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1.
河北承德大庙铁矿床地质构造特征与找矿预测 总被引:2,自引:0,他引:2
大庙斜长岩杂岩体位于华北克拉通北缘,是我国唯一岩体型斜长岩杂岩体,赋存了丰富的Fe-Ti-P矿床.对该杂岩体的岩石学、矿床成因研究已经较为深入,但是矿田构造研究较为薄弱.本文主要从大庙矿床地质特征分析入手,通过控矿构造分析和成矿期构造应力场的恢复,结合成矿特征分析,建立大庙矿床找矿预测模型,开展找矿预测.在大庙杂岩体内,先后找到了大庙、黑山、马营和罗锅子沟等中—大型矿床,它们都具有典型的岩浆矿床特征,具有岩浆熔离、分异和贯入式成矿特征;系统的野外地质调查和翔实的构造解析表明,大庙杂岩体的侵位受控于EW向隆化-平泉和大庙-红石砬子的断裂构造,杂岩体内NE和NW向两组断裂构造控制了杂岩体内铁-铁磷矿带的发育,NS向断裂则主要为成矿后构造,往往错断了铁矿体.在黑山矿区,野外观测发现含矿苏长岩利用了固结斜长岩中发育的节理,呈脉状贯入,在节理交汇部位铁矿体变大变富;通过节理和矿脉走向的详细测量和吴氏网统计分析,推测大庙矿区成矿期含矿苏长岩的侵位受控于区域上近似NS向的挤压应力作用.根据大庙杂岩体的岩浆侵位时代、岩相-矿体的接触关系、控矿构造和成矿特征,复原了大庙杂岩体的成矿-构造演化过程:最早期区域构造活动控制了斜长岩的侵位,没有发生矿化;苏长岩的侵位,伴随发生了早期的结晶分凝式矿化;块状苏长岩的侵位导致了晚期的熔离-贯入式矿化的形成;成矿期后,大庙杂岩体还经历了多期次的构造变动、抬升和剥蚀.在此基础上,建立了大庙铁矿床的找矿预测模型,并系统分析了大庙矿田不同矿区的深部和外围的找矿潜力,认为黑山和大庙矿区的深部、黑山矿区东侧和北侧、大庙杂岩体的东部边缘可能被中生界覆盖的区域等地段都具有很好的找矿空间,大庙矿区铁矿资源潜力巨大. 相似文献
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Sulphur isotope data from coexisting sulphides and sulphates from the Taolin Pb-Zn ore deposit have been used to estimate the temperatures of sulphur mineral precipitation. The data indicate that sulphide was the dominant sulphur species in solution at high temperatures and that sulphate was dominant at low temperatures. Also the data show that the δ34S value of total sulphur in solution was close to zero at high temperatures (~325°C) but had high positive values (+15%.) at low temperatures (~250°C). We interpret this phenomenon in terms of the effects of mineral precipitation on the isotopic composition of the solution. The increase in the δ34S value of total sulphur with decreasing temperature was brought about by the removal from the system, by precipitation, of isotopically light sulphides. 相似文献
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河南舞阳地区赵案庄铁矿床成矿时代及地质意义——中国最古老的岩浆型铁矿床 总被引:1,自引:0,他引:1
河南舞阳地区赵案庄铁矿床是产于超基性岩中的隐伏矿床。超基性岩侵位于新太古界太华群赵案庄组透辉斜长角闪片麻岩中。矿体呈似层状,具有多层。矿石成分较复杂,主要矿物为磁铁矿、蛇纹石、氟磷灰石等。矿床规模为中等,其成因是与超基性岩有关的岩浆晚期磷灰石-磁铁矿矿床。在磷灰蛇纹磁铁矿石中选出的锆石样品为变质锆石,利用激光烧蚀多接收器电感耦合等离子体质谱仪(LA-MC-ICPMS)进行微区原位U_Pb同位素测年,获得不一致线的上交点年龄为(1943±5)Ma(MSWD=2.3)。同时对锆石阴极发光(CL)图像研究,表明该年龄代表锆石遭受强烈变质作用的年龄,可以限定矿体形成时代的上限,即矿体形成时代不晚于1943 Ma。超基性岩浆演化晚期,岩浆充填构造裂隙呈透辉石岩脉产出。透辉石脉与矿体同期并且穿切铁山庙组BIF型铁山铁矿。铁山庙组形成时代在2300~2500 Ma之间。透辉石岩脉形成时代不早于该组年龄,可作为赵案庄铁矿床形成时代的下限。赵案庄铁矿床的形成时代为1943~2300 Ma,为古元古代,这是中国目前发现的最古老的岩浆型铁矿床。该成矿地质时代反映了在华北陆块东南缘曾发生过一次地壳扩张和裂陷活动及华北克拉通裂解事件。 相似文献
