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1.
四平山金矿床位于我国黑龙江省东部的完达山陆缘增生带内,矿体主要赋存于下白垩统四平山组,表现出明显的两阶段成矿作用特征。为进一步确定四平山金矿床的成矿作用及矿床成因,本次研究对其成矿地质特征、地球化学、成矿年代学及成矿物质来源进行了分析。地球化学分析结果表明:成矿花岗斑岩为具有高SiO2(70.07%~72.93%)、(K2O+Na2O)(7.17%~8.42%)质量分数和右倾“海鸥型”稀土配分型式特征的A型花岗岩;含矿层状硅质岩中,Al/(Fe+Al+Mn)<0.32、Fe/Ti >20、(Fe+Mn)/Ti>20,并具有较高Fe2O3(0.18%~1.79%)、FeO(0.17%~0.96%)、MnO(0.03%~0.12%)、TiO2(0.03%~0.04%)、Al2O3(0.30%~2.79%)和(K2O+Na2O)(0.07%~1.76%)质量分数,指示四平山金矿床形成于活动大陆边缘构造背景下与岩浆活动有关的热水沉积环境。四平山金矿床成矿花岗斑岩锆石U-Pb年龄为(113.5±0.7)Ma。H、O、S同位素分析结果(δD=-182.3‰~-84.0‰、δ18OV-SMOW=6.5‰~14.3‰、δ34S=-12.4‰~29.7‰)显示,成矿流体主要为大气降水,成矿物质具有以地层为主的多来源特征。综上,四平山金矿床为形成于燕山晚期活动大陆边缘构造背景下的热水沉积型矿床,太平洋板块持续俯冲造成了区域上大规模的拆沉作用,导致区域构造背景由挤压向伸展发生转换,此时形成的花岗斑岩岩浆运移至地壳浅部岩浆房加热上覆地层,在地壳浅部形成了温度与压力梯度带,促使地表的大气降水沿裂隙进入地层后形成流体循环系统,并不断萃取地层中的Au元素形成含矿流体。在成矿早阶段,当压力驱动含矿流体喷出地表后与地表水相遇快速冷却,成矿物质快速沉淀,形成含矿层状硅质岩和硅质胶结砾岩,并通过交代下伏流纹斑岩形成层状、似层状矿体;在成矿晚阶段,随着岩浆房提供的热动力减弱,含矿流体滞留在裂隙通道中或穿切进入早期固结的含矿层裂隙中,沉淀形成脉状-网脉状矿体。  相似文献   

2.
Trevor H. Green  John Adam 《Lithos》2002,61(3-4):271-282
The solubility of Ti- and P-rich accessory minerals has been examined as a function of pressure and K2O/Na2O ratio in two series of highly evolved silicate systems. These systems correspond to (a) alkaline, varying from alkaline to peralkaline with increasing K2O/Na2O ratio; and (b) strongly metaluminous (essentially trondhjemitic at the lowest K2O/Na2O ratio) and remaining metaluminous with increasing K2O/Na2O ratio (to 3). The experiments were conducted at a fixed temperature of 1000 °C, with water contents varying from 5 wt.% at low pressure (0.5 GPa), increasing through 5–10 wt.% at 1.5–2.5 GPa to 10 wt.% at 3.5 GPa. Pressure was extended outside the normal crustal range, so that the results may also be applied to derivation of hydrous silicic melts from subducted oceanic crust.

