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1.
出露于加拿大苏必利尔罗灵河杂岩体中的含角闪石斑晶和单斜辉石斑晶的煌斑岩,具有碱性,含霞石标准矿物的玄武岩质成分(SiO2<50wt%),成分变化从原始岩浆到分异岩浆[Mg/Mg+∑Fe)=0.66-0.40;Ni=200-35ppm],岩石富含LREE[Ce/Yb)m=16-26,Cen=60-300;n=球粒陨石标准化],Sr(870-1800ppm),P2O5(0.4-1.3wt%)和Ba(1  相似文献   

2.
周湖云  陆琦 《矿物学报》1994,14(3):234-240,T001
在山东蒙阴金伯利岩的副矿物蒙山矿中,首次发现了成分为柱红石类的新矿物相。对其成分进行探针分析,其一般晶体化学式可写为:A1.499~1.787B1.548~2.317C5.675~6.354O16。其中A=K、Ba、Na、La;B=Cr、Fe、Mg、V;C=Ti、Zr、Nb等,平均计算化学式为:(K1.256Ba0.241Na0.085La0.046)1.628(Cr1.817Fe0.321Mg0  相似文献   

3.
在温度为1130-1450℃,压力为0.4-2.0GPa条件下,实验研究了地幔橄榄岩部分熔融及相转变(尖晶石相→斜长石相)过程中的固相化学成分演变。在部分熔融中,随熔融度的增大,橄榄石的Mg/(Mg+Fe)^尖晶石和斜方辉石的Mg/(Mg+Fe)及Cr/(Cr+Al)逐渐增大;而橄榄石中的Ca含量增至单斜辉石消失后逐渐降低;尖晶石中的Ti以较低的含量(TiO2〈0.15%)保持不变或稍有降低;斜方  相似文献   

4.
八庙—青山金红石矿床化学成分与成矿关系   总被引:1,自引:0,他引:1  
徐少康  李博昀 《河南地质》1996,14(4):249-255
本矿床是我国金红石矿床重要的成因及工业类型,为具有特定化学成分的岩石在特定变质条件下形成的。本文通过对大量数据的处理,查明了化学成分和成矿的关系,高Al2O3,MgO,Fe2O3+FeO,K2O,P2O5,H2O^+,MnO,低SiO2,CaO,Na2O,CO2,S等,利于钛富集;高TiO2,MgO,P2O5,S,低SiO2,CaO,K2O,Al2O3,Fe2O3/FeO,利于金红石形成,高Sf,  相似文献   

5.
西藏南迦巴瓦峰地区发现的星叶石   总被引:3,自引:0,他引:3       下载免费PDF全文
在西藏境内喜马拉雅山脉的东端的南迦巴瓦峰地区发现了星叶石。该矿物产出于火成碳酸岩脉中,与白云石、方解石、镁橄榄石、镁铝尖晶石、金云母、韭闪石、磷灰石、镁钛矿、石榴石以及三种未定名副矿物共生。该矿物的晶胞参数为:a0=5.356(1),b0=11.607(4),c0=11.851(6),α=64.57°(3),β=76.98°(4),γ=85.45°(3)。化学成分(%)为:SiO235.22,TiO211.47,Al2O31.18,FeO28.90,MnO5.15,MgO1.51,CaO1.75,K2O5.90,Na2O2.46,总和93.54%,化学式为:(K,Na)3(Fe,Mn,Mg,Ca)7Ti2Si8O24(O,OH)7。  相似文献   

6.
陆琦  周湖云 《矿物学报》1994,14(3):228-233,T001
在山东蒙阴金伯利岩中,首次发现了沂蒙矿类质同象系列新的富Ti矿物(变)种。理想的晶体化学式可表达为:K(Ti5Fe3Cr2Mg2)12O19(简称K-Ti沂蒙矿)(Ba,K)(Ti5Fe4Mg2Cr)12O19(简称Ba-Ti沂蒙矿)从而与原来确定的沂蒙矿K(Cr5Ti3Fe2Mg2)12O19和钡钛铁铬矿(Ba,K)(Cr4Fe4Ti3Mg)12O19g一起构成了金伯利岩中AM12O19磁铁铅矿  相似文献   

