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1.
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   

2.
测定了冲绳海槽中部Jade热液活动区中18个热液沉积物样品的硫同位素组式,其中10个硫化物样品的δ34S值为5.2×10-3~7.2×10-3,7个硫酸盐样品的34S值为16.3×10-3~22.3×10-3,1个自然硫样品的δ34S值为8.2×10-3热液沉积物的硫主要来自中、酸性火山岩和海水,并且在流体与沉积物相互作用过程中海底沉积物也可能为热液沉积物的形成提供部分的硫.导致本区热液沉积物中硫化物与其他热液活动区的硫同位素组成不同的原因,主要是各热液活动区的硫源以及有关岩浆活动和构造演变的不同.海底热液体系中硫的演化是一个复杂的过程,涉及被加热海水的上升、流体与火山岩的相互作用、海水硫酸盐和中、酸性火山岩中流的混合作用以及流体与沉积物相互作周等一系列海底热液活动,其中海水和中、酸性火山岩的相互作用是本区硫演化的一个重要机制.  相似文献   

3.
冲绳海槽有孔虫壳体的微量元素Sr,Nd同位素地球化学   总被引:6,自引:1,他引:6  
钙质生物壳的微量元素组合和Sr,Nd同位素组成是识别海底混合源沉积物中生物源物质相对贡献的重要参数.冲绳海槽有孔虫壳体强烈富集Sr,P,Mn和Ba,富集Li,U,Th,Sc,Co,Pb,Zn,Cr,Rb,Y,Sb和轻稀土元素,弱富集V,Ga,Zr,Nb,Cd和中稀土元素,相对贫Ge,Mo,In,Sn,Cs,Hf,Ta,W,Tl,Bi和重稀土元素,海水中微量元素的背景含量和生物活动对微量元素的选择性吸收是有孔虫壳体中微量元素发生富集和贫化的主要机制,冲绳海槽有孔虫壳体的稀土元素配分模式与海水和太平洋有孔虫的有明显差异,表现出中稀土元素相对富集,并具有微弱的负Ce异常.有孔虫壳体的Sr,Nd同位素比值也与大洋海水不同,分别为0.709769和0.512162,前者略高于大洋海水,后者略低于大洋海水,表明冲绳海槽海水明显受大陆河水影响.  相似文献   

4.
针对冲绳海槽中部热液活动区附近的沉积物岩芯(H9),利用碱熔法和等离子体发射光谱法对其稀土元素组成进行了分析。结果表明,在岩芯中稀土元素含量在75—80cm段发生转折,75cm以上岩芯段沉积物中稀土元素总量相对较高,而且稀土元素总量,尤其是轻稀土元素总量,与(Fe+Mn)/Al相关性较好。该段沉积物中稀土元素页岩标准化配分模式呈右倾或近似水平,突出特征表现为轻稀土间的明显分异和Eu的相对富集,与热液源稀土元素组成极为相似。与热液流体和热液硫化物相比,分异程度和Eu正异常程度都较低,同时,具有明显的负Ce异常,与海水的稀土配分模式相类似。由此可见,热液活动对该岩芯上段沉积物中稀土元素组成具有重要影响,一方面表现为热液源物质的直接输入,另一方面表现为热液颗粒物质沉积过程中对海水中稀土元素的清扫。  相似文献   

5.
对采自冲绳海槽中部现代海底热液活动区的H9岩心沉积物进行了常量、微量元素分析,结果表明大部分元素含量在岩心75~80 cm处有一个明显的突变,上段中明显富集多种微量元素,这些元素正好对应于海槽中非热液活动区沉积物中相对亏损的元素,是热液活动区沉积物中的富集特征元素.75~80 cm处岩心沉积物中元素含量突变标志着冲绳海槽中部现代海底热液活动的开始或显著加强.除锰外,在其他热液活动区(如洋中脊等)显著富集的铁、铜、钴、镍在该区富集程度不高,但铅、鉮、锑、汞在上段岩心沉积物中的平均含量较下段高3~6倍,较非热液活动区沉积物中含量高3~12倍.这些富集元素与冲绳海槽热液活动成因硫化物中富集元素非常一致,表明该区热液活动对沉积物中锰、铅、鉮、锑、汞具有重要贡献,锰、铅、鉮、锑、汞是海槽中部现代海底热液活动的特征性示踪元素组合.岩心沉积物中很好地记录了热液活动的发展演化,该区海底热液活动从距今5740a开始发生或显著增强,并且一直持续到现在,只是其间活动程度经历了强弱变化,岩心上段锰的平均堆积速率约为40.461μg/(cm2·ka),与其他热液活动区的相当.  相似文献   

