Baileychlore (original) (raw)

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Formula:

(Zn,Fe2+,Al,Mg)6(Si,Al)4O10(OH)8

Zn is octahedrally coordinated.

Colour:

Green, yellow-green, light blue

Lustre:

Sub-Vitreous, Resinous, Waxy

Name:

Named in 1988 by Audrey C. Rule and Frank Radke in honor of Professor Sturges William "Bull" Bailey [February 11, 1919 Waupaca, Wisconsin, USA - November 30, 1994 Madison, Wisconsin, USA], specialist in phyllosilicates, Department of Geology and Geophysics, University of Wisconsin, Madison, Wisconsin, USA, and "chlore" in allusion to it being a member of the chlorite group.

This page provides mineralogical data about Baileychlore.

Sub-Vitreous, Resinous, Waxy

Colour:

Green, yellow-green, light blue

Cleavage:

Perfect
Basal {001}

Density:

3.182 g/cm3 (Measured) 3.195 g/cm3 (Calculated)

Class (H-M):

1 - Pinacoidal

Cell Parameters:

a = 5.346 Å, b = 9.257 Å, c = 14.401 Å
β = 97.12°

Ratio:

a:b:c = 0.578 : 1 : 1.556

Unit Cell V:

nan ų (Calculated from Unit Cell)

General Appearance of Type Material:

Dark green rims on colloform calcite veins. Fine-grained transverse fibers.

Place of Conservation of Type Material:

Geological Museum, University of Wisconsin, Madison, Wisconsin, 6000/1.
National Museum of Natural History, Washington, D.C., USA, 164430.
South Australian Museum, Adelaide, Australia, 13592.

Geological Setting of Type Material:

Strongly oxidized collapse karst-breccia containing altered andesite and garnet-vesuvianite skarn clasts.

Associated Minerals at Type Locality:

