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1.
利用1989年在大西洋热液活动区采集的块状硫化物样品,采用矿相显微镜、电子显微镜和电子探针等手段,进行了矿物共生组合、矿物形态与成分标型及其演化特征研究。结果表明,大西洋热液成矿作用可以划分为热液期与沉积期两个成矿期,和石英-黄铁矿阶段、黄铁矿阶段、多金属硫化物阶段、胶状黄铁矿阶段和非晶质SiO2阶段等5个成矿阶段;不同成矿阶段黄铁矿的共生矿物和矿物特征不同,在晶体形态上具有从单形晶-聚形晶-胶状  相似文献   

2.
南黄海自生黄铁矿成因及其环境指示意义   总被引:12,自引:2,他引:12  
样品为1989年采自南黄海,利用显微镜,电子显微镜,电子探针和化学分析方法,对自生黄铁矿的形态,成份和同位素特征进行研究,在此基础上就其成因与形成环境的关系进行初步探讨。研究结果表明,自生黄铁矿集合体形态可以分为聚莓,单莓和细粒3种,霉体特征的形态是早期成岩作用阶段沉积物随机堆积的结果,可以作了沉积成因黄铁矿的形态标型黄铁矿微量成份特征显示其沉积成因,同时亦表现对泥质沉积物地球化学背景值的继承性,  相似文献   

3.
以成因矿物学的理论和方法,围绕太平洋三区四地海底热液硫化物和烟囱物中黄铁矿为主线的形态标型(扫描电镜)、矿物标型(粉晶X射线衍射法)及矿物组合,揭示了黄铁矿及伴生矿物在不同热液喷发类型中的标型特征,并由此反证了不同标型特征的热液矿物与热液喷发环境相互依存的紧密关系。  相似文献   

4.
南黄海沉积物中自生黄铁矿的形态标型研究   总被引:8,自引:2,他引:8  
得1989年采于南黄海的样品,通过实体显微镜、反应显微镜和电子显微镜对自生黄铁矿的集合体形和晶体形态进行研究,结合前人成果,对现代海底沉积物中自生黄铁矿集合体进行形态分类和成因-形态分类,在此基础上讨论其特征形态的成因及标型意义。研究表明,自生黄铁矿集合体形态可以分为聚莓、单莓和细粒3种,其中前二者可作为沉积物中自生黄铁矿和层控或沉积成因矿床黄铁矿集合体形态标型;成因-形态分类将黄铁矿集合体分为两  相似文献   

5.
本文对黄海沉积物中的黄铁矿的分布、形态、成分和结构方面的特征,以及成因作了讨论。作者在73个样的1/3样品中发现了自生黄铁矿,并对此矿物进行了X-射线、电子探针、光片及扫描电镜研究。黄铁矿主要呈生物内模状、球粒状(framboid)及胶结物状等形态,经X-射线衍射分析表明自生矿物为黄铁矿,不存在其他铁硫化物。  相似文献   

6.
西南印度洋脊(SWIR)是当前洋底超慢速扩张洋脊的典型代表,具有独特的热液硫化物矿床形成机理,对位于该洋脊的龙旂热液场硫化物样品进行了系统的矿物学分析,结果表明:该区硫化物为高温热液喷溢活动所形成的富Fe型硫化物,目前已经历了一定程度的氧化蚀变;硫化物矿物组合以磁黄铁矿、黄铁矿为主,其次是少量黄铜矿、白铁矿和(铁)闪锌矿;黄铜矿出溶等轴古巴矿现象普遍,部分样品中可见自然金颗粒。经综合分析,该区热液成矿作用可划分为3个成矿阶段和1个后期海底风化阶段:(1)高温的黄铁矿+黄铜矿(等轴古巴矿)+磁黄铁矿阶段,(2)中高温的黄铁矿+闪锌矿阶段,(3)低温的胶状或莓球状黄铁矿+白铁矿+自然金阶段,(4)后期硫化物海底氧化性蚀变阶段主要是形成Fe的氧/羟化物。在整个成矿期间,流体温度有不同程度的波动,主要硫化物矿物形成时端元流体的温度应在335℃以上,瞬间(短时)或局部热液的最高温度推测超过400℃。本区的磁黄铁矿属于富钴型磁黄铁矿亚类,经历了六方磁黄铁矿+黄铁矿→单斜磁黄铁矿+黄铁矿的变化,表明该区热液流体发生了快速降温的演化过程。  相似文献   

