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1.
岩背花岗岩黑云母矿物化学研究及其对成矿意义的指示   总被引:4,自引:0,他引:4  
对岩背火山-斑岩型锡矿含黄玉黑云母花岗岩和含黄玉花岗斑岩中黑云母矿物化学研究表明,含黄玉黑云母花岗岩中的黑云母属于富铁黑云母,含黄玉花岗斑岩中的黑云母属于铁叶云母。含黄玉花岗斑岩的成岩温度为720℃~730℃,logfO2为-15.5~-15.7;含黄玉黑云母花岗岩的成岩温度为510℃~550℃,logfO2为-19.2~-18.7。含黄玉花岗斑岩成岩温度、氧逸度高于含黄玉黑云母花岗岩成岩温度和氧逸度。与含黄玉花岗斑共存热液流体log(fH2O/fHCl)fluid值为4.29~4.99,与含黄玉黑云母花岗岩共存热液流体log(fH2O/fHCl)fluid值为3.15~3.67。因此,相对于含黄玉黑云母花岗岩,含黄玉花岗斑岩岩浆演化过程中分异出的流体富F和Sn,即岩背含黄玉花岗斑岩岩浆演化过程分异出的原始流体以富F和Sn为特征,结合有关岩背Sn矿成矿流体的研究结果,进一步揭示出岩背Sn矿成矿流体为岩背含黄玉花岗斑岩岩浆演化过程分异出的岩浆热液,相对于含黄玉黑云母花岗岩,含黄玉花岗斑岩与锡成矿关系更密切。  相似文献   

2.
本文对躬穷左波Fe-Cu矿区出露的三套酸性侵入岩进行了系统的LA-ICP-MS锆石U-Pb年代学和岩石地球化学研究。年代学测试结果显示花岗斑岩、二长花岗斑岩和钾长花岗岩~(206)Pb/238U加权平均年龄分别为147.0 Ma、143.6 Ma和142.8 Ma,矿区存在晚侏罗世—早白垩世存在3期岩浆事件。岩石地球化学组成特征显示,花岗斑岩属准铝质-弱过铝质I型花岗岩;二长花岗斑岩为高钾钙碱性系列,属弱过铝质I型花岗岩;钾长花岗岩经历了强烈的结晶分异作用,属高分异I型花岗岩。岩石微量元素富集Rb、Th、U、Pb而亏损Nb、Ta、Ti、P元素,Nb/Ta比值接近大陆地壳组成及锆石负的εHf(t)值特征,指示成岩物质以壳源物质为主。躬穷左波晚侏罗世矽卡岩型Fe-Cu矿化事件的发现对于完善班—怒带西段成矿规律和指导区域找矿工作具有重要意义。  相似文献   

3.
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   

4.
《地学前缘》2017,(6):25-45
光石沟铀矿床是中国重要的伟晶岩型铀矿,铀矿体产在黑云母花岗伟晶岩和黑云斜长片麻岩的接触带上。本文对矿区出露的花岗岩、花岗伟晶岩开展了详细的年代学和岩石地球化学研究以约束花岗质岩石的成因和形成环境。LA-ICP-MS锆石U-Pb测年获得了黑云母花岗闪长岩、黑云母正长花岗岩、产铀黑云母花岗伟晶岩、非矿黑云母花岗伟晶岩的加权平均年龄,分别为(440.3±2.6)Ma、(420.4±2.7)Ma、(415.1±2.6)Ma和(413.6±2.4)Ma。地球化学数据显示,从矿区花岗岩到花岗伟晶岩分异程度逐渐升高,富集LILE(Rb、Ba、Sr),亏损HFSE(Nb、Ta、Ti),并且具有I型花岗岩的特征。花岗伟晶岩为具有稀土元素四分组效应(TE1,3=1.06~1.14)的NYF型(NbTa、Y、F)伟晶岩,指示了熔体与出溶的富挥发分流体间强烈的相互作用。黑云母花岗闪长岩、黑云母正长花岗岩、黑云母花岗伟晶岩的锆饱和温度TZr分别为730~765℃、700~723℃和518~640℃。花岗质岩浆在深成中等还原(ΔO_x=-0.54~-0.25)的环境上升侵位,源区为石榴石和斜长石稳定区。黑云母花岗闪长岩的岩石成因与混入幔源物质的加厚下地壳部分熔融有关。伴随汇聚挤压作用的减弱,同源母岩浆的缓慢分离结晶形成了黑云母正长花岗岩-花岗伟晶岩组合。产铀黑云母花岗伟晶岩中较高含量的FeO~T、MgO、TiO_2、MnO、LILE(Rb、Ba、K)和较低的HFSE(Nb、Ta)是伟晶岩浆和黑云斜长片麻岩发生化学交换的结果。伟晶岩浆的同化分离结晶(AFC)导致了U在接触带的饱和,在中等还原的环境下富集成矿。光石沟花岗岩和花岗伟晶岩形成于北秦岭同造山-造山晚期。  相似文献   