For the alkaline composition series, the TiO2 content of the melt at Ti-rich mineral saturation decreases with increasing pressure but is unchanged with increasing K content (at fixed pressure). The P2O5 content of the alkaline melts at apatite saturation increases with increased pressure at 3.5 GPa only, but decreases with increasing K content (and peralkalinity). For the metaluminous composition series (termed as “trondhjemite-based series” (T series)), the TiO2 content of the melt at Ti-rich mineral saturation decreases with increasing pressure and with increasing K content (at fixed pressure). The P2O5 content of the T series melts at apatite saturation is unchanged with increasing pressure, but decreases with increasing K content. The contrasting results for P and Ti saturation levels, as a function of pressure in both compositions, point to contrasting behaviour of Ti and P in the structure of evolved silicate melts. Ti content at Ti-rich mineral saturation is lower in the alkaline compared with the T series at 0.5 GPa, but is similar at higher pressures, whereas P content at apatite saturation is lower in the T series at all pressures studied. The results have application to A-type granite suites that are alkaline to peralkaline, and to I-type metaluminous suites that frequently exhibit differing K2O/Na2O ratios from one suite to another.  相似文献   


3.
笏山金矿床为陡崖断裂带南段内最大的金矿床,为了揭示其矿床成因,在矿床地质研究的基础上开展了矿体围岩元素地球化学和流体包裹体研究。研究结果表明:笏山金矿床沿NE向断裂发育大规模的热液蚀变带,地表出露的断裂带形成一个庞大的面形蚀变带,矿化较弱,分带不明显,钻孔显示金矿体两侧依次发育黄铁绢英岩、绢英岩化花岗岩蚀变带和二长花岗岩,金矿体主要产于陡崖断裂带下盘黄铁绢英岩蚀变带内。质量平衡计算表明:绢英岩化过程中,主量元素SiO2、Al2O3、FeO、MnO、Na2O、K2O、P2O5和部分稀土元素从二长花岗岩中迁出,而MgO、CaO、Fe2O3,成矿元素Au、Ag,亲硫元素Cu、Pb及亲铁元素V、Cr、Co、Ni迁入二长花岗岩;黄铁绢英岩化过程中,主量元素FeO、Fe2O3、MnO、MgO、CaO,成矿元素Au、Ag,亲硫元素Cu及亲铁元素V、Cr、Co、Ni迁入,SiO2、Al2O3、Na2O、K2O和P2O5迁出。岩相学观察、显微测温以及单个包裹体成分激光拉曼分析提示其流体包裹体类型主要为气液两相包裹体和含CO2三相包裹体,具有低盐度(w(NaCl)为5.33%~13.29%)和中温(260~300℃)CO2-NaCl-H2O体系,在成矿过程中,含矿流体经历了流体不混溶作用。结合矿床地质特征及实验结果分析,确定该矿床为受陡崖断裂带控制的中温蚀变岩型金矿床。  相似文献   

4.
乌日尼图钨钼矿位于内蒙古苏尼特左旗境内,是近几年该区新发现的较大规模的钨钼矿床.钨钼矿体主要产于燕山期花岗岩体的内外接触带附近,以细脉状矿化类型为主.该矿床中的流体包裹体主要发育气液两相、富气相、富液相和纯液相包裹体等类型.包裹体均一温度为130.0~371.7 ℃(峰值为160.0~260.0 ℃),盐度为0.2%~15.9% NaCl eqv(峰值为0.2%~12.5% NaCl eqv),属于中低温、中低盐度钨钼矿床.激光拉曼和群体包裹体成分分析结果表明,流体体系气相成分以H2O、CO2为主,其次为N2、O2以及少量CO、CH4、C2H2、C2H4和C2H6等; 液相成分以Ca2+、Na+、SO42-、Cl-为主,其次为K+、F-、NO3-、Mg2+以及少量Br-和Li+.成矿流体为H2O-NaCl-CO2体系.流体包裹体氢氧同位素分析表明,成矿流体的δ18O的含量范围为-2.11%~-0.11%,δD的含量范围为-85%~-108%,成矿流体为岩浆水与大气降水的混合物.结合矿床地质和成矿流体特征,认为该矿床为与燕山期岩浆活动有关的中低温热液石英脉型钨钼矿床,成矿物质以深源为主.   相似文献   

