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1.
前人把内蒙古正蓝旗磨石山南部的羊蹄子山矿床确定为铁矿床,通过我们近几年的研究和勘查,发现了北部的磨石山新钛矿带,认为这不是一个铁矿,而是一个以锐钛矿为主的大型沉积变质型钛矿床,是钛矿床的一个新类型。矿体产于中元古代(1751Ma)片岩、变质石英(粉)砂岩和斜长角闪岩中,呈似层状、透镜状产出。富矿石具有细纹状构造,表现为以石英和锐钛矿为主的条纹互层。矿石矿物主要为锐钛矿,次有金红石和钛铁矿(赤铁矿),脉石矿物以石英为主,含一定量直闪石和黑云母(石榴子石)。锐钛矿、金红石和钛铁矿的粒度很细,为0.01~0.1mm。富矿含TiO23.14%~15.46%,平均6.91%,而贫矿的TiO2含量为1.2%~2.97%,平均1.76%。矿石含较高的Fe和V。锐钛矿和金红石的微量元素Nb和Cr的含量很低,说明矿物的源区来自变质基性岩。围岩斜长角闪岩恢复其原岩,大致相当于玄武岩、苦杆玄武岩等。岩石化学揭示其生成构造条件,为岛弧或岛弧和洋脊的过渡带。硅同位素组成研究结果,不同锐钛矿矿石、石英岩和片岩等的δ30Si值为0.1‰~-0.9‰,与海底热液喷气沉积矿床的数据相似。所有上述矿床的地质和地球化学特征表明,锐钛矿矿石和斜长角闪岩都是海底基性火山活动的产物,矿石具有化学沉积特征,后来遭到中(偏低)级区域变质作用,金红石主要形成于区域变质作用。矿床在燕山晚期(118Ma),由于花岗岩的侵位,又局部受到热液改造。  相似文献   
2.
羊蹄子山-磨石山钛矿床的钛矿物主要为锐钛矿、金红石和钛铁矿。锐钛矿化学成分的特点是FeO含量明显比金红石要低;主要X光粉晶谱线为3.518(100)、2.377(14)和1.667(11);晶胞参数a()=3.786,c()=9.513;拉曼光谱谱线(cm-1)为516、395、195和143。金红石的主要X光粉晶谱线为3.250(100)、1.688(40)和2.488(29);晶胞参数为a()=4.595,c()=2.962;拉曼光谱谱线(cm-1)为610和446。钛铁矿的成分特点是富锰贫镁,与攀西地区岩浆型钒钛磁铁矿矿床中的钛铁矿正好相反。所有上述钛(铁)氧化物矿物学特征,进一步说明该矿床是在中元古代在海底与基性火山活动有关的热水沉积后经区域变质和局部又遭受后期热液改造而成。  相似文献   
3.
文章通过详细的野外地质调查和系统的岩石化学、稀土元素、微量元素及硅、氧同位素等研究,探讨了羊蹄子山-磨石山钛矿区无矿白色硅质岩和富钛硅质岩的成因及形成地质构造环境。研究结果表明,呈厚层状产出的无矿白色硅质岩具较高的SiO2、Al2O3含量及Al/(Al Fe Mn)、Al2O3/(Al2O3 Fe2O3)比值,稀土元素总量很低,其北美页岩标准化配分模式为向右倾的曲线,无明显铈异常和铕异常,表明其形成于受陆源影响的大陆边缘构造环境;赋矿岩系中薄层状富钛硅质岩的TiO2、Fe2O3、Cu、V含量较高,但Al/(Al Fe Mn)、Al2O3/(Al2O3 Fe2O3)比值较低,稀土元素总量较高,北美页岩标准化曲线为明显左倾型-平坦型,具弱的负铈异常,表明其形成于洋脊及附近环境。两种硅质岩的δ30Si值为变化较小的负值,与热水沉积和某些生物成因硅质岩的硅同位素组成相似,两者的δ18O值范围和平均值均相似。两类硅质岩的成因及形成构造环境不同,富钛硅质岩的地球化学特征表明,该矿床的形成与本区元古宙海底火山热液喷流作用有关。  相似文献   
4.