7.
秦大军  莫宣学 《岩石学报》1994,10(2):126-138
通过低压熔融相平衡实验,研究山西大同火山群玄武岩在结晶分离作用过程中液相成分的演化规律,探讨了矿物和溶浆之间元素的分配。在100kPa,fo2=NNO,T=1100°~1300℃条件下,矿物结晶顺序为O1→P1→Cpx。橄榄石为液相线矿物。橄榄石-熔体Fe2--Mg2-交换反应的分配系数是一个与温度无关的常数、残余液相线成分取决于晶出矿物相的化学成分及含量。O1+CpX+P1饱和液相成分的O1-Di-Sil和O1-Di-Ne三元系相图清楚地反映了熔岩低压结晶作用的趋势,低压下熔浆的主要元素变化很大程度上依赖于母岩浆SiO2饱和程度。  相似文献   

8.
四川会理小青山铜(金)矿钠长石英板岩的发现及其意义   总被引:3,自引:0,他引:3  
王奖臻  陆彦 《地质论评》1999,45(3):323-327
四川会理小青山铜(金)矿区的钠长石英板岩主要由钠长石及石英组成。钠长石英板岩的化学成分中富有SiO2,Al2O3及Na2O,贫K2O,FeO及MgO;稀土元素特征为:ΣREE=3013-42.11,ΣCe/ΣY=1.80-1.98,δEu=0.23-0.34,δCe=0.48-0.59。  相似文献   

9.
赵仁夫 《甘肃地质》1997,6(A00):36-43
鲁西北台北斜东缘沙沟地区深熔型花岗岩质量平衡分析表明(1)以体积守恒为限制条件,深熔型二长花岗质片麻岩带入1.90-1.92%的质量,微斜长石花岗岩带和4.46-4.55%,的质量,深熔型花岗岩类有K2O、SiO2、Rb、Ba的获得,TiO2、Al2O3、FeO、Fe2O3、MnO、MgO、CaO、Na2O、P2O5、及Cr、Ni、Co、Sr、Zr、Ta、Nd则损失;92)风岩类的质量等比线显示,  相似文献   

10.
集安岩群石榴石以富铁为特征,均属铁铝榴石。形成于高角闪岩相的石榴石成分比较稳定,<FeO>平均含量32.20%,MgO5.17%,X_(Mg)平均值0.23;结晶于低角闪岩相的石榴石(FeO+MgO)含量33.50%,(MnO+CaO)6.91%。石榴石微区成分不均匀,晶体内具有一些微区成分环带,这种环带不是各进变质作用阶段p-T条件平衡或近平衡的产物。石榴石边缘存在着明显的扩散环带,表现为晶体边缘相对晶体核部,Ca含量和<FcO>含量增高,MgO含量降低,X_(Mg)值变小,反映本区变质峰期后经历的是一个近等压冷却的地质动力学过程。  相似文献   

11.
The main objective of this experimental study was to investigate the evolution of the mineral liberation characteristics of an ore undergoing grinding. Six samples of an iron ore containing hematite, magnetite and quartz have been tested. Mineral grade and liberation measurements have been performed with an image analyser on polished sections of particles from several discrete size intervals.For each product, the grade in iron oxides was increasing greatly with the fineness of the particles. Moreover, in each size interval down to 270 mesh, it was slightly decreasing as grinding proceeded. These behaviors are due to the fact that iron oxides were ground more easily than the siliceous gangue. The degree of liberation of the valuable minerals was evidently increasing with the particle fineness. Moreover, for each size interval coarser than 48 mesh, it has also shown a slight decrease with grinding. For finer sizes however, it appeared in practice invariant and independent of the grade or of the degree of grinding. These observations are of interest when considering that the grinding products tested were very different in fineness while corresponding to various modes of fragmentation.(jaw crushing, roll crushing and ball milling) and to an ore with a high tendency to break along the mineral grain boundaries.  相似文献   

