来自TřebíčinBoroviny和Řípov(捷克共和国摩拉维亚)的矿物冠岩群

Q3 Earth and Planetary Sciences
J. Jirásek, D. Matýsek, Aneta Minaříková
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Since the localities are inaccessible for a long time, we investigated 11 mineral samples of manganese oxidic minerals deposited in the museum collections (Museum Vysočina Třebíč, National Museum in Prague - Natural History Museum, Museum of the South-eastern Moravia in Zlín): 10 from Borovina and 1 from Řípov, labeled as pyrolusite, psilomelane, and wad. They usually form botryoidal black aggregates up to 20 cm in size. Powder X-ray diffraction proved the presence of the coronadite group minerals, accompanied by birnessite (one sample), kaolinite, quartz, gypsum, and minerals of the spinel and chlorite groups. Unit-cell parameters of the coronadite group minerals range as follows: a = 9.750 - 9.939 Å, b = 2.851 - 2.869 Å, c = 9.840 - 10.024 Å, and β = 88.66 - 90.77° (for the monoclinic space group 2/m). Scanning electron microscopy showed the botryoidal texture, where at least part of the zoning visible in back-scattered electrons is in fact the result of density of the mineral aggregate, alternating from massive to fibrous, sometimes with the atol microstructure. Empirical average mineral formulae, based on WDS analyses, are: hollandite from Borovina (Ba2+0.40 Ca2+0.16Mg2+0.13Cu2+0.03Zn2+0.02Pb2+0.01K+0.18Na+0.04)Σ0.98 [(Mn4+5.90Si4+0.06P5+0.04)Σ6.00 (Mn1.77Fe0.20Al0.11)3+Σ2.07] Σ8.07O16, cryptomelane from Borovina (K+0.51Na+0.04Ba2+0.20Ca2+0.09Zn2+0.05Cu2+0.03Mg2+0.02Pb2+0.02Co2+0.01)Σ0.97 [(Mn4+6.91 Si4+0.03P5+0.06)Σ7.00(Mn0.72Fe0.07Al0.06)3+Σ0.85]Σ7.85O16, and cryptomelane from Řípov (K+0.66Na+0.03Ba2+0.14Ca2+0.04 Zn2+0.03Cu2+0.01)Σ0.92[(Mn4+6.88Si4+0.03P5+0.09)Σ7.00 (Mn0.77Al0.11 Fe0.04)3+Σ0.93] Σ7.93O16. Most significant are substitutions Al3+ → Mn3+-1 and Fe3+ → Al3+-1 at the M3+ site, also Mg2+ → Ba2+-1 and Ca2+ → Ba2+-1 at the A2+ site in hollandite. 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引用次数: 0

