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1.
南秦岭大型钡成矿带中硫钒铜矿的特征及成因意义   总被引:2,自引:0,他引:2  
在南秦岭下寒武统硅岩建造中的毒重石-重晶石矿床中,产出大量硫钒铜矿.硫钒铜矿呈正方形,长方形及不规则状,粒度大小变化较大,一般为0.01 mm~1 mm,最大可达7 mm.反光显微镜下为淡柠檬黄色,显微硬度134.5 kg/mm2~139.8 kg/mm2,相当于摩氏硬度3.46~3.50.主要化学成分为:Cu 47.18~52.02(平均50.44),V 6.50~14.32(平均11.95),Sn 0.00~12.85(平均2.15),S 31.77~34.34(平均33.29),As 0.00~5.12(平均0.86).Fe 0.00~3.27(平均0.77),部分样品含有极少量的Fe,Ni,Co,Sb,Se,Te,In.相应的平均化学分子式为Cu3.04(V0.90,Sn0.07,Fe0.05,As0.04,Sb0.01)1.07(S3.98,Se0.02)4.00,简化式为:Cu3(V,Sn,As,Fe)S4.矿物为等轴晶系.晶胞参数值a=0.539 2nm.成矿带中硫钒铜矿的形成与钒的富集,与有机质演化受热和生物降解作用有密切联系.  相似文献   

2.
王贤觉  熊小林  P.Cerny 《地球化学》2002,31(5):481-486
锡锰钽矿(wodginite)理想式为MnSnTa2O8,Z=4,其结构为锡铁钽矿(ixiolite)结构的有序化形式。它是钽的主要工业矿物,是高度分异演化伟晶岩的标志矿物之一。在加拿大红十字湖地区锂云母-透锂长石伟晶岩脉中发现了这一钽矿物。矿物为黑褐色,呈半自形,颗粒达0.2mm,分布于由锂云母钠长石构成的条带中,与之共生的是一套典型的、高演化的花岗伟晶岩矿物组合。锡锰钽矿具有Mn/Fe、Sn/Ti、Ta/Nb比值高,杂质少的特点。矿物平均分子式为:Mn1.00(Sn0.64Ta0.24Ti0.04Mn0.04Zn0.02Fe0.01)0.99(Ta1.69Nb0.31)2.00O8;晶胞参数a=0.9534nm,b=1.1482nm,c=0.5123nm,β=91°07',V=0.5607nm3。依据矿物β>91°、V>0.560nm3、对偶面网221与221具强分裂衍射双峰、I021/I220为0.19和Mn/(Fe+Mn)≈1等特征,在锡锰钽矿与锡铁钽矿所构成的同质多像、有序-部分有序-无序这样一个连续系列中,本区所产锡锰钽矿属有序端员矿物,其阳离子在八面体中分布的有序度约为95%。在钽资源的寻找和开发利用中,应重视含锡锰钽矿的锂云母-透锂长石伟晶岩脉。  相似文献   

3.
利用电子探针检测安徽凤阳石英岩中的含铁矿物,测量由相同矿区的石英岩加工而成的不同粒度石英砂的Fe2O3质量分数(w(Fe2O3))与磁化率。结果表明:石英岩中有磁铁矿、黄铁矿、黑云母与白云母等多种含铁矿物。这些含铁矿物主要充填在石英颗粒孔隙中,粒度大多小于0.1 mm。而石英砂中的w(Fe2O3)普遍很低(小于0.1%),其磁化率主要受磁铁矿控制。并且不同粒度的石英砂中w(Fe2O3)与磁化率存在较大差异,当石英砂中的w(Fe2O3)大于0.01%时,由Fe2+、Fe3+磁性离子含量决定磁化率大小,两者存在强正相关关系。这也反映出了石英岩的铁含量与磁化率之间的关系。因此,磁化率可作为石英岩铁含量的替代性指标。  相似文献   