5.
目前急需分析黔东注溪钒矿形成的环境、成矿的物质来源以及矿化富集规律,指导实际地质勘查工作.系统研究了注溪矿区内中洞、老屋基和坪哨3个典型岩性剖面中黑色岩含矿岩系及矿层的全岩主微量元素组成.结果表明,含矿岩系具有较高的SiO2、MnO、Ce/Ce*和Eu/Eu*值,而矿层则含相对较高的Al2O3、Fe2O3、TiO2、CaO、Na2O、K2O、P2O5、V2O5、REE、As、Cu、Pb、Zn、Mo、Ni、Ti、Cr、Rb、Sr、Th、U和V.含矿岩系与矿层的主微量地球化学特征显示注溪钒矿床的成矿物源具有一定程度陆源物质的输入,且在成矿阶段受到了热水作用及生物作用的影响.另外,由南至北各剖面的热水成矿作用逐渐减弱;含矿岩系及矿层沉积环境均属缺氧环境,其中坪哨剖面的矿层沉积环境的缺氧程度要高于其他剖面.因此,注溪钒矿床钒富集成矿主要受古环境的还原条件和热液活动的影响,其中还原环境对钒元素的富集成矿起主要作用.据此推测坪哨剖面矿层形成时的海水深度应最深,北矿段中洞剖面的最浅;喷流热水带来的V等大量多金属元素在喷口及其附近大规模成矿.   相似文献   

6.
花垣铅锌矿床的成矿流体演化特点和铅锌矿物沉淀机制存有分歧,为了总结矿床成因并建立成矿模式,指导该地区铅锌矿的下一步找矿勘探工作.对闪锌矿、主成矿期方解石和萤石中的流体包裹体进行岩相学观察、显微测温、拉曼光谱分析以及同步辐射X射线荧光微探针分析,结果显示花垣地区铅锌矿床成矿流体温度主要为150~220℃,总盐度一般为13%~23% NaCleqv,多> 15% NaCleqv,密度多 > 1 g/cm3,成矿流体为NaCl-CaCl2-MgCl2-H2O卤水体系.成矿流体均一温度具有由北而南降低的趋势.流体液相组分中主要为Ca2+、Mg2+、Na+、Cl-,具有盆地热卤水体系特点.流体包裹体气相中发育CO2、CH4,方解石、萤石中流体包裹体均有成矿元素Pb、Zn的存在.花垣矿集区成矿流体属于低温度、中-高盐度、中-高密度,成分以钠和钙氯化物为主的含矿热水溶液,流体运移方向为由北向南,流体来源于封层水、大气降水和少量变质水.铅锌矿物的沉淀与热化学硫酸盐还原作用有关.闪锌矿、方铅矿等矿石矿物与方解石、萤石等脉石矿物应属同一富含Pb、Zn、Mn、Fe、As、Cr等成矿元素的成矿流体在同一成矿期次相同条件下沉淀的产物.   相似文献   

7.
江西相山矿田主要铀矿化类型及其地球化学特征对比研究   总被引:1,自引:0,他引:1  
江西相山矿田发现近30个铀矿床,矿化与浅成超浅成侵入岩(次火山岩)关系密切,不管是划归火山岩型还是斑岩型矿床类型,均属于热液型矿床。从热液矿床的成矿构造特点分析,相山矿田铀矿化主要有隐爆碎屑岩型和蚀变岩型两大类,后者主要有水云母化蚀变岩型和钠长石化蚀变岩型。通过收集资料,结合笔者完成的有关课题成果数据,对各铀矿化类型进行了地球化学的对比研究,结果表明:隐爆碎屑岩型矿石品位较高,U含量大多大于1%,SiO2、Na2O含量较低,P2O5含量较高,K2O/Na2O比值平均11.51,主要伴生元素有Hf、Sb、Cu、Pb、Zn、Zr等;水云母化蚀变岩型矿化的K2O/Na2O比值平均4.83,伴生元素有W、Pb、Mo、Th、Sb等;钠长石化蚀变岩型矿化的K2O/Na2O比值平均0.19,U与CaO、P2O5关系密切,伴生元素有Sr、Zr、Hf、Sc、W等。从钠长石化蚀变岩型,到水云母化蚀变岩型,到隐爆碎屑岩型,即随矿化岩石U品位的增高,稀土配分曲线呈现出从右倾向左倾有规律的变化。  相似文献   