9.EC. Balestraite KLi2V5+Si4O12 Mon. 2 : _B_2
9.EC. Meifuite KFe6(Si7Al)O19(OH)4Cl2 Tric. 1 : _P_1
9.EC.05 Minnesotaite Fe2+3Si4O10(OH)2 Tric. 1 : _P_1
9.EC.05 Talc Mg3Si4O10(OH)2 Tric. 1 : _P_1
9.EC.05 Willemseite Ni3Si4O10(OH)2 Mon.
9.EC.9.EC. Voloshinite Rb(LiAl1.5◻0.5)(Al0.5Si3.5)O10F2 Mon. 2/m : _B_2/b
9.EC.10 Ferripyrophyllite Fe3+Si2O5(OH) Mon. 2/m
9.EC.10 Pyrophyllite Al2Si4O10(OH)2 Tric. 1
9.EC.10 Luanshiweiite KLiAl1.5(Si3.5Al0.5)O10(OH)2 Mon. 2/m : _B_2/b
9.EC.10 Fluorluanshiweiite KLiAl1.5(Si3.5Al0.5)O10F2 Mon. 2/m : _B_2/m
9.EC.10 Manganiceladonite K(MgMn3+◻)(Si4O10)(OH)2 Mon.
9.EC.10 Garmite CsLiMg2(Si4O10)F2 Mon.
9.EC.10 Gorbunovite CsLi2(Ti,Fe)Si4O10(F,OH,O)2 Mon.
9.EC.15 Boromuscovite KAl2(BSi3O10)(OH)2 Mon. 2/m
9.EC.15 Celadonite K(MgFe3+◻)(Si4O10)(OH)2 Mon. 2/m : _B_2/m
9.EC.15 Chernykhite (Ba,Na)(V3+,Al,Mg)2((Si,Al)4O10)(OH)2 Mon.
9.EC.15 Montdorite (K,Na)2(Fe2+,Mn2+,Mg)5(Si4O10)2(OH,F)4 Mon. 2/m : _B_2/m
9.EC.15 Muscovite KAl2(AlSi3O10)(OH)2 Mon. 2/m : _B_2/b
9.EC.15 Nanpingite CsAl2(AlSi3O10)(OH,F)2 Mon. 2/m : _B_2/b
9.EC.15 Paragonite NaAl2(AlSi3O10)(OH)2 Mon.
9.EC.15 Roscoelite K(V3+,Al)2(AlSi3O10)(OH)2 Mon. 2/m : _B_2/b
9.EC.15 Tobelite (NH4,K)Al2(AlSi3O10)(OH)2 Mon. 2/m : _B_2/m
9.EC.15 Aluminoceladonite K(MgAl◻)(Si4O10)(OH)2 Mon. 2/m : _B_2/m
9.EC.15 Chromphyllite K(Cr,Al)2(AlSi3O10)(OH,F)2 Mon. 2/m : _B_2/b
9.EC.15 Ferroaluminoceladonite K(Fe2+Al◻)(Si4O10)(OH)2 Mon. 2/m : _B_2/m
9.EC.15 Ferroceladonite K(Fe2+Fe3+◻)(Si4O10)(OH)2 Mon. 2/m : _B_2/m
9.EC.15 Chromceladonite K(MgCr◻)(Si4O10)(OH)2 Mon. 2 : _B_2
9.EC.15 Tainiolite KLiMg2(Si4O10)F2 Mon. 2/m : _B_2/m
9.EC.15 Ganterite (Ba,Na,K)(Al,Mg)2(AlSi3O10)(OH)2 Mon. 2/m : _B_2/b
9.EC.15 UM1988-22-SiO:AlCaFFeHKLiMg KLiMgAl2Si3O10F2 Mon.
9.EC.15 Kreiterite CsLi2Fe3+(Si4O10)F2 Mon.
9.EC.20 Annite KFe2+3(AlSi3O10)(OH)2 Mon. 2/m : _B_2/m
9.EC.20 Ephesite NaLiAl2(Al2Si2O10)(OH)2 Tric. 1 : _P_1
9.EC.20 Hendricksite KZn3(Si3Al)O10(OH)2 Mon. 2/m : _B_2/m
9.EC.20 Masutomilite (K,Rb)(Li,Mn3+,Al)3(AlSi3O10)(F,OH)2 Mon. 2 : _B_2
9.EC.20 Norrishite KLiMn3+2(Si4O10)O2 Mon. 2/m : _B_2/m
9.EC.20 Phlogopite KMg3(AlSi3O10)(OH)2 Mon. 2/m : _B_2/m
9.EC.20 Polylithionite KLi2Al(Si4O10)(F,OH)2 Mon. 2/m : _B_2/b
9.EC.20 Preiswerkite NaMg2Al(Al2Si2O10)(OH)2 Mon. 2/m : _B_2/b
9.EC.20 Siderophyllite KFe2+2Al(Al2Si2O10)(OH)2 Mon.
