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Sodic amphibole

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About Sodic amphiboleHide

Unique IdentifiersHide

Mindat ID:
47874
Long-form identifier:
mindat:1:1:47874:8

Age distributionHide

Recorded ages:
Neoarchean to Neogene : 2530 ± 45 Ma to 7.6 ± 0.2 Ma - based on 201 recorded ages.
Sample ages:
Sample IDRecorded ageGeologic TimeDating method
17.6 ± 0.2 MaMioceneK-Ar
225.2 to 13.0 MaCenozoicRb-Sr whole rock
331.7 ± 0.7 MaOligoceneK-Ar
441 MaEoceneK-Ar
560.5 ± 20.2 MaPaleoceneAr-Ar
6129 ± 0.5 MaEarly/Lower CretaceousAr-Ar
7129.8 ± 2.2 MaEarly/Lower CretaceousAr-Ar
8131.6 ± 0.4 MaEarly/Lower CretaceousAr-Ar
9132.2 ± 0.3 MaEarly/Lower CretaceousAr-Ar
10133.2 ± 2.3 MaEarly/Lower CretaceousAr-Ar
11136.4 ± 3.9 MaEarly/Lower CretaceousAr-Ar
12212 MaLate/Upper TriassicK-Ar
13226 ± 1.1 MaLate/Upper TriassicK-Ar
14319 ± 8 MaPennsylvanianAr-Ar
15336 ± 28 MaMississippianRb-Sr
16394 ± 15 MaEarly/Lower DevonianK-Ar
17430 ± 12 MaWenlockK-Ar
18959 ± 24 MaTonianK-Ar
191456 to 1359 MaMesoproterozoicK-Ar
202530 ± 45 MaNeoarcheanK-Ar
Sample references:
IDTypeLocalityReferenceNotes
1La Celia lamproite outcrops, Jumilla, Murcia, Spain
2Derby-West Kimberley Shire, Western Australia, Australia
3Maoniuping carbonatite complex, Liangshan Yi, Sichuan, China
4Warsak Intrusions, Mohmand District, Khyber Pakhtunkhwa Province, PakistanRiebeckite from granite
5Erongo Mountains, Erongo Region, Namibia
6  "  "
7  "  "
8  "  "
9  "  "
10  "  "
11  "  "
12Longwangzhuang pluton, Luanchuan County, Luoyang, Henan, China
13Sams Creek, Cobb Valley, Tasman Region, New Zealand
14  "  "mixture of arfvedsonite-riebeckite
15Black Ball Head Pipe, West Cork, Cork County, Munster, Ireland
16Learnie Quarry, Black Isle, Highland, Scotland, UKUndue reliance should not be placed on this because it derives from a single specimen, the. amphibole of which contained only 0.081% K.
17Mount Bayliss, Prince Charles Mountains, Mac Robertson Land, East Antarctica, Antarctica
18Newania carbonatite-fenite complex, Udaipur District, Udaipur Division, Rajasthan, IndiaDating of sodic amphibole from carbonatite. This is now deemed to represent a metamorphic event.
19Norra Kärr, Gränna, Jönköping, Jönköping County, Sweden
20Siilinjärvi Carbonatite Intrusion, Siilinjärvi, North Savo, Finland

Chemical AnalysisHide

Oxide wt%:
Showing 12 of 163 analyses on this page.