8.
草桃背矿床白垩纪橄榄玄粗岩与铀成矿关系   总被引:1,自引:0,他引:1  
赣南会昌断陷盆地沿石城-寻乌深断裂分布一条白垩纪橄榄玄粗岩系列的火山岩带。草桃背大型铀矿床内出露大富足岩体中-粗粒黑云母花岗岩及早白垩世晚期到晚白垩世早期橄榄玄粗岩系列火山岩。大富足花岗岩体岩石w(SiO2)平均为74.67%,碱总量(w(K2O+Na2O))平均为7.99%,w(K2O)>w(Na2O),w(CaO)平均为0.54%,w(Al2O3)>w(CaO+Na2O+K2O),属高钾钙碱性岩石系列。橄榄玄粗系列火山岩岩石w(SiO2)为45.78 %~59.78 %,w(K2O+Na2O)平均为7.37%,K2O/Na2O平均为1.02,w(TiO2)平均为0.86%, 全铁质量分数平均为7.09%,属偏碱性橄榄玄粗质火山岩类。草桃背铀矿床赋矿岩性为橄榄玄粗岩、碎裂花岗岩及隐爆角砾岩。赋存于碎裂花岗岩及隐爆角砾岩中铀矿石化学成分,与围岩花岗岩成分相似;赋存于橄榄玄粗岩中铀矿石,Fe2O3+Fe2O、CaO、MgO不同程度地带出,w(SiO2)明显增高,表明橄榄玄粗岩在成矿过程中,通过输出大量Fe、Mg、Ca等阳离子而促进铀离子从含矿溶液中沉淀。草桃背矿床的铀矿化与充填在草桃背火山口的橄榄玄粗岩关系密切,在时间上相近、在空间上相伴、在成生上相关,受橄榄玄粗岩岩浆系列热动力的影响,铀元素发生活化、转移或物质交换而成矿,成岩成矿时代属早白垩世晚期到晚白垩世早期。从草桃背铀矿床岩石学、地球化学及赋矿特征入手,总结了铀成矿是富铀矿的花岗岩基底、北东向构造及火山作用结合的产物,橄榄玄粗岩提供热源,并指出半岭、上寮、小富足等地段是寻找草桃背式铀矿床的极有利地区。  相似文献   

9.
四川乌斯河铅锌矿床是赋存于震旦系灯影组白云岩中的大型铅锌矿床.本次研究结合最新的野外地质现象发现该矿床除存在前人所强调的沉积成矿作用以外,热液成矿作用非常明显.对该矿床流体包裹体进行细致的岩相学、显微测温和激光拉曼研究,揭示成矿流体特征,并探讨成矿机制.研究结果显示该矿床包裹体类型较为单一,以气液两相为主,均一温度主要集中于120~260 ℃,平均盐度为10.0% NaCl eqv,压力为32~68 MPa,成矿流体为中-低温、中等盐度.激光拉曼测试显示包裹体气相成分含有CH4、H2S、C2H6、C2H2、N2和NH3,为多元共存的流体体系.在热驱动力下(120~260 ℃),流体混合作用提供了物质基础(SO42-)、催化剂(Mg2+)和还原剂(有机质、CH4和H2S)促使硫酸盐热化学还原反应(TSR)启动.TSR反应过程中流体pH发生变化,进一步促进了金属硫化物沉淀.   相似文献   

