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1.
早石炭世大哈拉军山组是西天山地区与成矿关系密切的地层之一,查明其古沉积环境,对于区域找矿规律的研究、找矿方向的确定具有十分重要的意义。根据沉积、构造、古生物、流体等的研究,对大哈拉军山组火山岩的沉积环境进行了讨论,指出大哈拉军山组为陆相喷发的产物。通过地层微量元素特征的对比研究,发现微量元素在围岩、蚀变岩、矿石三间有规律地变化,认为大哈拉军山组是阿希型金矿的主要矿源层。  相似文献   

2.
西天山吐拉苏-也里莫墩金成矿带简述   总被引:9,自引:0,他引:9  
吐拉苏一也里莫墩矿带是西天山地区重要金矿成矿区.矿带内金矿赋存于晚古生代中期拉张(裂谷)环境下形成的早石炭世火山岩带内,金矿围岩为下石炭统大哈拉军山组陆相火山岩,成矿时代为早石炭世杜内-韦宪早期.矿带内金矿化可分为浅成低温热液系统(冰长石-绢云母型、硅化岩型)、斑岩型和沉积砾岩型.矿带内东、西两段控矿构造有差异:西部吐拉苏地区的阿希、京希开布拉克、伊尔曼得等金矿产于京希一阿希近南北向火山构造拗陷带内的火山机构构造系统(冰长石-绢云母型)和层间裂隙带(硅化岩型)中;东部也里莫墩地区的加特曼、铁列克特、小于赞等金矿床(点)产于吾拉斯台-郎布拉近东西向火山构造隆起带内的次火山穹丘构造系统中.  相似文献   

3.
新疆阿希地区金矿概论   总被引:40,自引:0,他引:40  
在新疆伊宁县阿希地区发现的大中型金矿床属于浅成低温热液金矿系统,赋存于晚古生代拉张环境下形成的吐拉苏火山盆地内,三级火山构造分别控制矿带,矿田和矿床,矿床围岩为下石炭统大哈拉军山组中酸性-酸性(偏碱性)陆相火山岩系,成矿时代为早石炭世杜内期,可分成冰长石-绢云母型和硅化岩型,在成矿时代,构造环境上有别于以前确认的浅成低温热液系统,对于扩大矿领域,推进区域成矿学的研究均具一定意义。  相似文献   

4.
基于前人的资料和本文获得的锆石SHRIMP数据,故建议解体“大哈拉军山组”。西天山东段拉尔敦达坂一带出露的火山岩是晚石炭世火山作用的产物,建议创名“拉尔敦达坂组”。新源城南的早石炭世火山-沉积岩依然使用“大哈拉军山组”。西天山西段大面积出露的“大哈拉军山组”火山岩比较复杂,原始创名剖面(特克斯南大哈拉军山一带)分布的早石炭世火山-沉积岩暂时继续使用“大哈拉军山组”的名称,但其北部大面积分布(昭苏北—特克斯—巩留-阿希金矿地区)的火山岩形成于晚泥盆世(而不是以前认为的早石炭世),建议用“特克斯达坂组”表述这套晚泥盆世火山—沉积地层。  相似文献   

5.
新疆阿希地区金矿概论   总被引:3,自引:0,他引:3  
在新疆伊宁县阿希地区发现的大中型金矿床属于浅成低温热液金矿系统,赋存于晚古生代拉张环境下形成的吐拉苏火山盆地内,三级火山构造分别控制矿带、矿田和矿床.矿床围岩为下石炭统大哈拉军山组中酸性-酸性(偏碱性)陆相火山岩系,成矿时代为早石炭世杜内期,可分成冰长石-绢云母型和硅化岩型.在成矿时代、构造环境上有别于以前确认的浅成低温热液系统,对于扩大找矿领域,推进区域成矿学的研究均具一定意义.  相似文献   

6.
吐拉苏一也里莫墩火山岩带是西天山北段晚古生代构造一岩浆成矿带的重要组成部分,它严格控制着矿带内金矿床的时空分布.在充分研究前人资料的基础上,本文实测了也里莫墩地区加曼特金矿围岩大哈拉军山组火山岩剖面,发现火山岩地层与矿化关系密切.利用LA-ICP-MS锆石U-Pb方法测定了金矿赋矿围岩(英安岩)的形成时代,其206pb...  相似文献   

