位素等综合研究,探讨清水塘铅锌矿床成矿物质来源和成因。硫同位素研究结果表明,清水塘铅锌矿床中黄铁矿、方铅矿和闪锌矿的硫同位素δ~(34)S介于-7.41‰~2.91‰之间,重晶石的硫同位素δ~(34)S介于11.49‰~12.34‰之间,表明矿石中的硫主要来源于深源岩浆,并受到上部地壳物质的混染。黄铁矿、方铅矿和闪锌矿的Pb同位素~(206)Pb/~(204)Pb介于17.810~18.710之间,~(207)Pb/~(204)Pb介于15.497~15.726之间,~(208)Pb/~(204)Pb介于37.858~38.834之间;其中闪锌矿变化范围略偏大,表明矿石中的铅主要来源于地壳,可能混有少量地幔物质。含矿石英的氢、氧同位素δD_(SMOW)介于-87.4‰~-79.3‰之间,δ~(18)O_(H_2O)介于-8.10‰~0.63‰之间,表明成矿流体以岩浆水为主,晚期有大气降水的混入。含矿方解石的碳、氧同位素δ~(13)C_(VPDB)介于-5.3‰~-4.6‰之间,δ~(18)O_(SMOW)介于12.30‰~13.48‰之间;与地层灰岩的δ~(13)C_(VPDB)(0.9‰~2.6‰),δ~(18)O_(SMOW)(21.86‰~23.39‰)不一致;说明成矿流体中的碳主要来自深源岩浆。以上研究表明,清水塘铅锌矿床的成矿物质主要来自地壳熔融形成的岩浆,混合作用是成矿的主要机制。  相似文献   

6.
杨宗文  刘灵 《云南地质》2014,(4):503-507
通过对镇远地区金堡、都坪、小溪铅锌矿床开展碳、氧、硫同位素地球化学特征研究.结果显示:都坪和小溪矿床成矿物质来自于海相蒸发岩或沉积地层,金堡矿床成矿物质很有可能来自于地壳深部的岩浆源.结合区域构造及矿床特征分析,可以认为镇远地区铅锌矿床可分为与海相沉积地层及深部岩浆作用有关的两种成因类型的矿床.  相似文献   

7.
安徽铜陵铜官山铜矿田是中国长江中、下游铁、铜、硫、金成矿带中著名的矽卡岩型矿床。马山金硫矿床位于安徽铜陵铜官山矿田,侵入岩体为天鹅抱蛋山石英闪长岩。文章通过对马山金硫矿床的氢、氧、碳、硫、硅同位素组成和稀土元素地球化学特征研究,探讨成矿溶液中水、碳、硅和硫的来源以及成矿溶液的演化问题。研究表明,稀土元素球粒陨石标准化组成模式为右倾型,矿石的稀土配分曲线类似于天鹅抱蛋山石英闪长岩,认为形成该矿床的热液流体主要来源于闪长质熔体。马山金硫矿床矿石中石英的δ18OH2OV-SMOW变化范围为6.9‰~10.7‰,平均为8.7‰,与岩体的δ18OV-SMOW值(9.3‰~11.1‰,平均为10.0‰)比较接近,而矿石中石英的δDV-SMOW变化范围为-69‰~-62‰,表明矿石成矿流体主要来自岩浆。矿石中方解石的碳、氧同位素组成与矿区围岩的碳、氧同位素组成明显不同,其δ13CV-PDB、δ18OV-SMOW值分别为-5.2‰~-3.6‰和12.2‰~12.9‰,与岩浆作用形成的CO2的碳、氧同位素组成一致,表明矿石中方解石的碳、氧来源于岩浆作用。硅和硫具深部岩浆或岩浆热液水来源的特点。  相似文献   