7.
太平洋三海区热液烟囱物的氧同位素特征及形成温度   总被引:2,自引:0,他引:2  
使用氧同位素方法,测试了西太平洋马里亚纳岛弧、马里亚纳海槽、冲绳海槽和东太平洋加拉帕戈斯裂谷的海底热液烟囱和硫化物合岩样品。结果表明:马里亚纳岛弧上的埃斯梅拉尔达破火山口的热液硫化物的形成温度最高(达275℃),而成为高温产物的代表;冲绳海槽和加拉帕戈斯裂谷烟囱,表现为中高温类型,其氧同位素温度在150℃左右;马里亚纳海槽以蛋白石为主要矿物的烟囱物,则显示出典型的低温热液类型,少量黄铁矿砂试样则表现出中温类型特征。但上述区域大都不同程度地存在有闪锌矿、黄铁矿、黄铜矿等中高温热液矿物,说明研究区除马里亚纳海槽明显有中低温热液活动类型外,其它区域皆具备中高温热液活动特征。  相似文献   

8.
西南印度洋63.5°E热液区是在超慢速扩张洋脊发现的首个超镁铁质岩热液系统。对取自该区的热液硫化物样品进行了系统的矿物学和地球化学分析,矿物学分析结果表明:该热液区硫化物为富Fe型高温硫化物,且经历了较深程度的氧化蚀变,大量中间态的Fe氧化物充填在硫化物矿物间的孔隙及内部解理中;这些硫化物相以白铁矿为主,其次是等轴古巴矿和少量铜蓝,缺乏黄铁矿、闪锌矿。据推断,该区的热液成矿作用分为4个阶段:低温白铁矿阶段→高温等轴古巴矿阶段→自形白铁矿阶段→后期海底风化阶段(少量铜蓝以及大量的Fe的羟氧化物)。与之相对应,地球化学分析结果表明这些硫化物的Fe含量较高(31.57%~44.59%),Cu含量次之(0.16%~7.24%),而Zn含量普遍较低(0.01%~0.11%);微量元素较为富集Co(328×10-6~2 400×10-6)和Mn(48.5×10-6~1 730×10-6)。该区硫化物中较高含量的Fe、Co与超镁铁质岩热液系统相似,明显高于镁铁质岩热液系统。独特的热液硫化物矿物学特征和元素组成可能与该区普遍出露的地幔岩、橄榄岩蛇纹石化作用以及拆离断层的广泛发育的环境有关。  相似文献   

9.
在热力学计算的基础上,依据硫化物中矿物组合和热液流体化学组成绘制东太平洋海隆13°N附近热液Fe-S-H2O系统布拜图(Peurbax diagram),阐明了实际情况下东太平洋海隆13°N附近热液流体由高温至低温的过程中,硫化物中优势矿物黄铁矿的稳定场的演化。结合已有的动力学实验和硫同位素分馏的研究成果,揭示了沉淀硫化物的热液活动过程中形成优势矿物黄铁矿的可能的主要化学反应历程。在东太平洋海隆13°N附近海底热液系统中,热液流体由高温(T200℃)演化至低温(25~200℃)过程中黄铁矿的形成机制发生了明显的改变。  相似文献   

10.
与快速扩张的洋中脊相比,主要由超慢速-慢速扩张洋脊组成的印度洋中脊具有独特的热液硫化物成矿模式.运用高精度矿相显微镜、XRD、电子探针和ICP-AES/MS等测试手段,对印度洋中脊的热液硫化物矿床样品开展了矿物成分、结构构造、地球化学等各方面分析.结果表明,来自中印度洋脊(CIR)艾德蒙德(Edmond)热液区的硫化物A主要由黄铁矿、白铁矿以及黄铜矿构成,其成矿期次可划分为白铁矿-黄铁矿阶段(Ⅰ)、闪锌矿-黄铜矿阶段(Ⅱ)以及后期石英阶段(Ⅲ),成矿流体温度经历了低-高-低的变化;同样来自于艾德蒙德热液区的硫化物B主要矿物成分为黄铁矿、白铁矿和硬石膏,成矿期次划分为硬石膏-白铁矿-黄铁矿阶段(Ⅰ)和胶状黄铁矿-石英(Ⅱ) 2个阶段,流体温度经历了低-高的变化;与之相比,来自西南印度洋脊(SWIR)龙旂热液区的硫化物C主要由纤铁矿、黄铜矿、黄铁矿和白铁矿组成,成矿期次划分为纤铁矿-白铁矿-黄铁矿阶段(Ⅰ)和闪锌矿-黄铜矿(Ⅱ)阶段,后期闪锌矿、黄铜矿的出现反映热液流体温度发生了升高.地球化学特征表明,印度洋中脊的热液硫化物总体为富Fe型,并相对富集Co和Ni元素,而Zn和Cu元素的含量相对较低.此外,取自艾德蒙德热液区的硫化物与EPR 21°N热液硫化物组成非常相似,而与慢速扩张脊TAG相比,Pb、Zn、Ag和Sr元素含量较高,Cu和Fe元素含量则较低.  相似文献   

