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1.
安徽铜官山铜-铁-金-硫矿床的地球化学特征   总被引:3,自引:0,他引:3       下载免费PDF全文
铜官山铜-铁-金-硫矿床发育上部层状矿体和下部网脉状矿体,地球化学特征呈现出明显的垂向变化和二元结构性.从下部网脉状矿化岩石到上部层状矿石,CaO、MgO、Fe2O3、FeO等含量和δ18O值总体逐渐增高,SiO2、Al2O3,、TiO2、K2O、Na2O、REE等含量和流体包裹体温度(341.9 ℃→178.0 ℃)及δ34S 值总体逐渐降低.黄铁矿δ34S值为( 2.1~ 7.9) ‰,上部层状块状矿石中方解石和石英δ18O平均值为 13.9‰,下部网脉状矿化岩(矿)石中脉石英或全岩δ18O平均值为 11.7‰.  相似文献   

2.
水竹岭铜-铁-金-硫矿床发育上部层状矿体和下部脉状矿体。上部层状矿石重晶石δ34S值为+19.9‰。上部层状矿石黄铁矿δ34S值为+0.9~+5.8‰,下部脉状矿石黄铁矿δ34S值为+3.2~+6.4‰。下部脉状矿体中方解石的δ18O值为+13.3‰,δ13C值为1.2‰,上部层状矿石白云石的δ18O值为+14.1‰,δ13C值为2.2‰。下部脉状矿石和矿化岩石中黄铁矿的206Pb/204Pb、207Pb/204Pb、208Pb/204Pb平均值分别为18.2241、15.5245和38.2289;上部层状矿石中黄铁矿的206Pb/204Pb、207Pb/204Pb、208Pb/204Pb平均值分别为18.0692、15.5020和38.1232。从下部脉状矿石到上部层状矿石,黄铁矿的δ34S值、206Pb/204Pb、207Pb/204Pb、208Pb/204Pb平均值逐渐降低,δ18O值和δ13C值等逐渐增高。地质和同位素地球化学特征反映水竹岭铜-铁-金-硫矿床为海底热水喷流沉积成因,揭示了块状硫化物矿床的二元结构性。  相似文献   

3.
峙门口铜—铁—金—硫矿床发育上部层状矿体和下部脉状矿体。上部层状矿石重晶石的δ~(34)S值为+14.10‰~+18.90‰。上部层状矿石黄铁矿和方铅矿的δ~(34)S值为+3.50‰~+5.84‰,下部脉状矿石黄铁矿的δ~(34)S值为+4.80‰~+6.80‰。下部脉状矿石中脉石英的δ~(18)O值为+14.3‰~+1 8.5‰,δ~(30)Si值为-0.3%0~-0.2‰。下部脉状矿石黄铁矿Re/Os比值为78.342~175.540,上(顶)部层状矿石中黄铁矿Re/Os比值为62.298~169.545。从下部脉状矿石到上部层状矿石,δ~(34)S值、Re/Os比值和流体包裹体温度249 ℃→97 ℃逐渐降低,~(206)Pb/~(204)Pb、~(207)Pb/~(204)Pb、~(208)Pb/~(204)Pb平均值和Os_总、Re、~(187)Re等含量逐渐增高。矿石黄铁矿Re-Os同位素等时线年龄303±33 Ma。地质地球化学特征反映峙门口铜—铁—金—硫矿床为海底热水喷流沉积成因。  相似文献   

4.
安徽冬瓜山铜矿床的地球化学特征   总被引:7,自引:2,他引:5  
冬瓜山铜矿床发育上部层状矿体和下部浸染状—脉状矿体,地球化学特征呈现出明显的垂向变化和二元结构性。从下部浸染状—脉状矿化岩石到上部层状块状矿石,CaO、MgO、Fe2O3、FeO、Cu、Au、Zn、Ag、As等含量和δ18O、δ12C值总体逐渐增高,SiO2、Al2O3、TiO2、K2O、Na2O、Pb、Hg、Sb、Mo、REE等含量和流体包裹体温度379·3℃→135·0℃及δ34S值总体逐渐降低。硬石膏δ34S值为 14·8‰~ 20·5‰,黄铁矿δ34S值为 2·7‰~ 7·9‰,含矿硅质岩δ18O为 12·0‰,含铜矿石中菱铁矿δ18O平均值为 13·97‰。地质地球化学特征反映冬瓜山铜矿床为海底热水喷流沉积成因。  相似文献   