6.
对采自冲绳海槽北部和南部唐印、第四与那国热液区附近的表层沉积物进行了主、微量和稀土元素分析。结果表明冲绳海槽北部和南部表层沉积物元素组成具有很大差异。北部沉积物中Ca、Sr、Na元素含量较高,大部分微量和总稀土元素含量较南部沉积物低。北部沉积物中有钙质生物组分及火山物质的加入,由于这些物质稀土含量较低,对沉积物中的稀土元素造成了稀释作用。北美页岩标准化稀土元素配分模式整体较平坦,轻稀土略富集,重稀土相对亏损,弱Ce和Eu异常,表明冲绳海槽北部表层沉积物陆源物质主要来自黄河和台湾河流输入的部分物质。冲绳海槽南部表层沉积物Si、Fe、Ba、Cu、Pb、Zn和稀土元素含量较高,轻重稀土分馏减弱,重稀土含量升高。由于受热液活动影响,一定量的黄铁矿、磁黄铁矿、重晶石及热液Fe-Mn氧化物的加入,使得南部沉积物的Fe以及部分微量元素含量升高,并表现出类似热液流体正Eu异常的稀土特征。这些Fe-Mn氧化物不仅从热液流体中清扫稀土元素,而且可以从海水中清扫稀土元素,使得沉积物负Ce异常减弱,总稀土含量升高。此外,样品中有一定量的过剩Si,来自热液活动。稀土元素配分模式及(La/Sm)N-(Gd/Yb)N比值表明冲绳海槽南部沉积物主要陆源物质来自台湾。  相似文献   

7.
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全岩样品。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 2 75℃ ) ,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 1 5 0℃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.
现代海底热液沉积物的硫同位素组成及其地质意义   总被引:17,自引:0,他引:17  
共收集到现代海底热液沉积物的1264个硫同位素数据,结合我们对冲绳海槽Jade热液区和大西洋中脊TAG热液区中表层热液沉积物的硫同位素研究成果,对比分析了不同地质-构造环境中海底热液沉积物的硫同位素组成特征及其硫源问题.结果表明:(1)现代海底热液沉积物中硫化物的硫同位素组成集中分布在1‰~9‰之间,均值为4.5‰(n=1042),而硫酸盐矿物的硫同位素组成主要分布在19‰~24‰之间,均值为21.3‰(n=217);(2)无论在洋中脊还是在弧后盆地扩张中心,无沉积物覆盖热液活动区中热液沉积物与有沉积物覆盖热液活动区相比,其硫同位素组成的分布范围相对狭窄;(3)各热液活动区中硫化物硫同位素组成的不同,反映出各自硫源的差异性.无沉积物覆盖洋中脊中热液成因硫化物的硫主要来自玄武岩,部分来自海水,是玄武岩和海水硫酸盐中硫不同比例混合的结果,而在弧后盆地和有沉积物覆盖的洋中脊,除了火山岩以外,沉积物和有机质均可能为热液硫化物的形成提供硫;(4)现代海底热液沉积物硫同位素组成的变化和硫源的不同可能归因于海底热液体系中流体物理化学性质的变化、岩浆演化和构造-地质背景的不同.  相似文献   

9.
本文研究了西太平洋典型弧后盆地冲绳海槽和马努斯海盆的区域地质背景、岩浆岩、喷口流体、热液柱、沉积物及多金属硫化物。结果表明,冲绳海槽在构造和地球物理特征上南北分异,从北向南地壳厚度减薄,南部重力异常变化大,发育条带状磁异常,中部则具有最高的热流值。马努斯海盆的重力异常变化较小,磁力异常呈东西向展布,海底扩张中心附近出现磁异常条带。马努斯海盆已出现洋壳,冲绳海槽的地壳属于过渡性地壳,在中南部的地堑中可能已出现洋壳。冲绳海槽与马努斯海盆玄武岩的岩浆是由源区地幔部分熔融产生的原始岩浆与板块俯冲组分混合构成。中酸性岩与基性岩具有相同的岩浆物质来源,是玄武质岩浆结晶分异的产物。与马努斯海盆火山岩相比,冲绳海槽火山岩存在不同程度的地壳混染。冲绳海槽的喷口流体为富含金属元素(Mn、Fe、Zn、Pb)的酸性高温(高达320°C)流体,其热液柱中的Zn~(2+)、Cd~(2+)、Pb~(2+)、Cu~(2+)离子浓度明显高于正常海水。马努斯海盆的热液柱呈现出CH_4、Mn、Al、δ~3He正异常及pH负异常的特征。与马努斯海盆PACMANUS热液区的喷口流体(220~276°C、pH=2.5~3.5)相比,DESMOS热液区的喷口流体温度(88~120°C或120°C以上)相对较低,酸性更强(pH≤2.1),二者较低的δ~(34)S_(H_2S)和δD值表明,岩浆演化过程中有酸性挥发分进入岩浆流体。冲绳海槽与马努斯海盆含金属沉积物的分布及其元素含量特征具有差异,相应地,两个弧后盆地含金属沉积物中的微生物群落也不同。冲绳海槽和马努斯海盆热液区均具富Zn型、Ba-Pb-Zn型、Si-硫化物型和Si-硫化物-硫酸盐型热液产物。与冲绳海槽的多金属硫化物相比,马努斯海盆中多金属硫化物的Pb和Au含量较低。  相似文献   