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The Damiao type iron deposit is hosted in a typical Proterozoic anorthosite complex in the northern North China Craton. The types of ores in Damiao mainly comprise massive Fe ores, massive Fe–P ores, and disseminated Fe and Fe–P ores. The disseminated Fe and Fe–P ores formed by fractional crystallization are generally hosted in oxide-apatite gabbronorite and account for 70% of the proven reserve of the Damiao type iron ore. The massive Fe and Fe–P ores account for 30% of the proven reserve of the Damiao type deposit iron ore and generally occur as irregular dykes or veins filling vertical fractures of the previously consolidated anorthosite, showing typical features of hydrothermal mineralization. The contact between the massive orebodies and wall rocks is sharp and straight. The anorthosite comprises white and dark varieties, with the former resulted by the alteration of the latter that occurs as relicts. Petrographic observation and electron microprobe analyses show abundant Fe–Ti oxide inclusions in plagioclase which impart the dark color to the rock. The similar spider diagram patterns between fresh and altered plagioclase and between dark- and white-colored anorthosite imply a genetic relationship between the dark and white types. During the alteration of anorthosite, CaO and MgO were slightly decreased, the SiO2, Al2O3 and Na2O were significantly increased, and the TFe2O3 and TiO2 were significantly decreased. The TFe2O3 and TiO2 in the dark-colored anorthosite have a range of 4.86–12.18 wt.% and 0.37–1.65 wt.%, respectively. However, The TFe2O3 and TiO2 in the white-colored anorthosite have a range of 1.67–3.1 wt.% and 0.14–0.31 wt.%, respectively. These features suggest that the alteration of the anorthosite led the Fe element by leaching from the dark-colored anorthosite at highly oxidized condition, and then precipitated within the fractures of the anorthosite, thus forming the massive Fe and Fe–P orebodies. Because the estimated amount of transported Fe is much more abundant than the proven ore reserve, we infer that there should be huge potential for prospecting Damiao type iron ores. 相似文献
5.
近年来华北沉积变质型铁矿的勘查工作取得了丰硕成果,但西藏此类矿床的勘查和研究程度较低。通过整理下司马铁矿的勘查资料,与5个华北典型铁矿的地质和地球化学特征进行对比研究,认为下司马铁矿属粒状铁建造(granular iron formation, GIF),成矿时代为中元古代(1.80~1.25 Ga),矿床成因可能是陆源风化和海底热液带来的Fe2+在浅海大陆架氧化沉淀成矿,矿石整体较富集可能是原始沉积、岩浆热液的淋滤作用、区域变质作用等因素引起。下一步找矿工作应以高喜马拉雅成矿亚带的聂拉木岩群和亚东岩群为目标层位; 重磁异常可作为重要的找矿标志,但应注意对局部低缓异常的解读; 断裂和褶皱作用会影响矿体的最终定位,需注意辨别其性质。下司马铁矿和华北典型铁矿的对比研究可以为西藏地区沉积变质型铁矿的找矿提供参考。 相似文献
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铁氧化物(以磁铁矿和赤铁矿最为常见)是铁矿床中最主要的含铁矿物,其氧同位素地球化学对于铁矿的成因研究具有重要意义。本文在总结了铁氧化物氧同位素分馏理论、不同成因类型铁矿形成过程的基础上,对世界主要类型铁矿铁氧化物的氧同位素组成特征和分馏规律进行了总结,并以新疆智博、查岗诺尔、备战海相火山岩型铁矿为例,开展了磁铁矿氧同位素地球化学研究。结果发现,这些铁矿中磁铁矿氧同位素组成δ18OSMOW集中在1‰~3‰之间,表明其形成于岩浆作用主导的高温岩浆/岩浆-热液环境,后期低温热液作用对铁的成矿作用影响有限。 相似文献
7.