5.
安徽新桥块状硫化物矿床地球化学特征   总被引:6,自引:0,他引:6  
新桥块状硫化物矿床发育双层结构,地球化学特征也呈现出明显的“二元性”和垂向变化。下部网脉状蚀变矿化岩石SiO2、Al2O3、K2O和Na2O等含量较高,上部层状块状矿石和含矿岩石Fe2O3、FeO、CaO、MgO及SiO2等明显富集。稀土含量相对较低,上部层状块状矿层平均值为10.73×10-6,下部通道相蚀变矿化岩石平均值为126.1×10-6。重晶石δ34S值为+16.2‰,硬石膏δ34S值为+11.2‰,黄铁矿δ34S值为+1.5‰~+4.7‰。含矿硅质岩δ18O为+12.0‰~+13.9‰,下部通道相含黄铁矿石英脉δ18O值为+13.3‰~+18.6‰。自下部网脉状矿化到上部层状块状矿层,从粗晶细晶到变胶状胶状黄铁矿,δ34S、δ18O和δ30Si值逐渐降低,206Pb/204Pb、207Pb/204Pb和208Pb/204Pb平均值逐渐增高。  相似文献   

6.
桦树沟铜矿床位于北祁连加里东造山带西段。铜矿体赋存于镜铁山BIF型铁矿床桦树沟矿区FeⅤ矿体下盘,矿体受断裂构造控制,矿化岩石主要为铁碧玉岩、石英绢云母千枚岩和碳质千枚岩,围岩蚀变可见硅化、碳酸盐化、绢云母化和绿泥石化。文章对块状铜矿石(富铜矿体)和脉状铜矿石(千枚岩型铜矿体)进行了野外地质特征、矿物学和硫同位素对比研究。富铜矿体与地层产状基本一致,块状矿石矿物组合为黄铜矿+少量黄铁矿+石英+碳酸盐矿物+重晶石,黄铜矿低S、Cu,高Fe。脉状矿石主要表现为石英-碳酸盐-硫化物脉沿千枚理或裂隙产出,矿石矿物组合为黄铜矿+黄铁矿+黝铜矿+镜铁矿+石英+碳酸盐矿物+绢云母+绿泥石,黄铜矿低S高Fe。块状铜矿石中黄铜矿的δ34S变化范围为15.6‰~17.4‰,暗示硫主要来自同期海水。脉状矿石中硫化物的δ34S值低于块状矿石中黄铜矿的δ34S值,黄铜矿、黄铁矿的δ34S值变化范围分别为13.2‰~16.2‰和9.3‰~13.4‰,暗示硫可能主要来自受还原的硫化物和硫酸盐矿物。以上研究表明块状铜矿石和脉状铜矿石可能为不同热事件的产物,结合前人研究成果,笔者认为桦树沟铜矿床为海底喷流沉积叠加后期热液改造成因。绿泥石温度计指示后期热液成矿温度为222℃左右。  相似文献   

7.
石炭系黑色岩系中金矿田的黄铁矿硫同位素研究表明,在该处发育的交代矿柱中,不同构造-形态的矿石类型呈带状分布。已查明,δ~(34)S呈规律性变化:从上部层位脉状金-石英型矿石的正值(+2—+11.59‰)、往中部层位网脉状金-石英型矿石接近于零值(+1.96—+1.9‰)、至下部层位浸染状金-硫化物型矿石为负值(-6.04—-13.74‰)。同位素分析可以确定矿田不同构造断块中的断面水平以及确定构造垂直位移范围。  相似文献   