4.
作为符山石族矿物的新成员,红河石(Hongheite,IMA 2017-027新矿物),Ca18(,Ca)2Fe2+Al4(Fe3+,Mg,Al)8(,B)4BSi18O69(O,OH)9发现于个旧世界级Sn-多金属矿田东北缘、与马拉格Sn矿床毗邻的北沙冲花岗岩(77.43Ma)内矽卡岩中。红河石常呈横径达4~25mm的放射状针-柱状集合体产出。当位于晶洞中时,红河石则呈发育良好的自形柱状晶体(0.5~4.0mm长,0.3~1.0mm宽)产出。与红河石共生的矿物见有赛黄晶、萤石、斧石-(Fe)、硅硼钙石、枪晶石、硼锡钙石、石英和羟鱼眼石-(K)等。红河石为墨绿色,条痕浅灰绿色,玻璃光泽,性脆,断口不规则。主要的晶面是:{100}、{110}、{101}和{001}。红河石的显微硬度:988.3N/mm2,相当于摩氏硬度6~7。其实测密度与计算密度分别是3.446g/cm3和3.423g/cm3。红河石一轴正晶,No=1.720(2),Ne=1.725(2);多色性弱。红河石的化学成分:SiO235.85%;TiO20.01%;Al2O311.00%;Fe2O37.92%;FeO2.14%;CaO 33.57%;MnO 0.42%;MgO 3.48%;B2O32.82%;Cr2O30.01%;Na2O 0.01%;F 0.40%(F≡O-0.17);Cl 0.14%(Cl≡O-0.03);H2O 0.75%,总量98.32%。依据晶体结构精测和Si在单位分子式中的原子数(即Si=18 apfu),计算和书写的红河石简化晶体化学式:Ca18(,Ca)2Fe2+Al4(Fe3+,Mg,Al)8(,B)4BSi18O69(O,OH)9。其三条最强粉晶线[d(?)(I/I0)(hkl)]为:2.9289(47)(004),2.7661(100)(342)和2.6079(68)(243)。红河石属四方晶系,空间群为P4/nnc,晶胞参数:a=15.667(3)?,c=11.725(1)?,V=2878(1)?3,Z=2。红河石晶体结构精测的R因子为0.063。红河石殊异于为已知的符山石族矿物种,在于其X(4)位以空位()为主、Y(3)位以Fe3+居优和T(2)位被B所占。顺便对符山石族矿物晶体-化学式的计算与书写予以讨论并提出建议。  相似文献   

5.
丁道衡矿-(Ce):(Ce,La)4Fe2 (Ti,Fe2 ,Mg,Fe3 )2Ti2Si4O22,理想的结构化学式Ce2Ce2Fe2 Ti2Ti2Si4O22单斜晶系,α=1.34656(15)nm,b=0.57356(6)nm,c=1.10977(12)nm,β=100.636(2)°,V=0.84239(46)nm3,空间群P21/a(假C2/m),Z=2.作为硅钛铈矿(chevkinite)族矿物的新成员,它产于举世闻名的白云鄂博铁.稀土.铌矿床镁夕卡岩中,多数单晶体长0.2~1.0 cm,最大者长大于1.5 cm.共生矿物有透辉石、透闪石、钠透闪石、褐帘石-(Ce)、磁铁矿、尖晶石、烧绿石、氟金云母、氟磷灰石、石英和萤石等.矿物具有褐色条痕和半金属一金属光泽的黑色,其褐黑色碎片半透明.性脆、具有贝壳状断口、无解理和裂开.显微硬度(VHN25g)为606.0~717.4 kg/mm/12(相当于摩氏硬度约5.9).矿物实测密度4.83(7)g/cm3,计算密度值4.88(0)g/cm3.丁道衡矿-(ce)的反射色为带灰色的浅黄色,多色性为不同色调的灰色.平均反射率(λ=589nm)为11.4%~12.5%.矿物为二轴晶负光性.作过结构精测的丁道衡矿-(Ce)晶体的电子探针测值:SiO2:19.29,TiO2:18.26,A12O3:0.04,FeO:8.49,Fe2O3,:1.67,ThO2:0.16,MgO:1.32,CaO:2.17,Nb2O5:0.47,Ta2O5:0.00,La2O3:19.53,Ce2O3:28.08,Y2O3:0.00,Na1O:0.01,总量99.46%;其中Fe3 /Fe2 的比值依穆斯堡尔谱换算.根据结构精测每个单位分子式中O=22和C(1)位上Ti优先占位,计算的矿物晶体化学式为(Ce2.13,La1.49Ca0.48Th0 01)Σ4.11Fe2 (Tin0.88Fe2 0.47Mg0.41 Fe0.0)Σ2.03(Ti1.96Nb0 04)Σ2.00(Si2O7)2O3.分别用P21/a和C2/m对丁道衡矿-(Ce)的晶体结构作了精测.结果表明,丁道衡矿-(Ce)的真空间群是P20/a.换言之,它才是真正珀硅钛铈矿[perrierite-(Ce)]的同质多象体.显而易见,硅钛铈矿族矿物既可以有P21/a空间群,又可以有C2/m空间群.  相似文献   