伊尔岗克拉通位于澳大利亚西南部,是地球上最古老的克拉通之一。该克拉通内产出的铁矿床均与条带状含铁建造(BIF)有关,可分为2种类型:①深成—表生矿床;②表生—富集矿床,主要分布在尤恩米(Youanmi)地体中。深成—表生型铁矿床具有相似的变形历史、镁铁质火成岩围岩、深成热液蚀变事件和高品位的铁矿石类型。深成热液蚀变包括早期碳酸盐-磁铁矿蚀变、中期形成磁铁矿矿石、晚期碳酸盐-赤铁矿蚀变,但是这些矿床在岩相、变质程度、矿物学和地球化学方面都存在差异,目前还没有统一的成因模型。表生—富集型铁矿床可能是通过表生淋滤BIF中的硅质条带形成的,但不含硅质条带的BIF的出现,说明没有对硅质条带的选择性表生溶解也可以形成高品位矿体。 相似文献
8.
伊尔岗克拉通位于澳大利亚西南部,是地球上最古老的克拉通之一。该克拉通内产出的铁矿床均与条带状含铁建造(BIF)有关,可分为2种类型:1深成—表生矿床;2表生—富集矿床,主要分布在尤恩米(Youanmi)地体中。深成—表生型铁矿床具有相似的变形历史、镁铁质火成岩围岩、深成热液蚀变事件和高品位的铁矿石类型。深成热液蚀变包括早期碳酸盐-磁铁矿蚀变、中期形成磁铁矿矿石、晚期碳酸盐-赤铁矿蚀变,但是这些矿床在岩相、变质程度、矿物学和地球化学方面都存在差异,目前还没有统一的成因模型。表生—富集型铁矿床可能是通过表生淋滤BIF中的硅质条带形成的,但不含硅质条带的BIF的出现,说明没有对硅质条带的选择性表生溶解也可以形成高品位矿体。 相似文献
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共生黑钨矿与石英等多种矿物中流体包裹体的红外显微测温对比研究——以江西西华山石英脉钨矿床为例 总被引:3,自引:0,他引:3
西华山钨矿床是一个产于燕山期花岗岩中的大脉型钨矿床。已有百余年的开采史。但在矿床成矿条件和成矿流体性质等方面一直存在不同认识。作者利用红外显微镜及其它相关设备,对西华山矿床不同中段样品中的黑钨矿、锡石、绿柱石、黄铁矿、闪锌矿、石英和萤石中的流体包裹体进行了详细对比研究。结果显示,蚀变花岗岩中造岩石英只见次生气液包裹体,晶洞水晶中只有原生包裹体,而云英岩石英中原生、次生包裹体均较发育。黑钨矿中以原生气液包裹体为主,在早期结晶的黑钨矿中还有较多的硅酸盐熔融包裹体,而晶洞中的黑钨矿和水晶一样——只有原生气液包裹体。绿柱石中除了硅酸盐包裹体外,主要是气液包裹体(多为次生)。其它锡石、黄铁矿、闪锌矿和萤石等都只有气液包裹体(原生或次生)。研究结果表明,西华山钨矿床的初始成矿流体是一种岩浆——热液过渡性流体,尔后才演变成单一的热水溶液,在这一过程中黑钨矿、黄铁矿、闪锌矿、萤石和石英等矿物不断晶出。矿床总的成矿温度大致为700~200℃,压力约为160~200MPa。各种气液包裹体的盐度主要为5.0%~10%Na Cleqv。文中还对这些数据的地质意义以及对脉钨矿床流体包裹体研究和数据解释中的某些问题进行了较深入的讨论。 相似文献
12.
The Zhongtiao Mountain is located in the southern part of the North China Craton. The area experienced multi-stage tectono-magmatic events during the Precambrian, including Neoarchean-Early Paleoproterozoic (2550–2350 Ma) crustal growth, Paleoproterozoic (2350–1850 Ma) rifting–subduction–accretion–collision, and Early Mesoproterozoic (1800–1750 Ma) extension. The geological events contributed to a major copper mineral system in the region. Here we evaluate the processes of the mineral system, such as the source of metals, migration pathways, the formation of trap zones, and the deposition of metal in an attempt to establish a mineral accumulation evaluation model for regional ore prospecting. A three-step process has been proposed in this study as follows. (i) Determining the spatial and temporal distribution of the essential elements and processes of the mineral system to understand the most critical ore-controlling factors. (ii) Translating the ore-forming processes into mappable features and quantitative extraction of the information on mineralization using Geographic Information System (GIS) technology to establish a mineral accumulation evaluation model. They were treated as evidence layers for weight-of-evidence (WofE) analysis. (iii) Utilizing the weighted values of the evidence layers to create a posterior probability map. Based on the posterior probabilities, four mineral accumulation horizons were finally delineated for the Zhongtiao Mountain, which are considered to provide important guidelines for further ore exploration and study. 相似文献
13.