9.EC.20 Tetraferriphlogopite KMg3(Fe3+Si3O10)(OH,F)2 Mon. 2/m : _B_2/m
9.EC.20 Fluorotetraferriphlogopite KMg3(Fe3+Si3O10)F2 Mon. 2/m : _B_2/m
9.EC.20 Wonesite (Na,K)(Mg,Fe,Al)6((Al,Si)4O10)2(OH,F)4 Mon. 2/m : _B_2/m
9.EC.20 Eastonite KMg2Al(Al2Si2O10)(OH)2 Mon.
9.EC.20 Tetraferriannite KFe2+3(Si3Fe3+)O10(OH)2 Mon. 2/m : _B_2/m
9.EC.20 Trilithionite K(Li1.5Al1.5)(AlSi3O10)(F,OH)2 Mon. 2/m : _B_2/b
9.EC.20 Fluorannite KFe2+3(Si3Al)O10F2 Mon. 2/m : _B_2/m
9.EC.20 Shirokshinite K(NaMg2)(Si4O10)F2 Mon. 2/m : _B_2/m
9.EC.20 Shirozulite KMn2+3(Si3Al)O10(OH)2 Mon. 2/m : _B_2/m
9.EC.20 Sokolovaite CsLi2Al(Si4O10)F2 Mon.
9.EC.20 Aspidolite NaMg3(AlSi3O10)(OH)2 Mon. 2/m : _B_2/m
9.EC.20 Fluorophlogopite KMg3(Si3Al)O10F2 Mon. 2/m : _B_2/m
9.EC.20 UM2004-49-SiO:AlCsFHKLi (Cs,K)(Al,Li)2.6((Si,Al)4O10)(F,OH)2
9.EC.20 Suhailite (NH4)Fe2+3(AlSi3O10)(OH)2 Mon. 2/m : _B_2/m
9.EC.20 Yangzhumingite KMg2.5(Si4O10)F2 Mon. 2/m : _B_2/m
9.EC.20 Orlovite KLi2Ti(Si4O10)OF Mon. 2 : _B_2
9.EC.20 Oxyphlogopite K(Mg,Ti,Fe)3[(Si,Al)4O10](O,F)2 Mon. 2/m : _B_2/m
9.EC.20 Chloroferrokinoshitalite (Ba,K)(Fe2+,Mg)3(Al2Si2O10)(Cl,OH,F)2
9.EC.22 Pimelite Ni3Si4O10(OH)2 · 4H2O Hex.
9.EC.30 Chlorophaeite (Ca,Mg,Fe)2Fe2Si4O13 · 10H2O
9.EC.30 Margarite CaAl2(Al2Si2O10)(OH)2 Mon. 2/m : _B_2/b
9.EC.35 Anandite (Ba,K)(Fe2+,Mg)3((Si,Al,Fe)4O10)(S,OH)2 Mon. 2/m : _B_2/b
9.EC.35 Bityite CaLiAl2(AlBeSi2O10)(OH)2 Mon. 2/m : _B_2/b
9.EC.35 Clintonite CaAlMg2(SiAl3O10)(OH)2 Mon. 2/m : _B_2/m
9.EC.35 Kinoshitalite (Ba,K)(Mg,Mn2+,Al)3(Al2Si2O10)(OH)2 Mon. 2/m : _B_2/m
9.EC.35 Ferrokinoshitalite (Ba,K)(Fe2+,Mg)3(Al2Si2O10)(OH,F)2 Mon. 2/m : _B_2/m
9.EC.35 Oxykinoshitalite (Ba,K)(Mg,Ti,Fe3+,Fe2+)3((Si,Al)4O10)(O,OH,F)2 Mon. 2/m : _B_2/m
9.EC.35 Fluorokinoshitalite BaMg3(Al2Si2O10)F2 Mon. 2/m : _B_2/m
9.EC.40 Beidellite (Na,Ca0.5)0.3Al2((Si,Al)4O10)(OH)2 · nH2O Mon. 2/m : _B_2/m
9.EC.40 Kurumsakite (Zn,Ni,Cu)8Al8V5+2Si5O35 · 27H2O (?) Orth.
9.EC.40 Montmorillonite (Na,Ca)0.33(Al,Mg)2(Si4O10)(OH)2 · nH2O Mon. 2/m : _B_2/m
9.EC.40 Nontronite Na0.3Fe2((Si,Al)4O10)(OH)2 · nH2O Mon. 2/m : _B_2/m
9.EC.40 Volkonskoite Ca0.3(Cr,Mg,Fe)2((Si,Al)4O10)(OH)2 · 4H2O Mon.
9.EC.40 Yakhontovite (Ca,Na)0.5(Cu,Fe,Mg)2(Si4O10)(OH)2 · 3H2O Mon.
9.EC.45 Hectorite Na0.3(Mg,Li)3(Si4O10)(F,OH)2 Mon. 2/m : _B_2/m