铌铁锐钛矿是含铌、铁的锐钛矿变种。呈土黄色、褐棕色,板状或土粒状。反射率589nm,15.9%,显微硬度H_v=275.9kg/mm~2。计算比重4.4g/cm~3。主要化学成分Nb_2O_534.92—44.3%,TiO_2 29.38—37.58%,Fe_2O_3 14.94—17.19%。化学式:(Ti_(0.44)Nb_(0.31)Fe_(0.25))_(1.00)O_2X射线分析表明该矿物属四方晶系,α=3.828±0.002,c=9.682±0.009,空间群I4_1/amd,Z=4。 共生矿物钕易解石,深红色者变生现象轻微;浅黄色钕易解石与铌铁锐钛矿可能形成于稍晚、较低温度条件下的矿化过程。  相似文献   
5.
研究区梁山组煤系储藏有丰富的高岭岩资源,其质量优良,但具有较高的铁、钛含量,通过X衍射、电子探针对分选后的矿石分析鉴定,发现了铁、钛独立矿物的存在.实验结果表明:该地区高岭岩中铁主要以赤铁矿的形式存在,钛主要以锐钛矿的形式存在,同时矿石中钛主要以锐钛矿的形式出现,而不是金红石,这可能指示了成矿原始母质中含有基性火山物质.  相似文献   
6.
本文通过锐钛矿对不同pH值溶液中甘氨酸的吸附和中低温条件下锐钛矿表面甘氨酸的缩合研究,探讨半导体矿物吸附诱导氨基酸聚合的能力及其机理。结果表明:在pH=6.0时,甘氨酸在锐钛矿表面的吸附量达到最大值(约80.1 mg/g);且在弱酸条件下,甘氨酸通过羧基基团与锐钛矿表面相关原子或基团键合而吸附在其表面。在80~120℃范围内锐钛矿主要催化甘氨酸缩合形成DKP(环状二肽)、Gly_2(Gly-Gly)、Gly_3(Gly-Gly-Gly)等寡肽,催化缩合形成产物受温度的控制。锐钛矿表面为甘氨酸的吸附缩合提供了活性位点,在提供一定能量(加热)条件下,能催化甘氨酸缩合。  相似文献   
7.
The Shazi large-scale anatase deposit in Qinglong County, Guizhou Province, has been discovered recently and now is under exploration. Investigations show that the orebodies mostly occur at the top of the karst unconformity of the Middle Permian Maokou Formation strata and at the bottom of the Emeishan basalt. And the following three prerequisites should be satisfied for the formation of the deposit: 1) there must be the material source of anatase; 2) there must be weekly alkaline media and low-tempeature and low-pressure conditions; 3) there was no high-temperature and high-pressure environment subsequently for the transformation of anatase into rutile. In the Emeishan basalt of western Guizhou, the element Ti mostly entered the silicon-oxygen tetrahedra of picrite in heterovalent isomorphism (Ti4++Al3+→Mg2++Si4+). When volcanic ejecta resultant from strong eruption of the Emeishan basalt magma fell into water, picrite was usually dissociated to chlorite. Thus, the element Ti4+ in the picrite could be released from the silicon-oxygen tetrahedraa of picrite into water, and conbined with oxygen in the water to form TiO2. This paper has proved that this deposit, enriched in anatase, discovered recently at Shazi, Qinglong Country, Guizhou Province, is a residual-deluvial-type deposit. Its genesis can be explained as follows. Volcanic clastics formed at the early stage of strong eruption of the Emeishan basalt magma were chemically deposited to form anatase in the low-temperature, low-pressure and weekly alkaline waters in the karst depressions at the top of the Maokou Formation (limestone) strata. The anatase was then dissociated owing to weathering and leaching during the Quaternary and the anatase was further enriched to form the residual-deluvial-type anatase ore deposit.  相似文献   
8.