华北克拉通北缘~1.74Ga大庙斜长岩杂岩体赋含有大型Fe-Ti-P矿床。采用分步加热质谱法分别测定了块状Fe-Ti矿石、块状Fe-Ti-P矿石和浸染状矿石中磁铁矿、磷灰石和斜长石释出的挥发份组成、含量以及C-H-O同位素组成。依据矿物的释气总量变化特征将释气过程分为三个阶段:200~400℃、400~800℃和800~1200℃。根据不同类型矿石中矿物在不同释气阶段的挥发份组成、含量以及C-H-O同位素组成,可将含矿岩体中的流体类型分成四种:(1)斜长石800~1200℃阶段释出的变质流体,主要以H2O、N2+CO和CO2为主;(2)斜长石400~800℃阶段释出的幔源流体组分,主要以H2O、H2、CH4和CO2为主;(3)磁铁矿400~800℃阶段释出的地表流体,主要以H2O、CO2、SO2和H2S为主;(4)所有矿物200~400℃阶段释出的代表后期次生包裹体的组分,以H2O和CO2为主。矿石中的磁铁矿相对富集H2O和CO2等流体组分,是在相对氧化的条件下结晶的;而斜长石释出气体中H2和CH4的含量较高,是在相对还原的环境中结晶的。这反映出斜长石可能是在岩浆早期相对还原的条件下结晶的,而磁铁矿是在岩浆演化晚期相对氧化的条件下结晶的,这一过程的转变可能与岩浆演化晚期,岩浆中的挥发份逐渐聚集以及地表流体的加入有关。岩浆中H2O和CO2等流体含量的不断增加导致岩浆的氧逸度逐渐升高,最终造成磁铁矿的大量结晶并富集成矿。 相似文献
14.
Isotopes (RbSr, C, O, S, and Pb) were investigated from the Zhenzigou PbZn deposit in the Qingchengzi mineral field (QMF) of the North China Craton as an aid to determine the genesis of stratiform PbZn deposits in the Liao-Ji Rift. A step-dissolution RbSr age of 1798 ± 8 Ma with 206Pb/204Pb ratios of 17.7477–17.8527 were obtained from sphalerite. Sulfur isotopic ratios for pyrite (5–14.4‰), sphalerite (2.4–8.6‰), and galena (− 0.3–8.6‰) from Zhenzigou have a narrower range than those from the host Paleoproterozoic Dashiqiao Formation, and granite in the area. Calcite and limestone from ore and wallrocks at the deposit have similar C and O isotope compositions, with δ13CPDB ranging from − 6.0 to − 2.3‰ and δ18OSMOW from 9.8 to 13.7‰, which are similar to those of carbonatite and the mantle.Comprehensive analysis of the Pb isotopic composition of the sulfide from the Zhenzigou deposit and PbZn deposits in adjacent area show that the Pb originated from the upper crust and mixed with Pb from the mantle. Sulfur isotopes from Zhenzigou deposit indicate that the mineralization has a volcanic eruption source. The δ13CPDB and δ18OSMOW values indicate that the CO2 originated from a mixed mantle, marine carbonate and organic source.Combined with the study of regional metallogenic background, this paper proposes that deposition of stratiform PbZn mineralization in the QMF began ca. 2052 Ma during development of the Liaoji Rift. The mineralization extended to ca. 1798 Ma prior to deformation associated with the Lvliang Movement, which dismembered the stratiform PbZn mineralization. The veined mineralization in the region cross-cuts the stratiform deposits and represents remobilized and redeposited deposits associated with the emplacement of Triassic plutons such as the Xinling and Shuangdinggou granites. 相似文献
15.
Determination of the age of rocks by whole rock Sm-Nd isochron method has several limitations imposed by petrogenetic processes.
If the age of the rocks can be determined by other independent methods, the Sm-Nd system provides a wealth of information
to understand crustal genesis. Sm-Nd isotopic studies of metabasaltic rocks of the Archaean Kolar and Ramagiri Schist belts
in the eastern Dharwar Craton indicate that the system was disturbed by postmagmatic fluid alteration processes associated
with terrane accretion. 相似文献
16.