6.
一种硼酸盐的新矿物—袁复礼石   总被引:3,自引:0,他引:3  
袁复礼石是一种Mg、Fe2+、Al和Ti的硼酸盐新矿物,发现于辽宁省宽甸县砖庙硼矿区。该矿物黑色,近不透明,金刚光泽-半金属光泽。反射色亮灰,内反射深红褐色。非均质性弱,偏光色红褐。晶体呈细柱状,O.1×0.2×l mm。晶体化学式为:(Mg0.91Fe2+0.09)(Fe3+0.56Al3+0.19 Mg0.17Ti0.11Fe2+0.10)1.13(B0.92O3.00)O。空间群Pnam, a=9.258(6)A,b=9.351(4)A, c=3.081(2)A,V=266.80(2)A,Z=4。 D=3.80 g/cm3, H=5-6,VHN50=843 kg/mm2,{100}解理完全。红外光谱吸收谱带为:1387, 1210, 1024, 951, 733, 600, 510和408 cm-1。穆斯堡尔谱证明,以三价铁为主,二价铁较少。Fe3+占据M(1)晶位,Fe2+占据M(1)和M(2)晶位。袁复礼石为硼钛镁石的富Fe3+类似物。  相似文献   

7.
新变种矿物—含锗锡硫钒铜矿   总被引:3,自引:0,他引:3  
含锗锡硫钒铜矿是硫钒铜矿的含锗锡变种。它产于四川省白玉县呷村银多金属矿床中,反光显微镜下为淡柠檬黄色,形态呈正方形、长方形及不规则状。粒度一般为0.01—0.1mm,最大为0.3mm。显微硬度Hv=137.8kg/mm2,相当于HM=3.49。反射率:589nm 31.54%。主要化学成分为:Cu 52.29—54.71%,S 30.59—32.49%,V 5.70—6.50%,Ge 4.3—6%,Sn2.43—3.56%,还含微量Zn、Fe、As、Sb、Bi等。简化式为:Cu3(V,Ge,Sn)S4。矿物为等轴晶系,ao=10.66,V=1211.36,空间群为P43m,Z=8。  相似文献   

8.
氟铁云母是三八面体云母类矿物新种,属铁云母的富氟类似物.利用电子探针、湿法和原子吸收分析等手段并结合穆斯堡尔谱分析的结果,按O+OH+F+Cl=12及四面体阳离子数之和为4计算的氟铁云母经验化学式为:(K0.92Na0.03Rb0.02Ba0.01)0.98(Fe1.822++Fe0.493++Al0.19Mg0.18Li0.18Ti0.08Mn0.05Zn0.02)2.99(Al1.17Si2.83)4.00O10(F1.03OH0.50O0.47)2.00.其理想化学式为:KFe32+AlSi3O10F2.使用粉晶XRD衍射仪,采用毛细管装样和超能探测器相结合收集衍射数据/图谱的微区衍射新方法收集氟铁云母的粉末衍射数据,通过构建晶体结构模型和Rietveld法晶体结构精修并收敛到Rp=2.51%,Rwp=3.19%,Rexp=2.85,X2=1.253完成晶体结构解析.矿物属于单斜晶系1M型,空间群C2/m;晶胞参数:a=0.537 05(4)nm,b=0.929 95(6)nm,c=1.017 35(6)nm;β=100.465(5)°,V=0.499 64(5)nm3;Z=2.  相似文献   