内蒙古正蓝旗羊蹄子山-磨石山钛矿床有两种不同类型的锐钛矿富矿体,即产于北部磨石山矿带的沉积变质型锐钛矿富矿体和产于南部羊蹄子山矿段的热液改造型锐钛矿富矿体。两类富矿体在矿体规模、形态、矿石结构构造特征、矿石矿物共生组合、矿石化学成分、锐钛矿粒度和成矿时代及成矿机理等方面,都存在较明显的差异。沉积变质型锐钛矿富矿体呈层状、似层状产出,矿石具有明显的细条纹状构造;由以石英为主的条纹和以锐钛矿、金红石、钛铁矿、直闪石(±黑云母、石榴子石)为主的条纹互层组成;矿石品位(TiO2)为5.0%~15.46%,平均值为8.64%,Fe2O3 FeO含量中等(6.99%~15.61%),锐钛矿颗粒细小(0.01~0.1mm);形成于元古宙〔(1751±8)Ma〕二道凹群变质岩系中。热液改造型锐钛矿富矿体呈透镜状,规模相对较小;矿石具有块状、网脉状、细脉浸染状构造;共生矿物除锐钛矿、金红石、钛铁矿、石英外,常有较多的叶片状赤铁矿,局部有直闪石、黑云母和石榴子石;锐钛矿粒度较大(0.05~0.2mm,少数可达0.5mm),且分布不均匀;是在元古宙沉积变质富锐钛矿变质石英砂岩的基础上,经燕山晚期〔(118±3)Ma〕花岗岩侵入,遭受热液改造而成。  相似文献   
9.
TiO2/浮石复合材料降解有机污染物亚甲基蓝的实验研究   总被引:4,自引:0,他引:4  
利用天然浮石的孔隙结构和小比重等特点,以浮石为原料、TiOSO4为TiO2前驱体,采用水热合成法,在200℃、15 h条件下,制备出可漂浮的TiO2/浮石复合材料.采用10×10-5mol/L亚甲基蓝水溶液,在紫外光下进行光催化实验.并用紫外可见分光光度计检测亚甲基蓝浓度变化.实验结果表明,TiO2/浮石复合材料能够降解亚甲基蓝.该材料的孔隙结构对亚甲基蓝有聚集作用,促进了负载的TiO2的光催化性能的发挥.因为成本低廉,性能优越,TiO2/浮石复合材料在有机污染物治理方面具有很大的应用潜力.  相似文献   
10.
Anatase and its allomorphic mineral rutile have the most prominent economic significance among titanium mineral resources and constitute one of the badly needed mineral resources currently in China. The Yantizishan-Moshishan anatase deposit was formerly referred to as an iron deposit. Based on recent investigation and exploration the authors believe that it is actually a large metamorphosed sedimentary anatase-dominated deposit belonging to a new genetic type. Ore bodies occur in stratoid and lenticular forms in Mesoproterozoic (1751 Ma) schist, metasandstone (metasiltstone), and amphibolite. Rich ores have perthitic structure comprising chiefly interbedded quartz perthite (with disseminated anatase and rutile) and anatase perthite. Ore minerals are mainly anatase and subordinately rutile and ilmenite (±hematite), while nonmetallic minerals are chiefly quartz with a certain amount of anthophyllite and biotite (±garnet). The grain sizes of anatase, rutile and ilmenite are 0.01–0.1 mm. Rich ores contain 3.14% to 15.46% TiO2, averaging 6.91%, while the low-grade ores have TiO2 content about 1.2%to 2.97%, averaging 1.76%. The ores have relatively high TFe and V contents. Trace elements in anatase and rutile such as Nb and Cr were analyzed by the electron microprobe. According to their relatively low Nb and Cr contents, source anatase and rutile must have come from meta-mafic rocks. Trace elements of the associated ilmenite show relatively high MnO and low MgO contents, just in contrast to those of ilmenite in V-Ti-magnetite ores of magmatic origin. The protoliths of amphibolite wall rocks should be basalt and picrite-basalt. Pertochemical data suggest that the tectonic setting of these rocks belongs to an island arc or a transitional belt between the island arc and oceanic ridge. Silicon isotope study shows that δ30Si values of different anatase ores, quartzite, and schist in this deposit are 0.1‰ to –0.9‰, similar to those of marine hydrothermal exhalative sedimentary deposits. All of these geological and geochemical characteristics of the ore deposit suggest that the anatase ores and amphibolite are products of submarine basic volcanism. The ores had chemical precipitation features, but were later subjected to regional intermediate (or somewhat lower) grade metamorphism (1158 Ma). Rutile was formed mainly in the process of this metamorphism. The ore belt locally underwent hydrothermal modification during the emplacement of Late Yanshanian granite (118?Ma).  相似文献   
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