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21.
建立了金属铟中锡的 ICP-AES 测定方法过程的数学模型,通过分析得到了对测定结果正确度影响的不确定度来源,评定了各个不确定度度分量、合成标准不确定度和扩展不确定度。并通过对标准方法的重复性、再现性等概念的讨论,说明了不确定度值在产品等级判定上的使用。 相似文献
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大义山花岗岩体受"大义山式"北西向张扭性断裂构造控制,具多次侵位的特点,与岩体有关的矿产主要为锡多金属矿。本次补勘的白沙子岭锡矿区有云英岩脉型、蚀变岩体型、矽卡岩型等3类锡多金属矿类型。白沙子岭矿段平行排列的矿脉群在平面上整体呈一椭圆形展布,脉群从中间向两侧单脉的长度、厚度、品位逐渐变小,单个脉体从中间向两端厚度、品位逐渐变低。矿脉两端顶底板断层面上见到产状完全相反的擦痕,推断深部存在着一个椭圆形隐伏母岩体,成矿母岩的上部会形成蚀变岩体型矿体。为此本次补勘工作施工了一坑内深钻,上部见到了蚀变岩体型富锡矿体,下部见钨矿,预测深部找矿有较大的找矿前景。 相似文献
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Ore and Skarn Mineralogy of the Yamato Mine,Yamaguchi Prefecture,Japan, with Emphasis on Silver‐, Bismuth‐, Cobalt‐, and Tin‐bearing Sulfides 下载免费PDF全文
Assemblages and chemical compositions of ore minerals from the Yamato mine, Yamaguchi Prefecture, Japan, were investigated in detail to clarify its characteristics as a skarn deposit. Special attention was paid to silver‐, bismuth‐, cobalt‐, and tin‐bearing sulfide minerals and native gold at the mine, which are described here for the first time. Samples of arsenopyrite‐dominant massive ore, and garnet‐rich, clinopyroxene‐garnet‐rich, and wollastonite‐bearing skarn ores were collected from the mine dump. Arsenopyrite is the most abundant ore mineral (>80 vol.%) in the massive ore, in association with both As‐poor/free and As‐bearing pyrite. The major ore minerals in the skarn specimens are pyrite, pyrrhotite, arsenopyrite, chalcopyrite, galena, and sphalerite, along with minor argentite, Ag‐Pb‐Bi sulfate, matildite, bismuthinite, native bismuth, molybdenite, scheelite, stannite, stannoidite, cassiterite, cobaltite, gersdorffite, and Co‐rich violarite. In addition, native gold is observed in the interstices of gangue minerals. Based on the mineral assemblages and textures of the specimens examined, the major ore minerals formed in the early stage of mineralization, and the Bi‐, Ag‐, Co‐, Ni‐, As‐ and Sn‐mineralization occurred in the middle stage. Native gold was deposited in the late stage. The estimated formation temperature of the middle mineralization stage was 312±5 °C, according to iron and zinc partitioning between stannite and coexisting sphalerite. The mineralogical properties and mineralization process of the Yamato mine are consistent with those of common skarn‐ and vein‐type ore deposits associated with ilmenite‐series granitoids in the San‐yo and San‐in districts. 相似文献
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Abstract Endogreisens which replace K-feld-spar-quartz dykes in a Devonian (360 Ma) tin deposit at Mt Bischoff, north-west Tasmania, formed from the interaction of unusual solutions, probably derived from an underlying leucogranite pluton, porphyry dykes and limited quantities of local dolomitic country rock components. The intensity of greisenization and pH of the solutions increase inward to the greisenized dykes'cores and downward. The following types of greisen assemblages indicate increasing degrees of greisenization: 'sericite'muscovite + quartz ± tourmaline ± fluorite, topaz + quartz ± tourmaline ± fluorite, weberite, prosopite, ralstonite, Ca-ralstonite; and quartz ± topaz ± fluorite. Where the solutions interacted with dolomite, exogreisens consisting of topaz- or tourmaline-bearing assemblages were formed. The greisens were subsequently overprinted to varying degrees by siderite, sulphides and hydrous silicates (talc, serpentine, chlorite, micas).
The temperature during greisenization ranged from 180 to 414°C, based on fluid inclusions in topaz, quartz, fluorite, sellaite and cassiterite. The main greisen-forming event occurred at temperatures of 360±20°C. The fluids boiled intermittently. Their salinities ranged from 31.5 to 38.9 wt% total dissolved salts, consisting of Ca–K–Na–Fe–Cl±hydrocarbon species. Fluid inclusion data indicate that only 0.5–1.5 km of cover were present above this deposit at the time of formation.
