首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   11篇
  免费   1篇
  国内免费   1篇
地质学   9篇
天文学   1篇
综合类   3篇
  2018年   1篇
  2010年   1篇
  2008年   2篇
  2007年   1篇
  2003年   1篇
  2001年   2篇
  2000年   1篇
  1998年   2篇
  1997年   1篇
  1990年   1篇
排序方式: 共有13条查询结果,搜索用时 187 毫秒
1.
Recent discoveries over the last decade of new gemfields, exploitation of new and existing deposits, and application of relatively new techniques have greatly increased our knowledge of the basalt-derived gem sapphire–ruby–zircon deposits. In this paper we focus on the Late Mesozoic to Cenozoic intraplate basaltic fields of the West Pacific continental margins. We review advances made in understanding the genesis of these deposits, based on the application of newer techniques. We also critically review existing data on the gem corundum deposits, in order to further refine a model for their origin.In some of the intraplate basaltic fields, corundum-bearing xenoliths have been found showing a range of PT formation conditions from 790 °C at 0.85 GPa to as much as 1100 to 1200 °C at 1.0 to 2.5 GPa. Although most magmatic sapphires contain syngenetic inclusions of columbite-group phases, zircon, spinel and rutile, some contain additional nepheline and K-feldspar, suggesting crystallization from more undersaturated alkaline magma while the Weldborough field of NE Tasmania also contains molybdenite and beryl, suggesting at least some interaction with more fractionated ‘granitic-type’ magmas. There is a large range in PT conditions calculated for the metamorphic rubies (from 780 to 940 °C, through 800 to 1150 °C up to 1000 to 1300 °C). Fluid/melt inclusion studies on magmatic corundums generally suggest that they formed in a CO2-rich environment from a ‘syenitic’ melt under a range of T conditions from 720 to 880 °C up to 1000 to 1200 °C. Oxygen isotope studies reveal that typical magmatic corundums have values of + 4.4 to 6.9‰, whereas metamorphic corundums from the same basaltic host have lower values of + 1.3 to 4.2‰.Geochronological studies have shown that some fields produced a simple eruptive and zircon/corundum crystallization event while others had multiple eruptive events but only one or two zircon crystallization events. For a few fields, some corundums/zircons crystallized in storage regions and then remained relatively inert for periods of 200 to 400 Ma without significant change before transport to the surface in the Cenozoic. Tectonic studies of the Australian region suggest that many of the corundums crystallized from magmas related to episodic basaltic volcanism in a tectonic regime of extension, associated with the opening of the Tasman and Coral Seas. For the Asian region, the magmatic–polygenetic corundums within the basaltic fields largely crystallized in a tectonic regime of distributed E–W extension, whereas the metamorphic-metasomatic corundums crystallised in a transpressional regime associated with the collision of the Indian Plate with the Eurasian Plate (e.g., [Garnier, V., Giuliani, G., Maluski, H., Ohnenstetter, D., Deloule, E., 2003. Ar–Ar and U–Pb ages of marble-hosted ruby deposits from Central and South-east Asia. Geophysical Research Abstracts 5, 03751; Garnier, V., Giuliani, G., Ohnenstetter, D., and Schwarz, D., 2004. Les gisements de corindon: classification et genese. Les placers a corindon gemme. Le Regne Mineral 55, 7-47; Garnier, V., Ohnenstetter, D., Giuliani, G., Maluski, H., Deloule, E., Phan Trong, T., Pham Van, L., Hoang Quang, V., 2005a. Age and significance of ruby-bearing marble from the Red River Shear Zone, Northern Vietnam. Canadian Mineralogist 43, 1315–1329]).  相似文献   
2.
产于玄武岩中的蓝宝石颜色通常较深 ,山东昌乐蓝宝石的颜色因其晶体巨大更显得深暗。这类蓝宝石曾多次进行过改色试验 ,但成效都不大。通过对电子探针及紫外—可见光—近红外吸收光谱图测试结果的分析 ,并对山东昌乐蓝宝石的颜色与化学成分之间的关系进行研究 ,结果表明 :昌乐蓝宝石的主要致色元素为Fe,Ti,Cr,Ni等 ,Fe2 O3 FeO含量高及TiO2含量少 ,以及成对Fe3 的大量存在是其颜色偏深的重要原因 ;TiO2 含量对蓝宝石颜色纯度影响很大 ,也是蓝宝石改色能否成功的重要因素之一。  相似文献   
3.