10.
Peter C. Rickwood 《Lithos》1989,22(4):247-263
Use of some petrologic diagrams applied to analyses of volcanic rocks is unnecessarily difficult due to lack of data for construction of discriminant lines between rock series. Coordinates are provided for sufficient points to enable accurate plotting of the boundary lines within seven diagrams, viz.: (1) TAS - total alkalies (Na2O+K2O) vs. SiO2; (2) K2O vs. SiO2; (3) AFM; (4) Jensen; (5) KTP - K2O---TiO2---P2O5; (6) FMS - (FeO*/MgO) vs. SiO2; and (7) TAKTIP - K2O/(Na2O+K2O) vs. TiO2/P2O5. Different versions of these boundaries are collated to indicate their variable position, and it is demonstrated that inter-laboratory analytical precision suffices to account for almost all of their spread on the TAS and K2O vs. SiO2 diagrams.  相似文献   

11.
罗布泊是世界上最大的单体硫酸盐型液体钾盐矿床,对于其矿床成因一直存在争议.基于大量盐泉、地下潜水及地表水的化学实测数据,从水文化学的角度探讨罗布泊富钾卤水矿床成因.结果表明,矿区富钾卤水钠氯系数为0.76~1.24,钾氯系数为38.58~60.49,主体表现为溶滤型卤水特征,指示有其他来源卤水混合参与成矿;首次在罗布泊...  相似文献   

12.
海沟金矿流体包裹体为3种类型:富CO2三相、气液两相和纯气相。流体盐度集中在7.44%~8.67%NaCleqv,8.54%~8.94%NaCleqv和9.84%~10.87%NaCleqv三个区间;流体密度为0.54~0.88 g/cm3;成矿温度主要集中在298.4℃~313.5℃和258.2℃~264.6℃。研究表明成矿早期阶段流体为低盐度、富CO2的高温流体,且富CO2型和富气相包裹体共存。成矿中晚期阶段流体盐度和温度明显降低,CO2、H2O等气体能够大量逃逸,流体体系由封闭状态转化为较开放状态,大气降水、层间水等大量进入与岩浆流体发生混合,并引起流体内金络合物的溶解度减小而直接导致金和金属矿物的沉淀和富集。成矿压力范围为110~146 MPa,成矿深度为8.7~10.1 km。通过与典型的造山型金矿特征对比,该矿床成因类型为中成造山型金矿,动力学背景为早一中侏罗世华北板块与西伯利亚板块碰撞的持续汇聚力和古太平洋板块俯冲欧亚大陆的作用力引起的远程效应联合作用的结果。  相似文献   

13.
位于新疆东天山阿齐山-雅满苏成矿带东段的铜鱼梁矿床是近年来新发现的铜矿点,但带内热液型铜矿的研究和找矿勘查程度不高,通过SHRIMP锆石U-Pb定年获得矿区与成矿密切相关的闪长玢岩年龄为317.7±2.4 Ma,表明矿区在晚石炭世可能存在重要的岩浆-成矿事件.通过岩石地球化学特征研究可得铜鱼梁闪长玢岩SiO2含量为56.71%~66.03%,Mg#=49.75~55.29,Na2O+K2O=5.15%~6.40%,Na2O/K2O=4.49~53.62,铝指数A/CNK=0.9~1.1,为富钠、准铝质-过铝质、低钾(拉斑)系列岩石.稀土总量较低(39.56×10-6~60.60×10-6),具有轻稀土富集、重稀土亏损的右倾配分模式,富集Ba、U、K、Sr等大离子亲石元素(LILE),亏损Nb、Ta、Ti高场强元素(HFSE),显示弧岩浆的特征.闪长玢岩(87Sr/86Sr)i变化于0.704 030~0.704 413之间,εNd(t)=1.02~6.42,具有低的锶同位素初始值和正的εNd(t)值,表明其岩浆源区主要来源于亏损地幔源区.综合已有资料,认为研究区闪长玢岩形成于岛弧的构造背景,为石炭世古康古尔洋壳向南俯冲的流体交代地幔后的产物.至晚石炭世早期,古康古尔洋俯冲交代,在上升中富含铜金属元素的岩浆流体当运移到浅部时,次火山岩通过交代岩体本身或火山地层形成了铜鱼梁铜矿床.   相似文献   