5.
低氧逸度和高岩浆水含量是中酸性岩浆内W元素富集成矿的关键因素。乔仑恩格次黑云母二长花岗斑岩体地处中亚造山带中段北山造山带。近几年,发现微弱的钨矿化,该地区是否具有钨矿的成矿潜力亟需进一步的分析研究。笔者对黑云母二长花岗斑岩中岩浆锆石开展年代学、矿物地球化学的研究,并搜集前人主微量元素的数据共同探讨岩浆结晶温度、氧逸度,最终厘定岩浆内W元素的成矿潜力。结果显示,黑云母二长花岗斑岩体具有较高的Ce~(4+)/Ce~(3+)(均值为98.15)、Ce_N/Ce_N~*(均值为111.55)、Eu_N/Eu_N~*(均值为0.50)、Ce/Nd(均值为54.89)值,暗示岩体具有较高的氧逸度(lg(fO_2)=-12.03;△FMQ+4.53)。而黑云母二长花岗斑岩具无角闪石斑晶、低的Sr/Y值(18.31~38.05)和(La/Yb)N值(13.59~18.71)及明显Eu负异常(Eu_N/Eu_N~*=0.74~0.86)特征,表明黑云母二长花岗斑岩体在岩浆结晶早期贫水(w(H_2O)4%)。以上分析显示黑云母二长花岗斑岩体具有高氧逸度、低含水量的特征,故认为乔仑恩格次黑云母二长花岗斑岩体不具有形成大规模钨矿床的潜力。  相似文献   

6.
黑云母化学成分差异可反映出岩浆岩的性质(全岩铝饱和指数、I/S型花岗岩)、氧逸度、挥发分特征并指示岩浆源区。为了探究不同岩浆体系的性质对成矿差异性的影响,本文选择与长江中下游成矿带的武山铜矿和江南造山带的竹溪岭钨(钼)矿相关的花岗闪长斑岩中的黑云母作为研究对象,对其开展了岩相学、主量元素和原位微量元素分析。结果表明,两地黑云母均富镁贫铁,竹溪岭岩体中的黑云母相对富集Li、Nb等不相容元素,而武山岩体的黑云母富集Ni、V等相容元素。基于黑云母地球化学特征建立了成岩体系与成矿体系的联系:武山铜矿与黑云母相平衡的岩浆体系具有高Cl、高氧逸度特征,有利于Cu富集成矿;而竹溪岭钨(钼)矿的岩浆体系具高F、低氧逸度特征,有利于W富集成矿。  相似文献   

7.
广西苍梧社洞钨钼矿是与花岗岩类有关的矿床。矿区主要花岗岩类包括加里东期花岗闪长岩、花岗闪长斑岩和燕山晚期花岗斑岩。加里东期花岗闪长岩、花岗闪长斑岩具有低Si、K,富Na、Al和基性组分特征,属于强过铝质的正常钙碱性系列岩石;稀土总量低,轻重稀土分馏明显,弱负Eu异常(δEu=0.62~0.70);Ti、Nb、Ta亏损,Th、U、Pb、Zr、Hf富集,Rb/Sr平均值为0.78,明显富集W、Cu、Mo,属于I型花岗岩,为陆内造山带碰撞早期挤压背景下岩浆活动的产物,表现为对钨、钼、铜的成矿专属性。燕山晚期花岗斑岩具有高Si、K,贫Na、Ca和基性组分,属于强过铝质的高钾-中钾钙碱性系列岩石;稀土总量高,轻重稀土分馏不明显,强负Eu异常(δEu=0.03~0.06);Ti、Ba、K、Eu亏损,Th、U、Sm、Dy、Y、Ho、Yb、Lu富集程度更高,Rb/Sr平均值为7.56,明显富集Sn、Bi,属于燕山晚期岩浆演化程度较高的S型花岗岩,为碰撞后伸展环境的板内花岗岩,表现为对锡、金的成矿专属性。  相似文献   