蓝宝石主要致色元素与其颜色关系的实验研究   总被引:3,自引:0,他引:3  
孙宏娟  莫宣学 《岩石学报》1998,14(3):381-387
蓝宝石的颜色与主要致色元素的含量及其比值以及形成时的氧逸度有密切关系。本实验选用不同色调的蓝宝石,采用定量控制环境氧逸度的热处理方法,控制蓝宝石中主要致色离子的价态和比例。通过实验研究,获得(1)蓝宝石的颜色、透明度与氧逸度之间的关系曲线;(2)山东昌乐蓝宝石颜色与Fe、Ti含量及其比值之间关系曲线。Cr、Ni、Mn等多种杂质元素含量高会导致蓝宝石透明度降低,灰色调显著;(3)发现山东昌乐蓝宝石中存在α-Fe,它是蓝宝石颜色深,透明度差的重要原因之一。  相似文献   
4.
郯庐深大断裂两侧主要矿产成矿特征研究   总被引:6,自引:0,他引:6  
涂怀奎 《矿产与地质》1997,11(5):309-313
郯城—庐江深大断裂构造演化控制着东西两侧主要矿产的产布规律。有其相同的矿种,相似的矿床类型,但在其矿床规模上有所差异,郯庐深大断裂东侧产出大型的招掖型金矿床,大型东海型水晶矿,还有辽南瓦房店金刚石矿和宽甸蓝宝石矿;西侧产有大型的蒙阴型金刚石矿,大型昌乐型蓝宝石矿,也有沂南金矿床和大别山区麻城霍山紫水晶矿的分布。深入研究郯庐断裂构造演化与成矿特征,有望扩大找矿的前景。  相似文献   
5.
The oxygen isotopic composition of gem corundum was measured from 22 deposits and occurrences in Madagascar to provide a gemstone geological identification and characterization. Primary corundum deposits in Madagascar are hosted in magmatic (syenite and alkali basalt) and metamorphic rocks (gneiss, cordieritite, mafic and ultramafic rocks, marble, and calc-silicate rocks). In both domains the circulation of fluids, especially along shear zones for metamorphic deposits, provoked in situ transformation of the corundum host rocks with the formation of metasomatites such as phlogopite, sakenite, and corundumite. Secondary deposits (placers) are the most important economically and are contained in detrital basins and karsts. The oxygen isotopic ratios (18O/16O) of ruby and sapphire from primary deposits are a good indicator of their geological origin and reveal a wide range of δ18O (Vienna Standard Mean Ocean Water) between 1.3 and 15.6‰. Metamorphic rubies are defined by two groups of δ18O values in the range of 1.7 to 2.9‰ (cordieritite) and 3.8 to 6.1‰ (amphibolite). “Magmatic” rubies from pyroxenitic xenoliths contained in the alkali basalt of Soamiakatra have δ18O values ranging between 1.3 and 4.7‰. Sapphires are classified into two main groups with δ18O in the range of 4.7 to 9.0‰ (pyroxenite and feldspathic gneiss) and 10.7 to 15.6‰ (skarn in marble from Andranondambo). The δ18O values for gem corundum from secondary deposits have a wide spread between −0.3 and 16.5‰. The ruby and sapphire found in placers linked to alkali basalt environments in the northern and central regions of Madagascar have consistent δ18O values between 3.5 and 6.9‰. Ruby from the placers of Vatomandry and Andilamena has δ18O values of 5.9‰, and between 0.5 and 4.0‰, respectively. The placers of the Ilakaka area are characterized by a huge variety of colored sapphires and rubies, with δ18O values between −0.3 and 16.5‰, and their origin is debated. A comparison with oxygen isotope data obtained on gem corundum from Eastern Africa, India, and Sri Lanka is presented. Giant placer deposits from Sri Lanka, Madagascar, and Tanzania have a large variety of colored sapphires and rubies with a large variation in δ18O due to mingling of corundum of different origin: mafic and ultramafic rocks for ruby, desilicated pegmatites for blue sapphire, syenite for yellow, green, and blue sapphire, and skarn in marbles for blue sapphire.  相似文献   
6.
