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1.
The Jinshan gold deposit consists of gold-bearing ultramylonite and gold-bearing quartz vein ores.The Rb-Sr isochron age of fluid inclusions in quartz from quartz veins is the same as that of the gold-bearing ultramylonite,suggesting that both the types of ordbodies were fored simultaneously in the Caledonian Period,in the range 406-409Ma,REE patterns and sulfur,lead,carbon.hydrogen and oxygen isotopy data,as well as the composition of fluid inclusion.have shown that the ore-forming fluids were derived from formation water,and the ore-froming materials came from the gold-hosed rocks.The Jinshan gold deposit occurring in a Caledonian brittle-ductile zone in metamorphosed microclastic rocks owes its orgin to Caledonian reworking processes.  相似文献   

2.
The Bulong gold deposit, located in the southwest Tianshan in China, occurs in the Upper Devonian finegrained clastic rocks. The gold orebodies are controlled by an gently inclined interlayer fractured zone. They are hosted only in quartz-barite veins though there are barite veins and quartz veins in the ore district. The δ34S values of pyrite in the ores range from 14.6‰ to 19.2‰ and those of barite from 35.0‰ to 39.6‰, indicating that the sulfur was derived from the strata. 3He/4He ratios of fluid inclusions in pyrite are 0.24-0.82 R/Ra, approximating to that of the crust. The 40Ar/39Ar ratios range from 338 to 471, slightly higher than that of the atmosphere. 40Ar /4He ratios of ore fluids range from 0.015 to 0.412 with a mean of 0.153. Helium and argon isotope compositions of fluid inclusions show that the ore fluids of the Bulong gold deposit were mainly derived from the crust.  相似文献   

3.
Gold-bearing quartz veins of the Taihua Group consisting of Archean metavolcanic rocks are a main gold deposit type in the Xiao Qinling area,one of the three biggest gold production areas in China.The quartz veins experienced strong alteration characterized by a typical mesothermal hydrothermal altered mineral assemblage.The grade of gold is affected by the contents of sulphides,e.g.galena,pyrite and chalcopyrite.Results of minor elements analysis for the of gold-bearing quartz veins indicate higher contents of Au and high contents of Ag,Pb,Cu,Cd,W,and Mo.Abundant fluid inclusions were found in the gold-bearing quartz veins.Three types of fluid inclusions were identified:(1) aqueous inclusions;(2) CO 2-bearing inclusions;and(3) daughter crystal-bearing fluid inclusions.Homogenization temperatures ranged from 110 to 670℃ with low and high peaks appearing at 160 180℃ and 280 300℃,respectively.The salinity of aqueous inclusions varies between 1.8 wt% and 38.2 wt% NaCl.The homogenization temperature and salinity show a positive correlation.The H and O isotopes of fluid inclusions in the gold-bearing quartz veins indicate that magmatic solution and metamorphic hydrothermal solution,together with meteoric water,were involved in the formation of gold-bearing fluid.Mesozoic magma activities related to granite intrusions should be the main source of CO 2 fluid with higher temperature and salinity.  相似文献   