8.
老厂Pb-Zn多金属块状硫化物矿床是西南三江特提斯造山带内目前唯一报导的与OIB火山岩有关的VMS矿床,关于其成矿流体性质和成矿物质来源,以及由此约束的成矿作用过程依然值得深入研究。本文基于对该矿床Ⅰ号矿体群块状矿体和网脉状矿化系统的野外观察和矿相学研究基础上,选取部分块状矿石中的方解石和网脉状矿化中的石英开展流体包裹体热力学研究,并对各类矿石的硫化物进行硫同位素分析。结果显示,两类矿石的原生流体包裹体均属于NaCl-H_2O体系,块状矿石成矿流体温度110~158℃,盐度13.2%~18.7%NaCleqv;网脉状矿化成矿流体温度186~371℃,集中在246~339℃,盐度3.6%~19.8%NaCleqv,集中在6.9%~16.8%NaCleqv。从下部网脉状矿化到上部块状矿体的成矿温度降低,反映较高温度的成矿热液沿喷流通道上升至海底面与海水作用并降温。该过程中流体盐度并未发生明显下降,推测成矿前海底可能已存在较高盐度的卤水。各类矿石硫化物δ~(34)S值基本一致,均在-0.69‰~1.32‰,组成稳定(极差仅2.01‰),呈集中于零值的分布特征。共生硫化物对中δ~(34)S黄铁矿闪锌矿方铅矿,说明硫同位素基本达到分馏平衡。硫化物集中零值的硫同位素组成,既不同于由海水硫酸盐无机还原造成的明显正δ~(34)S值,也不同于有机(细菌)还原造成的明显负δ~(34)S值,因此提出硫来源于矿体下盘基性火山岩,通过海水循环淋滤含矿岩系或者直接源于浅部岩浆房的释气作用。综合前人C-H-O-Pb同位素组成研究结果,认为老厂VMS型矿床形成过程中发生过岩浆释气作用,为成矿提供了硫和金属成矿物质、以及初始成矿流体。  相似文献   

9.
位于大兴安岭中段的内蒙古赤峰市白音诺尔铅锌矿产于二叠系黄岗梁组地层中,矿体分布受褶皱构造控制。矿体主要由层纹状、浸染状、块状构造矿石构成。矿区内矿化类型以层纹状、层状矿化为主,晚期为脉状矿化。矿床矿石硫化物硫同位素分析表明,早期矿化与晚期矿化具有不同的硫同位素特征:早期矿化硫化物的δ34S值(平均-4.31‰)明显小于晚期矿化硫化物的δ34S值(平均值为-1.83‰)。综合研究表明,白音诺尔铅锌矿是沉积喷流型铅锌矿床,受到燕山期岩浆热液活动叠加,主成矿期发生于二叠纪。  相似文献   

10.
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   

11.
内蒙古甲生盘铅锌硫矿床硫同位素特征及其成因意义   总被引:4,自引:2,他引:2  
甲生盘铅锌硫矿床位于华北陆块北缘西段狼山—渣尔泰山成矿带,赋存于中元古代渣尔泰山群地层中,具有明显的层控特征并受同生断裂影响,区内矿石层纹状、角砾状和浸染状构造发育。矿石硫化物硫同位素测试分析表明:早期沉积硫化物3δ4S值变化范围在17.0‰~31.5‰之间,均值为23.9‰;后期穿插脉状硫化物3δ4S值变化范围在13.1‰~31.1‰之间,均值为24.1‰;二者3δ4S值相近,均属海水硫酸盐来源,后期热液改造作用微弱,火山活动对该矿区成矿作用直接贡献不明显;围岩3δ4S值变化范围在7.7‰~15.1‰之间,均值为10.2‰,明显小于矿石硫化物的3δ4S值,亦属海相沉积范畴;矿体北翼发育海西期花岗岩,但其对矿体的改造作用有限。  相似文献   