 123456789101112
SiO239.15 %45.72 %59.24 %41.31 %55.29 %44.66 %54.17 %41.63 %48.2 %52.82 %38.59 %55.88 %
TiO20.3 %1.69 %0.03 %0.49 %1.86 %.37 %0.21 %1.60 %0.35 %0.77 %4.75 %0.11 %
Al2O317.08 %2.79 %11.61 %11.51 %0.21 %11.68 %9.75 %18.31 %10.25 %0.51 %13.39 %0.53 %
Cr2O30.06 %0.01 %0.02 %
MnO0.19 %0.08 %0.49 %0.25 %.04 %0.03 %8.92 %0.05 %3.26 %0.41 %0.44 %
FeO16.35 %3.68 %21.81 %10.52 %9.75 %5.65 %12.98 %13.10 %13.82 %14.88 %8.99 %
Fe2O34.12 %1.2 %3.77 %4.12 %8.50 %
MgO 5.61 %1.91 %13.01 %8.25 %14.02 %13.01 %16.32 %0.07 %12.45 %4.8 %10.54 %12.77 %
CaO8.14 %5.67 %0.3 %10.92 %2.56 %11.51 %5.11 %8.04 %7.66 %0.09 %10.68 %5.71 %
Na2O5.52 %5.15 %7.47 %1.93 %7.74 %2.83 %5.76 %4.86 %4.42 %7.65 %2.4 %4.12 %
K2O0.28 %1.18 %0.05 %1.59 %2 %.49 %0.26 %0.41 %0.7 %3.76 %1.26 %0.17 %
ZnO0.14 %0.11 %
F1.37 %1.43 %0.01 %1.21 %
Cl0.06 %0.01 %
H2O2.22 %1.21 %2.06 %1.38 %
NiO0.11 %
ZrO20.03 %
FeOt
Ga2O30.01 %
V2O30.01 %
Fe2O3*4.15 %
FeO*27.17 %
MnO*2.39 %
SrO0.02 %
BaO0.02 %
H2O (by stoichiometry)0.80 %
-O=F+Cl-0.59 %
H2O+2.09 %
H2O-
FeO2
O=F-0.6 %-0.51 %
Li2O0.05 %0.73 %
?O=F
Nb2O5
SnO2
PbO
Li2O (by stoichiometry)
-O=F
Äl2O3
O
A12O3
Sc2O39.22 %
Total:96.8 %99.7 %98.89 %98.3 %100.31 %100.52 %97.41 %96.82 %97.18 %98.9 %96.9 %100.03 %
Empirical formulas:
Sample IDEmpirical Formula
13(Na0.62K0.47) 1.09 (Na1.93Ca0.07) 2.00 (Fe2+3.43Mg0.04Fe3+0.97Mn0.12Ti0.06Al0.15Zr0.01) 4.78(Si7.92 Al0.08) 8.00 O22[ (OH) 1.97 F0.03] 2.00
14(Na0,71K0,301) 1,011 (Na1,618Ca0,382) 2 (Fe2+3,869Fe3+0,664Ti0,27Mn0,115Al0,072) 4,99 (Si7,891Al0,109) 8O22 ((OH) 1,458O0,542) 2
15Na0.39 (Na0.65Ca1.35)Σ2.00 ( Mg1.65Fe2+1.59Fe3+0.61Al1.15)Σ5.00(Al1.51Si6.49)Σ8.00O22OH2
2(Na0.75K0.24)(Ca0.98Na0.87Mn2+0.15)(Fe2+3.68Mg0.46Fe3+0.45Ti0.21Mn2+0.18Zn0.02)[Si7.41Al0.53Fe3+0.06O22]([OH]0.87F0.70O0.41Cl0.02)
16(Na0.77 K0.07 )Σ0.84 (Na0.32Ca1.68)Σ2.00 ( Mg1.48 Mn0.04Fe2+2.28Al1.37)Σ5.17(Al2.25Si5.75)Σ8.00O22OH2
17(Na0.75 K0.01 )Σ0.76 (Na0.56Ca1.44)Σ2.00 ( Mg1.10 Mn0.02Fe2+3.09 Cr0.01Ti0.05Al1.13)Σ5.40(Al1.78Si6.22)Σ8.00O22OH2
18Na0.01 (Na1.80Ca0.20)Σ2.00 ( Mg2.24Fe2+0.92Fe3+0.33Al1.52)Σ5.01(Al0.06Si7.94)Σ8.00O22OH2
19(K0.63 Na0.37) 1.00 (Na0.36Ca1.64) 2.00 (Fe2+3.58Mg0.29Fe3+1.00Mn0.05Al0.08) 5.00(Si6.29 Al1.71) 8.00 O22[ (OH) 1.98 Cl0.02] 2.00