4.
Located in Alxa Zuoqi (Left Banner) of Inner Mongolia, China, the Zhulazhaga gold deposit is the first largescale gold deposit that was found in the middle-upper Proterozoic strata along the north margin of the North China craton in recent years. It was discovered by the No. l Geophysical and Geochemical Exploration Party of Inner Mongolia as a result of prospecting a geochemical anomaly. By now, over 50 tonnes of gold has been defined, with an average Au grade of 4 g/t. The ore bodies occur in the first lithological unit of the Mesoproterozoic Zhulazhagamaodao Formation (MZF), which is composed mainly of epimetamorphic sandstone and siltstone and partly of volcanic rocks. With high concentration of gold,the first lithological unit of the MZF became the source bed for the late-stage ore formation. Controlled by the interstratal fracture zones, the ore bodies mostly appear along the bedding with occurrence similar to that of the strata. The primitiveore types are predominantly the altered rock type with minor ore belonging to the quartz veins type. There are also some oxidized ore near the surface. The metallic minerals are composed mainly of pyrite, pyrrhotite and arsenopyrite with minor chalcopyrite, galena and limonite. Most gold minerals appear as native gold and electrum. Hydrothermal alterations associated with the ore formation are actinolitization, silicatization, sulfidation and carbonation. A total of 100 two-phase H2O-rich and 7 three-phase daughter crystal-beating inclusions were measured in seven goldbearing quartz samples from the Zhulazhaga gold deposit. The homogenization temperatures of the two-phase H2O-rich inclusions range from 155 to 401℃, with an average temperature of 284℃ and bimodal distributions from 240 to 260℃ and 300 to 320℃ respectively. The salinities of the two-phase H2O-rich inclusions vary from 9.22wt% to 24.30wt% NaCl eqniv, with a mode between 23 wt% and 24wt% NaC1 equiv. Comparatively, the homogenization temperatures of the threephase daughter crystal-beating inclusions vary from 210 to 435℃ and the salinities from 29.13wt% to 32.62wt% NaCl equiv. It indicates that the ore-forming fluid is meso-hypothermal and characterized by high salinity, which is apparently different from the metamorphic origin with low salinity. It suggests a magmatic origin of the gold-bearing fluid. The δ^18O values of quartz from auriferous veins range from 11.9 to 16.3 per mil, and the calculated δ^18OH2O values in equilibrium with quartz vary from 1.06 to 9.60 per mil, which fall between the values of meteoric water and magmatic water. It reflects that the ore-forming fluid may be the product of mixing of meteoric water and magmatic water.Based on geological and geochemical studies of the Zhulazhaga gold deposit, it is supposed that the volcanism in the Mesoproterozoic might make gold pre-concentrate in the strata. The extensive and intensive Hercynian tectono-magmatic activity not only brought along a large number of ore-forming materials, but also made the gold from the strata rework. It can be concluded that the ore bodies were mainly formed in late hydrothermal reworking stage. Compared with typical gold deposits associated with epimetamorphic clastic rocks, the Zhulazhaga deposit has similar features in occurrence of ore bodies, ore-controlling structure, wall-rock alterations and mineral assemblages. Therefore, the Zhulazhaga gold deposit belongs to the epimetamorphic clastic rock type.  相似文献   

5.
The Jinshan gold deposit is located in the Northeast Jiangxi province,South China,which related to the ductile shear zone.It contains two ore types,i.e.the alteration-type ore and the goldbearing quartz vein ore.Rb-Sr age dating is applied to both gold-bearing pyrite in the alteration-type ore and fluid inclusion in the gold-bearing quartz vein to make clear the time of the gold mineralization of the Jinshan deposit.Analytical results of this study yielded that the age of the alteration-type ore bodies is about 838±110Ma,with an initial 87Sr/86Sr value of 0.7045±0.0020.However,the age of the gold-bearing quartz vein-type ore is about 379±49Ma,and the initial 87Sr/86Sr is 0.7138±0.0011.Based on the age data from this work and many previous studies,the authors consider that the Jinshan gold deposit is a product of multi-staged mineralization,which may include the Jinninian,Caledonian,Hercynian,and Yanshanian Periods.Among them,the Jinninian Period and the Hercynian Period might be the two most important ore-forming periods for Jinshan deposit.The Jinninian Period is the main stage for the formation of alteration-type ore bodies,while the Hercynian Period is the major time for ore bodies of gold-bearing quartz vein type.The initial values of the 87Sr/86Sr from this study,as well as the previous isotope and trace element studies,indicate that the ore-forming materials mainly derived from the metamorphic wall rocks,and the ore-forming fluids mainly originated from the deep metamorphic water.  相似文献   