7.
阿希金矿主要蚀变类型及其与金矿化关系   总被引:17,自引:2,他引:15  
董连慧 《地质与资源》2001,10(3):129-132
阿希金矿床赋存于下石炭统大哈拉军山组陆相火山岩中,成矿与破火山口(火山机构)环状断裂构造系统有关,属典型的冰长石-绢云母型大型金矿.阿希金矿近矿围岩蚀变为硅化、绢云母化、冰长石化、叶腊石化、绿泥石化等,以主矿体为中心向两侧共划分出6个蚀变矿物组合带,其中强硅化带和绢英岩化带与金矿化关系密切.  相似文献   

8.
西天山阿吾拉勒铁矿成矿带发现大、中型铁矿床10处,为近年来我国新发现的十大资源接替基地中唯一铁矿资源接替基地。该带火山岩型铁矿床研究程度较低,成矿时代和赋矿地层层位认识混乱。在已有研究成果基础上,结合笔者多年地层研究成果,认为该区铁矿存在两个成矿期及赋矿层位,即晚石炭世早期(313~317 Ma±)巴什基尔期和早石炭世晚期(321 Ma±)谢尔普霍夫期。前者包括式可布台铁矿,赋矿地层为则克台组;后者包括查岗诺尔铁矿、备战铁矿等,其赋矿火山岩系地层被多数研究者称为大哈拉军山组。据生物地层和同位素测年成果,该地层层位和时代相当于阿克沙克组上亚组,但二者岩性迥异。其与大哈拉军山组为年代相差约30 Ma的不同层位,区域上两组间呈角度不整合接触关系。因此,建议对该赋矿地层创建新的地层单元名称。  相似文献   

9.
西天山吐拉苏—也里莫墩金态矿带简述   总被引:2,自引:0,他引:2  
董连慧  田昌烈 《地质与资源》2001,10(2):85-90,101
吐拉苏-也里莫墩矿带是西天山地区重要金矿成矿区,矿带内金矿赋存于晚古生代中期张张(裂谷)环境下形成的早石炭世火山岩带内,金矿围岩为下石炭统大哈拉军山组陆火山岩,成矿时代为早石炭世社内-韦宪早期。矿带内金矿化可分为浅成温热液系统(冰长石-绢云母型、硅化岩型)、斑岩型和沉积砾岩型。矿带内东、西两段控矿构造有差异;西部吐拉苏地区的阿希、京希开布拉克、尔曼得等金矿产于京希-阿希近南北向火山构造拗陷带内的火机机构构造系统(冰长石-绢云母型)和层间裂隙带(硅化岩型)中;东部也里莫墩地区的地曼、铁列克特、小于赞等金矿床(点)产于吾拉斯台-郎布拉近东西向火山构造隆起带内的次火山穹丘构造系统中。  相似文献   

10.
新疆阿希金矿:古生代的低硫型浅成低温热液金矿床   总被引:10,自引:0,他引:10       下载免费PDF全文
新疆阿希金矿床为一形成于古生代的低硫型浅成低温热液金矿床,矿床产于伊犁—中天山板块北部中天山北缘活动大陆边缘的吐拉苏火山岩断陷盆地中。其赋矿围岩为大哈拉军山组安山质火山岩和火岩碎屑岩,矿体呈脉状产于古火山口外围的环形断裂带中,主要金属矿物有自然金、银金矿、黄铁矿、白铁矿、毒砂、赤铁矿、褐铁矿以及微量的浓红银矿、硒银矿、硫锑铜银矿、角银矿等,非金属矿物有石英、玉髓、菱铁矿、方解石、绢云母、冰长石等,围岩蚀变作用主要有硅化、绢云母化、碳酸盐化和青盘岩化。矿床以富集Au、Ag、As、Sb、Bi、Hg、Se、Te、Mo元素组合为特征,Ag/Au比值小,为0.46~11.1。氢、氧、碳、硫及稀有气体同位素组成特征显示其成矿流体主要为循环大气降水;成矿流体盐度主要为0.7%~3.1%NaCl_(eqv),平均为2.2%NaCl_(eqv);成矿温度为120~240℃,平均190℃;最大成矿深度约700 m。沸腾作用是引起成矿流体中矿质发生沉淀富集的主要成矿机制,成矿作用过程中流体处于近中性pH值的还原环境,成矿时代介于晚泥盆世晚期((363.2±5.7)Ma)到早石炭世维宪期。其一系列特征显示该矿是一个典型的、形成于古生代的低硫型浅成低温热液型金矿床。矿床得以保存与矿床形成后很快被阿恰勒河组沉积盖层覆盖有关,从上新世开始由于印度板块对欧亚板块的碰撞挤压作用,天山造山带被快速抬升遭受风化剥蚀作用使矿床重新露出地表而被发现。阿希金矿的发现对于在中、新生代以前的造山带中寻找浅成低温热液型金矿床具有重要的借鉴和指导意义。  相似文献   