20(Na0.593K0.034)Σ0.627(Ca1.203Na0.613Fe0.162Mn0.023)Σ2.001(Fe2+1.938Mg1.901Al0.773Fe3+0.322Ti0.056Ni0.011)Σ5.001(Si6.892Al1.108)Σ8O22((OH)1.888O0.112)Σ2
21(Na0,798K0,07)?0,868 (Na1,489Ca0,466Fe0,045)?2 (Feii2,02Mg1,652Al1,205FeIII0,08Ti0,044)?5,001 (Si7,25Al0,75)?8 O22 ((OH)1,999O0,001)?2
22A(Na0.79K0.16Pb0.01)BΣ0.96(Ca1.26Na0.72Mn2+0.02)cΣ2Mg2.66Mn2+Fe2+0.16Zn0.02Fe3+1.26Al0.26Ti0.06)TΣ=5.00(Al1.86Si6.14)Σ=8O22W(OH)2
23A(Na0.22K0.0,05)0.27 B( (Na1.90Ca0.10) 2.00 C( (Mg3.16Fe2+0.05Mn2+0.12Fe3+1.06Al0.61) 5.00 T( (Si7.96Al0.04) 8.00O22 W( (OH) 1.83 F0.17) 2.00
5(Na0.569K0.369)0.938 (Na1.603Ca0.397)2(Mg3.025Feii1.273FeIII0.411Ti0.202Al0.036Mnii0.031Li0.029)5.007Si8.002O22 ((OH)1,168F0,655O0.168)2
24(Na0.72K0.02)(Na1.67Ca0.33)(Mg1.82Fe2+0.18)(Mg0.32Fe3+0.24Ti0.02Al1.43)(Mg0.8Fe2+0.2) (Si7.24Al0.76)022(OH)2
25(Na0,619K0,325)?0,943 (Na1,175Ca0,825)?2 (Mg3,339Feii1,509Ti0,195Mnii0,035Al0.007)?5.085 (Si7,762Al0,239)?8,001 O22 ((OH)1,169F0,736O0,095)?2,001
26(Na0.1420.858)(Na1.061Ca0.588Fe2+0.304Mn2+0.047)(Mg2.526Fe2+1.458Al0.584Fe3+0.428Ti0.004)(Si7.915Al0.085)O22((OH)1.983O0.017)
27(Na0.428K0.053)Σ0.481(Ca1.31Na0.587Fe0.085Mn0.018)Σ2(Mg2.53Fe2+1.161Al1.104Fe3+0.182Ti0.018Cr0.005)Σ5(Si6.815Al1.185)Σ8O22((OH)1.963O0.037)Σ2
28Na0.02(Na0.50Ca1.50)Σ2.00( Mg3.89Fe2+0.41Fe3+0.16Al0.54)Σ5.00(Al0.20Si7.80)Σ8.00O22OH2
29Na0.05(Na1.09Ca0.91)Σ2.00 ( Mg3.30Fe2+0.56Fe3+0.17Al0.97)Σ5.00(Al0.28Si7.72)Σ8.00O22OH2
30Na0.28 (Na0.62Ca1.38)Σ2.00 ( Mg2.17Fe2+1.74Fe3+0.04Al1.05)Σ5.00(Al0.75Si7.25)Σ8.00O22OH2
31(Na0.17 K0.03 )Σ0.20 (Na0.66Ca1.34)Σ2.00 ( Mg3.71 Mn0.01Fe0.66Cr0.01Ti0.01Al0.72)Σ5.12(Al0.57Si7.43)Σ8.00O22OH2
32(Na0.39 K0.04 )Σ0.44 (Na0.76Ca1.24)Σ2.00 ( Mg2.47 Mn0.01Fe1.66Cr0.02Ti0.01Al0.98)Σ5.12(Al1.07Si6.93)Σ8.00O22OH2
33(Na0.03 K0.06 )Σ0.20 (Na0.58Ca1.42)Σ2.00 ( Mg3.86Mn0.07Fe0.60Cr0.01Ti0.01Al0.64)Σ5.19(Al0.37Si7.63)Σ8.00O22OH2
34Na0.59(Na0.51Ca1.49)Σ2.00 ( Mg1.83Fe2+1.28Fe3+0.32Al1.58)Σ5.01(Al1.98Si6.02)Σ8.00O22OH2
35(Na0.66K0.27)?0.93(Na1.83Ca0.17)?2.00(Mg0.06Fe2+3.15Mn0.31Zn0.01Fe3+1.38Ti0.06Al0.03)?5.00(Si7.35Al0.65)?8.00O22(OH1.58F0.42)?2.00
36(Na0.52K0.48)(Na1.90Li0.07Ca0.02)[(Fe2+0.63Mn2+0.56Mg0.47Zn0.23Ti0.12)(Fe3+1.93Al0.06)Li1.00][Si7.98Al0.02O22]([OH]0.90F0.87O0.23)