14.
Within the framework of Pitzer's specific interaction model, interaction parameters for aqueous silica in concentrated electrolyte solutions have been derived from Marshall and co-authors amorphous silica solubility measurements. The values, at 25°C, of the Pitzer interaction parameter (λSiO2(aq)−i) determined in this study are the following: 0.092 (i = Na+), 0.032 (K+), 0.165 (Li+), 0.292 (Ca2+, Mg2+), −0.139 (SO42−), and −0.009 (NO3). A set of polynomial equations has been derived which can be used to calculate λSiO2(aq)−i for these ions at any temperature up to 250°C. A linear relationship between the aqueous silica-ion interaction parameters (λSiO2(aq)−i) and the surface electrostatic field (Zi/re,i) of ions was obtained. This empirical equation can be used to estimate, in first approximation, λSiO2(aq)−i if no measurements are available. From this parameterisation, the calculated activity coefficient of aqueous silica is 2.52 at 25°C and 1.45 at 250°C in 5 m NaCl solution. At lower concentrations, e.g. 2 m NaCl, the activity coefficient of silica is 1.45 at 25°C and 1.2 at 250°C. Hence, in practice, it is necessary to take into account the activity coefficient of aqueous silica (λSiO2(aq)≠1) in hydrothermal solutions and basinal brines where the ionic strength exceeds 1. A comparison of measured [Marshall, W.L., Chen, C.-T.A., 1982. Amorphous silica solubilities, V. Prediction of solubility behaviour in aqueous mixed electrolyte solutions to 300°C. Geochim. Cosmochim. Acta 46, 289–291.] and computed amorphous silica solubility, using this parameterisation, shows a good agreement. Because the effect of individual ions on silicate and silica polymorph solubilities are additive, the present study has permitted to derive Pitzer interaction parameters that allow a precise computation of γSiO2(aq) in the Na---K---Ca---Mg---Cl---SO4---HCO3---SiO2---H2O system, over a large range of salt concentrations and up to temperatures of 250°C.  相似文献   

15.
邵辉  陈觅  纪敏  曾丽平 《地球科学》2020,45(1):118-130
铜绿山矽卡岩型铜铁多金属矿床是长江中下游鄂东南矿集区的一个典型矿床,矿体产于铜绿山岩体与三叠系碳酸盐岩地层的接触带.磁铁矿是铜绿山铜铁矿床中广泛发育的矿石矿物,选取内矽卡岩和外矽卡岩中的热液磁铁矿以及岩体中副矿物磁铁矿为研究对象,对其开展系统的显微结构观察和电子探针分析.热液磁铁矿中普遍发育有钛尖晶石出溶结构和富硅环带结构,且没有明显的后期热液交代改造现象.钛尖晶石出溶结构指示铜绿山矿床的早期热液磁铁矿具有较高的Ti含量,磁铁矿结晶后经历了降温和氧逸度降低过程导致钛尖晶石出溶.热液磁铁矿中还普遍含有较高含量的Si、Al、Cr、V、Mn、Mg、Co和Ni等元素,Si4+、Al3+、Mg2+、Mn2+等以类质同象方式进入磁铁矿晶格;但在不同产状的磁铁矿中,替代强度和机制略有不同,说明流体成分、温度、压力等物理化学条件影响元素替代强度和方式.外矽卡岩中磁铁矿的Al2O3/MgO比值小于4,内矽卡岩中磁铁矿的Al2O3/MgO比值为5~8,而副矿物磁铁矿的Al2O3/MgO比值约为13.岩体副矿物磁铁矿具有最高的V2O3含量(平均值为0.31%),与岩体接触的内矽卡岩中的磁铁矿次之(平均值为0.14%),外矽卡岩中磁铁矿的V2O3含量最低(平均值为0.01%~0.03%).Al2O3/MgO比值和V2O3含量说明磁铁矿生长环境(熔体/热液)、围岩的成分及水-岩反应等对磁铁矿的化学组成均有影响.铜绿山矿床从岩体到内矽卡岩、再到外矽卡岩,磁铁矿的形成温度逐步下降,其成分的变化指示了磁铁矿可以作为矽卡岩矿床成矿过程的重要指示矿物.   相似文献   