12.
The Nkout deposit is part of an emerging iron ore province in West and Central Africa. The deposit is an oxide facies iron formation comprising fresh magnetite banded iron formation (BIF) at depth, which weathers and oxidises towards the surface forming caps of high grade hematite/martite–goethite ores. The mineral species, compositions, mineral associations, and liberation have been studied using automated mineralogy (QEMSCAN®) combined with whole rock geochemistry, mineral chemistry and mineralogical techniques. Drill cores (saprolitic, lateritic, BIF), grab and outcrop samples were studied and divided into 4 main groups based on whole rock Fe content and a weathering index. The groups are; enriched material (EM), weathered magnetite itabirite (WMI), transitional magnetite itabirite (TMI) and magnetite itabirite (MI). The main iron minerals are the iron oxides (magnetite, hematite, and goethite) and chamosite. The iron oxides are closely associated in the high grade cap and liberation of them individually is poor. Liberation increases when they are grouped together as iron oxides. Chamosite significantly lowers the liberation of the iron oxides. Automated mineralogy by QEMSCAN® (or other similar techniques) can distinguish between Fe oxides if set up and calibrated carefully using the backscattered electron signal. Electron beam techniques have the advantage over other quantitative mineralogy techniques of being able to determine mineral chemical variants of ore and gangue minerals, although reflected light optical microscopy remains the most sensitive method of distinguishing closely related iron oxide minerals. Both optical and electron beam automated mineralogical methods have distinct advantages over quantitative XRD in that they can determine mineral associations, liberation, amorphous phases and trace phases.  相似文献   

13.
鄂西高磷鲕状赤铁矿原矿全铁品位47.56%,含P 0.93%,主要脉石矿物为绿泥石、磷灰石、石英、方解石、铁白云石,属难选铁矿石。通过磁化焙烧-磨矿-磁选优化工艺,最佳磁化焙烧条件为:焙烧温度800℃、焙烧时间90min、还原剂用量12%,焙烧矿磨矿细度-0.074mm占85.15%,经弱磁选可得到全铁品位为58.13%、磷含量0.70%,铁回收率为90.41%的粗精矿。对磁化焙烧-磁选过程的各产物组成分析表明,焙烧矿和粗精矿中主要矿物为磁铁矿,占比分别为65%和85%;主要脉石矿物为绿泥石、磷灰石、石英、铁白云石等。粗精矿矿物的嵌布粒度较细,-0.074mm粒级占85.15%,但部分矿物仍以相互浸染、包裹、鲕状碎屑、连晶等形式存在,矿物仍未完全单体解离,从而导致粗精矿中杂质磷、铝等含量较高。粗精矿细磨后粒度-0.022mm含量为80%时,磁铁矿的解离度为84.63%,可实现磁铁矿充分单体解离,经过深选可提高铁精矿质量。  相似文献   

14.
西北某矿石属低硫含磷的酸性低品位原生钒钛磁铁矿矿石,通过镜下鉴定、X射线衍射分析和扫描电镜分析等多种手段对原矿的化学成分、矿物组成及含量、矿物的产出形式、矿石的结构构造、主要目的矿物的嵌布粒度等进行了详细的工艺矿物学研究,查明矿石的工艺学特性.研究结果表明,该矿石具浸染状构造和交代构造,其中铁矿物主要是钛磁铁矿和赤铁矿,钛矿物包括钛铁矿、金红石和榍石等.钛磁铁矿和钛铁矿均属不均匀细粒—微细粒嵌布特征,在-400目占95%左右的磨矿细度条件下,通过选矿可获得铁精矿和钛精矿两种产品.  相似文献   