10.
西太平洋典型弧后盆地的地质构造、岩浆作用与热液活动   总被引:2,自引:0,他引:2  
研究了西太平洋典型弧后盆地冲绳海槽和马努斯海盆的区域地质背景、岩浆岩、喷口流体、热液柱、沉积物以及多金属硫化物。结果表明,冲绳海槽在构造和地球物理特征上南北分异,从北向南地壳厚度减薄,南部重力异常变化大,发育条带状磁异常,中部则具有最高的热流值。马努斯海盆的重力异常变化较小,磁力异常呈东西向展布,海底扩张中心附近出现磁异常条带。马努斯海盆已出现洋壳,冲绳海槽的地壳属于过渡性地壳,在中南部的地堑中可能已出现洋壳。 冲绳海槽与马努斯海盆玄武岩的岩浆是由地幔源区部分熔融产生的原始岩浆与板块俯冲组分混合构成。中酸性岩与基性岩具有相同的岩浆物质来源,是玄武质岩浆结晶分异的产物。与马努斯海盆火山岩相比,冲绳海槽火山岩存在不同程度的地壳混染。 冲绳海槽的喷口流体为富含金属元素(Mn、Fe、Zn、Pb)的酸性高温(高达320 °C)流体,其热液柱中的Zn2 、Cd2 、Pb2 、Cu2 离子浓度明显高于正常海水。马努斯海盆的热液柱呈现出CH4、Mn、Al、δ3He正异常及pH负异常的特征。与马努斯海盆PACMANUS热液区的喷口流体(220–276 °C、pH = 2.5–3.5)相比,DESMOS热液区的喷口流体温度(≥88–120 °C)相对较低,酸性更强(pH ≤ 2.1),二者较低的δ34SH2S和δD值表明岩浆演化过程中有酸性挥发分进入岩浆流体。冲绳海槽与马努斯海盆含金属沉积物的分布及其元素含量特征具有差异,相应地,两个弧后盆地含金属沉积物中的微生物群落也不同。冲绳海槽和马努斯海盆热液区均具富Zn型、Ba-Pb-Zn型、Si-硫化物型和Si-硫化物-硫酸盐型热液产物。与冲绳海槽的多金属硫化物相比,马努斯海盆中多金属硫化物的Pb和Au含量较低。  相似文献   

11.
Hydrothermal chimney is a product of hydrothermal activity on the seabed. Chimney samples dredged from Jade hydrothermal area in Izena depression of the Okinawa Trough, are characterized by relatively enriched light rare earth elements (LREE) and strongly positive Eu anomalies. 87Sr/86Sr and 143Nd/144Nd of these samples are exactly between those of seawater and of acidic pumice, averaged at 0.708928 and 0.512292, respectively. These characteristics imply that the main source of hydrothermal sulfide at Jade area is possibly the undersurface acidic rocks. The mineralizing mechanism can be summarized as follows: Large amount of mineralized material would be leached out and LREEenriched hydrothermal solution would be subsequently produced as a result of thermo-chemical exchange reaction between acidic volcanic rocks and heated seawater that penetrated in advance from upper water mass. The spurting out from the seabed and quickly crystallizing in the seawater of hydrothermal solution are responsible for the formation of Cu-Zn sulfide and barite-amorphous SiO2 minerals that are characterized by enriched LREE and positively strong Eu anomalies.  相似文献   