12.
沉积岩型层状铜矿床(SSC型)的成因争论聚焦在成矿作用主要集中在沉积成岩期并可能叠加有后期成矿作用,还是形成于成岩后盆地闭合过程和造山作用有关.产于扬子板块西缘的东川式铜矿是中国SSC型矿床的典型代表,这些矿床赋存在晚古元古界东川群岩石中,主要呈层状矿体产出,但也存在少量脉状矿体.文章选择东川铜矿田内因民、汤丹和滥泥坪...  相似文献   

13.
通过对云南澜沧老厂深部斑岩钼(铜)矿的S、Pb、H、O同位素地球化学特征的综合分析研究,探讨了隐伏斑岩型矿床的成矿物质来源.研究表明:斑岩钼(铜)矿体主要硫化物的δ34S在3.99‰~+1.8‰之间,平均值为- 1.32‰,分布范围较窄,指示硫具有壳-幔混合源特征;隐伏的成矿花岗斑岩和矿石中主要硫化物的铅同位素组成的变化范围和平均值均具明显的相似性,206pb/204pb比值变化于17.863~ 18.701之间(平均值为18.411),207pb/204 Pb值变化于15.448~15.733之间(平均值为15.628),208 Pb/204 pb值变化于37.753~39.104之间(平均值为38.615),指示矿区斑岩型矿体中的原始铅具有壳-幔混合源的特点,深部地幔也是重要源区之一;斑岩型钼(铜)矿体脉石矿物石英的δ18QH2O在-9.51‰~+9.41‰之间,δD在- 93‰~- 46.2‰之间,指示斑岩矿体成矿流体介质水既有岩浆水又有大气降水,其中,在远离主岩体的外接触带大气降水(雨水)参与成矿的程度相对较高.  相似文献   

14.
河南瓦房铅锌矿床位于华北克拉通南缘熊耳山—外方山矿集区,矿体赋存于熊耳群鸡蛋坪组上段(Chj3)的地层中,矿石矿物有黄铁矿、方铅矿、闪锌矿和少量黄铜矿、赤铁矿、褐铁矿。该矿床热液成矿过程划分为3个阶段:石英-黄铁矿阶段(早阶段),石英-多金属阶段(中阶段),石英-碳酸盐脉阶段(晚阶段)。矿石中石英和方解石中捕获的原生包裹体类型有NaCl-H2O型两相、NaCl-CO2-H2O型三相和纯气相。气液两相包裹体3个阶段均一温度范围分别为150~260、150~230和110~160℃,3个阶段盐度(w(NaCl))平均值分别为12.22%、8.55%和6.29%。中阶段方解石的δ13 CVPDB平均值为-7.34‰,δ18 OSMOM平均值为15.56‰;晚阶段方解石的δ13 CVPDB平均值为-3.05‰,δ18 OSMOW平均值为2.21‰。早阶段硫化物的δ34S值为2.747‰~7.737‰,中阶段硫化物的δ34S值为-11.187‰~7.286‰。认为早中阶段成矿流体为变质流体,与中生代扬子克拉通和华北克拉通发生陆陆碰撞诱发中—新元古代时期的俯冲板片变质脱水有关,成矿晚阶段流体有大气降水的混入。硫同位素表明硫来源于中—新元古代的沉积地层,是海相硫酸盐的还原产物,在晚阶段,由于大气降水的混入导致δ34S出现负值。瓦房铅锌矿床地质特征、成矿流体特征与造山型矿床相似,因此,瓦房铅锌矿床属于造山型铅锌矿床。  相似文献   