The greisenized dykes were intruded by and intrude different stages of breccias. The breccias consist mainly of country rock and greisenized dyke fragments, with rock-flour and later tourmaline alteration. The Mt Bischoff greisen system is possibly part of a 'porphyry tin'style deposit formed at near-surface conditions (0.5–1.0 km). 相似文献
The temperature during greisenization ranged from 180 to 414°C, based on fluid inclusions in topaz, quartz, fluorite, sellaite and cassiterite. The main greisen-forming event occurred at temperatures of 360±20°C. The fluids boiled intermittently. Their salinities ranged from 31.5 to 38.9 wt% total dissolved salts, consisting of Ca–K–Na–Fe–Cl±hydrocarbon species. Fluid inclusion data indicate that only 0.5–1.5 km of cover were present above this deposit at the time of formation.
The greisenized dykes were intruded by and intrude different stages of breccias. The breccias consist mainly of country rock and greisenized dyke fragments, with rock-flour and later tourmaline alteration. The Mt Bischoff greisen system is possibly part of a 'porphyry tin'style deposit formed at near-surface conditions (0.5–1.0 km). 相似文献
26.
华南与花岗岩有关的一种新类型的锡成矿作用:矿物化学、元素和同位素地球化学证据 总被引:22,自引:21,他引:22
华南是我国最重要的锡成矿省,产有大量的与花岗岩有关的大型-超大型锡多金属矿床。近年来,在湘南新探明一个超大型锡矿床—芙蓉锡矿床,其中,最重要的锡矿化产在骑田岭花岗岩体西南部的破碎蚀变带内,与绿泥石化密切相关。骑田岭花岗岩富含角闪石,具有较高的氧逸度,显示出准铝的地球化学特征,在花岗岩形成过程中发生过壳-慢岩浆混合作用。这些特点都表明骑田岭花岗宕并不同于一般的 S 型含锡花岗岩,而显示出 A 型花岗岩的地球化学特征。同位素定年分析表明,芙蓉锡矿床主成矿阶段的形成时代要晚于骑田岭花岗岩侵位年龄近20Ma。氢、氧同位素分析表明,发生过水-岩反应的大气降水在成矿流体中占有很重要的地位。硫同位素分析表明花岗岩和地层都提供了成矿所需的硫。因此,用花岗岩浆结晶分异过程中分离出富锡的岩浆流体来形成锡矿的传统模式并不适合于解释芙蓉锡矿的形成。我们认为芙蓉锡矿的形成主要与骑田岭花岗岩的绿泥石化蚀变有关,循环的大气降水与花岗岩发生水-岩反应,富锡的铁镁矿物在蚀变成绿泥石的同时释放出 Sn 和 Ti 等金属到流体中,当物理化学条件改变时,沉淀形成锡矿体。这是一种比较独特的锡矿化模式,丰富了华南与花岗岩有关的锡矿化类型。 相似文献
27.
含铍条纹状蚀变岩在发现界牌岭锡多金属隐伏矿床中的找矿意义 总被引:1,自引:0,他引:1
界牌岭锡多金属矿床是一个大型隐伏矿床,找矿工作采用了化探次生晕、原生晕、地质调查等多种方法和手段。含敛条纹状蚀变岩的发现在找矿预测中起到了致关重要的作用,为找矿工作开拓了新的思路. 相似文献
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新疆萨惹什克锡矿与萨北碱性A型花岗岩成因关系的年代学制约 总被引:20,自引:12,他引:20
新疆东准噶尔地区的萨惹什克锡矿呈脉状产于萨北花岗岩体中。对于这种脉状矿床,成岩和成矿近时性的时间制约是证明矿床与围岩有成因关系的首要证据。萨北岩体由含碱性铁铁矿物的碱性花岗岩组成,全岩地球化学结果显示,碱性花岗岩具高碱、低 Ca,明显富集稀土元素、高场强元素(Zr,Hf,Nb,Ta,Y)和大离子亲石元素(Rb,Th,U),而强烈亏损Sr,Ba,Eu,属于典型的碱性 A 型花岗岩。锡矿脉由占绝对优势的锡石和石英组成,受北东和近东西向的断裂破碎带控制。原有研究证实,形成该锡矿床的成矿流体属于具高温、低盐度和低密度的岩浆水。据此并结合锡矿体的围岩性质,前人认为锡矿床与碱性花岗岩有成因联系。但是,由于分析技术和样品选择上的制约,萨北岩体成岩和萨惹什克锡矿成矿的确切时代一直没有得到合理的解决。本文报道了我们最近获得的碱性花岗岩锆石 LA-ICP-MS U—Pb 和锡矿石辉钼矿 Re-Os 同位素年龄(分别为306±3Ma 和307±11Ma)。上述结果表明,萨北碱性花岗岩和萨惹什克锡矿石属于同期地质事件的产物,从而为两者具有密切成因联系提供了重要的年代学制约。此外,根据碱性花岗岩的ε_(Nd)(t)(≈ 5.0)低于研究区亏损地幔4.5个ε单位,我们认为形成萨北岩体的花岗岩浆不是直接来源于亏损地幔玄武质岩浆结晶分异作用的产物,而更可能是起源于本区年轻洋壳和陆源沉积物的部分熔融。 相似文献