8.
赣北大湖塘超大型钨矿位于九岭钨多金属矿集区东部。本文对大湖塘钨矿石门寺矿段矿物学特征进行了系统的研究,结合同位素示踪分析了成岩成矿物质来源。岩相学研究表明,石门寺矿段蚀变以黑云母化、云英岩化及碱交代(钾长石化、钠长石化)作用为主。黑云母化的过程中释放了一定量的挥发分,云英岩化和碱交代作用除萃取部分的成矿物质外,使岩体中的Ca2+大量活化迁移。晋宁晚期黑云母花岗闪长岩与燕山中期似斑状花岗岩、花岗斑岩矿物成分研究表明:(1)斜长石普遍富钠,似伟晶岩壳主晶为钾长石,客晶为钠长石;(2)黑云母具有富铁贫镁的特点,黑云母花岗闪长岩及似斑状花岗岩中的黑云母均为铁质黑云母,花岗斑岩中黑云母为铁叶云母。黑云母成分指示大湖塘石门寺矿段花岗岩类均为过铝质S型花岗岩,成岩物质均为壳源。石英氢、氧同位素及黑钨矿氧同位素研究表明成矿流体为岩浆水。黄铜矿、辉钼矿硫同位素表明成矿流体中硫来自于岩浆。结合前人研究成果,本文认为富钨的双桥山群浅变质岩在燕山中期发生了部分熔融,产生了高分异的富含钨元素及挥发分的岩浆,岩浆分异演化过程中形成的含矿热液使侵入体自身及围岩发生大规模的蚀变作用,进而在燕山中期侵入岩的内外接触带形成了大湖塘超大型钨多金属矿床。  相似文献   

9.
位于准噶尔西北缘萨吾尔地区的罕哲尕能Cu-Au矿床是新近发现的斑岩型矿床,具有很好的找矿前景。矿区岩浆活动早期以闪长岩为主,晚期以花岗闪长岩和二长花岗斑岩为主。钻孔中所见似斑状石英二长岩LA-ICP-MS锆石U-Pb年龄为343.6±5.7Ma~345.3±8.3Ma;二长花岗斑岩锆石U-Pb年龄为334.9±7.3Ma~336.4±7.5Ma,表明西准萨吾尔地区早石炭世存在一期重要的岩浆-热液Cu-Au成矿事件。花岗闪长岩、石英二长岩、闪长玢岩、闪长岩和二长花岗斑岩的主量元素具有一致的演化趋势,表明它们可能是同一岩浆演化的产物。富集大离子亲石元素(LILE:如Rb、Ba、K、Sr)和活泼的不相容元素(如:U、Th),相对亏损高场强元素(HFSE:如Nb、Ta、Ti),显示具有岛弧岩浆的地球化学特征。87Sr/86Sri比值在0.7033~0.7037之间,143Nd/144Nd比值在0.512538~0.512579之间,εNd(t)在+6.7~+7.5之间,显示源区具有类似亏损地幔的特征;而且具有年轻的Nd两阶段模式年龄为488~553Ma,这些特征表明罕哲尕能矿区岩石的岩浆源区可能来源于亏损地幔分异的新生玄武质下地壳。罕哲尕能Cu-Au矿床的形成时代明显早于该区域A型花岗岩的形成时代(290~300Ma左右),结合岩石微量元素特征反映其形成于岛弧构造背景,萨吾尔山具有寻找斑岩Cu-Au矿的成矿条件。  相似文献   