8.
河南罗山金城金矿床成矿物质来源探讨   总被引:1,自引:0,他引:1  
河南省金城金矿床位于桐柏—商城韧性剪切带南部、大别山西北侧。矿床赋存于中元古界苏家河群浒湾岩组变质岩中。在详细分析金城金矿床地质特征的基础上,研究共生花岗斑岩脉的微量元素、稀土元素地球化学特征,共生石英的氧同位素、共生石英流体包裹体中CO2的碳同位素及共生黄铁矿的硫、铅同位素组成特征,并与老湾金矿和燕山晚期灵山花岗岩体对比。研究发现,本区花岗斑岩脉的稀土配分曲线和微量元素蛛网图与灵山花岗岩体几乎完全重叠,稀土元素和微量元素特征参数较为一致,结合区域资料推断本区与矿体共生的花岗斑岩脉来源于燕山晚期岩浆活动。黄铁矿δ34S值变化范围为-6.9‰~5.5‰,均值为2.3‰,与区域上地层和岩浆岩硫同位素对比,认为金城矿床载金黄铁矿的硫主要来源于浒湾岩组围岩。载金黄铁矿铅同位素和浒湾岩组地层铅同位素范围相当,均有下地壳铅源的特征,结合硫同位素分析,认为金城金矿床载金黄铁矿的铅主要来源于浒湾岩组围岩。δ18OSMOW变化范围为5.5‰~11.4‰,极差为5.9‰,均值为8.4‰,具有岩浆热液石英的特征;δ18CPDB变化范围为-6.3‰~-2.8‰,极差为3.5‰,均值为-4.4‰,具有岩浆源或深部源碳(-7‰)和沉积碳酸盐岩来源碳(0)混合的特征;综合研究表明,本矿床成矿物质主要来源于浒湾岩组含金岩石建造,部分来源于燕山晚期岩浆热液活动。  相似文献   

9.
吉家洼金矿床位于豫西熊耳山金多金属矿集区中西部,矿体产出受断裂构造控制,属构造蚀变岩-石英脉型金矿床。为了查明吉家洼金矿床的成矿物质来源,本次对矿床的碳、氧、硫、铅等同位素进行了系统研究。研究结果表明,吉家洼金矿的δ~(13)C_(V-PDB)介于-10.3‰~-7.7‰之间,δ~(18)O_(V-SMOW)介于14.2‰~17.8‰之间,表明成矿流体中的碳来源于岩浆。硫化物δ~(34)S值介于-20.4‰~-5.4‰,表明硫来源于早白垩世花山花岗岩基,造成硫化物的δ~(34)S值呈现出较大负值的原因可能是在成矿过程中成矿流体物理化学条件的变化引起硫同位素发生分馏所致。铅同位素组成为~(206)Pb/~(204)Pb=17.042~18.149,~(207)Pb/~(204)Pb=15.333~15.575,~(208)Pb/~(204)Pb=37.675~38.868,与由新太古界—古元古界太华群岩石重熔形成的早白垩世花岗岩的铅同位素组成相似,具有壳幔混合源的特点。综合碳、氧、硫、铅等同位素的研究结果认为,吉家洼金矿床的成矿流体来源于岩浆热液,并有大气降水的加入;成矿物质主要来源于早白垩世花岗岩,矿床成因属岩浆期后热液脉状金矿床。  相似文献   

10.
杨宗文  刘灵 《贵州地质》2014,31(4):252-255266
通过对镇远小溪铅锌区域地质、矿床地质特征的分析,开展了矿床碳、氧、硫同位素及包裹体的地球化学研究及成因探讨。脉石矿物白云石的碳同位素为-0.1‰2.1‰,氧同位素为18.3‰19.2‰,闪锌矿的硫同位素为32‰35‰,同位素分析结果主要落在海相沉积碳酸盐区间范围,分析成矿物质可能与海相碳酸盐岩沉积地层有关;闪锌矿的流体包裹体的均一温度为156 180℃,盐度为9 22.8 wt%Na Cl eq,显示该矿床的成矿流体为低温、中高盐度特征。  相似文献   

11.
填海工程使滨海地区的地下水物理化学条件改变,导致该区域地下水中重金属浓度升高。本文以深港西部通道填海区为例,采用实验室模拟填海条件的办法,初步探讨了影响填海区地下水重金属迁移的关键因素。模拟实验结果表明,填海区地下水中钨元素含量升高与地下水淡化、淤泥氧化过程以及填料风化有关;铜元素含量升高则与淤泥氧化过程以及填料风化有关;钒元素含量升高与地下水淡化和淤泥氧化过程有关,而其他元素含量升高则主要与填料风化释放有关。  相似文献   