16.
对乌努格吐山斑岩型铜钼矿床进行地球化学勘查指标研究,通过探讨47种元素在矿床中的富集、贫化等分布特征,结合蚀变、矿化分带等因素,筛选了斑岩型铜(钼)矿床的地球化学勘查指标。[KK(SiO2)+KK(K2O)]/[KK(Al2O3)+KK(Na2O)+KK(CaO)+KK(Fe2O3)+KK(MgO)]、KK(K2O)/KK(Na2O)、KK(K2O)/KK(Rb)、CaO、MgO、Na2O等指标可以反映矿床的成矿环境,圈定矿床的蚀变范围及蚀变程度等;近矿指标Cu、Mo、Ge、W、Sn、F、Bi、S、Se、Hf等可以反映矿床的矿化程度、矿体产出位置等;远矿指标[KK(Pb).KK(Zn)×1000]/[KK(Cu).KK(Mo)]、[KK(As).KK(Sb).KK(Bi)]/[KK(Cu).KK(Mo)]、[KK(Au).KK(Ag)]/[KK(Cu).KK(Mo)]、As、Au、Ag、Te等可以突出找矿范围和找矿目标。这些指标既为本地区寻找同类型矿床提供了技术支持,也拓宽了其他类型矿床的找矿思路。同时,应用对数累计频率散点图确定指标的异常上(下)限,为实现指标定量化提供了有效范例。  相似文献   

17.
为揭示谦比希铜矿床的成矿流体性质、成矿物质来源及其演化特征,对其矿石和脉石矿物展开了流体包裹体和H-O-S同位素地球化学研究.结果显示,热液型脉状矿化石英流体包裹体均一温度变化于100~350 ℃,盐度变化于11%~19%NaCleqv;δDV-SMOW值为-64.0‰~-52.6‰,δ18OH2O值为1.57‰~2....  相似文献   

18.
Major, trace element, Sr isotopic and mineral chemical data are reported for mafic volcanic rocks (Mg-value 65) from the northern-central sector of the potassic volcanic belt of Central Italy. The rocks investigated range from potassic series (KS) and high-K series (HKS) to lamproitic (LMP) and kamafugitic (KAM) through a transitional series (TRANS), thus covering the entire compositional spectrum of potassic and ultrapotassic magmas. KAM rocks are strongly silica undersaturated and, compared with the other rock series, have low SiO2, Al2O3, Na2O, Sc and V and high CaO, K/Na, (Na + K)/Al. KS and HKS have high Al2O3, CaO and variable enrichment in K2O and incompatible elements. LMP rocks are saturated in silica and have high SiO2, K2O, K2O/Na2, MgO, Ni and Cr and low Al2O3, CaO, Na2O, Sc and V. TRANS rocks display intermediate compositional characteristics between LMP and KS.

All the rocks under study have fractionated hygromagmaphile element patterns with high LIL/HFS element values and negative anomalies of Ti, Ta, Nb and Ba. Negative Sr anomalies are observed in the LMP and TRANS rocks. LIL elements show overall positive correlations with K2O, whereas different trends of Sr and HFSE vs. K2O are defined by LMP-TRANS and KS-HKS-KAM. 87Sr/86Sr range from about 0.710 to 0.716. KS, HKS and KAM rocks have similar 87Sr/86Sr values clustering around 0.710. LMP and TRANS rocks have the highest 87Sr/86Sr values.

Geochemical and isotopic data reported for the most primitive Italian potassic and ultrapotassic rocks support the hypothesis that the interaction between crustal and mantle reservoirs was a main process in the genesis of Italian potassic magmatism. Simple mass balance calculations exclude, however, an important role of crustal assimilation during ascent of subcrustal magmas to the surface and indicate that the sources of Central Italy volcanics underwent contamination with fluids and/or melts released by upper crustal material previously brought into the mantle by subduction processes.