11.
This paper reports the first results of a study of 11 isotope systems (3He/4He, 40Ar/36Ar, 34S/32S, 65Cu/63Cu, 62Ni/60Ni, 87Sr/86Sr, 143Nd/144Nd, 206–208Pb/204Pb, Hf–Nd, U–Pb, and Re–Os) in the rocks and ores of the Cu–Ni–PGE deposits of the Norilsk ore district. Almost all the results were obtained at the Center of Isotopic Research of the Karpinskii All-Russia Research Institute of Geology. The use of a number of independent genetic isotopic signatures and comprehensive isotopic knowledge provided a methodic basis for the interpretation of approximately 5000 isotopic analyses of various elements. The presence of materials from two sources, crust and mantle, was detected in the composition of the rocks and ores. The contribution of the crustal source is especially significant in the paleofluids (gas–liquid microinclusions) of the ore-forming medium. Crustal solutions were probably a transport medium during ore formation. Air argon is dominant in the ores, which indicates a connection between the paleofluids and the atmosphere. This suggests intense groundwater circulation during the crystallization of ore minerals. The age of the rocks and ores of the Norilsk deposits was determined. The stage of orebody formation is restricted to a narrow age interval of 250 ± 10 Ma. An isotopic criterion was proposed for the ore-bearing potential of mafic intrusions in the Norilsk–Taimyr region. It includes several interrelated isotopic ratios of various elements: He, Ar, S, and others.  相似文献   

12.
最新的流行病学研究表明,空气中较高浓度的悬浮细颗粒可能对人类的健康有不利的影响。根据该项研究显示,由于心脏病、慢性呼吸问题和肺功能指标恶化而导致死亡率的升高与细尘粒子有关。这些研究结果已经促使欧盟于1999年4月出台了限制空气中二氧化硫、二氧化氮、氧化氮、铅和颗粒物含量的法案(1999/30/EC),对各项指标包括对可吸入PM10颗粒的浓度提出了新的限制性指标。PM10颗粒是指可以通过预分级器分离采集的气体动力学直径小于10μm的细颗粒。目前研究的兴趣重点逐步偏向PM2.5这些更细微颗粒物,PM2.5这种颗粒物对健康有明显的不利影响。在欧盟指令2008/50/EC中,对PM10和PM2.5都提  相似文献   

13.
Komatiites are mantle-derived ultramafic volcanic rocks. Komatiites have been discovered in several States of India, notably in Karnataka. Studies on the distribution of trace-elements in the komatiites of India are very few. This paper proposes a simple, accurate, precise, rapid, and non-destructive wavelength-dispersive x-ray fluorescence (WDXRF) spectrometric technique for determining Sc, V, Cr, Co, Ni, Cu, Zn, Rb, Sr, Y, Zr, Nb, Ba, Pb, and Th in komatiites, and discusses the accuracy, precision, limits of detection, x-ray spectral-line interferences, inter-element effects, speed, advantages, and limitations of the technique. The accuracy of the technique is excellent (within 3%) for Sc, V, Cr, Co, Ni, Cu, Zn, Rb, Sr, Zr, Nb, Ba, Pb, and Th and very good (within 4%) for Y. The precision is also excellent (within 3%) for Sc, V, Cr, Co, Ni, Cu, Zn, Rb, Sr, Y, Zr, Nb, Ba, Pb, and Th. The limits of detection are: 1 ppm for Sc and V; 2 ppm for Cr, Co, and Ni; 3 ppm for Cu, Zn, Rb, and Sr; 4 ppm for Y and Zr; 6 ppm for Nb; 10 ppm for Ba; 13 ppm for Pb; and 14 ppm for Th. The time taken for determining Sc, V, Cr, Co, Ni, Cu, Zn, Rb, Sr, Y, Zr, Nb, Ba, Pb, and Th in a batch of 24 samples of komatiites, for a replication of four analyses per sample, by one operator, using a manual WDXRF spectrometer, is only 60 hours.  相似文献   