37(Na0,575K0,337)?0,912 (Na1,095Ca0,905)?2 (Li0.011Mg4,266Feii0,589Ti0,117FeIII0Al0,002Mnii0,0,14)?5 (Si7,954Al0,046)?8 O22 (F1,260(OH)0,744O)?2
38(Na0.51K0.037)Σ0.547 (Ca1.265Na0.598Fe0.131Mn0.005)Σ1.999 (Mg2.571Fe2+1.552Al0.614Fe3+0.238Ti0.019Cr0.005Ni0.001)Σ5 (Si7.195Al0.805)Σ8 O22 ((OH)1.962O0.038)Σ2
39(Na0.49 K0.08 )Σ0.57 (Na0.58Ca1.42)Σ2.00 ( Mg2.56Fe1.28Ti0.06Al1.19)Σ5.09(Al1.19Si6.48)Σ8.00O22OH2
40(Na0.47 K0.05 )Σ0.53 (Na0.52Ca1.48)Σ2.00 ( Mg2.94Fe1.29Ti0.06Al0.90)Σ5.19(Al1.38Si6.62)Σ8.00O22OH2
41(K0.61Na0.30Pb0.02)Σ0.93(Na1.14Ca0.79Mn0.07)Σ2(Mg4.31Mn0.47Fe3+0.20)Σ5(Si7.95Al0.04Fe3+0.01)Σ8O22(OH1.82F0.18)Σ2
42(Na0.83K0.17)(Ca1.25Na0.67Mn2+0.08)(Fe2+2.31Mg1.69Fe3+0.59Ti0.22Mn2+0.14Al0.04Zn0.01)[Si7.03Al0.97O22](F0.96[OH]0.58O0.45Cl0.02)
43(Na0.74K0.25)(Ca1.23Na0.67Mn2+0.11)(Fe2+3.33Mg1.02Fe3+0.25Ti0.19Mn2+0.18Zn0.01)[Si7.40Al0.56Fe3+0.03O22](F0.94[OH]0.67O0.38Cl0.01)
44A(Na 0.70K 0.03) B(Li 1.34Na0.58Ca 0.08) (Mg1.75 Fe3+1.65Li 0.88Fe2+0.32Al0.21Ti0.11Mn2+0.07Zn0.01)Si 8.00O22(OH1.35F0.65) ·
45(Na0.62K0.38)(Na1.89Ca0.11)[(Mn2+0.60Mg0.50Zn0.34Fe2+0.32Ti0.19Na0.05)(Fe3+1.96Al0.04)Li1.00][Si7.92Al0.08O22](F0.84[OH]0.77O0.39)
46A(Na0.45K0.0,3)B0.48( (Na1.34Ca0.20Mn0.46) C2.00( (Mg3.64Fe2+0.37Mn2+0.09Fe3+0.79Ti0.00Al0.11) 5.00 T( (Si7.95Al0.05) 8.00OW22( (OH) 2.00)
47A(Na0.18K0.0,05)0.23 B( (Na0.99Ca0.10Mn0.91) 2.00 C( (Mg3.70Mn2+0.47Fe3+0.77Al0.07) 5.00 T( (Si7.95Al0.05) 8.00O22 W( (OH) 1.87F0.13) 2.00
10(K0.73Na0.27) 1.00 (Na2.00Ca0.01) 2.01 (Fe2+ 1.77 Mg1.10Fe3+ 0.98Li0.45Mn0.42Ti0.09Zn0.01 Al0.09) 4.91Si8.09O22[(OH) 1.41F0.59] 2.00
48(K0.67Na0.33) 1.00 (Na1.74Ca0.27) 2.01 (Fe2+ 2.26 Mg1.79Fe3+ 0.55Mn0.25Ti0.09Zn0.01 Al0.05) 5.00(Si7.94 Al0.06) 8.00O22[(OH) 1.23F0.77] 2.00
49(K0.63 Na0.15) 0.78 (Na1.62Ca0.36Mn0.02) 2.00 (Mg3.72 Fe2+ 0.31 Fe3+ 0.95Mn0.00Ti0.02Al0.00) 5.00(Si7.85Al0.03 Fe3+ 0.11Cr0.01) 8.00O22[F1.06(OH) 0.94]2.00
50(K0.67Na0.22) 0.89(Na1.95Ca0.05) 2.00 (Fe2+ 3.29Fe3+ 1.26Li0.29Mn0.19Ti0.05Zn0.02Mg0.01) 5.11(Si7.76Fe3+ 0.13Al0.11) 8.00 O22[(OH) 1.81F0.18] 1.99
51K0.98 (Na1.81Ca0.18) 1.99 (Mg3.07 Fe2+ 0.83 Fe3+ 0.90Mn0.04Ti0.12Zn0.01 Al0.01) 4.98Si8.00)O22[F1.03(OH) 0.73O 0.24] 2.00
