荷兰(斯洛伐克赫罗尼库姆)东低Chmelienc U-Cu矿的超成因矿物

Q3 Earth and Planetary Sciences Bulletin Mineralogie Petrologie Pub Date : 2021-01-01 DOI:10.46861/bmp.29.077
Eva Hoppanová, Štefan Ferenc, Richard Kopáčik, Šimon Budzák, Tomáš Mikuš
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The average chemical composition of the studied uranophane can be expressed by an empirical formula (Ca1.0Mg0.02K0.01Fe0.01Ba0.01)Σ1.05 (UO2)2.08(SiO3OH)1.84·5H2O. The infrared vibrational spectra of the studied uranophane show 3 (UO2)2+ at 850-760 cm-1; the 3 (SiO4)4- antisymmetric stretching vibration at 1000-900 cm-1; the 1 (SiO4)4- symmetric stretching vibration at 1150-1199 cm-1; the  H2O bending vibration at 1800-1600 cm-1 and OH stretching vibrations at 3407; 3408 and 3409 cm-1. The weak bands 2648; 2646 and 2651 cm-1 may be assigned to organic impurities. The calculated U-O bond length 1.83 Å corresponds to short U-O bonds in uranophane. The accessory admixtures of uranophane coatings are (meta)zeunerite and zálesíite. (Meta)zeunerite occasionally forms thin coatings of light green to emerald green tabular crystals (up tu 0.5 mm) on the surface of the rocks. Chemical analyses of (meta)zeunerite correspond to the empirical formula (Cu0.66K0.03Fe0.01Ca0.01)Σ0.71(UO2)2.11[(AsO4)1.96(PO4)0.01]Σ1.97·12H2O. Zálesíite occurs as crystalline aggregates, nests, formed by tiny acicular crystals, up to 100 µm in length. This is the second finding (occurrence) of this mineral in Slovakia. An average zálesíite chemical composition is (Ca0.83REE0.18U0.05Al0.03Ti0.01)Σ1.10(Cu5.81Fe0.06Zn0.02)Σ5.90[(AsO4)2.75 (SiO4)0.21(PO4)0.02(SO4)0.03]Σ3.01(OH)5.10·3H2O. Malachite, which has been also found in the association, is only a minor mineral in the studied locality. The formation of uranyl silicates (uranophane) and minerals of the mixite group (zálesíite), present at the studied locality, points to neutralization of acidic supergene fluids in the mine dumps. Possibly, this environment later (precipitation of baryte) passed to neutral or slightly basic conditions (precipitation of carbonates - malachite). 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引用次数: 0