14.
The Kuskokwim River at Bethel, Alaska, drains a major mercury-antimony metallogenic province in its upper reaches and tributaries. Bethel (population 4000) is situated on the Kuskokwim floodplain and also draws its water supply from wells located in river-deposited sediment. A boring through overbank and floodplain sediment has provided material to establish a baseline datum for sediment-hosted heavy metals. Mercury (total), arsenic, antimony, and selenium contents were determined; aluminum was also determined and used as normalizing factor. The contents of the heavy metals were relatively constant with depth and do not reflect any potential enrichment from upstream contaminant sources.  相似文献   

15.
Most sulfide-rich magmatic Ni-Cu-(PGE) deposits form in dynamic magmatic systems by partial melting S-bearing wall rocks with variable degrees of assimilation of miscible silicate and volatile components, and generation of barren to weakly-mineralized immiscible Fe sulfide xenomelts into which Ni-Cu-Co-PGE partition from the magma. Some exceptionally-thick magmatic Cr deposits may form by partial melting oxide-bearing wall rocks with variable degrees of assimilation of the miscible silicate and volatile components, and generation of barren Fe ± Ti oxide xenocrysts into which Cr-Mg-V ± Ti partition from the magma. The products of these processes are variably preserved as skarns, residues, xenoliths, xenocrysts, xenomelts, and xenovolatiles, which play important to critical roles in ore genesis, transport, localization, and/or modification. Incorporation of barren xenoliths/autoliths may induce small amounts of sulfide/chromite to segregate, but incorporation of sulfide xenomelts or oxide xenocrysts with dynamic upgrading of metal tenors (PGE > Cu > Ni > Co and Cr > V > Ti, respectively) is required to make significant ore deposits. Silicate xenomelts are only rarely preserved, but will be variably depleted in chalcophile and ferrous metals. Less dense felsic xenoliths may aid upward sulfide transport by increasing the effective viscosity and decreasing the bulk density of the magma. Denser mafic or metamorphosed xenoliths may also increase the effective viscosity of the magma, but may aid downward sulfide transport by increasing the bulk density of the magma. Sulfide wets olivine, so olivine xenocrysts may act as filter beds to collect advected finely dispersed sulfide droplets, but other silicates and xenoliths may not be wetted by sulfides. Xenovolatiles may retard settling of – or in some cases float – dense sulfide droplets. Reactions of sulfide melts with felsic country rocks may generate Fe-rich skarns that may allow sulfide melts to fractionate to more extreme Cu-Ni-rich compositions. Xenoliths, xenocrysts, xenomelts, and xenovolatiles are more likely to be preserved in cooler basaltic magmas than in hotter komatiitic magmas, and are more likely to be preserved in less dynamic (less turbulent) systems/domain/phases than in more dynamic (more turbulent) systems/domains/phases. Massive to semi-massive Ni-Cu-PGE and Cr mineralization and xenoliths are often localized within footwall embayments, dilations/jogs in dikes, throats of magma conduits, and the horizontal segments of dike-chonolith and dike-sill complexes, which represent fluid dynamic traps for both ascending and descending sulfides/oxides. If skarns, residues, xenoliths, xenocrysts, xenomelts, and/or xenovolatiles are present, they provide important constraints on ore genesis and they are valuable exploration indicators, but they must be included in elemental and isotopic mass balance calculations.  相似文献   

16.
《Applied Geochemistry》2001,16(2):137-159
Five hundred and ninety-eight samples of terrestrial moss (Hylocomium splendens and Pleurozium schreberi) collected from a 188,000 km2 area of the central Barents region (NE Norway, N Finland, NW Russia) were analysed by ICP-AES and ICP-MS. Analytical results for Al, B, Ba, Ca, K, La, Mg, Mn, Na, P, Rb, Si, Sr, Th, U and Y concentrations are reported here. Graphical methods of data analysis, such as geochemical maps, cumulative frequency diagrams, boxplots and scatterplots, are used to interpret the origin of the patterns for these elements. None of the elements reported here are emitted in significant amounts from the smelting industry on the Kola Peninsula. Despite the conventional view that moss chemistry reflects atmospheric element input, the nature of the underlying mineral substrate (regolith or bedrock) is found to have a considerable influence on moss composition for several elements. This influence of the chemistry of the mineral substrate can take place in a variety of ways. (1) It can be completely natural, reflecting the ability of higher plants to take up elements from deep soil horizons and shed them with litterfall onto the surface. (2) It can result from naturally increased soil dust input where vegetation is scarce due to harsh climatic conditions for instance. Alternatively, substrate influence can be enhanced by human activity, such as open-cast mining, creation of ‘technogenic deserts’, or handling, transport and storage of ore and ore products, all of which magnify the natural elemental flux from bedrock to ground vegetation. Seaspray is another natural process affecting moss composition in the area (Mg, Na), and this is most visible in the Norwegian part of the study area. Presence or absence of some plant species, e.g., lichens, seems to influence moss chemistry. This is shown by the low concentrations of B or K in moss on the Finnish and Norwegian side of the (fenced) border with Russia, contrasting with high concentrations on the other side (intensive reindeer husbandry west of the border has selectively depleted the lichen population).  相似文献   