Many sapphire and ruby occurrences are spatially linked with orogenic belts such as the Pan-African Orogen, the Himalayas, and regions of active or former subduction along the western margin of the Pacific Ocean. These gemstones have oxygen isotope compositions (δ18O) that span >45‰, reflecting the wide range of environments and conditions involved in corundum (Al2O3) formation. We compiled a global data base of sapphire and ruby δ18O, from which the following major groups of gemstones emerge: a dominant population of sapphires with δ18O centred around 5.5‰ (the mantle value) that is spatially related to regions of former subduction; a lesser population of sapphires and rubies with slightly higher δ18O that are associated with skarn and pegmatite; rubies with relatively low δ18O of 0‰–7‰ that occur in hydrothermally altered ultramafic metamorphic rocks in collision zones; and rubies with high δ18O of 14‰–25‰ that are found, almost exclusively, in Himalayan marble. The spatial distribution of the δ18O groups relative to plate boundaries provides insight into the two major periods of continental collision involved in sapphire and ruby formation: the Ediacaran collision of East and West Gondwana (the East African Orogeny) and the Cenozoic collision of India and Asia.  相似文献   
7.
为了设计主动型氢原子钟蓝宝石谐振腔的结构尺寸,对根据TE011模式下蓝宝石谐振腔的麦克斯韦尔方程组推出的超越方程进行了求解,利用电磁场有限元分析软件对蓝宝石腔进行了仿真分析。通过计算S参数,确认了所设计的氢原子钟蓝宝石谐振腔实现氢脉泽自激振荡的现实性。利用SOHM-4型氢钟机架作为实验床,在离子泵电流1.1 mA时,得到了强度为-102.93 dbm的脉泽振荡信号。此信号强度与标准的主动型氢原子钟在相同的离子泵电流下的信号强度相仿。  相似文献   
8.
文章简介丁刚玉族宝石矿物的化学成分、物理性质及产状;描述了红宝石、蓝宝石、粉蓝宝石、黄蓝宝石、绿蓝宝石、无色蓝宝石和星光宝石的特征、真伪鉴别方法及市场行情。  相似文献   
9.
Madagascar is one of the most important gem-producing countries in the world, including ruby and sapphires. Gem corundum deposits formed at different stages in the geological evolution of the island and in contrasting environments. Four main settings are identified: (1) Gem corundum formed in the Precambrian basement within the Neoproterozoic terranes of southern Madagascar, and in the volcano-sedimentary series of Beforona, north of Antananarivo. In the south, high-temperature (700 to 800 °C) and low-pressure (4 to 5 kbar) granulites contain deposits formed during the Pan-African orogenesis between 565 and 490 Ma. They accompany mafic and ultramafic complexes (ruby deposits of the Vohibory group), skarns at the contact between Anosyan granites and the Proterozoic Tranomaro group (sapphire deposits of the Tranomaro–Andranondambo district), and shear-zone corridors cross-cutting feldspathic gneisses, cordieritites and clinopyroxenites in the Tranomaro, Vohimena and Androyan metamorphic series (biotite schist deposits of Sahambano and Zazafotsy, cordieritites of Iankaroka and Ambatomena). The circulation of fluids, especially along discontinuities, allowed in-situ alkaline metasomatism, forming corundum host rocks related to desilicified granites, biotitites, “sakenites” and “corundumites”. (2) Gem corundum also occurs in the Triassic detrital formations of the Isalo group, as giant palaeoplacers in the Ilakaka–Sakaraha area. Here, sapphires and rubies may come from the metamorphic granulitic terranes of southern Madagascar. (3) Gem corundum deposits occur within the Neogene-Quaternary alkali basalts from Ankaratra (Antsirabe–Antanifotsy area) and in the Ambohitra Province (Nosy Be, Ambato and Ambondromifehy districts). Primary deposits are rare, except at Soamiakatra where ruby in gabbroic and clinopyroxenite xenoliths within alkali-basalts probably derive from mantle garnet peridotites. The blue-green-yellow sapphires typical of basaltic fields are always recovered in palaeoplacer (in karst formed upon Jurassic limestones from the Montagne d'Ambre, Antsiranana Province) and alluvial and soil placers (Ankaratra volcanic massif). (4) Deposits occur within Quaternary eluvial, colluvial and alluvial concentrations, such as high-quality rubies from the Andilamena and Vatomandry deposits.  相似文献   
10.
雷威  林锦富 《矿产与地质》2001,15(3):212-215
明溪蓝宝石呈色是铁,钛,铬等杂质过渡金属离子电子跃迁和电荷转移等因素共同作用的结果,但蓝色的深浅与铁的含量不呈简单的正相关关系,而更多地与铁,钛间含量的配比相关,Al2O3中OH的振动应成为人们关注的蓝宝石呈色影响因素之一。  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号