6.
The Kekesayi gold deposit is located in the Buergen ductile shear zone in the southern margin of Altay, Qinghe County, Xinjiang. The deposit consists of altered mylonite type and gold-bearing quartz veins type ores. The main ore-bearing rocks are gray metamorphic tuffs of the Tuoranggekuduke Formation. The ores are mostly lenticular and vein, and are strictly controlled by shear bands. Through field investigation, sample collection and laboratory identification, the structural alteration characteristics are studied in detail. The microstructure of quartz is analyzed by SEM cathodoluminescence (SEM-CL). The fluid inclusions of the deposit were studied by means of micro-temperature measurement and laser Raman analysis, and the tectonic-fluid evolution characteristics were discussed. Our results showed that: (1) The gold mineralization is closely related to the structural alteration of the ductile shear zone. The mylonitization, subgrain deformation and fluid structure are developed in the mining area. The recrystallized texture, dissolution structure and multistage composite shear structure characteristics of SEM-CL show that the deformation and metamorphism are very strong. The tectonic-hydrothermal activity resulted in strong silicification and pyritization and closely related to gold mineralization. (2) The fluid inclusions of quartz veins in the mineralized rocks are distributed in groups and the morphology of the fluid inclusions are mostly oval and tadpole in shape. The primary fluid inclusions are distributed in disorder, and the secondary fluid inclusions distribute linearly along the fissures mostly elongated owing to the strong tectonic deformation. Fluid inclusions are not of uniform size, generally are 8-20 μm. The types of inclusions can be classified according to the petrography and micro temperature measurement: two phase aqueous solution type (LH2O-VH2O), carbon-rich type (LH2O-LH2O) and single phase aqueous solution type (LH2O). The evolution of the fluid is characterized by high temperature, low salinity and rich CO2 in the early stage. As the deformation of the shear zone increases in the middle and late stages, the fluid evolved into low temperature, low salinity rich H2O. (3) The Kekesayi gold deposit has the characteristics of orogenic gold deposit, and the evolutionary characteristics of tectonic-ore forming fluids are consistent with the evolution of shear zones. Structural alteration of shear zone is the main controlling factor of mineralization. And magmatic hydrothermal alteration may also play an important role in mineralization. © 2018, Science Press. All right reserved.  相似文献   

7.
Geotectonically the Fengyang and Zhangbaling regions belong to the North China craton and the Dabie-Sulu oragene, respectively. Neo-Archean gneiss and amphibolite and metamor-phosed sea-facies sodic volcanic rocks axe the main outcrops in the two regions, respectively. The Zhangbaling terrane strike-skipped along the Tancheng-Lujiang fault zone in Mesozoic and Cenozo-ic eras and got close to the Fengyang terrane. Mesozoic Yanshanian intrusions occur broadly in thetwo regions. Gold-beating quartz veins occur in the metamorphic rocks in the Fengyang region and in the granodiorite and metamorphosed sea-facies sodic volcanic rocks in the Zhanghaling region.Generally, the formation of the auriferous quartz veins involved three stages. At the first stage,gold-poor sulfide quartz veins were formed; at the second stage gold-rich quartz sulfide veins wereformed; and at the third stage gold-poor barite and/or carbonate veins were formed. The 40^Ar/29^Ar step-heating plateau ages of the first-stage and the second-stage quartz aggregates from the Zhuding, Maoshan and Shangeheng gold deposits range between 116.1 0.6 Ma and 118.3 0.5 Ma and are pretty close to their least apparent ages and isoehronal ages, respectively. All plat-eau, least apparent and isoehronal ages range between 113.4 0.4 Ma and 118.3 0.5 Ma,which are considered as the formation age range of the quartz. It is reasonable and reliable to takethe 40^Ar/39^Ar age range of the quartz as the formation age range of gold-bearing quartz veins onthe basis of spatial relationship between gold-bearing quartz veins and their country rocks. Thegold deposits in the two regions were formed in Aptian, Cretaceous, when the Tancheng-Lujiangfault zone moved as a normal fault with slightly right-lateral strike-skip, was extensional and expe-rienced very strong magnmtic process. It is shown that the magnmtic hydrothermal fluid is a veryimportant part of the gold ore-forming hydrothermal fluid in the Fengyang and Zhanghaling re-gions. The formation of the gold ore deposits in the Fengyang and Zhanghaling regions had genetic relations with the extensional movement of the Tancheng-Lujiang fault zone and magmatic activities and took place under the extensional dynamic condition in Late Cretaceous. Therefore, the exten-sional movement of the Tancheng-Lujiang fault zone presented the energy and space for magmatic and gold ore-forming processes.  相似文献   

8.
Located along the southern part of the West Qinling orogenic belt, the Yangshan gold deposit is one of the largest in China. The major gold ores of Yangshan are disseminated in metasedimentary host rocks with minor native gold amounts in stibnite-gold quartz veins. Pyrite and arsenopyrite are the major Au-bearing minerals. Hydrothermal muscovite from gold-bearing quartz veins was dated using the in situ Rb-Sr method to determine the formation age of the Yangshan gold deposit. The Rb-Sr isochron ...  相似文献   