11.
A seafloor hydrothermal field, named Deyin-1 later, near 15°S southern Mid-Atlantic Ridge(SMAR) was newly found during the 22 nd cruise carried out by the China Ocean Mineral Resources Research Development Association(COMRA). Sulfide samples were collected at three stations from the hydrothermal field during the26 th cruise in 2012. In this paper, mineralogical characteristics of the sulfides were analyzed with optical microscope, X-ray diffractometer, scanning electron microscope and electron microprobe to study the crystallization sequence of minerals and the process of hydrothermal mineralization. According to the difference of the ore-forming metal elements, the sulfide samples can be divided into three types:(1) the Ferich sulfide, which contains mainly pyrite and chalcopyrite;(2) the Fe-Cu-rich sulfide consisting predominantly of pyrite, chalcopyrite and isocubanite, with lesser amount of sphalerite, marmatite and pyrrhotine; and(3) the Fe-Zn-rich sulfide dominated by pyrite, sphalerite and marmatite, with variable amounts of chalcopyrite, isocubanite, pyrrhotine, marcasite, galena and gratonite. Mineral precipitations in these sulfides are in the sequence of chalcopyrite(isocubanite and possible coarse pyrite), fine pyrite,sphalerite(marmatite), galena, gratonite and then the minerals out of the dissolution. Two morphologically distinct generations(Py-I and Py-II) of pyrite are identified in each of the samples; inclusions of marmatite tend to exist in the coarse pyrite crystals(Py-I). Sphalerite in the Fe-Zn-rich sulfide is characterized by a"chalcopyrite disease" phenomenon. Mineral paragenetic relationships and a wide range of chemical compositions suggest that the environment of hydrothermal mineralization was largely changing. By comparison, the Fe-rich sulfide was formed in a relatively stable environment with a high temperature, but the conditions for the formation of the Fe-Cu-rich sulfide were variable. The Fe-Zn-rich sulfide was precipitated during the hydrothermal venting at relatively low temperature.  相似文献   

12.
Studies of the mineralogy and sulfur isotope composition of sediment-hosted hydrothermal sulfide minerals in cores are important for understanding the seafloor mineralization environment and material source and reconstructing the hydrothermal history. However, the source of ore-forming materials and the history of hydrothermal activity in the southern Okinawa Trough (SOT) remain unclear. Here, the mineralogy and sulfur isotope characteristics of sulfides from gravity core HOBAB4-S2, collected between the Yonaguni Knoll IV hydrothermal field (HF) and the Tangyin HF, was investigated. Enrichments in Zn (up to 321×10?6), Cu (up to 73.7×10?6), and Pb (up to 160×10?6) and the presence of pyrite, galena, pyrrhotite and minor sphalerite and chalcopyrite provide evidence for the input of hydrothermal materials into the sediments. The pyrite morphologies include disseminated cubic, pentagonal dodecahedron, and framboidal forms. Except for minor framboidal pyrite, euhedral pyrite from core HOBAB4-S2 is mainly of hydrothermal origin with Co/Ni ratios >1 and S/Fe atomic ratios <2 in the Cu-Zn-Pb-rich layers. The occurrences of hexagonal pyrrhotite, high-Co (up to 0.17%) pyrite and high-Fe sphalerite indicate that the hydrothermal precipitates formed at medium-high temperatures and low-sulfur fugacity (fS2) environments. The δ34S values of sulfides (0.21‰–3.45‰) with low- fS2 mineral assemblages (e.g., pyrrhotite ± high-Fe sphalerite) in the core are significantly lower than those of magmatic rocks and seawater, indicating possible incorporation of previously formed biogenic sulfur in the sediment. Combined with the age model of the core, it is suggested that hydrothermal activity likely began in the Tangyin HF before AD 1445–1483 and that at least three active episodes may have occurred since then.  相似文献   

13.
华南寒武纪海洋中沉积矿床及其古环境   总被引:9,自引:0,他引:9  
寒武纪早期是华南的一个重要的沉积矿床形成阶段。在华南扬子板块下寒武统黑色岩系中产有大量的金属及非金属矿床,其中倍受关注的矿床有Ni-Mo-PGE多金属硫化物矿床、磷矿床与重晶石矿床。Ni-Mo-PGE多金属硫化物矿床的形成可能与海底热液喷流作用有关,成矿元素除海水源外,有部分来自深部热液;磷矿床形成于特定的浅海环境,成矿物质的聚集可能与有机质和含铁胶体有关;重晶石矿床的形成也与海底热液和有机质有关。这些矿床保存了大量的古海洋信息,对其进行深入研究可以揭示华南寒武纪大爆发时期的古海洋环境变化特征。  相似文献   