52(K0.663Na0.353)1.016 (Na1.408Ca0.592)2 (Mg2.433FeII1.963FeIII0.253Ti0.289MnII0.055Li0.036)5.043 (Si7.846Al0.154)8 O22 ((OH)1.182F0.508O0.310)2
53A(Na0.437K0.154)B0.591( (Na0.879Ca1.049Mn0.072) C2.00( (Mg2.938Li0.065Fe2+0.796Mn2+0.405Fe3+0.752Ti0.045) 5.000 T( (Si7.657Al0.323) 7.980OW22( (F1.352(OH) 0.648) 2.00-d-d-
54A(Na0.749K0.175)0.924 B( (Na1.175Ca0.757Mn0.068) 2.00 C(Mg2.551Li0.054Fe2+1.071Mn2+0.474Zn0.041Fe3+0.760Ti0.045) 5.001 T( (Si7.628Al0.344) 7.972O22 W( (F1.360(OH) 0.640 2.00-d-d-
55(Na0.56K0.44)(Na1.90Li0.06Ca0.04)[(Mg0.78Mn2+0.45Fe2+0.40Zn0.26Ti0.14)(Fe3+1.90Al0.07)Li1.00][Si7.98Al0.02O22](F1.05[OH]0.66O0.29)
56A(Na0.68K0.32)S=1.00 BNa2.00 C(Mg1.69Mn2+ 0.25Fe2+ 0.24Zn0.29Al0.23Fe3+ 1.50Ti0.02Li0.78)S=5.00 TSi8O22 W(F1.59(OH)0.41)S=2.00
57Na0.55 (Na0.22Ca1.78)Σ2.00 ( Mg1.42Fe2+1.90Fe3+0.26Al1.42)Σ5.00(Al2.02Si5.98)Σ8.00O22OH2
58(K0.64 Na0.45) 1.09 (Na0.64Ca1.36) 2.00 (Fe2+3.18Mg0.14Fe3+1.35Mn0.08Ti0.02Al0.12Zr0.01) 4.90(Si6.17 Al1.83) 8.00 O22[ (OH) 1.99 Cl0.01] 2.00
59(K0.32Na0.68)Na2(Li0.48Fe2.83Mn0.1Zn0.06Fe1.46Ti0.07)(Si7.88Al0.12)O22(F1.15OH0.85)
60(K0.25Na0.75)Na2(Li0.48Fe2.84Mn0.11Zn0.05Fe1.45Ti0.07)(Si7.89Al0.11)O22(F1.35OH0.65)
61A(Na0.526K0.207)B0.733( (Na1.514Ca0.485Mn0.072) C2.00( (Mg2.057Li0.160Fe2+0.631Mn2+0.544Zn0.015Fe3+1.552Ti0.042) 5.001 T( (Si7.652Al0.261) 7.913OW22( (F1.143(OH) 0.857) 2.00
62A(Na0.767K0.261)B1.028( (Na1.990Ca0.010)C2.00( (Mg0.144Li0.383Fe2+1.818Mn2+0.734Fe3+1.733Ti0.087) 5.004 T( (Si7.780Al0.163) 7.943OW22( (F1.448(OH) 0.552) 2.00
63A(Na0.76K0.220.98B(Na1.61Ca0.35Mn2+0.042.00C(Mg3.58Mn2+0.11Fe3+0.62Ti4+0.66Cr3+0.01Zn0.01Ni0.015.00T(Si7.82Ti4+0.12Al0.068.00O22W[O1.26F0.55(OH)0.192.00
64(Na0.57K0.19Sr0.020.23)(Na1.32Mn2+0.47Ca0.20)(Mg2.96Mn2+0.78Fe2+0.65Fe3+0.49Ti0.06Al0.04Ni0.02)[Si8.00O22]([OH]1.74F0.15O0.11)
65A(Na0.84K0.16)1 B(Na1.01Mn0.55Ca0.43Sr0.01)2 C(Mg3.83Mn1.16Al0.01)5 T(Si7.99Al0.01)8O22 W(OH1.92F0.08)2
12A(◻0.97K0.03Na0.003)BΣ1(Na1.13Ca0.87)CΣ2(Mg2.70Fe2+1.06Mn0.05Sc1.14Al0.02Ti0.01)TΣ4.99(Si7.94Al0.07)Σ8.00O22(OH)2
66A(Na0.74K0.240.02)BΣ1.00(Na1.52Ca0.24Mn2+0.24)CΣ2.00(Mg2.54Mn2+1.45Mn3+0.71Fe3+0.26Ti0.04)Σ5.00T(Si7.97Al0.03)Σ8.00OW22[(OH)1.52O0.48]Σ2.00
Sample references:
IDTypeLocalityReferenceNotes