9.
新矿物彭志忠石-6H的晶体结构和晶体化学研究   总被引:3,自引:0,他引:3  
陈敬中  施倪承 《地球科学》1989,14(4):413-422
彭志忠石(镁尼日利亚石)是一种新矿物,除了Sn、Al外,过去发现的尼日利亚石都是以Fe、Zn为主的,而这次在湖南安化发现的,则是镁的端元矿物。矿物为三方晶系,P_(3m1),a_0=0.5692nm,c_0=1.3782nm。晶体化学式为:Mg_2(Zn,Fe,Al)_2(Sn,Fe)_2(Al,□)_(10)O_(22)(OH)_2。在全自动X射线射仪上,收集了单晶独立衍射强度数据443点进行结构计算,R=0.10。结构中氧沿c轴成…ABCACB…紧密堆积。阳离子充填四面体和八面体部分空隙,形式为…OT_2OT_1OT_0…。最后讨论了尼日利亚石—黑铝镁铁矿—塔菲石系列矿物的晶体结构和晶体化学。  相似文献   

10.
对Allende陨石中一块富深绿辉石--钙长石-尖晶石难熔包体进行了岩石学和矿物化学研究。包体近似球形(半径~3 mm),边部为钙长石和方钠石(Mg O=1.04%~2.69%;Fe O1.57%)组成的矿物圈层(厚度~200μm),内部主要矿物有深绿辉石(Al2O3=7.63%~16.08%;Ti O2=1.73%~4.48%)、钙长石(Mg O0.41%;Na2O0.14%)和尖晶石(Fe O1.70%)。包体中残留黄长石(k70~85,Na2O0.22%),颗粒较小(10μm),大部分都被蚀变成为钙铝榴石、钙镁橄榄石和氯硅铝钙石(Mg O=5.07%~8.04%;Fe O0.31%)。包体规则的外形不可能由气—固凝聚形成,而可能是由熔融重结晶形成。黄长石含量较少以及残余黄长石非常富镁说明包体可能经历过蚀变作用,且方钠石与氯硅铝钙石的产状和成分差异说明包体可能经历了两次不同的蚀变事件。  相似文献   

11.
12.
用溶胶-凝胶法(sol-gel)制备了纳米荧光粉Y4Al2O9: Eu3+,用X射线粉晶衍射对其进行了物相鉴定,表明在900℃已经得到纯相的Y4Al2O9产物,并用透射电镜对其进行形貌和衍射分析,分析结果证明得到的产物为纳米粉末态晶体,产物Y4Al2O9:Eu3+粒径均匀,大致在20~50nm之间,平均粒径为30nm.并用荧光光度计对其荧光光谱进行了研究,光谱表明Eu3+在Y4Al2O9晶格中占据两种不同的位置.用λ =254nm的紫外光激发Y4Al2O9:Eu3+时,产生两条发光谱带,即由于5 D 0→7 F 1的跃迁产生在峰值λ =590nm处的橙色发光带,和5 D 0→7 F 2跃迁在峰值λ =610nm处的红色发光带.  相似文献   