10.
甲玛超大型铜多金属矿床位于冈底斯成矿带东段,矿体主要包括矽卡岩型、斑岩型、角岩型和独立金矿体4种类型。矿床中酸性侵入体中广泛发育岩浆黑云母,部分岩体较发育角闪石。本文在全面开展矿区地质调查和详细的钻孔岩芯编录的基础上,对含矿二长花岗斑岩和含矿花岗闪长斑岩中的岩浆黑云母以及含矿花岗闪长斑岩中的角闪石开展了矿物学及矿物化学研究,以揭示其成岩成矿意义。研究结果表明,二长花岗斑岩和花岗闪长斑岩中的岩浆黑云母为镁质黑云母,具有富镁高钛、高铝低硅、富钾贫钠的特点。与花岗闪长斑岩相比,二长花岗斑岩中的岩浆黑云母具有较低的TiO2、FeOT、MgO、MnO、Na2O、BaO含量,较高的Al2O3和SiO2含量。花岗闪长斑岩中的角闪石属于阳起石,具有高硅低铝钛、富镁钙贫钠钾等特征。黑云母和角闪石温度计计算结果显示,含矿二长花岗斑岩中黑云母结晶温度为740.1~783.8℃,平均为762.4℃;含矿花岗闪长斑岩中黑云母结晶温度为750.3~766.9℃,平均为757.2℃;含矿花岗闪长斑岩中角闪石结晶温度为654.1~698.9℃,平均为680.3℃。黑云母和角闪石矿物化学特征指示,二长花岗斑岩和花岗闪长斑岩为造山带钙碱性岩系、Ⅰ型花岗岩,具有壳幔混源的特征。二长花岗斑岩和花岗闪长斑岩具有较高的氧逸度(NNO以上)及水含量,有利于铜、钼等成矿物质进入成矿流体中。  相似文献   

11.
黑云母是花岗质岩石中常见的造岩矿物,其成分可以有效指示花岗岩形成的物理化学条件和岩石成因。巴斯铁列克矿床是近年来在新疆阿尔泰造山带南缘发现的首例二叠纪矽卡岩型钨多金属矿床。矿区出露多种类型二叠纪含钨花岗岩。为理清花岗质岩体之间、岩体与钨多金属矿化之间的关系,文章采用电子探针测定了黑云母花岗岩、二长花岗岩、二云母花岗岩和钾长花岗岩中的黑云母成分。结果表明,所有黑云母具有富铁、高铝、贫镁特征,含铁指数(Fe2+/(Mg+Fe2+))为0.66~0.80,二云母花岗岩属铁质黑云母而黑云母花岗岩、二长花岗岩和钾长花岗岩属铁叶黑云母。所有岩石是具有A型特征的I型花岗岩。不同类型岩石中黑云母的成分差异与岩浆来源、分异演化程度有关。二云母花岗岩中黑云母的w(MgO)与结晶温度最高,与黑云母平衡流体的log(fHF/fHCl)值(-1.13~-1.25)最低,log(fH2O/fHF)值(4.64~4.96)最高,母岩浆相对富Cl;黑云母花岗岩中log(fHF/fHCl)值最高,log(fH2O/fHF)最低,与二长花岗岩是同一岩浆房不同演化阶段的产物,与二云母花岗岩和钾长花岗岩属不同的岩浆体系,母岩浆相对富F元素。黑云母花岗岩与W矿化关系更密切。  相似文献   

12.
张向飞  李文昌  尹光候  杨镇  唐忠 《岩石学报》2017,33(7):2018-2036
休瓦促钨钼矿床位于义敦岛弧南段的香格里拉北部,目前已达中-大型。该区发育由两期岩体(晚三叠世的黑云母花岗岩和晚白垩世的斑状二长花岗岩)叠加而成的复式岩体,而该矿区钨钼矿形成于82~86Ma。然而,两期岩体间关系,以及晚三叠世岩体对矿床的形成有怎样的贡献,目前未有报道。笔者通过对两期岩体形成时间及其地球化学特征的研究,从成岩年代学、岩浆氧逸度等方面探究上述问题,并揭示两期岩体的成矿特征,为找矿实践提供一定的参考依据。研究表明,黑云母花岗岩结晶年龄为211.7±2.6Ma,SiO_2偏高(69.48%~73.73%),属高钾的钾玄质系列,偏铝质,富集轻稀土元素和大离子亲石元素而亏损重稀土元素以及高场强元素Nb、Sr、Ti等,有微弱的负Eu异常,岩浆氧逸度相对较高(fO_2=-19.4~-9.1,平均-13.7);斑状二长花岗岩结晶年龄为76.8±3.8Ma,且有一颗锆石核部的年龄值为219±2.6Ma,该岩体与前者有相似的地球化学特征,SiO_2高(67.35%~75.65%),属偏铝质的钾玄质系列,ΣREE较高,高于黑云母花岗岩,铕负异常明显大于前者,岩浆氧逸度相对较低(fO_2=-30.4~-18.2,平均-23.4)。据此,结合休瓦促矿区断层发育情况,提出矿区内两期岩体以近南北向F_4为界呈断层接触关系,北西向走滑断层(F_1-F_3)为控矿构造。本文认为,晚期斑状二长花岗岩对早期黑云母花岗岩具有一定的继承性关系,黑云母花岗岩来源于晚三叠世甘孜-理塘洋向西俯冲环境下地壳的部分熔融,岩浆富水、氧逸度高,利于形成Cu-Au矿床,且在找矿实践中得到部分验证;斑状二长花岗岩来源于加厚下地壳的部分熔融,岩浆贫水、氧逸度低于黑云母花岗岩,与W-Mo矿床相关。即,晚白垩世岩浆热液沿矿区断裂-裂隙系统运移,继承和发展早期岩浆活动,形成脉状细晶岩和W-Mo矿床。  相似文献   