12.
新疆维吾尔自治区阿图什市木吉地区邻近帕米尔,是印度板块与欧亚板块碰撞挤压应力最集中的地区,地层变质和变形强烈,研究基础薄弱。木吉群由变质砂岩、板岩、千枚岩、石英岩、钙质石英岩、变粒岩、二云石英片岩、大理岩等组成,一直未发现任何化石。最近,笔者在木吉乡的喀拉足克沟和阿拉木陶沟的粉砂岩、钙质粉砂岩中发现了一些植物管胞片和孢粉化石:Gran-ulatisporites sp.,Cycloranisporites sp.,Verrucosisporites sp.,Pityosporites sp.,Punetatosporites sp.,Leiotriletes sp.,Apicu-latisporites sp.,Platysaccus sp.,Cycodopites sp.等。从地层接触关系和孢粉化石的整体面貌看,木吉地区含上述孢粉化石的木吉群的时代可能为泥盆纪—石炭纪。  相似文献   

13.
西藏措勤县雄玛地区林子宗群帕那组火山岩大地构造位置位于冈底斯—念青唐古拉山板片,地层分区上属于冈底斯地层区、隆格尔—南木林地层分区。岩性主要为一套以浅灰色、灰绿色流纹质凝灰岩为主,夹浅黄绿色、灰绿色流纹岩及英安岩、火山角砾岩、杂砂岩及砾岩的岩石组合。之下与永珠组和拉嘎组呈喷发不整合接触。岩石地球化学特征表明该火山岩系属过铝质的高钾钙碱性—亚碱性系列,稀土元素地球化学中轻稀土元素明显富集,微量元素中大离子亲石元素(Rb、K、Th、U、LREE)富集,高场强元素(Nb、P、Ti)亏损。以上特征说明雄玛地区林子宗群帕那组火山岩岩浆源于陆壳重熔,属与俯冲造山有关的陆相火山岩,同时又兼具陆—陆碰撞的特点。推测帕那组火山岩形成于新特提斯洋壳俯冲基本结束,印度板块与欧亚板块碰撞开始的构造背景下,年龄大概在38Ma左右,为始新世晚期。  相似文献   

14.
Over the past decade researchers working on the rocks of the Beaufort Group in the main Karoo Basin of South Africa have vastly increased our understanding of this important Permo-Triassic sequence. Many new fossil forms have been discovered, allowing for breakthroughs into the biodiversity, biogeography and biostratigraphy of the group. Taxonomic and phylogenetic advances are many and varied, and cover most of the vertebrate taxa, but with emphasis placed on the temnospondyl amphibians, archosauriforms and non-mammalian synapsids, in particular the anomodontia. Biostratigraphic breakthroughs have centered on the Middle Permian Eodicynodon and Tapinocephalus assemblage zones, the Late Permian Dicynodon Assemblage Zone, and the Triassic Lystrosaurus and Cynognathus assemblage zones. Correlation of these biozones with better dated sequences in Europe, Russia and China has allowed for many chronostratigraphic refinements, which are in turn vital for sequence stratigraphical analysis of the basin fill. Based on fossil data, both the lower (Ecca–Beaufort) and upper (Beaufort–Molteno) contacts of the group have been proved to be highly diachronous. The refined chronostratigraphic framework has also allowed for a better analysis of the basin evolution through time, particularly in terms of the correlation of external stimuli that affect basin sedimentation patterns.  相似文献   

15.
藏北羌塘丁固—加措地区康托组的时代   总被引:2,自引:0,他引:2  
自西藏区域地质调查大队创建康托组以来,康托组岩石地层单位广泛应用于羌塘地区,普遍认为其时代为新近纪.笔者于丁固-加措地区的康托组地层中采获古近纪轮藻化石Obtusocharat sp.,O.lanpingenis,Gyrogona qinajiangica和部分孢粉化石,并在康托组底部安山岩中获K-Ar年龄65.1~66.5Ma.上述轮藻组合与同位素年龄指示的地层时代为古新世-始新世,据此将测区康托组的时代确定为古近纪.由于测区康托组之上被唢纳湖组或鱼鳞山组角度不整合覆盖,因此康托组时代的确定不仅进一步完善了测区新生代地层系统,还指示测区在康托组与唢纳湖组或鱼鳞山组之间发生了一次强烈的构造运动.  相似文献   