13.
Summary Sonoraite, FeTeO3(OH)·H2O, is monoclinic,P 21/c, witha=10.984(2),b=10.268(2),c=7.917(2) Å, =108.49(2)°. For 8 formula units per cell the calculated density is 4.179(2) g/cm3; the observed value is 3.95(1) g/cm3. The Supper-Pace automated diffractometer was used to collect 1884 independent reflections which were corrected for absorption. The structure was determined by an automated symbolic addition procedure. It was refined to a residualR of 6.2% using anisotropic temperature factors for the cations and isotropic temperature factors for the oxygen atoms. Chains of octahedra about Fe extend along [101]; edge-sharing pairs of these octahedra are joined by corner sharing. The Fe–Fe distances across the shared edges are 3.05 and 3.20 Å, short enough to suggest magnetic interactions. All but one H2O are involved in the chains. The Te4+ ions have a pseudotetrahedral coordination, with three oxygen ions forming one face of the tetrahedron and the lone electron pair of Te occupying the fourth corner. The O–Te–O average bond angle is 95°. The Fe chains are tied together by Te–O bonds in all three dimensions.
Die Kristallstruktur von Sonorait, Fe3+Te4+O3(OH).H2O
Zusammenfassung Sonorait, FeTeO3(OH)·H2O, ist monoklin, P 21/c, mit den folgenden Zelldimensionen:a=10,984(2),b=10,268(2),c=7,917(2) Å, =108,49(2)°. Mit 8 Formel-Einheiten errechnet man eine Dichte von 4,179(2) g/cm3; die gemessene Dichte beträgt 3,95(1) g/cm3. Das Supper-Pace automatische Diffraktometer wurde zur Sammlung von 1884 unabhängigen Reflexen benutzt, welche für Absorption korrigiert wurden. Die Struktur wurde mit Hilfe eines vollständig automatischen Programms für symbolische Addition bestimmt. Mit anisotropen Temperaturfaktoren für die Kationen und mit isotropen Temperaturfaktoren für die Sauerstoff-Atome wurde ein Residuum von 6,2% erreicht. Ketten von Eisen-Oktaedern erstrecken sich entlang [101]; Oktaeder-Paare mit gemeinsamen Kanten sind über Eckenverknüpfung verbunden. Die Fe–Fe-Abstände über die gemeinsamen Kanten betragen 3,05 und 3,20 Å, kurz genug, um zu magnetischer Wechselwirkung führen zu können. Nur ein H2O-Molekül ist nicht Teil einer Kette. Die Te4+-Ionen befinden sich in pseudotetraedrischer Koordination; drei Sauerstoff-Ionen bilden eine Fläche des Tetraeders, die vierte Ecke wird durch das einsame Elektronenpaar von Te besetzt. Der Mittelwert des O–Te–O-Bindungswinkels beträgt 95° Die Fe-Ketten werden durch Te–O-Bindungen dreidimensional verbunden.


With 3 Figures  相似文献   

14.
15.
Low-temperature heat capacity measurements for MgCr2O4 have only been performed down to 52 K, and the commonly quoted third-law entropy at 298 K (106 J K−1 mol−1) was obtained by empirical extrapolation of these measurements to 0 K without considering the magnetic or electronic ordering contributions to the entropy. Subsequent magnetic measurements at low temperature reveal that the Néel temperature, at which magnetic ordering of the Cr3+ ions in MgCr2O4 occurs, is at ∼15 K. Hence a substantial contribution to the entropy of MgCr2O4 has been missed. We have determined the position of the near-univariant reaction MgCr2O4+SiO2=MgSiO3+Cr2O3. The reaction, which has a small positive slope in P-T space, has been bracketed at 100 K intervals between 1273 and 1773 K by reversal experiments. The reaction is extremely sluggish, and lengthy run times with a flux (H2O, BaO-B2O3 or K2O-B2O3) are needed to produce tight reversal brackets. The results, combined with assessed thermodynamic data for Cr2O3, MgSiO3 and SiO2, give the entropy and enthalpy of formation of MgCr2O4 spinel. As expected, our experimental results are not in good agreement with the presently available thermodynamic data. We obtain Δ f H 298=−1759.2±1.5 kJ mol−1 and S 298=122.1±1.0 J K−1 mol−1 for MgCr2O4. This entropy is some 16 J K−1 mol−1 more than the calorimetrically determined value, and implies a value for the magnetic entropy of MgCr2O4 consistent with an effective spin quantum number (S') for Cr3+ of 1/2 rather than the theoretical 3/2, indicating, as in other spinels, spin quenching. Received: 9 May 1997 / Accepted: 28 July 1997  相似文献   

16.
Summary This work examines the red luminescence of benitoite studied by laser-induced time-resolved luminescence spectroscopy. This method allows the differentiation between luminescence centers of similar emission wavelengths, but different decay times. We have also examined the luminescence intensity and decay time as a function of temperature. We found that the red emission of benitoite consists of two individual bands and one line and suggest that the activators of luminescence in benitoite system are Ti3+ and a d3 element, namely Cr3+ or Mn4+.  相似文献   