15.
The S-isotope composition (δ34SCDT) of 213 samples of sulfides, sulfates and native sulfur from the pyrite mineralizations of southern Tuscany and associated country rocks were determined. The sulfur isotopic composition of pyrite is quite homogeneous and similar for all studied ore bodies, with an average δ34S value near +9,5‰. Pyrite disseminated within the Filladi di Boccheggiano formation, and thought to be authigenic, shows a much larger range of δ34S values (-13.1 to +14.5‰). The isotopic compositions of other sulfides associated with pyrite in the deposits show that isotopic equilibrium among sulfides was approached on a regional scale, but seldom fully attained. Isotopic data suggest that sedimentary marine sulfate was the ultimate source of sulfur in ores. Sulfates (mostly anhydrite) from the sulfate-carbonate lenses associated with both the Filladi di Boccheggiano and the Calcare Cavernoso formations also have similar and homogeneous compositions (average δ34S=+15–16‰). Coexisting sulfates and sulfides are not in isotopic equilibrium. In the light of the isotopic data, among the many proposed genetic models for the largest stratabound pyrite bodies the two following alternatives appear the most likely: 1) in agreement with recently suggested hypotheses, the ore bodies are older than the emplacement of the Mio-Pliocenic granitoids in the area, and are probably hydrothermal-sedimentary in origin, coeval with associated country rocks; 2) the ore bodies were formed as a consequence of bacterial reduction of anhydrite in low-temperature convection systems related to the early stages of the Mio-Pliocenic thermal anomaly. In both cases, the emplacement of the Mio-Pliocenic granitoids caused metamorphism and remobilization of the pre-existing ores, producing smaller discordant mineralized bodies.  相似文献   

16.
呈层状、似层状产于震旦系灯影组角砾状白云岩层间构造带中的马元铅锌矿床是近年来在扬子陆块北缘铅锌找矿的新突破。文章通过碳、氧、氢、硫、铅和锶同位素地球化学特征研究,探讨了成矿流体和成矿金属来源。研究结果表明:矿石中热液脉石矿物的δ13CPDB为-4.24‰~0.93‰,δ18OSMOW为15.92‰~23.24‰,表明成矿流体中的CO2为震旦系碳酸盐岩的溶解成因。矿石中硫化物的δ34S变化于12.94‰~19.4‰之间;硫酸盐矿物的δ34S为32.2‰~33.48‰,表明还原硫主要来自地层中海相硫酸盐的还原。矿石硫化物的铅同位素组成均一,206Pb/204Pb、207Pb/204Pb和208Pb/204Pb分别为17.62~18.02、15.49~15.63和37.57~38.35,成矿金属可能主要来源于震旦系—志留系。脉石矿物石英流体包裹体的δDFI为-92‰和-113‰,如果取成矿温度200℃,根据δ18O石英值计算的相应流体包裹体的δ18O水为6.03‰~12.73‰,推测成矿流体可能起源于大气降水为主的盆地卤水,或为其他来源的流体与有机质反应形成。成矿流体87Sr/86Sr为0.70967~0.71146,高于赋矿围岩震旦系灯影组白云岩锶同位素比值(0.70890~0.70945),表明成矿流体流经了古生代地层(及基底),并与其中具有高锶同位素比值的碎屑岩、页岩和泥岩等进行了水岩反应及同位素交换。  相似文献   

17.
The sequence of orebody formation at the Talgan massive sulfide deposit; morphology of sulfide orebodies; mineralogy, texture, and structure of ore; chemical composition of minerals; and fluid inclusions and relationships between stable isotopes (S, C, O) in sulfides from ores and carbonate rocks are discussed. The deposit is localized in the Uzel’ga ore field of the northern Magnitogorsk Megazone. The sulfide ore is hosted in the upper felsic sequence of the Middle Devonian Karamalytash Formation, composed of basalt, basaltic andesite, and rhyodacite. Orebodies are irregular lenses lying conformably with host rocks. Pyrite, chalcopyrite, sphalerite, and fahlore are the major ore minerals; galena, bornite, and hematite are of subordinate abundance. Sulfide mineralization bears attributes of deposition under subseafloor conditions. The carbonate and rhyolite interlayers at the roofs of orebodies and the supraore limestone sequence served as screens. Zoning typical of massive sulfide deposits was not established. The study of fluid inclusions has shown that the temperature of the hydrothermal solution varied from 375 to 110°C. δ34S‰ ranges from ?2.4 to +3.2‰ in pyrite, from ?1.2 to +2.8‰ in chalcopyrite, and from ?3.5 to +3.0‰ in sphalerite (CDT). These parameters correspond to an isotopic composition of magmatic sulfur without a notable percentage of sulfate sulfur. δ13C and δ18O of carbonates vary from ?18.1 to +5.9‰ (PDB) and from +13.7 to +27.8‰ (SMOW), respectively. The carbon and oxygen isotopic compositions of carbonates from ores and host rocks markedly deviate from the field of marine carbonates; a deep source of carbon is suggested. The results obtained show that the main mass of polysulfide ore at the Talgan deposit was formed beneath the floor of a paleoocean. The ore-forming system was short-lived and its functioning did not give rise to the formation of zonal orebodies. Magmatic fluid played the leading role in mineral formation.  相似文献   

