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首页> 外文期刊>The American mineralogist >Alburnite, Ag_8GeTe_2S_4, a new mineral species from the Ro?ia Montana Au-Ag epithermal deposit, Apuseni Mountains, Romania
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Alburnite, Ag_8GeTe_2S_4, a new mineral species from the Ro?ia Montana Au-Ag epithermal deposit, Apuseni Mountains, Romania

机译:罗马尼亚Apuseni山的Ro?ia Montana Au-Ag超热矿床中的一种新的矿物种,Ag_8GeTe_2S_4赤铁矿

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摘要

Alburnite, ideally Ag _8GeTe_2S_4, was discovered in the Carnicel vein from the Ro?ia Montana epithermal Au-Ag ore deposit, Apuseni Mountains, Romania. The new mineral is associated with tetrahedrite, galena, pyrite, sphalerite, chalcopyrite, and tellurides (hessite, altaite, and sylvanite). Associated gangue minerals are rhodochrosite, quartz, calcite, and rhodonite. Alburnite was observed only at the microscopic scale as rounded to sub-rounded grains, veinlets or irregular inclusions hosted mainly by tetrahedrite, hessite, and rhodochrosite. Due to the small size of alburnite grains observed so far it was not possible to determine some macroscopic properties; reported properties are based on microscopic observations. The mineral has a metallic luster and is opaque. It is non-fluorescent and has an estimated Mohs hardness of 4. The mineral shows no cleavage. Density could not be measured because of the small grain size, but calculated density based on the empirical formula is 7.828 g/cm~3. In plane-polarized light in air, alburnite is gray-blue with a bluish tint. It shows no pleochroism or bireflectance in air. Between crossed polars alburnite is isotropic and internal reflections have not been observed in air. The mineral decomposes in intense light. Reflectance minimum values in air (in percents) are: 470 nm 29.70; 546 nm 28.00; 589 nm 27.35; 650 nm 26.95. The average chemical composition based on 18 electron microprobe analyses from 9 different grains in one polished section is (in wt%): Ag 65.49, Ge 4.82, Te 20.16, S 9.66, total 100.13. The ideal formula of alburnite, Ag_8GeTe_2S_4, based on 15 apfu requires Ag 65.43, Ge 5.50, Te 19.35, S 9.72, total 100.00 wt%. Features of the crystal structure of alburnite were determined based on electron backscattered diffraction and transmission electron microscopy. Alburnite is cubic, space group F43m, with unit-cell parameters a = 10.4(1) ?, V = 1125(30) ?~3, Z = 4. The strongest eight calculated XRD lines [d in ?(I)(hkl)] are: 6.004(67)(111), 3.136(48)(113), 3.002(100)(222), 2.600(26)(004), 2.123(33)(224), 2.002(61)(115), 1.838(76)(044), and 1.644(12)(026). The name of the new mineral alburnite is derived from the Latin name of the locality. Ro?ia Montana Au-Ag deposit was known during the Roman period as Alburnus Maior. The mineral and the mineral name have been approved by the Commission on New Minerals, Nomenclature and Classification, IMA 2012-073.
机译:在罗马尼亚Apuseni山的Ro?ia Montana超热Au-Ag矿床的Carnicel脉中发现了理想的Ag _8GeTe_2S_4的燃铁石。新的矿物与四面体,方铅矿,黄铁矿,闪锌矿,黄铜矿和碲化物(黄铁矿,方铁矿和钾长石)相关。伴生的脉石矿物是菱锰矿,石英,方解石和菱锰矿。仅在微观尺度上观察到了燃金石,其被圆形化为主要由四面体,菱铁矿和菱锰矿主生的亚圆形晶粒,细纹或不规则夹杂物。由于迄今观察到的燃点尺寸很小,因此无法确定某些宏观性能。报告的性能基于微观观察。矿物具有金属光泽并且是不透明的。它是非荧光性的,莫氏硬度估计为4。该矿物未显示开裂。由于粒径小,无法测量密度,但是根据经验公式计算出的密度为7.828 g / cm〜3。在空气中的平面偏振光中,赤铁矿呈灰蓝色,略带蓝色。它在空气中没有多色性或双折射性。在交叉的两极之间,赤铁矿是各向同性的,在空气中未观察到内部反射。矿物质在强光下分解。空气中的反射最小值(百分比)为:470 nm 29.70; 546 nm 28.00; 589纳米27.35; 650纳米26.95。基于18个电子微探针分析的一个抛光段中的9种不同晶粒的平均化学成分为(wt%):Ag 65.49,Ge 4.82,Te 20.16,S 9.66,总计100.13。基于15 apfu的理想的赤铁矿配方Ag_8GeTe_2S_4要求Ag 65.43,Ge 5.50,Te 19.35,S 9.72,总计100.00 wt%。基于电子反向散射衍射和透射电子显微镜确定了燃burn石的晶体结构特征。 burn石是立方的,空间群F43m,晶胞参数a = 10.4(1)?,V = 1125(30)?〜3,Z =4。计算出的最强的8条XRD线[?(I)(hkl) )]是:6.004(67)(111),3.136(48)(113),3.002(100)(222),2.600(26)(004),2.123(33)(224),2.002(61)(115) ),1.838(76)(044)和1.644(12)(026)。新的矿物赤铁矿的名称源自该地区的拉丁文名称。 Ro?ia Montana Au-Ag矿床在罗马时期被称为Alburnus Maior。矿物和矿物名称已由新矿物,命名和分类委员会IMA 2012-073批准。

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