9.
Auriferous cherts in the Middle Carboniferous Jinchang Formation are the dominant host rocks of auriferous quartz veins and mixed orebodies comprised of gold-bearing quartz veins and cherts in the Mojiang gold deposit.The rocks exhibit sedimentary texture and structure and are composed of hot-water deposited minerals.The FeO,Fe2O3,Au and Ag contents of the auriferous cherts are high;the Cr,Ni and Co contents are also high but significantly variable;MnO/TiO2 and TFe/TiO2 ratios are relatively higy.As viewed from a few diagrams that distinguish different chert formations,the auriferous cherts are in or near the range of hot-water deposited cherts.Because the correlation coefficients between Au contents and those of Cr, Ni of the rocks are negative,a great Au amount in the cherts might not be brought about by later hydrothermal alterations.The rare-earth elements,O and Si isotopic compositions of the auriferous cherts demonstrate that the cherts belong to hot-water deposited rocks.The later hydrothermal alterations made the petrochemical compositions of the cherts deviate from the characteristics of hot-water deposition.In general,the geological and geochemical features of the auriferous cherts demonstrate that the rocks were formed by hot water deposition.  相似文献   

10.
<正>The Chang'an gold ore deposit in western Yunnan is located at the southern segment of the Ailaoshan metallogenic belt.The ore bodies are preserved in fractured Ordovician sedimentary clastic rocks.The gold-bearing minerals occur dominantly in sulfide-quartz veins.Fluid inclusion analysis shows that the Chang'an gold ore deposit is characterized by epithermal gold mineralization at temperatures between 200℃and 280℃at a shallow crustal level.The mineralizing fluids have intermediate to low salinity(6%-18%) and low densities(0.72-1.27 g/cm~3).The ore minerals haveδ~(34)S in a range from -13‰to 3.57‰,concentrated from -2.06‰to 3.57‰with an average of 1.55‰.The ~(206)Pb/~(204)Pb,~(207)Pb/~(204)Pb and ~(208)Pb/~(204)Pb values are 18.9977-19.5748,15.7093-15.784,39.3814-40.2004 respectively.These isotope data suggest that the ore-forming elements were mainly derived from mixed crustal and mantle sources.The Chang'an gold ore deposit and Tongchang Cu-Mo deposit are closely related to each other in their spatial distribution and age of formation.They have similar sources of mineralizing elements and identical ore-forming metal elements,and show a close relationship in physical and chemical conditions of mineralization.The two deposits constitute an epithermal-porphyry -skarn type Cu-Mo-Au mineralization system in the Tongchang-Chang'an area,which is related to the Cenozoic high-K alkaline magmatism.  相似文献   

11.
湘东北雁林寺金矿构造控矿特征及金成矿ESR测年   总被引:1,自引:0,他引:1  
针对湘东北雁林寺地区金矿是否存在矿源层、NE向劈理化带和NW向韧性剪切带对金矿的控制作用及其成矿时代等争议性问题进行野外调查和室内分析,研究结果表明:(1)金矿的矿源层是存在的,矿源层为中元古界冷家溪群;(2)NE向劈理化带和NW向韧性剪切带是该区金矿的主要控矿构造;(3)石英脉ESR测年结果表明,NE向金矿脉成矿年龄为214.2Ma,为第一期成矿,形成于印支晚期。NW向金矿脉成矿年龄为177.4~155.0Ma,为第二期成矿,发生在燕山早期。  相似文献   

12.
三角顶金矿是在柴达木盆地北缘唯一发现的产出于中酸性岩体中“似玲珑式”金矿,矿床具有重要的区域找矿意义。对该矿床的地质特征、矿石类型、岩矿石原生晕特征、含金石英脉的流体包裹体特征以及区域成矿事件进行了综合分析,探讨了矿床成矿特征及其找矿意义。含金石英脉、含金硅化糜棱岩反映了三角顶矿区多期次、多流体参与的叠加复合成矿作用,其中含金石英脉呈现浅成中低温中低盐度流体的特征,与岩浆作用关系密切;含金硅化糜棱岩型矿石与动力变质作用关系更为密切;三角顶金矿成矿深度由西向东增大,西矿区石英脉型矿体代表了该期成矿的顶部,形成了石英脉型的穹顶式金矿化层。在矿区西侧的石英脉型穹顶式金矿化层和矿区东侧的含金糜棱岩化带中,找矿潜力巨大。  相似文献   