17.
This paper discusses the result of the detailed investigations carried out on the coal characteristics, including coal petrography and its geochemistry of the Pabedana region. A total of 16 samples were collected from four coal seams d2, d4, d5, and d6 of the Pabedana underground mine which is located in the central part of the Central-East Iranian Microcontinent. These samples were reduced to four samples through composite sampling of each seam and were analyzed for their petrographic, mineralogical, and geochemical compositions. Proximate analysis data of the Pabedana coals indicate no major variations in the moisture, ash, volatile matter, and fixed carbon contents in the coals of different seams. Based on sulfur content, the Pabedana coals may be classified as low-sulfur coals. The low-sulfur contents in the Pabedana coal and relatively low proportion of pyritic sulfur suggest a possible fresh water environment during the deposition of the peat of the Pabedana coal. X-ray diffraction and petrographic analyses indicate the presence of pyrite in coal samples. The Pabedana coals have been classified as a high volatile, bituminous coal in accordance with the vitrinite reflectance values (58.75–74.32 %) and other rank parameters (carbon, calorific value, and volatile matter content). The maceral analysis and reflectance study suggest that the coals in all the four seams are of good quality with low maceral matter association. Mineralogical investigations indicate that the inorganic fraction in the Pabedana coal samples is dominated by carbonates; thus, constituting the major inorganic fraction of the coal samples. Illite, kaolinite, muscovite, quartz, feldspar, apatite, and hematite occur as minor or trace phases. The variation in major elements content is relatively narrow between different coal seams. Elements Sc,, Zr, Ga, Ge, La, As, W, Ce, Sb, Nb, Th, Pb, Se, Tl, Bi, Hg, Re, Li, Zn, Mo, and Ba show varying negative correlation with ash yield. These elements possibly have an organic affinity and may be present as primary biological concentrations either with tissues in living condition and/or through sorption and formation of organometallic compounds.  相似文献   

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The lower part of the Cretaceous Sego Sandstone Member of the Mancos Shale in east‐central Utah contains three 10‐ to 20‐m thick layers of tide‐deposited sandstone arranged in a forward‐ and then backward‐stepping stacking pattern. Each layer of tidal sandstone formed during an episode of shoreline regression and transgression, and offshore wave‐influenced marine deposits separating these layers formed after subsequent shoreline transgression and marine ravinement. Detailed facies architecture studies of these deposits suggest sandstone layers formed on broad tide‐influenced river deltas during a time of fluctuating relative sea‐level. Shale‐dominated offshore marine deposits gradually shoal and become more sandstone‐rich upward to the base of a tidal sandstone layer. The tidal sandstones have sharp erosional bases that formed as falling relative sea‐level allowed tides to scour offshore marine deposits. The tidal sandstones were deposited as ebb migrating tidal bars aggraded on delta fronts. Most delta top deposits were stripped during transgression. Where the distal edge of a deltaic sandstone is exposed, a sharp‐based stack of tidal bar deposits successively fines upward recording a landward shift in deposition after maximum lowstand. Where more proximal parts of a deltaic‐sandstone are exposed, a sharp‐based upward‐coarsening succession of late highstand tidal bar deposits is locally cut by fluvial valleys, or tide‐eroded estuaries, formed during relative sea‐level lowstand or early stages of a subsequent transgression. Estuary fills are highly variable, reflecting local depositional processes and variable rates of sediment supply along the coastline. Lateral juxtaposition of regressive deltaic deposits and incised transgressive estuarine fills produced marked facies changes in sandstone layers along strike. Estuarine fills cut into the forward‐stepped deltaic sandstone tend to be more deeply incised and richer in sandstone than those cut into the backward‐stepped deltaic sandstone. Tidal currents strongly influenced deposition during both forced regression and subsequent transgression of shorelines. This contrasts with sandstones in similar basinal settings elsewhere, which have been interpreted as tidally influenced only in transgressive parts of depositional successions.  相似文献   

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