18.
The Yinchanggou-Qiluogou Pb-Zn deposit,located in the western Yangtze Block,southwest China,is hosted by the Upper Sinian Dengying Formation dolostone.Ore bodies occur in the Qiluogou anticline and the NS-and NNW-trending faults.Sulfide ores mainly consist of sphalerite,pyrite,galena and calcite,with subordinate dolomite and quartz.Seventeen ore bodies have been discovered to date and they have a combined 1.0 million tons of sulfide ores with average grades of 2.27wt%Zn and 6.89wt%Pb.The δD_(H2O-SMOW) and δ~(18)O_(H2O-SMOW) values of fluid inclusions in quartz and calcite samples range from-68.9‰ to-48.7‰ and 7.3‰ to 15.9‰,respectively,suggesting that H_2O in the hydrothermal fluids sourced from metamorphic water.Calcite samples have δ~(13)C_(PDB) values ranging from-6.2‰ to-4.1‰ and δ~(18)O_(SMOW) values ranging from 15.1‰ to 17.4‰,indicating C and O in the hydrothermal fluids likely derived from a mixed source of metamorphic fluids and the host carbonates.The δ~(34)S_(CDT) values of sulfide minerals range from 5.5‰ to 20.3‰,suggesting that thermal chemical reduction of sulfate minerals in evaporates were the most probable source of S in the hydrothermal fluids.The ~(206)Pb/~(204)Pb,~(207)Pb/~(204)Pb and ~(208)Pb/~(204)Pb ratios of sulfide minerals fall in the range of 18.11 to 18.40,15.66 to 15.76 and 38.25 to 38.88,respectively.The Pb isotopic data of the studied deposit plot near the upper crust Pb evolution curve and overlap with the age-corrected Proterozoic basement rocks and the Upper Sinian Dengying Formation hosting dolostone.This indicates that the Pb originated from a mixed source of the basement metamorphic rocks and the ore-hosting carbonate rocks.The ore geology and C-H-O-S-Pb isotopic data suggest that the YinchanggouQiluogou deposit is an unusual carbonate-hosted,strata-bound and epigenetic deposit that derived ore-forming materials from a mixed source of the underlying Porterozoic basements and the Sinian hosting carbonates.  相似文献   

19.
银洞坡金矿位于桐柏县围山城金银矿带的中部,为一超大型金矿床,伴生银、铅锌。对金矿石中主要成矿阶段流体包裹体进行了详细的岩相学、显微测温及激光拉曼光谱成分研究,结果表明:金矿石中发育气液两相包裹体、富气相包裹体和含CO2三相包裹体,流体成分为H2O NaCl CO2体系,含少量N2、CH4、H2S和H2。流体不混溶是导致矿质沉淀的主要因素。3类包裹体的均一温度为1692~3992 ℃,流体盐度为18%~122%,其中含CO2三相包裹体的盐度明显小于气液两相包裹体的盐度。利用不混溶体系估算得到包裹体的捕获压力为62~1263 MPa,成矿深度为52 km左右。矿石中黄铁矿的δ34S为16‰~33‰,围岩中纹层状黄铁矿的δ34S为33‰~62‰,矿石中的δ34S小于围岩中δ34S值,表明成矿物质中的硫可能来源于地幔硫和围岩硫的混合。  相似文献   

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