13.
罗家金矿为中低温热液黄铁绢英岩型金矿床。矿区NNE向断裂与其他方向断裂交会部位及其附近为金矿有利成矿部位,矿床具分带现象,花岗细晶岩脉与成矿关系密切。矿石类型以黄铁绢英岩型为主,含金石英脉型次之,矿石含金品位较高,并伴生较高的Ag,Cu等有益元素。通过对金矿床的地质特征、控矿因素及矿床成因的研究,在分析找矿标志的基础上,提出应进一步查证物化探异常,加大矿区深部及外围的找矿力度,以期发现新的金矿体。  相似文献   

14.
万古金矿位于位于平江县城西南.金矿(化)体产于中元古宙蓟县系变质岩中,严格受NWW向构造破碎带控制.金矿体呈似层状、透镜状.矿脉由含金石英脉和(或)含金破碎蚀带组成.流体包裹体研究表明,成矿流体温度较低(220~ 260℃),具有多源性,并以深源流体为主.  相似文献   

15.
招远两涧地区位于玲珑金矿田的东北部边界,多数矿脉延至本区尖灭,本区金矿的特征为:矿脉众多,矿体规模为中小型,矿石类型以含金黄铁绢英岩化碎裂岩、含金黄铁石英脉为主,矿石品位较高。成矿规律为:矿体均受断裂构造控制;矿区南部矿体赋存在地表至-200 m标高之间共计600 m的范围内;36号脉、510号脉、209号脉为本区较大规模的矿脉,所含矿体在规模、数量、赋存位置等方面具有各自的规律。  相似文献   

16.
通过对大瑶山区古里脑和龙头山金矿床地层、岩浆岩含矿性的分析,并进行断裂构造作用多期性的分析和岩浆期后断裂成矿作用的讨论,认为该区深部地层和岩体中的金元素在次火山—斑岩期后断裂构造热液的作用下逐步向上叠加、富集成矿;矿体与岩浆岩体在空间上具有密切的关系;构造-热液作用导致次火山岩、斑岩体或周围地层产生破碎,并使成矿热液沿裂隙充填和再充填而形成金矿体,区内凡构成工业富集的富矿体和含金石英脉或破碎带都与多期次活动的构造-热液作用有关。因此,多期活动的构造-热液作用在大瑶山区具有非常重要的找矿意义。  相似文献   

17.
豫陕小秦岭脉状金矿床三期流体运移成矿作用   总被引:30,自引:27,他引:30  
位于豫陕交界处的小秦岭脉状金矿是我国第二大黄金产出集中地。流体包裹体研究表明,脉状金矿床石英及碳酸盐矿物中流体包裹体主要有富CO2包裹体、CO2-H2O包裹体和H2O溶液包裹体等三种类型,各热液阶段形成的脉体内有不同的流体包裹体组合。脉状金矿体的形成经历了三期流体成矿作用,第一期形成乳白色石英大脉,它构成了矿脉的主体,流体的性质为富H2O热液,但无金的成矿;第二期(成矿期)流体为中低盐度CO2-H2O-NaCl热液,它叠加在了石英大脉之上,形成(块状)黄铁矿-浅色石英矿体和(网脉状)多金属硫化物-烟灰色石英矿体,成矿期内热液的温度、压力及流体组成的变化是金沉淀成矿的原因;第三期热液又转成低盐度的富水流体,形成石英-碳酸盐脉体,金矿化微弱。  相似文献   

18.
新疆萨吾尔山布尔克斯岱浅成岩-构造蚀变岩型金矿床   总被引:2,自引:1,他引:1  
布尔克斯岱金矿床位于新疆准噶尔西北缘的萨吾尔山东部,是准噶尔地区最典型的浅成岩-构造蚀变岩型金矿床之一.它既与断裂构造带有关,同时也与浅成岩脉关系密切,受浅成岩脉和断裂构造的双重控制,因而区别于一般的构造蚀变岩型金矿床.其突出特点是:最好的矿化部位通常在浅成岩脉与沉积岩层之间的接触带附近,在浅成岩脉的膨胀部位,通常存在较宽大的富矿体.下石炭统黑山头组的含炭质泥质碎屑岩建造,也是其重要的含金建造.  相似文献   

19.
内蒙中部地区金的成矿类型有含金石英脉型、含金蚀变岩型、含金钾长花岗岩脉型、含金石英钾长石脉型及不整合面金矿型.迄今已探明赛乌素、十八顷壕、后石花、酒馆、柏树沟、大桦背和白乃庙等金矿.进而提出蚀变岩型、石英脉型及钾长石化地区的金矿找矿方向.  相似文献   

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