摘要

位置Třebíč - Borovina (GPS N 49°12.400 ' E 015°51.280 ')和附近的Řípov (N 49°12.700 ' E 015°50.850 ')自19世纪以来就被发现。它们代表了第三纪?大理岩、白云岩大理岩、钙镁夕卡岩、石英岩和角闪岩的风化作用,与长石和花岗伟晶岩相交。这些靠近Třebíč岩体接触处被黑云母片麻岩和混辉岩包裹的岩石属于波西米亚地块的摩尔多瑙河带。过去曾在Třebíč - Borovina风化带短期生产铁矿石,并生产砖厂矿物原料。由于这些地方长期无法进入,我们调查了11种锰氧化矿物样品,这些矿物样品存放在博物馆收藏中(vyso ina博物馆Třebíč,布拉格国家博物馆-自然历史博物馆,东南摩拉维亚博物馆Zlín): 10种来自Borovina, 1种来自Řípov,标记为软锰矿,软锰矿和软锰矿。它们通常形成20厘米大小的boteroid黑色聚集体。粉末x射线衍射证实了冕状石组矿物的存在,并伴有birnite(一个样品),高岭石,石英,石膏以及尖晶石和绿泥石组矿物。冠状岩组矿物的单位胞参数为:a = 9.750 ~ 9.939 Å, b = 2.851 ~ 2.869 Å, c = 9.840 ~ 10.024 Å, β = 88.66 ~ 90.77°(单斜空间组2/m)。扫描电子显微镜显示了botroidal纹理,其中至少部分在反向散射电子中可见的分区实际上是矿物集合体密度的结果,从块状到纤维状交替,有时具有环状结构。基于WDS分析的经验平均矿物公式为:从Borovina锰钡矿(Ba2 Ca2 + 0.40 + 0.16 mg2 + 0.13 cu2 + 0.03 Zn2 + 0.02 pb2 + 0.01 K + 0.18 na + 0.04)Σ0.98 [(Mn4 + 5.90 Si4 + 0.06 p5 + 0.04)Σ6.00 (Mn1.77Fe0.20Al0.11) 3 +Σ2.07]Σ8.07 o16,锰钾矿从Borovina (K + 0.51 na + 0.04 Ba2 Ca2 + 0.20 + 0.09 Zn2 + 0.05 cu2 + 0.03 mg2 + 0.02二氧化碳pb2 + 0.02 + 0.01)Σ0.97 [(Mn4 + 6.91 Si4 + 0.03 p5 + 0.06)Σ7.00 (Mn0.72Fe0.07Al0.06) 3 +Σ0.85]Σ7.85 o16和锰钾矿Řipov (K + 0.66 na + 0.03 Ba2 + 0.14 Ca2 + 0.04 Zn2 + 0.03 cu2 + 0.01)Σ0.92 [(Mn4 + 6.88 Si4 + 0.03 p5 + 0.09)Σ7.00 (Mn0.77Al0.11 Fe0.04) 3 +Σ0.93]o16Σ7.93。最重要的是在M3+位点上的Al3+→Mn3+-1和Fe3+→Al3+-1的取代,以及在A2+位点上的Mg2+→Ba2+-1和Ca2+→Ba2+-1的取代。辅助矿物-坏辉石和可能的xenotime-(Y),存在于荷兰石和隐黑石聚集体中,仅通过EDS分析确定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Minerály coronaditové skupiny z Třebíče - Boroviny a Řípova (Morava, Česká republika)
Localities Třebíč - Borovina (GPS N 49° 12.400‘ E 015° 51.280‘) and nearby Řípov (N 49° 12.700‘ E 015° 50.850‘) are known since 19th century. They represent variegated residual rocks originated during Tertiary? weathering of marbles, dolomite marbles, calcic and magnesian skarns, quartzites and hornblendites intersected by aplites and granitic pegmatites. These rocks enveloped by the biotite gneisses and migmatites close to the contact with the Třebíč Pluton belong to the Moldanubian Zone of the Bohemian Massif. In the past, there was a short-time production of Fe-ore from the weathering zone at Třebíč - Borovina, as well as production of mineral raw-material for brickworks. Since the localities are inaccessible for a long time, we investigated 11 mineral samples of manganese oxidic minerals deposited in the museum collections (Museum Vysočina Třebíč, National Museum in Prague - Natural History Museum, Museum of the South-eastern Moravia in Zlín): 10 from Borovina and 1 from Řípov, labeled as pyrolusite, psilomelane, and wad. They usually form botryoidal black aggregates up to 20 cm in size. Powder X-ray diffraction proved the presence of the coronadite group minerals, accompanied by birnessite (one sample), kaolinite, quartz, gypsum, and minerals of the spinel and chlorite groups. Unit-cell parameters of the coronadite group minerals range as follows: a = 9.750 - 9.939 Å, b = 2.851 - 2.869 Å, c = 9.840 - 10.024 Å, and β = 88.66 - 90.77° (for the monoclinic space group 2/m). Scanning electron microscopy showed the botryoidal texture, where at least part of the zoning visible in back-scattered electrons is in fact the result of density of the mineral aggregate, alternating from massive to fibrous, sometimes with the atol microstructure. Empirical average mineral formulae, based on WDS analyses, are: hollandite from Borovina (Ba2+0.40 Ca2+0.16Mg2+0.13Cu2+0.03Zn2+0.02Pb2+0.01K+0.18Na+0.04)Σ0.98 [(Mn4+5.90Si4+0.06P5+0.04)Σ6.00 (Mn1.77Fe0.20Al0.11)3+Σ2.07] Σ8.07O16, cryptomelane from Borovina (K+0.51Na+0.04Ba2+0.20Ca2+0.09Zn2+0.05Cu2+0.03Mg2+0.02Pb2+0.02Co2+0.01)Σ0.97 [(Mn4+6.91 Si4+0.03P5+0.06)Σ7.00(Mn0.72Fe0.07Al0.06)3+Σ0.85]Σ7.85O16, and cryptomelane from Řípov (K+0.66Na+0.03Ba2+0.14Ca2+0.04 Zn2+0.03Cu2+0.01)Σ0.92[(Mn4+6.88Si4+0.03P5+0.09)Σ7.00 (Mn0.77Al0.11 Fe0.04)3+Σ0.93] Σ7.93O16. Most significant are substitutions Al3+ → Mn3+-1 and Fe3+ → Al3+-1 at the M3+ site, also Mg2+ → Ba2+-1 and Ca2+ → Ba2+-1 at the A2+ site in hollandite. Accessory minerals - baddeleyite and probable xenotime-(Y), present in the hollandite and cryptomelane aggregates, were identified only by EDS analyses.
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来源期刊
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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