15.
对贵州威宁沉积型赤铁矿石进行了工艺矿物学研究,重点研究了该矿石的矿物组成、主要矿物嵌布特征和主要含铁矿物赤铁矿的单体解离情况。研究表明,该矿石属于低磷、低硫、微细粒嵌布的赤铁矿石;矿石中主要铁矿物以赤铁矿为主,其次为磁铁矿和褐铁矿,主要脉石矿物以石英为主,其次为绿泥石、云母、高岭石等粘土矿物;赤铁矿嵌布粒度极细,平均粒度0.015mm,且赤铁矿与脉石矿物嵌布关系复杂。本研究为该矿石的开发利用提供基础资料。  相似文献   

16.
依据承德地区大庙式钒钛磁铁矿床特征,通过人工重砂分离及单矿物化学分析并结合电子探针、岩矿鉴定结果查明了承德钒钛磁铁矿石中的含钒矿物主要是钛磁铁矿和磁铁矿,次要矿物是钛铁矿和硅酸盐;含钛矿物主要是钛铁矿、钛磁铁矿,次要矿物是金红石、榍石。根据承德钒钛磁铁矿石钒和铁呈正比的关系,选取代表性试样进行了钒钛物相分析项目的确定及溶剂选择的实验,最终确定了钒和钛物相分析测定流程。钒物相分析测定项目为磁铁矿和钛磁铁矿中的钒、钛铁矿中的钒、硅酸盐中的钒及总钒四项;钛物相分析测定项目为钛铁矿中的钛、磁铁矿和钛磁铁矿中的钛、金红石中的钛、硅酸盐中的钛及总钛五项。通过本方法测定的各种含钒和钛矿物含量占矿石中总钒和总钛含量的比例与人工重砂分析定量计算的各种含钒和钛矿物含量占矿石中总钒和总钛含量的比例是相互吻合的。对110件钒钛磁铁矿石样品进行了4种含钛矿物及3种含钒矿物物相分析,结果与实际地质成矿组分符合。本方法实现了钒钛磁铁矿中钒矿物和钛矿物的定量分离,确定了钒和钛物相联测分析流程,可以同时测定钒和钛矿物的含量。  相似文献   

17.
山东汶上低品位铁矿石的矿物学特征及磁选实验研究   总被引:1,自引:1,他引:0  
在对山东汶上低品位磁铁矿矿石进行矿石工艺矿物学研究的基础之上,通过磨矿、磁选管实验及磁选扩大实验研究,确定了其最佳的磁选工艺流程结构及磨选工艺指标。工艺矿物学研究表明,汶上磁铁矿矿石的嵌布粒度较细,大部分磁铁矿的粒度为0.02mm~0.05mm,磁铁矿主要呈细粒浸染状分布在角闪石和石英等脉石矿物中;磨矿磁选管实验研究表明,铁矿石经过一段磨矿,磁铁矿的单体解离度较低,通过一段磁选难以获得品位合格的铁精矿,磁选扩大实验研究表明,控制一段磨矿细度-200目含量58.64%(-325目含量46.41%),经过一段粗选,获得粗精矿;粗精矿再磨至细度为-325目含量98.5%,对再磨粗精矿经过再选和两段精选获得最终合格铁精矿的品位66.20%,磁选扩大试验铁回收率达到70.58%。  相似文献   