12.
Hydrothermal chimney is a product of hydrothermal activity on the seabed. Chimney samples dredged from Jade hydrothermal area in Izena depression of the Okinawa Trough, are characterized by relatively enriched light rare earth elements (LREE) and strongly positive Eu anomalies. ^87Sr/^86Sr and ^143Nd/^144Nd of these samples are exactly between those of seawater and of acidic pumice, averaged at 0.708928 and 0.512292, respectively. These characteristics imply that the main source of hydrothermal sulfide at Jade area is possibly the undersurface acidic rocks. The mineralizing mechanism can be summarized as follows: Large amount of mineralized material would be leached out and LREE-enriched hydrothermal solution would be subsequently produced as a result of thermo-chemical exchange reaction between acidic volcanic rocks and heated seawater that penetrated in advance from upper water mass. The spurting out from the seabed and quickly crystallizing in the seawater of hydrothermal solution are responsible for the formation of Cu-Zn sulfide and barite-amorphous SiO2 minerals that are characterized by enriched LREE and positively strong Eu anomalies.  相似文献   

13.
对南黄海西部陆架区486个表层沉积物样品的稀土元素进行了测试分析。结果表明:稀土元素总量分布特征受粒度影响,其含量总体上随平均粒径的减小而升高,但在局部站位其含量还可能受矿物控制。稀土元素相关参数,如轻重稀土元素分异度、铈异常以及铕异常基本不受粒度影响,而主要受源岩组分控制,可以进行有效的物源判别。研究区不同站位沉积物中稀土元素配分曲线均为右倾的负斜率模式,相对富集轻稀土元素,显示中等程度的铕负异常,无明显铈异常。稀土元素相关参数物源判别表明研究区物质主要来源于黄河。  相似文献   

14.
Active hydrothermal chimneys, as the product of submarine hydrothermal activity, can be used to determine the fluid evolution and formation process of potential volcanic-hosted massive sulfide deposits. A hard-won specimen from an active hydrothermal chimney was collected in the 49.6°E ultraslow-spreading Southwest Indian Ridge (SWIR) field through a television-guided grab. A geochemical study of prominent sulfide (e.g., pyrite and chalcopyrite) included in this sample was performed using laser ablation inductively coupled plasma mass spectroscopy. The early sulfides produced at low temperature are of disseminated fine-grained anhedral morphology, whereas the late ones with massive, coarse euhedral features precipitated in a high-temperature setting. The systematic variations in the contents of minor and trace elements are apparently related to the crystallization sequence, as well as to texture. Micro-disseminated anhedral sulfides rich in Pb, As, Ni, Ba, Mn, Mo, U, and V were formed during the initial chimney wall growth, whereas those rich in Sn, Se, and Co with massive, coarse euhedral morphology were formed within the late metallogenic stage. The hydrothermal fluid composition has experienced a great change during the chimney growth. Such a conclusion is consistent with that indicated by using principal component analysis, which is a powerful statistical analysis method widely used to project multidimensional datasets (e.g., element contents in different mineral phases) into a few directions. This distribution pattern points to crystallographic controls on minor and trace element uptake during chimney growth, occurring with concomitant variations in the fluid composition evolutionary history. In this pyrite-chalcopyrite-bearing active hydrothermal chimney at the SWIR, the metal concentration and precipitation of sulfides largely occurred at the seafloor as a result of mixing between the upwelling hot hydrothermal fluid and cold seawater. Over the course of mixing, significant variations in metal solubility were caused by changes in temperature, pH, and redox conditions in the parental fluid phase.  相似文献   

15.
Rhodium, one of the least abundant of the Pt-group elements in the earth's crust, has the second highest concentration in seawater. This may be a consequence of strong complexing, perhaps kinetically restrained with time constants of the order of centuries to millenia. The element shows a nutrient-like distribution in waters of the Pacific Ocean. Pelagic and coastal sediments have Rh concentrations close to crustal values. There is a remarkable enrichment of Rh in ferromanganese minerals that cannot be explained by oxidative capture. Unlike the other Pt-group elements, Rh is enriched in the high temperature hydrothermal sulfide deposits as well as phosphorites.  相似文献   

16.
A Tiburon ROV dive within the East Blanco Depression (EBD) increased the mapped extent of a known hydrothermal field by an order of magnitude. In addition, a unique opal-CT (cristobalite-tridymite)-hematite mound was discovered, and mineralized sediments and rock were collected and analyzed. Silica-hematite mounds have not previously been found on the deep ocean floor. The light-weight rock of the porous mound consists predominantly of opal-CT and hematite filaments, rods, and strands, and averages 77.8% SiO2 and 11.8% Fe2O3. The hematite and opal-CT precipitated from a low-temperature (≥ 115° C), strongly oxidized, silica- and iron-rich, sulfur-poor hydrothermal fluid; a bacterial mat provided the framework for precipitation.