Different trends of incompatible elements vs. K2O observed in the studied rocks suggest distinct metasomatic processes for the sources of the investigated magmas. Liquids derived by bulk melting of pelitic sediments are believed to be the most likely contaminants of the source of LMP rocks. Fluids or melts rich in Ca, Sr and with high LILE/HFSE value and Sr isotopic composition around 0.710 are the most likely contaminant of the source region of KS, HKS and KAM volcanics. Variations in CaO, Na2O and ferromagnesian element abundances and ratios suggest that, in some zones, the mantle source of potassic magmas experienced partial melting with extraction of basaltic liquids prior to metasomatism.  相似文献   


19.
海连富  刘安璐  陶瑞  白金鹤  宋扬 《地球科学》2021,46(12):4274-4290
卫宁北山地区是宁夏境内最有望实现找矿突破的多金属矿成矿区之一,已发现众多Au、Ag、Cu、Pb、Zn、Fe、Co等矿点或矿化点.金场子金矿是该地区已发现的最大的金矿床,矿体主要赋存在前黑山组及中宁组内的层间断裂破碎带中,呈东西向带状分布,产状与地层近乎一致.区域上除少量闪长玢岩脉出露外,岩浆岩不发育.为了探讨金场子金矿成矿流体性质、来源和矿床成因,对研究区流体包裹体和C-H-O同位素进行了研究.金场子金矿床成矿热液期可划分为4个成矿阶段,从早到晚分别是绢云母-黄铁矿-石英阶段(Ⅰ)、黄铁矿-重晶石-石英阶段(Ⅱ)、多金属硫化物-碳酸盐-石英阶段(Ⅲ)和黄铁矿-碳酸盐阶段(Ⅳ),其中Ⅲ阶段为主成矿阶段.不同成矿阶段的流体包裹体有4种类型,分别是水溶液包裹体、纯CO2包裹体、CO2-H2O包裹体和含子晶多相包裹体.显微测温结果显示,成矿流体的完全均一温度介于171~396 ℃,主要集中于180~270 ℃,盐度介于1.30%~10.99% NaCl equiv,密度为0.24~0.78 g/cm3,为中低温、低盐度、低密度的CO2-H2O-NaCl体系,含有少量N2.热液期石英的δD值为-66.0‰~-32.0‰,δ18OV-SMOW值为+19.7‰~+22.6‰,指示成矿流体为变质流体.C同位素显示,晚阶段(Ⅳ)方解石和菱铁矿的δ13C介于-2.540‰~-0.736‰,表明成矿流体中的C具有混合来源的特点,奥陶系-石炭系陆源碎屑岩和碳酸盐岩的变质脱水作用形成的流体可能是金成矿流体的主要来源.成矿过程中流体发生了明显的不混溶现象,是造成金沉淀的重要因素.矿床成因类型属造山型金矿.   相似文献   

20.
Abstract. This study examined the effect of CO2 on NaCl solubility in hydrothermal fluid, with the synthetic fluid inclusion technique. Fluid inclusions of 30–40 wt% NaCl and 5 mol % CO2 were synthesized, and their halite dissolution temperatures, Tm(halite), were measured. The solubilities of NaCl in CO2-bearing aqueous fluid were obtained at 160–320C under vapor-saturated pressures. The Tm(halite) value in aqueous fluid with 5 mol % CO2 obtained in this study agrees with that of Schmidt et al. (1995), showing that 5 mol % CO2 reduces the solubility of NaCl by about 1 wt%.
Calculation of magnetite solubility suggests that 5–10 mol % CO2 decreases magnetite solubility by 4.5–8.9 % relative to the magnetite solubility in CO2-free solution. Therefore, an increase of CO2 content in ore-forming solutions may cause deposition of iron minerals and produce ore deposits.  相似文献   

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