9.EC.45 Saponite Ca0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O Mon.
9.EC.45 Sauconite Na0.3Zn3((Si,Al)4O10)(OH)2 · 4H2O Mon.
9.EC.45 Spadaite MgSiO2(OH)2 · H2O (?)
9.EC.45 Stevensite (Ca,Na)xMg3-x(Si4O10)(OH)2 Mon.
9.EC.45 Swinefordite Li(Al,Li,Mg)3((Si,Al)4O10)2(OH,F)4 · nH2O Mon. 2/m : _B_2/m
9.EC.45 Zincsilite Zn3Si4O10(OH)2 · 4H2O (?) Mon.
9.EC.45 Ferrosaponite Ca0.3(Fe2+,Mg,Fe3+)3((Si,Al)4O10)(OH)2 · 4H2O Mon.
9.EC.45 Hanjiangite Ba2CaV3+Al(H2AlSi3O12)(CO3)2F Mon. 2 : _B_2
9.EC.50 Vermiculite Mg0.7(Mg,Fe,Al)6(Si,Al)8O20(OH)4 · 8H2O Mon. 2/m
9.EC.52 Tarasovite near NaKAl11Si13O40(OH)9 · 3H2O
9.EC.55 Chamosite (Fe2+)5Al(Si,Al)4O10(OH,O)8 Mon. 2/m : _B_2/m
9.EC.55 Clinochlore Mg5Al(AlSi3O10)(OH)8 Mon. 2/m : _B_2/m
9.EC.55 Cookeite (LiAl4◻)[AlSi3O10](OH)8 Mon. 2/m
9.EC.55 Franklinfurnaceite Ca2Fe3+Mn2+3Mn3+(Zn2Si2O10)(OH)8 Mon. 2 : _B_2
9.EC.55 Gonyerite (Mn2+,Mg)5Fe3+(Fe3+Si3O10)(OH)8 Orth.
9.EC.55 Nimite (Ni,Mg,Al)6((Si,Al)4O10)(OH)8 Mon. 2/m : _B_2/m
9.EC.55 Orthochamosite (Fe2+,Mg,Fe3+)5Al(AlSi3O10)(OH,O)8
9.EC.55 Pennantite Mn2+5Al(AlSi3O10)(OH)8 Tric.
9.EC.55 Sudoite Mg2Al3(Si3Al)O10)(OH)8 Mon. 2/m : _B_2/m
9.EC.55 Donbassite Al4.33(Si3Al)O10(OH)8 Mon. 2 : _B_2
9.EC.55 Glagolevite Na(Mg,Al)6(AlSi3O10)(OH,O)8 Tric. 1 : _P_1
9.EC.55 Borocookeite (LiAl4◻)[BSi3O10](OH)8 Mon. m : B b
9.EC.60 Aliettite Ca0.2Mg6((Si,Al)8O20)(OH)4 · 4H2O Mon.
9.EC.60 Corrensite (Mg,Fe)9((Si,Al)8O20)(OH)10 · nH2O Orth.
9.EC.60 Dozyite Mg7Al2(Al2Si4O15)(OH)12 Mon.
9.EC.60 Hydrobiotite K(Mg,Fe2+)6((Si,Al)8O20)(OH)4 · nH2O Mon. 2/m : _B_2/m
9.EC.60 Karpinskite (Ni,Mg)2Si2O5(OH)2 (?) Mon.
9.EC.60 Kulkeite Mg8Al(AlSi7O20)(OH)10 Mon.
9.EC.60 Lunijianlaite Li0.7Al6.2(AlSi7O20)(OH,O)10 Mon.
9.EC.60 Rectorite (Na,Ca)Al4((Si,Al)8O20)(OH)4 · 2H2O Mon.
9.EC.60 Saliotite (Li,Na)Al3(AlSi3O10)(OH)5 Mon. 2/m : _B_2/m
9.EC.60 Tosudite Na0.5(Al,Mg)6((Si,Al)8O18)(OH)12 · 5H2O Mon. 2 : _B_2
9.EC.60 Brinrobertsite Na0.3Al4(Si4O10)2(OH)4 · 3.5 H2O Mon.
9.EC.65 Macaulayite (Fe,Al)24Si4O43(OH)2 Mon.
9.EC.70 Burckhardtite Pb2(Fe3+Te6+)[AlSi3O8]O6 Trig. 3_m_ _(_32/m ) : P_31_m
9.EC.75 Ferrisurite (Pb,Ca)2.4Fe3+2(Si4O10)(CO3)1.7(OH)3 · nH2O Mon.
9.EC.75 Surite (Pb,Ca)3(Al,Fe2+,Mg)2((Si,Al)4O10)(CO3)2(OH)2 Mon. 2 : _P_21
9.EC.75 Niksergievite (Ba,Ca)2Al3(AlSi3O10)(CO3)(OH)6 · nH2O Mon.
9.EC.80 Kegelite Pb8Al4(Si8O20)(SO4)2(CO3)4(OH)8 Mon.