摘要

在斯洛伐克Nízke Tatry山北坡废弃U矿床Východná-Nižný Chmelienec旧矿体遗迹中发现了表生U- cu和Y/REE矿物组合。它们的部分起源是最近的,因为对该地区的探索发生在1965年至1966年之间。研究的矿物组合以针铁矿、孔雀石、铀辉石和(偏)锌辉石为代表,重晶石次之,稀有zálesíite。天王星单独出现(球状聚集体,薄涂层),它也形成了岩石裂缝上黄色到黄绿色结晶外壳的主要部分。通过电子探针分析确定了铀酰烯的化学成分,其化学成分接近于理想化学式Ca(UO2)2(SiO3OH)2·5H2O。所研究的铀烯的平均化学成分可由实验式(Ca1.0Mg0.02K0.01Fe0.01Ba0.01)Σ1.05(UO2)2.08(SiO3OH)1.84·5H2O表示。所研究的铀氧化物的红外振动谱显示:在850 ~ 760 cm-1范围内的3 (UO2)2+,在1000 ~ 900 cm-1范围内的3 (SiO4)4-反对称拉伸振动;1 (SiO4)4-对称伸缩振动在1150-1199 cm-1;在1800 ~ 1600 cm-1范围内的 H2O弯曲振动和3407 cm-1范围内的OH拉伸振动;3408和3409 cm-1。弱波段2648;2646和2651 cm-1可分配给有机杂质。计算得到的U-O键长为1.83 Å,对应于铀酰铀的短U-O键。铀氧化物涂料的辅助外加剂为(元)沸石和zálesíite。(元)沸石偶尔会在岩石表面形成浅绿色到翠绿色的薄片状晶体(高达0.5毫米)。(元)沸石的化学分析符合实验式(Cu0.66K0.03Fe0.01Ca0.01)Σ0.71(UO2)2.11[(AsO4)1.96(PO4)0.01]Σ1.97·12H2O。Zálesíite以结晶聚集体、巢的形式出现,由微小的针状晶体组成,长度可达100微米。这是在斯洛伐克第二次发现这种矿物。平均zálesíite化学成分为(Ca0.83REE0.18U0.05Al0.03Ti0.01)Σ1.10(Cu5.81Fe0.06Zn0.02)Σ5.90[(AsO4)2.75 (SiO4)0.21(PO4)0.02(SO4)0.03]Σ3.01(OH)5.10·3H2O。孔雀石,也发现在该协会,只是一个次要的矿物,在研究地点。在研究地点出现的铀酰硅酸盐(铀矿石)和混合矿物群(zálesíite)的形成表明,在矿山排土场中酸性表生流体的中和作用。可能,这种环境后来(重晶石的沉淀)转变为中性或轻微的碱性条件(碳酸盐-孔雀石的沉淀)。因此,鉴定出的典型酸性环境的磷酸铀酰/砷酸盐(沸石/后沸石)是罕见的。
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Supergénne minerály z U-Cu rudného výskytu Východná-Nižný Chmelienec v Nízkych Tatrách (hronikum, Slovensko)
An association of supergene U-Cu and Y/REE minerals was found in a relic of old ore dump at the abandoned U deposit occurrence Východná-Nižný Chmelienec, the northern slopes of the Nízke Tatry Mts., Slovakia. They have partially recent origin, since exploration of the locality took place between 1965 and 1966. The studied mineral assem- blage is represented by goethite, malachite, uranophane and (meta)zeunerite, in a lesser extent baryte and rare zálesíite. Uranophane appears separately (globular aggregates, thin coatings) and it also forms the main part of the yellow to yellow-green crystalline crusts on the rock cracks. The chemical composition of the uranophane was determined by electron microprobe analyses and it is close to its ideal chemical formula Ca(UO2)2(SiO3OH)2·5H2O. The average chemical composition of the studied uranophane can be expressed by an empirical formula (Ca1.0Mg0.02K0.01Fe0.01Ba0.01)Σ1.05 (UO2)2.08(SiO3OH)1.84·5H2O. The infrared vibrational spectra of the studied uranophane show 3 (UO2)2+ at 850-760 cm-1; the 3 (SiO4)4- antisymmetric stretching vibration at 1000-900 cm-1; the 1 (SiO4)4- symmetric stretching vibration at 1150-1199 cm-1; the  H2O bending vibration at 1800-1600 cm-1 and OH stretching vibrations at 3407; 3408 and 3409 cm-1. The weak bands 2648; 2646 and 2651 cm-1 may be assigned to organic impurities. The calculated U-O bond length 1.83 Å corresponds to short U-O bonds in uranophane. The accessory admixtures of uranophane coatings are (meta)zeunerite and zálesíite. (Meta)zeunerite occasionally forms thin coatings of light green to emerald green tabular crystals (up tu 0.5 mm) on the surface of the rocks. Chemical analyses of (meta)zeunerite correspond to the empirical formula (Cu0.66K0.03Fe0.01Ca0.01)Σ0.71(UO2)2.11[(AsO4)1.96(PO4)0.01]Σ1.97·12H2O. Zálesíite occurs as crystalline aggregates, nests, formed by tiny acicular crystals, up to 100 µm in length. This is the second finding (occurrence) of this mineral in Slovakia. An average zálesíite chemical composition is (Ca0.83REE0.18U0.05Al0.03Ti0.01)Σ1.10(Cu5.81Fe0.06Zn0.02)Σ5.90[(AsO4)2.75 (SiO4)0.21(PO4)0.02(SO4)0.03]Σ3.01(OH)5.10·3H2O. Malachite, which has been also found in the association, is only a minor mineral in the studied locality. The formation of uranyl silicates (uranophane) and minerals of the mixite group (zálesíite), present at the studied locality, points to neutralization of acidic supergene fluids in the mine dumps. Possibly, this environment later (precipitation of baryte) passed to neutral or slightly basic conditions (precipitation of carbonates - malachite). The identified uranyl phosphates/arsenates (zeunerite/metazeunerite), typical of an acidic environment, are therefore rare.
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Bulletin Mineralogie Petrologie
Bulletin Mineralogie Petrologie Earth and Planetary Sciences-Economic Geology
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期刊介绍: Bulletin Mineralogie Petrologie is a peer-reviewed journal focused especially on: mineralogy, crystal chemistry and study of crystal structures of minerals study of mineral associations and processes of their origin meteoritics, research of tectites economic geology (of ore deposits) and study of history of mining of ore deposits topographic mineralogy petrology of igneous, metamorphic and sedimentary rocks instrumental analytical methods at mineralogy and petrology mineralogy and petrology as tools for archeology and similar disciplines
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