18.
辽宁本溪大台沟铁矿地质特征及找矿标志   总被引:1,自引:0,他引:1  
辽宁本溪大台沟铁矿为鞍山-本溪铁矿成矿带内发现的首个位于标高-1000 m以下的特大型“鞍山式”铁矿床,含矿岩系为近直立展布的鞍山群樱桃园岩组,包含其内的铁矿体为隐伏的厚板状陡倾斜矿体,矿体埋深1100~1200 m,控制矿体延长2000 m.矿体自上向下可划分3种自然矿石类型,分别为赤铁矿石、赤铁磁铁复合矿石及磁铁矿石.大台沟铁矿床属典型“鞍山式”铁矿床,矿物成分较简单,含铁矿物以磁铁矿和赤铁矿(镜铁矿)为主;矿石结构类型有镶嵌粒状变晶结构、鳞片粒状变晶结构、柱状粒状变晶结构等;矿石构造类型以条带状为主.铁矿石TFe品位平均为29.34%;mFe品位平均为14.63%;矿石中其他元素含量除SiO2较高外,均甚微,SiO2平均含量46.08%.笔者在阐述大台沟铁矿地质特征基础上,总结出大台沟铁矿找矿标志,对于区域内潜在的“大台沟式”(埋藏较深、存在高大磁异常)铁矿床的找寻具有一定借鉴意义.  相似文献   

19.
The Pilot Knob magnetite deposit is located in southeast Missouri within the 1380–1480 Ma St. Francois Mountains terrane rhyolitic/trachytic volcanic rocks. The deposit is tabular, dips about 45°, and is sill-like in nature, being approximately parallel to the bedding in the host tuffs. The deposit was uncovered by erosion and exposed to weathering in the late Proterozoic, and is overlain in angular unconformity by the Cambrian Lamotte Sandstone. This Proterozoic weathering cycle apparently had little effect on the deposit with only the updip edge being converted to hematite. Textural and mineralogical features of the deposit suggest a combined magmatic and hydrothermal replacement origin. The magnetite-rich ores that make up the bulk of the deposit are interpreted as having crystallized from an iron-rich magma, and a surrounding envelope of lower- to moderate-grade ores where magnetite has clearly replaced the tuffaceous host rocks are interpreted as hydrothermal in origin. After the development of the higher-grade magnetite ores and the envelope of lower- to moderate-grade ores, late hydrothermal minerals were deposited as cross-cutting veins and breccia fill. The two most abundant minerals in the higher-grade portions of the deposit are magnetite and albitic plagioclase, and petrologically the higher-grade ores could be described as a magnetite sodic syenite. The most abundant gangue mineral within the lower-grade impregnated envelope of ores around the higher-grade ores is K-feldspar, apparently relict from the rhyolites/trachytes. Thin lenses within the higher-grade ores contain calcite as a matrix mineral to the magnetite and are considered to indicate carbonatitic affinity. Rare earth elements are elevated in one of five whole rock chemical analyses of the ores and the REE-bearing mineral ferriallanite has been identified. Minor portions of the deposit, below the Proterozoic weathering cap, consist of high-grade hematite ores having equilibrium textures. At depth, the deposit is intruded by the Shepherd Mountain gabbro, a 120 m thick, near-horizontal dike, which resulted in minor contact metamorphism of the ore.  相似文献   

20.
云南斑岩型多金属金矿的嵌布特征及赋存状态研究   总被引:1,自引:1,他引:0  
云南西部有大量低品位金矿资源,且具有嵌布粒度不均匀、矿石结构复杂、解离不完全等特点,传统工艺矿物学分析不易快速、准确测定金赋存状态及载金矿物的嵌布特征。本文利用矿物自动分析系统(MLA)、化学分析等方法对滇西多金属金矿进行系统的工艺矿物学研究,查明了该矿的矿物组成、嵌布粒度、连生及包裹关系,同时阐明了载金矿物的工艺矿物学性质对金回收率的影响。结果表明:金主要以游离态自然金的形式存在,嵌布粒度极细,主要集中在0.01~0.02 mm粒度级别;小于0.074 mm粒级的金占原矿总金量的50.08%,其余金以微细包裹体分散于黄铁矿、磁铁矿、黄铜矿等载金矿物中。但载金矿物粒度较细,解离性差,嵌布不均匀,因此提高载金矿物解离度是提高金回收率的一个重要参考方向。  相似文献   

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