13.
《International Geology Review》2012,54(12):1353-1368
Copper and gold mineralization in the Maher-Abad area, eastern Iran, is closely related to multiple episodes of emplacement of a late Eocene granodiorite into a quartz-monzonitic stock and andesitic volcaniclastic rocks. Hypogene and supergene porphyry Cu–Au mineralization occurred within the porphyritic granodiorite and quartz-monzonite host rocks extensively altered into dominantly potassic, propylitic, phyllic, and argillic assemblages. Temperature and pressure estimates using the plagioclase–hornblende thermometer and Al-in-hornblende barometer indicate that the granodiorite intruded at 758 ± 10°C and 1.4 ± 0.2 kbar.

Biotites from the alteration zones have more variable AlIV than those in the fresh granodiorite, but nearly all are close to the ideal phlogopite composition. Biotite compositions display an increase in Al2O3, FeO, TiO2, and Cl, but a decrease in SiO2 and F, from the porphyritic granodiorite and potassic to the transitional phyllic alteration zones. Biotite from the potassic zone (X phl?=?0.63–0.67) possesses a moderate F content (0.53 to 0.82 wt.%) that is significantly higher than that in the phyllic zone (0.22 to 0.38 wt.%), exhibiting a positive correlation with X Mg and negative correlation with Cl.

With a decrease in the temperature, log (fH2O/fHF) and log (fH2O/fHCl) values calculated for fluids equilibrated with biotite increase progressively from the granodiorite through the potassic to the phyllic zones, whereas log (fHF/fHCl) shifts towards more negative values. Fugacity ratio trends in the Maher-Abad porphyry copper deposit are quite similar to those of other porphyry copper systems. The decrease in halogen content of hydrothermal fluids towards outer parts of the deposits reflects an increase in the degree of mixing between magmatic fluid and meteoric water.  相似文献   

14.
Copper–gold mineralization at the world‐class Batu Hijau porphyry deposit, Sumbawa Island, Indonesia, is closely related to the emplacement of multiple stages of tonalite porphyries. Petrographic examination indicates that at least two texturally distinct types of tonalite porphyries are currently recognized in the deposit, which are designated as “intermediate tonalite” and “young tonalite”. They are mineralogically identical, consisting of phenocrysts of plagioclase, hornblende, quartz, biotite and magnetite ± ilmenite, which are set in a medium‐coarse grained groundmass of plagioclase and quartz. The chemical composition of the rock‐forming minerals, including plagioclase, hornblende, biotite, magnetite and ilmenite in the tonalite porphyries was systematically analyzed by electron microprobe. The chemical data of these minerals were used to constrain the crystallization conditions and fluorine–chlorine fugacity of the corresponding tonalitic magma during its emplacement and crystallization. The crystallization conditions, including temperature (T), pressure (P) and oxygen fugacity (fO2), were calculated by applying the hornblende–plagioclase and magnetite–ilmenite thermometers and the Al‐in‐hornblende barometer. The thermobarometric data indicate that the tonalite porphyries were emplaced at 764 ± 22°C and 1.5 ± 0.3 × 105 kPa. If the pressure is assumed to be lithostatic, it is interpreted that the rim of hornblende and plagioclase phenocrysts crystallized at depths of approximately 5.5 km. As estimated from magnetite–ilmenite thermometry, the subsolidus conditions of the tonalite intrusion occurred at temperatures of 540–590°C and log fO2 ranging from ?20 to ?15 (between Ni‐NiO and hematite–magnetite buffers). This occurred at relatively high fO2 (oxidizing) condition. The fluorine–chlorine fugacity in the magma during crystallization was determined on the basis of the chemical composition of magmatic biotite. The calculation indicates that the fluorine–chlorine fugacity, represented by log (fH2O)/(fHF) and (fH2O)/(fHCl) in the corresponding tonalitic magma range from 4.31 to 4.63 and 3.62 to 3.79, respectively. The chlorine fugacity (HCl) to water (H2O) is relatively higher than the fluorine fugacity (HF to water), reflecting a high activity of chlorine in the tonalitic magma during crystallization. The relatively higher activity of chlorine (rather than fluorine) may indicate the significant role of chloride complexes (CuCl2? and AuCl2?) in transporting and precipitating copper and gold at the Batu Hijau deposit.  相似文献   