14.
Authigenic carbonate samples were collected from the northern Okinawa Trough. Based on their carbon and oxygen isotopes, these samples were found to be methane-related carbonates precipitated by the anaerobic oxidation of methane (AOM). Petrological analysis revealed numerous framboidal pyrites that had been partly oxidized. In order to trace the variation and diagenetic information of these framboidal pyrites, their diameters and geochemical components were studied using an electron probe. The results showed that their diameters varied from 4 μm to 17 μm (n = 60; geometric mean of 9.9 μm) and were of a normal distribution. The diameters of single pyrite that formed the framboidal pyrites varied from 1 μm to 2 μm. The framboidal pyrites with diameters of 6–14 μm accounted for ~80% of the total. The geometric mean of 9.9 μm indicates that they are probably diagenetic pyrites that were precipitated in a lower dysoxic environment (weakly oxygenated bottom waters). The S/Fe ratio of the framboidal minerals ranged from 0 to 1.67, and the pyrite content of single framboid varied between 0% and 86.4%. Therefore, numerous pyrites were oxygenated to iron oxides or oxyhydroxides, and were retained as pseudomorphism pyrites. The size of framboidal pyrites precipitated in cold seeps can be used to trace the redox environment; however, acquisition of additional data via investigation of different cold seeps is necessary to obtain more persuasive results.  相似文献   

15.
为了解不同类型含金属沉积物在物质组成和元素赋存状态的差异,对东太平洋海隆13°N洋中脊两侧表层含金属沉积物(站号:E271和E53)进行了矿物学、地球化学分析,顺序提取实验,并与前人对轴部表层沉积物(站号:17A-EPR-TVG1)的研究结果作了对比分析。研究结果表明, E271和E53是远端含金属沉积物,由非浮力热液羽状流中颗粒物沉降所形成的;17A-EPR-TVG1沉积物是近喷口含金属沉积物,由黑烟囱或者热液硫化物丘状体崩塌、堆积,或者由热液羽状流中Fe-Mn氧化物和硫化物快速沉淀而形成的,近喷口沉积物比远端沉积物更富集Fe、Cu和Zn等元素。元素在两种含金属沉积物中的赋存状态基本相同,除了Fe,Cu,Zn,Mo和稀土元素(REE)等元素在远端沉积物中主要存在于Fe-Mn氧化物相,在近喷口沉积物中主要在残留相中。远端沉积物中REE页岩标准化配分模式与海水相似,表明REE主要来自海水,而近喷口沉积物中REE配分模式与热液流体相似,说明REE以高温热液流体来源为主。相关研究结果加深了对热液沉积作用研究的认识。  相似文献   

16.
对新近(2014年)采自冲绳海槽南部Yonaguni Knoll IV热液活动区和中部伊平屋热液活动区的金属硫化物样品分别进行了X射线荧光光谱(XRF)和等离子体质谱(ICP-MS)分析,旨在通过对比分析两个热液活动区金属硫化物的元素地球化学特征,探讨两个不同热液活动区成矿元素的富集规律、热液成矿的作用过程及其区域差异。研究结果表明:在冲绳海槽中部和南部热液区分布有两种金属硫化物,分别为富Fe-Zn型硫化物和Ba-Zn-Pb型硫化物(+硫酸盐);相较于大洋中脊和其它弧后盆地的热液硫化物,研究区硫化物中Pb的含量明显较高,而Cu和Fe的含量相对较低,这与冲绳海槽存在较厚的沉积盖层有关;无论是常量元素、微量元素、还是稀土元素(REE),其含量和相关的特征值都变化较大,表明研究区热液硫化物形成于不同的热液成矿阶段;富Fe-Zn型硫化物是在高温热液活动阶段形成的,而Ba-Zn-Pb型硫化物(+硫酸盐)则形成于热液喷出海底与海水混合的过程中,成矿温度较低;即使在同一热液活动区,成矿环境也有较大变化,主要表现在成矿温度的波动上;研究区热液硫化物中REE的配分模式特征表明硫化物中REE的物源相同,但经历的过程(REE的迁移和富集)有所不同,反映了热液硫化物形成于不同的热液成矿阶段;热液成矿作用存在区域性差异,海槽南部的成矿温度较中部低,成矿物质来源方面,南部热液区硫化物的Pb含量较中部高,表明其成矿物质可能部分来源于沉积物。  相似文献   

17.
2003年中国海底热液硫化物调查航段在EPR西侧取得了E271与E272站位的小箱体柱状样品,通过对这些样品采用酸化和未酸化两种前处理方法的粒度分析,结果表明样品受热液活动影响不强烈;粒度分布曲线表现为多峰分布,为多种物源共同叠加沉积的结果,其中以生物源与火山源为主。因此该地区的沉积物源虽然有热液活动的贡献,但是较其它来源的沉积物所占的比例较小。  相似文献   

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