16.
Summary The Middle Proterozoic Faraday Metagabbro in the Bancroft area of eastern Ontario has been subjected to syn-orogenic textural and mineralogical modifications resulting in the formation of scapolite-bearing metagabbro and gabbroic blastomylonite assemblages. The elemental flux during cryptic and overt scapolitization has been calculated usingGresens general metasomatic equation which applies corrections for density and volume changes during alteration. Metasomatic variation diagrams using analyses from two primary gabbros and six altered rocks indicate that Na, K, Cl, Li, Rb, and Ba are the principal introduced elements and that Cu and S were removed. These changes are very similar to those involved in the formation of metasomatic nepheline-bearing rocks elsewhere in the district and, furthermore, nephelinization and scapolitization were broadly coincident in time and space. It is concluded that the nephelin- and scapolite-bearing rocks and their cryptic facies are different manifestations of the same metasomatic agent and that the source of the fluids was a possible horizon of evaporitic sediments within the country rocks in which the gabbro was emplaced.
Metasomatose im Faraday-Metagabbro, Bancroft, Ontario, Kanada
Zusammenfassung Der Mittel-proterozoische Faraday-Gabbro in der Umgebung von Bancroft (Ost-Ontario) erfuhr synorogene Veränderungen in Textur und Mineralogie, die zur Bildung skapolit-haltiger Metagabbros und gabbroider Blastomylonite führten. Die während kryptischer und offener Skapolitisierung stattfindende Elementtransport wurde mit Hilfe der vonGresens entwickelten generellen metasomatischen Gleichung errechnet; Korrekturen für Varänderungen in spezifischer Dichte und Volumen wurden angebracht. Metasomatische Variationsdiagramme basierend auf Analysen an zwei primären Gabbros und sechs modifizierten Gesteinen zeigen, daß Na, K, Cl, Li, Rb und Ba die hauptsächlich zugeführten Elemente darstellen, und daß Cu-und S-Konzentrationen abgebaut wurden. Diese Veränderungen sind vergleichbar mit solchen, wie sie bei der Bildung metasomatischer, Nephelin-haltiger Gesteine erkannt wurden. Außerdem fallen Nephelinisierung und Skapolitisierung zeitlich und räumlich in etwa zusammen. Daraus kann geschlossen werden, daß Nephelin- und Skapolit-haltige Gesteine und deren kryptische Phasen durch den gleichen metasomatischen Prozeß entstanden sind, und daß die Herkunft der umwandelnden Lösungen möglicherweise in evaporitischen Sedimenten zu suchen ist, in die der Gabbro intrudierte.


With 3 Figures  相似文献   

17.
Remote sensing data and GIS techniques have been used to compute runoff and soil erosion in the catchment area along the NH-1A between Udhampur and Kud covering an area of approximately 181 km2. Different thematic layers, for example lithology, a landuse and landcover map, geomorphology, a slope map, and a soil-texture map, were generated from these input data. By use of the US Soil Conservation Service curve number method, estimated runoff potential was classified into five levels—very low, low, moderate, high, and very high. Data integration was performed by use of the weighting rating technique, a conventional qualitative method, to give a runoff potential index value. The runoff potential index values were used to delineate the runoff potential zones, namely low, moderate, high, and very high. Annual spatial soil loss estimation was computed using the Morgan–Morgan–Finney mathematical model in conjunction with remote sensing data and GIS techniques. Greater soil erosion was found to occur in the northwestern part of the catchment area. When average soil loss from the catchment area was calculated it was found that a maximum average soil loss of more than 20 t ha−1 occurred in 31 km2 of the catchment area.  相似文献   

18.
Study of the cross-stratification and other sedimentary structures in the Lower Greensand of the Weald, England, and Bas-Boulonnais, France, indicates that the sediments were deposited by the lateral migration of sand waves in a neritic sea. Comparison of the Lower Greensand sea with the modern North Sea was attempted. If those sediments were deposited as a result of tidal current similar to the present-day North Sea then the Lower Greensand shoreline could be deduced as running northwest-southeast, indication that the western part of the London Platform was submerged.  相似文献   

19.
In the upper greenschist to granulite grade rocks of the Willyama Supergroup at Broken Hill, Australia, earlier recognition of metamorphosed graded bedding in siliciclastic metasedimentary rocks led to interpretations of these rocks as deep-water turbidites. However, graded beds can also be deposited in shelfal environments below storm wave base. This study identified other tempestite features including wave oscillation ripples, hummocky cross-stratification and swaley cross-stratification indicating that deposition took place above the wave base of the larger storms.