Samples collected from a volcaniclastic rock outcrop consist primarily of quartz with lesser plagioclase, smectite, pyroxene, and sulfides; SiO2 content averages 72.5%. Formation of these quartz-rich samples is best explained by cooling in an up-flow zone of silica-rich hydrothermal fluids within a low permeability system. Opal-A, opal-CT, and quartz mineralization found in different places within the EBD hydrothermal field likely reflects decreasing silica saturation and increasing temperature of the mineralizing fluid with increasing silica crystallinity.

Six push cores recovered gravel, coarse sand, and mud mineralized variously by Fe or Mn oxides, silica, and sulfides. Total rare-earth element concentrations are low for both the rock and push core samples. Ce and Eu anomalies reflect high and low temperature hydrothermal components and detrital phases.

A remarkable variety of types of mineralization occur within the EBD field, yet a consistent suite of elements is enriched (relative to basalt and unmineralized cores) in all samples analyzed: Ag, Au, S, Mo, Hg, As, Sb, Sr, and U; most samples are also enriched in Cu, Pb, Cd, and Zn. On the basis of these element enrichments, the EBD hydrothermal field might best be described as a base- and precious-metal-bearing, silica-Fe-oxide-barite deposit. Such deposits are commonly spatially and temporally associated with volcanogenic massive sulfide (VMS) ores. A plot of data for pathfinder elements shows a large hot spot at the northwestern margin of the field, which may mark a region where moderate to high temperature sulfide deposits are forming at depth; further exploration of the hydrothermal field to the northwest is warranted.  相似文献   

17.
本文针对采自印度洋深海中最常见的两类生物成因沉积物——钙质软泥和硅质软泥,开展了全岩样和不同粒级组分中常微量元素、稀土元素和Y(REY)含量的系统分析,探讨了两类沉积物中REY的组成特征、物质来源和富集机制。研究表明,钙质软泥以富含CaO和Sr为主要特征,硅质软泥则富集SiO2、Al2O3、Fe2O3等。钙质软泥中∑REY平均含量为40.56×10-6,轻稀土元素(LREE)略有富集,REY有向细粒沉积物中富集的特征,PAAS标准化后全岩样和不同粒级组分均表现为Ce负异常、Eu和Y正异常;REY以自生来源为主,继承了海水的组成特征,同时也受到了热液流体物质和洋底玄武岩风化产物的影响。硅质软泥中∑REY的含量为248.54×10-6,LREE相对富集,REY在4φ以细的沉积物中富集;研究站位沉积物中∑REY含量处于边界品位附近,但在细粒级沉积物中重稀土元素(HREY)含量则达到了工业品位;该类沉积物细粒组分中REY主要来自陆源或火山碎屑组分中黏土矿物和铁锰氧化物吸附作用,粗粒组分中REY来源则主要与生物作用相关;硅质软泥中REY的富集与沉积物中磷灰石等矿物相关,部分不同来源的REY可能是在沉积之后的成岩过程中再次分配向磷灰石、钙十字沸石等矿物中富集。  相似文献   

18.
Si-Fe-Mn-oxyhydroxides dredged at the PACMANUS(Papua New Guinea–Australia–Canada–Manus)hydrothermal field, Eastern Manus Basin, have 87Sr/86Sr=0.708 079–0.708 581; εNd=5.149 833–6.534 826;208Pb/204Pb=38.245–38.440; 207Pb/204Pb=15.503–15.560; 206Pb/204Pb=18.682–18.783. 87Sr/86 Sr isotope ratios are relatively homogeneous and close to the value of the surrounding seawater(0.709 16). The content of Sr in the samples contributed by seawater was estimated to be 76.7%–83.1% of total amount. The mixing temperature of hydrothermal fluids and seawater were ranging from 53.2°C to 72.2°C and the hydrothermal activities were unstable when the samples precipitated. The εNd values of all the samples are positive, which differ from the values of ferromanganese nodules(crusts) with hydrogenic origin. Nd was mainly derived from substrate rocks leached by hydrothermal circulation and preserved the hydrothermal signature. Pb isotopic compositions of most samples show minor variability except Sample #9–2 that has relatively high values of Pb isotopes. The Pb may be derived from the Eastern Manus Basin rocks leached by the hydrothermal fluid. The slightly lower 208Pb/204 Pb and207Pb/204 Pb values of the samples indicated that the hydrothermal circulation in PACMANUS was not entire and sufficient, or that hydrothermal circulation had transient changes in the past. Si-Fe-Mn-oxyhydroxides in the samples preserved the heterogeneities of local rocks.  相似文献   

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