17.
Unpolarized absorption spectra of single crystals of Cr3+ doped Al2O3 (synthetic ruby) have measured using a new, time-resolving, dispersive, streak photographic system over the range ~350 to ~700 nm during a series of shock loading experiments. The crystal field absorptions assigned to the transition 4 A 2g4 T 2g were observed to shift in a series of experiments from 555±1 nm at atmospheric pressure to 503±5 nm at 46 GPa. In a single experiment at 32 GPa the 4 A 2g4 T 1g transition was observed to shift from 405±1 to 386±5 nm. The present data extrapolate downwards in compression toward the 10 GPa data of Stephens and Drickamer (1961) although both crystal field absorption energies increase considerably less with compression than predicted by the simple ionic point charge model. The single datum observed for the Racah parameter B, 588±38 cm?1 at 32 GPa, is consistant with previous results to 10 GPa and the trend of decreasing B, with compression expected from the divergence of the data from the point charge model due to increasing covalancy.  相似文献   

18.
Hydrothermal experiments with mixtures of synthetic minerals have shown the reversibility of the reaction 5 phlogopite + 6 calcite + 24 quartz = 3 tremolite + 5 K-feldspar + 2 H2O + 6 CO2. In an isobaric T – diagram the equilibrium curve reaches a maximum at = 0,75. The P, T-values for this maximum are: 2 kb-523°; 4 kb-585°; 6 kb-625°; P±5%, T±10° C. These results give a first approximation of the P, T conditions responsible for a similar mineral reaction which has been recorded from natural metamorphic assemblages.

Herrn Prof. H. G. F. Winkler danke ich für anregende Diskussionen, desgleichen Herrn Dr. D. Puhan für wichtige Hinweise und Mitteilung seiner exp. Daten. Herrn Prof. V. Trommsdorff und Herrn P. H. Thompson bin ich für petrographische Angaben zu Dank verpflichtet. Der Aufbau der Hydrothermalanlage und die Finanzierung der laufenden Untersuchungen wurde aus den Mitteln des Fonds zur Förderung der wissenschaftlichen Forschung ermöglicht. Für diese Unterstützung gilt daher mein besonderer Dank.  相似文献   

19.
The equilibrium conditions of the following reaction 2 zoisite +1 CO2?3 anorthite+1 calcite+1 H2O 2 Ca2Al3[O/OH/SiO4/Si2O7]+1 CO2?3 CaAl2Si2O8+1 CaCO3+1 H2O have been determined experimentally at total pressures of P j= 2000 bars, P f =5000 bars, and P f =7000 bars. Owing to the vertical position of the equilibrium curves in isobaric T- \(X_{{\text{CO}}_{\text{2}} }\) diagrams, the composition of the binary H2O-CO2 fluid phase coexisting with zoisite is independent of temperature in the temperature interval investigated. According to our experiments, orthorhombic zoisite is only stable in equilibrium with a fluid phase at a concentration of CO2 which is less than, respectively, ca. 2 Mol% CO2 at P f =2000 bars, ea. 6 Mol% at P f =5000 bars, and ca. 10 Mol% at P f =7000 bars. Thus, the fluid phase coexisting with zoisite is rich in H2O. While this is independent of temperature the experimental data demonstrate that the influence of pressure cannot be neglected: With increasing pressure the concentration of CO2 of the fluid phase coexisting with zoisite can rise a little. The position of the reaction studied, which is independent of temperature and exhibits small values of \(X_{{\text{CO}}_{\text{2}} }\) ,leads to two important petrogenetic conclusions:
  1. The occurrence of zoisite is an indicator for a CO2-poor and H2O-rich fluid composition during metamorphism of marly calcsilicates.
  2. If the concentration of CO2 of the fluid phase coexisting with zoisite exceeds the equilibrium value of \(X_{{\text{CO}}_{\text{2}} }\) calcite+anorthite+H2O is formed from zoisite+CO2. Thus, a considerable increase in the anorthite-content of plagioelase is possible.
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