15.
The Sisson Brook W–Mo–Cu deposit was formed by hydrothermal fluids likely related to the Nashwaak Granites (muscovite–biotite granite, Group I; and biotite granite, Group II) and related dykes (biotite granitic dykes, Group III; and a feldspar–biotite–quartz porphyry dyke, Group IV). Chemical data obtained using EPMA and LA-ICP-MS data of primary magmatic biotites were used to investigate magmatic processes and associated hydrothermal fluids.Trace element features of biotite in the Group I two-mica granite suggest other magmatic processes along with a simple fractional crystallization. The K/Rb ratios and compatible elements (Cr, Ti, Co, V, and Ba) in biotite from Groups II, III, and IV decrease, whereas incompatible elements including Ta, Tl, Ga, Cs, Li, and Sn increase with magma fractionation. No correlation of Cu, W and Mo with K/Rb ratios is evident, suggesting that partitioning of Cu, W, and Mo into biotite may not be entirely controlled by magma fractionation.Halogen fugacity of the parental magma of the Nashwaak Granites and related dykes, calculated from zircon saturation temperature shows that Group I has high fHF/fCl ratios (broadly higher than 0), similar to the plutons at the Henderson porphyry Mo deposit. The fHF/fCl ratios of the other groups are generally lower than 0, comparable to the Santa Rita porphyry Cu deposit. The fH2O/fHCl and fH2O/fHF ratios inferred from biotite in the Nashwaak Granites and related dykes range from 3 to 5 and from 4 to 5, respectively. The inferred oxygen fugacity shows that the dyke phases (Groups III and IV) have the oxygen fugacity around the nickel–nickel oxide buffer. The plutonic phases (Groups I and II) have the oxygen fugacity around the quartz–fayalite–magnetite (QFM) buffer at high temperatures and oxidized to nickel–nickel oxide buffer at lower temperatures. This oxidation process in the plutonic phases (Groups I and II) could be caused by H2 release at or near H2O vapor saturation at high H2O/Fe2 +. The magma associated with the biotite dykes (Group III) is more likely the source of the hydrothermal fluids at the Sisson Brook deposit since it has the highest differentiation degree and seems to have formed in an oxidized setting, necessary for Mo to concentrate in the late stage fluids.  相似文献   

16.
西藏冈底斯成矿带上的驱龙巨型斑岩Cu-Mo矿床以发育大量的硬石膏为特征.详细的岩相学研究发现:驱龙矿床不仅发育热液脉状的硬石膏,含矿斑岩中还产出岩浆成因硬石膏,这在国内系首次报道.观察表明,在岩浆演化早期的花岗闪长岩、黑云母二长花岗岩中,岩浆硬石膏以矿物包体的形式产于斜长石、石英中;在主成矿期的二长花岗斑岩、花岗闪长斑岩中,岩浆硬石膏以矿物包体产于斜长石斑晶中,局部以斑晶形式产出,并伴有富S的磷灰石(SO_3含量为0.11%~0.44%)、磁铁矿发育.后期热液活动也形成了大量的硬石膏±石英+硫化物脉,是矿区主要的矿化类型之一.电子探针分析结果显示,后期的热液硬石膏与岩浆硬石膏相比,在微量成分上明显富集Sr(分别为0.24%和0.03%),可能是由于在岩浆-热液演化过程中,Sr的不相容性或者/以及粘土化蚀变造成的.岩浆硬石膏以及与之共生的富S磷灰石的出现,明确指示驱龙矿床成矿岩浆具有富S、高氧逸度的特征;同时也为研究S在斑岩型矿床岩浆演化过程中的状态、行为,提供了很好的研究对象.  相似文献   