Albitised metasedimentary rocks of the upper Thackaringa Group show structures such as swaley cross-stratification typical of shallow-water conditions above fair-weather wave base. Deposition of the Broken Hill Group commenced with muddy Allendale Metasediments conformable on the Thackaringa Group. The Ettlewood Calc-Silicate Member, originally a dolomitic, siliceous sediment, is interpreted as coastal sabkha indicating onset of a marine transgression. The Parnell Gneiss represents a volcanic or volcaniclastic interruption, heralding gradually increasing input of sand in the Freyers Metasediments reaching a maximum in middle Freyers Metasediments, followed by an abrupt reversion to mud, still influenced by wave action. An open marine shelf is interpreted, possibly 30 m deep (no more than 100 m) in the final stage of a developing rift. The Broken Hill Group terminated with the massive Hores Gneiss volcanic unit.

Sedimentation of the siliciclastic Sundown Group took place in similar conditions, commencing with a muddy interval overlying the Hores Gneiss. The shallowing produced by ~90 m thickness of volcanic/volcaniclastic Hores Gneiss was compensated by subsidence.

Paragon Group deposition commenced with substantial black mud, resulting from isolation from the sand supply and probably isolation from the sea. A fresh connection to the sea led first to the deposition of dolomitic carbonate (King Gunnia Calc-Silicate Member), then to deposition of parallel-laminated fine sand below wave base (upper Cartwrights Creek Metasediments), followed by ripple cross-laminated sand above wave base (Bijerkerno Metasediments). The Dalnit Bore Metasediments show abundant very thin graded silt–mud units possibly deposited below storm wave base, and thicker units of stacked wave oscillation ripples deposited above the wave base of larger storms.

The Broken Hill orebody is hosted by altered Broken Hill Group metasedimentary rocks deposited at water depths of ~30 m. Unless the ore fluid temperature was less than 150°C, it is likely that the orebody formed below the seafloor: at such shallow-water depths, the confining pressure would be inadequate to suppress boiling of hotter rising hydrothermal fluids.  相似文献   


20.
The Kaalamo massif is located in the Northern Ladoga region, Karelia, on the extension of the Kotalahti Belt of Ni-bearing ultramafic intrusions in Finland. The massif, 1.89 Ga in age, is differentiated from pyroxenite to diorite. Nickel–copper sulfide mineralization with platinoids is related to the pyroxenite phase. The ore consists of two mineral types: (i) pentlandite–chalcopyrite–pyrrhotite and (ii) chalcopyrite, both enriched in PGE. Pd and Pt bismuthotellurides, as well as Pd and Pt tellurobismuthides, are represented by the following mineral species: kotulskite, sobolevskite, merenskyite, michenerite, moncheite, keithconnite, telluropalladinite; Pt and Pd sulfides comprise vysotskite, cooperite, braggite, palladium pentlandite, and some other rare phases. High-palladium minerals are contained in pentlandite–chalcopyrite–pyrrhotite ore. Native gold intergrown with kotulskite commonly contains microinclusions (1–3 μm) of Pd stannides: paolovite and atokite. Ore with 20–60% copper sulfides (0.2–6.0% Cu) contains 5.1–6.6 gpt PGE and up to 0.13–2.3 gpt Au. Pd minerals, arsenides and sulfoarsenides of Pt, Rh, Ir, Os, and Ru are identified as well. These are sperrylite, ruthenium platarsite, hollingworthite, and irarsite; silvery gold and paolovite have also been noted. All these minerals have been revealed in the massif for the first time. The paper also presents data on the compositions of 25 PGE minerals (PGM) from Kaalamo ores.  相似文献   

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