V. Kameshwara Rao C. R. Rao A. C. Narayana 《Journal of the Geological Society of India》2014,83(5):549-554
Conventional methods of ore deposit estimates are time consuming, whereas geostatistical methods provide quick and reliable estimates with minimum variance. Geostatistical tools, semi-variograms and kriging, have been used for estimation of grades of an iron ore deposit in the present study. In order to model the deposit and estimate grade, 4537 samples collected from 93 boreholes were used in the study. 3-D data have been converted to 2-D for analyzing the variation of Fe within the boreholes. For each borehole, the weighted mean of Fe grade and its coefficient of variation (CV) are calculated and further analysis is carried out for these two variables. Semi-variogram model suggests that the deposit extends over a zone of influence up to 700 m. Grade maps of kriged estimates reveal that the iron ore deposit is distributed in three distinct zones. 相似文献
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华北克拉通沉积变质型铁矿床的特征与预测评价模型 总被引:1,自引:0,他引:1
华北克拉通是我国面积最大、时代最古老的陆块,地质构造演化历史复杂,也是我国重要的铁矿资源分布区.本文在系统总结该区域成矿规律的基础上,利用GIS平台提取了多元成矿有利信息(变质建造、控矿构造、矿致磁异常、氧化铁异常、自然重砂信息).在此基础上,建立了沉积变质型铁矿床的找矿预测模型,并采用MRAS系统中的证据权模块进行矿产资源定量预测.按照后验概率的大小划分了两级区域有利成矿远景区,分别是冀东、辽东、五台-吕梁三个A级成矿远景区和大青山-色尔能腾山、鲁山-舞阳、鲁西三个B级成矿远景区.这些远景区与已知矿床(点)重叠或比邻,显示远景区具有较好的成矿条件和较大的成矿潜力,应在今后的找矿勘查工作中予以充分重视. 相似文献
18.
《地学前缘(英文版)》2020,11(4):1145-1161
The Budunhua Cu deposit is located in the Tuquan ore-concentrated area of the southern Great Xing'an Range,NE China.This deposit includes the southern Jinjiling and northern Kongqueshan ore blocks,separated by the Budunhua granitic pluton.Cu mineralization occurs mainly as stockworks or veins in the outer contact zone between tonalite porphyry and Permian metasandstone.The ore-forming process can be divided into four stages involving stage Ⅰ quartz-pyrite-arsenopyrite;stage Ⅱ quartz-pyrite-chalcopyrite-pyrrhotite;stage Ⅲ quartz--polynetallic sulfides;and stage IV quartz-calcite.Three types of fluid inclusions(FIs) can be distinguished in the Budunhua deposit:liquid-rich two-phase aqueous FIs(L-type),vapour-rich aqueous FIs(V-type),and daughter mineral-bearing multi-phase FIs(S-type).Quartz of stages Ⅰ-Ⅲ contains all types of FIs,whereas only L-type FIs are evident in stage Ⅳ veins.The coexisting V-and S-type FIs of stages Ⅰ-Ⅲ have similar homogenization temperatures but contrasting salinities,which indicates that fluid boiling occurred.The FIs of stages Ⅰ,Ⅱ,Ⅲ,and Ⅳyield homogenization temperatures of 265-396℃,245-350℃,200-300℃,and 90-228℃ with salinities of3.4-44.3 wt.%,2.9-40.2 wt.%,1.4-38.2 wt.%,and 0.9-9.2 wt.% NaCl eqv.,respectively.Ore-forming fluids of the Budunhua deposit are characterized by high temperatures,moderate salinities,and relatively oxidizing conditions typical of an H_2 O-NaCl fluid system.Mineralization in the Budunhua deposit occurred at a depth of0.3-1.5 km,with fluid boiling and mixing likely being responsible for ore precipitation.C-H-O-S-Pb isotope studies indicate a predominantly magmatic origin for the ore-forming fluids and materials.LA-ICP-MS zircon U-Pb analyses indicate that ore-forming tonalite porphyry and post-ore dioritic porphyrite were formed at 151.1±1.1 Ma and 129.9±1.9 Ma,respectively.Geochemical data imply that the primary magma of the tonalite porphyry formed through partial melting of Neoproterozoic lower crust.On the basis of available evidence,we suggest that the Budunhua deposit is a porphyry ore system that is spatially,temporally,and genetically associated with tonalite porphyry and formed in a post-collision extensional setting following closure of the Mongol-Okhotsk Ocean. 相似文献
20.
<正>1 Introduction There are complex rocks exposed in the Diaoyutai area which is in western Liaoning,eastern North China Craton.The Neo-Archean"Suizhong migmatitic granites"are the important parts of the Diaoyutai 相似文献