- This locality has map coordinates listed. - This locality has estimated coordinates. ⓘ - Click for references and further information on this occurrence. ? - Indicates mineral may be doubtful at this locality. - Good crystals or important locality for species. - World class for species or very significant. (TL) - Type Locality for a valid mineral species. (FRL) - First Recorded Locality for everything else (eg varieties). Struck out - Mineral was erroneously reported from this locality. Faded * - Never found at this locality but inferred to have existed at some point in the past (e.g. from pseudomorphs).

All localities listed without proper references should be considered as questionable.

Argentina
Córdoba Province Sobremonte Department Aguada Del Monte District Rodeíto R. Lira (2005)
Australia (TL)
Queensland Mareeba Shire Mungana Red Dome Mine (TL) AM 73 (1988) +1 other reference
Tasmania Burnie City Hampshire mining district Kara Mines Kara No. 1 Pit Bottrill (2018)
West Coast municipality Zeehan mining district Zeehan mineral field Grieves Siding prospect Bottrill et al. (2008) +1 other reference
Western Australia Meekatharra Shire Prairie Downs station Prairie Downs deposit 1 White (2016)
Austria
Lower Austria Krems-Land District Lichtenau im Waldviertel Malaschofsky Quarry Brandstätter et al. (2005)
Botswana
North-West District Ngamiland West District Kihabe prospect Forrester +1 other reference
Canada
Québec Montérégie La Vallée-du-Richelieu RCM Mont Saint-Hilaire Poudrette quarry (De-Mix quarry; Demix quarry; Uni-Mix quarry; Carrière Mont Saint-Hilaire; MSH) Horváth et al. (2019)
Chile
Antofagasta Antofagasta Province Antofagasta Capricornio vein system Arfè et al. (2016)
Atacama Copiapó Province Tierra Amarilla Dos Adrianas Mine SEM-EDS and PXRD by Joy Desor and ...
Czech Republic
Central Bohemian Region Příbram District Háje Uranium Mine No. 9 (Shaft No. 9) SEJKORA et al. (2022)
Vrančice Pošepný vein outcrop C.Auer (2015)
France
Occitanie Tarn Castres Montredon-Labessonnié Peyrebrune La Caravantié quarry François GARRIC collection - EDX ...
Le Rivet Quarry Elise Chaigneau collection +1 other reference
Greece
Attica East Attica Lavreotiki Lavrion mining district Agios Konstantinos (Kamariza) Mercati mines Christiana Mine LAPIS 2010 7/8 (Kristalldruse ad) +2 other references
Italy
Sardinia South Sardinia Province Domusnovas Is Murvonis Mine EDX analysis by Italo Campostrini
Mexico
Chihuahua Aquiles Serdán Municipality Santa Eulalia Mining District Marcus Origileri
Namibia
Oshikoto Region Tsumeb Tsumeb Mine (Ongopolo Mine) Blaß et al. (2009)
Portugal
Bragança Mogadouro Former Pedro Alves Collection +2 other references
Spain
Catalonia Lleida Cerdanya Prullans Calvo et al. (Spain)
Switzerland
Valais Goms Binn Fäld Lengenbach Quarry EDX-analyzed specimen from Thomas Raber and XRD/EDX analyses by N. Meisser (Zn17.2 Mg2.3 Ca1 Fe0.5 Al23.6 Si55.2-O) +1 other reference
Mässerbach Kolitsch et al. (1996) +1 other reference