17.
The Kahang porphyry Cu deposit, located northeast of Isfahan city in central of Iran, is associated with a composite Miocene stock and ranges in composition from diorite through granodiorite to quartz-monzonite. Field observations and petrographic studies show that the emplacement of the Kahang stock occurred in several pulses, each associated with its related hydrothermal activity. Early hydrothermal alteration started with a potassic style in the central part of the system and produced a secondary biotite–K-feldspar–magnetite assemblage accompanied by chalcopyrite and pyrite mineralization. Propylitic alteration that took place at the same time as the potassic alteration occurred in the peripheral portions of the stock. Subsequent phyllic alteration overprinted earlier potassic and propylitic alterations. Biotite grains from the potassic and phyllic zones show distinct chemical compositions. The FeO, TiO2, MnO, K2O, and Na2O concentrations in biotite from the phyllic alteration zone are lower than those from the potassic alteration zone. The F and Cl contents of biotite from the potassic alteration zone display relatively high positive correlation with the XMg. The fluorine intercept values [IV(F)] from the potassic and phyllic alteration zones are strongly correlated with the fluorine/chlorine intercept values [IV(F/Cl)]. Biotite geothermometry for the potassic and phyllic alteration zones, based on the biotite geothermometer of Beane (1974), yields a temperature range of 422° to 437 °C (mean = 430 °C) and 329° to 336 °C (mean = 333 °C), respectively. The position of data in log (XF/XOH) ratio vs. XMg and XFe diagram suggests that biotite formed under dissimilar composition and temperature conditions in the potassic and phyllic alteration zones. Calculated log fugacity ratios of (fH2O/fHF), (fH2O/fHCl), and (fHF/fHCl) show that hydrothermal fluids associated with the potassic alteration were distinctively different from those fluids associated with the phyllic alteration zone at Kahang porphyry Cu deposit. The results of this research indicate that the chemistry of biotite is related to the chemical composition of the magma and the prevailing physical conditions during crystallization.  相似文献   

18.
罗卜岭斑岩铜钼矿床是紫金山Cu-Au-Mo浅成低温-斑岩矿田内新近发现的大型斑岩铜钼矿床,本文在岩芯及光薄片系统观察的基础上,分析了矿化斑岩锆石LA-ICP-MS U-Pb年龄及锆石Ce4/Ce3+比值.罗卜岭赋矿斑岩体可分为两期,早期为角闪黑云母花岗闪长斑岩及黑云母花岗闪长斑岩,晚期为黑云母花岗闪长斑岩.早期角闪黑云母花岗闪长斑岩和黑云母花岗闪长斑岩锆石LA-ICP-MS U-Pb年龄分别为103.7±1.2Ma,MSWD=0.33和103.0±0.9Ma,MSWD=1.00;晚期黑云母花岗闪长斑岩锆石LA-ICP-MS U-Pb年龄为97.6±2.1Ma,MSWD=6.00.罗卜岭成矿斑岩基质普遍发育硬石膏,两期成矿斑岩锆石都具较高的Ce4 +/Ce3平均值,在630 ~770之间,高于区内非成矿花岗岩锆石的Ce4+/Ce3+平均值(182 ~577),显示罗卜岭斑岩矿床成矿岩浆具有高氧逸度的特征.据罗卜岭斑岩矿床的形成时代、高氧逸度岩浆特征,结合华南地区中生代构造背景,我们初步认为罗卜岭斑岩矿床的形成可能和中生代古太平洋向北西西方向俯冲有关.  相似文献   

19.
湖南宝山矿床处于坪宝矿带的北端,是湘南地区最大的铜多金属矿床。为了进一步探讨矿区内花岗质岩石的形成条件及成矿潜力,文章在详细的野外地质和岩相学观察的基础上,对与成矿密切相关的花岗闪长斑岩中的黑云母进行了详细的矿物化学分析。电子探针分析结果表明:宝山花岗闪长斑岩中的黑云母为铁质黑云母和镁质黑云母,其中,Ti介于0.18~0.30,且Mg/(Mg+Fe2+)值介于0.42~0.58,属于典型的岩浆成因黑云母;黑云母的氧化系数为0.16~0.26,w(Mg O)为8.17%~11.72%,平均9.3%,MF值范围为0.38~0.50,指示其岩体属于壳幔混源型的I型花岗岩;岩体中以黑云母的全铝含量计算的结晶压力为97~174 MPa,相应的结晶深度为3.67~6.57 km,平均深度为5.12 km。其log f(O2)变化范围为-14.5~-12.8,表明黑云母是在较高氧逸度条件下结晶形成的,有利于铜矿的形成。  相似文献   

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