Owen P. Missen, S. Mills, A. Kampf, M. Coolbaugh, J. Najorka, M. Rumsey, J. Marty, J. Spratt, M. Raudsepp, J. McCormack
{"title":"Wildcatite, CaFe3+Te6+O5(OH),第二种新的碲酸盐矿物,来自犹他州Juab县底特律地区","authors":"Owen P. Missen, S. Mills, A. Kampf, M. Coolbaugh, J. Najorka, M. Rumsey, J. Marty, J. Spratt, M. Raudsepp, J. McCormack","doi":"10.3749/canmin.2000092","DOIUrl":null,"url":null,"abstract":"\n Wildcatite (IMA2020–019) is a new calcium–iron(III) tellurate discovered at the Wildcat prospect in the Detroit district, Juab County, Utah. Wildcatite may take on a variety of appearances, ranging from transparent orange to brown coatings or masses to earthy, white polycrystalline coatings filling jasperoid fracture surfaces. Coatings of wildcatite are generally less than 0.1 mm thick and may cover up to 5 cm2, while nanoscale crystallites of wildcatite may form translucent red-brown “crystals” up to 0.1 mm. Wildcatite is found associated with gold, calcite, aragonite, native tellurium, manganese oxides, iron oxides, rare clinobisvanite, beyerite, coronadite, the Te oxides paratellurite and tellurite, and the Te oxysalts andymcdonaldite, burckhardtite, carlfriesite, eckhardite, frankhawthorneite, khinite, mcalpineite, tlapallite, and xocolatlite. The strongest powder diffraction lines are [dobsÅ(Iobs)(hkl)]: 3.33(100)(011), 2.60(55)(110), 2.30(59)(111), 2.05(33)(021), and 1.80(88)(112). The average size of wildcatite crystallites is 13 nm, thus the crystal structure of wildcatite was solved by Rietveld refinement, converging to a final RB value of 3.14%. The empirical formula of wildcatite, as determined by electron probe microanalysis and Rietveld refinement, is Ca0.98Bi3+0.02Pb0.01Fe3+0.73Mg0.05Mn2+0.02Zn0.01Cu0.00Te6+1.15Sb5+0.02Si0.01O5.44H0.56, simplified to the ideal formula of CaFe3+Te6+O5(OH). Wildcatite is trigonal, crystallizing in the space group P1m, with a = 5.2003(14) Å, c = 4.9669(14) Å, V = 116.3(1) Å3 and Z = 1. Wildcatite is structurally very similar to rosiaite (PbSb2O6), possessing a honeycomb-like two-dimensional framework of edge-sharing Fe3+O6 and Te6+O6 octahedra, sandwiching octahedrally coordinated Ca2+ cations. Minor OH substitution (∼10%) at the O sites is required for charge balance in wildcatite.","PeriodicalId":134244,"journal":{"name":"The Canadian Mineralogist","volume":"18 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2021-07-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":"{\"title\":\"Wildcatite, CaFe3+Te6+O5(OH), the second new tellurate mineral from the Detroit district, Juab County, Utah\",\"authors\":\"Owen P. Missen, S. Mills, A. Kampf, M. Coolbaugh, J. Najorka, M. Rumsey, J. Marty, J. Spratt, M. Raudsepp, J. McCormack\",\"doi\":\"10.3749/canmin.2000092\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"\\n Wildcatite (IMA2020–019) is a new calcium–iron(III) tellurate discovered at the Wildcat prospect in the Detroit district, Juab County, Utah. Wildcatite may take on a variety of appearances, ranging from transparent orange to brown coatings or masses to earthy, white polycrystalline coatings filling jasperoid fracture surfaces. Coatings of wildcatite are generally less than 0.1 mm thick and may cover up to 5 cm2, while nanoscale crystallites of wildcatite may form translucent red-brown “crystals” up to 0.1 mm. Wildcatite is found associated with gold, calcite, aragonite, native tellurium, manganese oxides, iron oxides, rare clinobisvanite, beyerite, coronadite, the Te oxides paratellurite and tellurite, and the Te oxysalts andymcdonaldite, burckhardtite, carlfriesite, eckhardite, frankhawthorneite, khinite, mcalpineite, tlapallite, and xocolatlite. The strongest powder diffraction lines are [dobsÅ(Iobs)(hkl)]: 3.33(100)(011), 2.60(55)(110), 2.30(59)(111), 2.05(33)(021), and 1.80(88)(112). The average size of wildcatite crystallites is 13 nm, thus the crystal structure of wildcatite was solved by Rietveld refinement, converging to a final RB value of 3.14%. The empirical formula of wildcatite, as determined by electron probe microanalysis and Rietveld refinement, is Ca0.98Bi3+0.02Pb0.01Fe3+0.73Mg0.05Mn2+0.02Zn0.01Cu0.00Te6+1.15Sb5+0.02Si0.01O5.44H0.56, simplified to the ideal formula of CaFe3+Te6+O5(OH). Wildcatite is trigonal, crystallizing in the space group P1m, with a = 5.2003(14) Å, c = 4.9669(14) Å, V = 116.3(1) Å3 and Z = 1. Wildcatite is structurally very similar to rosiaite (PbSb2O6), possessing a honeycomb-like two-dimensional framework of edge-sharing Fe3+O6 and Te6+O6 octahedra, sandwiching octahedrally coordinated Ca2+ cations. 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引用次数: 1
摘要
Wildcatite (IMA2020-019)是一种新的钙铁碲酸盐,发现于犹他州Juab县底特律地区的Wildcat勘探区。野生方解石可能呈现各种各样的外观,从透明的橙色到棕色涂层或块状,到充满茉莉状断裂表面的土质白色多晶涂层。wildatite的涂层厚度一般小于0.1 mm,覆盖面积可达5 cm2,而wildatite的纳米级晶体可形成透明的红棕色“晶体”,厚度可达0.1 mm。野方解石可与金、方解石、文石、天然碲、锰氧化物、氧化铁、稀有斜辉云母、钾辉云母、冕辉云母、氧化副辉云母和碲云母、氧化云母、钾辉云母、钾辉云母、钾辉云母、钾辉云母、钾辉云母、钾辉云母、钾辉云母、钾辉云母、钾辉云母、钾辉云母、钾辉云母和钙辉云母伴生。最强的粉末衍射线为[dobsÅ(Iobs)(hkl)]: 3.33(100)(011)、2.60(55)(110)、2.30(59)(111)、2.05(33)(021)和1.80(88)(112)。野方石晶体的平均尺寸为13 nm,因此采用Rietveld细化法对野方石的晶体结构进行了求解,最终RB值趋近于3.14%。通过电子探针微量分析和Rietveld细化,得到野方石的经验公式为Ca0.98Bi3+0.02Pb0.01Fe3+0.73Mg0.05Mn2+0.02Zn0.01Cu0.00Te6+1.15Sb5+0.02 si0.010 o5.44 h0.56,简化为CaFe3+Te6+O5(OH)的理想公式。野方石呈三角形,在P1m空间群中结晶,a = 5.2003(14) Å, c = 4.9669(14) Å, V = 116.3(1) Å3, Z = 1。Wildcatite在结构上与rosiite (PbSb2O6)非常相似,具有边缘共享的Fe3+O6和Te6+O6八面体的蜂窝状二维框架,夹在八面体配位的Ca2+阳离子之间。在野生石中,O位需要少量OH取代(~ 10%)来保持电荷平衡。
Wildcatite, CaFe3+Te6+O5(OH), the second new tellurate mineral from the Detroit district, Juab County, Utah
Wildcatite (IMA2020–019) is a new calcium–iron(III) tellurate discovered at the Wildcat prospect in the Detroit district, Juab County, Utah. Wildcatite may take on a variety of appearances, ranging from transparent orange to brown coatings or masses to earthy, white polycrystalline coatings filling jasperoid fracture surfaces. Coatings of wildcatite are generally less than 0.1 mm thick and may cover up to 5 cm2, while nanoscale crystallites of wildcatite may form translucent red-brown “crystals” up to 0.1 mm. Wildcatite is found associated with gold, calcite, aragonite, native tellurium, manganese oxides, iron oxides, rare clinobisvanite, beyerite, coronadite, the Te oxides paratellurite and tellurite, and the Te oxysalts andymcdonaldite, burckhardtite, carlfriesite, eckhardite, frankhawthorneite, khinite, mcalpineite, tlapallite, and xocolatlite. The strongest powder diffraction lines are [dobsÅ(Iobs)(hkl)]: 3.33(100)(011), 2.60(55)(110), 2.30(59)(111), 2.05(33)(021), and 1.80(88)(112). The average size of wildcatite crystallites is 13 nm, thus the crystal structure of wildcatite was solved by Rietveld refinement, converging to a final RB value of 3.14%. The empirical formula of wildcatite, as determined by electron probe microanalysis and Rietveld refinement, is Ca0.98Bi3+0.02Pb0.01Fe3+0.73Mg0.05Mn2+0.02Zn0.01Cu0.00Te6+1.15Sb5+0.02Si0.01O5.44H0.56, simplified to the ideal formula of CaFe3+Te6+O5(OH). Wildcatite is trigonal, crystallizing in the space group P1m, with a = 5.2003(14) Å, c = 4.9669(14) Å, V = 116.3(1) Å3 and Z = 1. Wildcatite is structurally very similar to rosiaite (PbSb2O6), possessing a honeycomb-like two-dimensional framework of edge-sharing Fe3+O6 and Te6+O6 octahedra, sandwiching octahedrally coordinated Ca2+ cations. Minor OH substitution (∼10%) at the O sites is required for charge balance in wildcatite.