1Escambray Mountain, Villa Clara Province, Cuba Na2O, 5.52 K2O, 0.28
2pt. 91Água de Pau Volcano, São Miguel, Azores, PortugalSlightly brighter BSE-Z outermost rim of weakly zoned amphibole. The main portion of the crystals grade to ferro-ferri-fluoro-katophorite (compare with pts. 76 and 90). EPMA data normalized to ∑cations = 16. *valences of Fe and Mn calculated by normalization-imposed charge balance. X-site oxygen calculated from 2*Ti, with OH calculated from stoichiometry.
3Sierra de las Minas, Motagua Valley, GuatemalaSample from jadeitite
4177 IIIBRoadcut Rv 5, Kvineset, Førde, Sunnfjord, Vestland, NorwayAnalysis of a matrix amphibole from an amphibolite facies retrograded eclogite. EPMA analysis
5760Coyote Peak, Humboldt County, California, USAAnalyzed by single crystal X-ray and electron- and ion-microprobe techniques. The sample is also analyzed for Li and H.
6VAN 98-2- 43Kesandere valley eclogites, Bitlis Province, TurkeyEMPA analysis of amphibole from retrograded eclogite
7C1Nybø eclogite pod, Sørpollen, Vågsøy, Kinn, Vestland, NorwayMatrix amphibole in eclogite. The sample is analysed using the average of multi-point EDS and WDS and single crystal X-ray. The results herein is the average of 5 WDS results.
8Tjeliken eclogite, Strömsund, Jämtland County, SwedenSample from an inclusion in garnet in an eclogite
9196 IIB-CRoadcut Rv 5, Kvineset, Førde, Sunnfjord, Vestland, NorwayAnalysis of core of matrix amphibole formed under eclogite facies conditions. EPMA analysis
10Palitra pegmatite, Karnasurt mine, Karnasurt Mountain, Lovozersky District, Murmansk Oblast, RussiaThe chemical composition of potassicarfvedsonite was obtained (fluorine and cations except Li) by a Camebax SX50 electron microprobe. Li was determined by atom emission using a Carl Zeiss AAS30 spectrophotometer. The water content calculated The Fe2+/ Fe3+ ratio was calculated.
11Red Hill, Moultonborough, Carroll County, New Hampshire, USASample from a lamprophyric dike
12holotype crystal, by EPMA-WDS; empirical formula basis: 22 oxide anions and and 2 OH anions
13ILM42Ilímaussaq complex, Kujalleq, GreenlandThe sample was collected from ilvaite bearing endoskarns formed by late-magmatic to hydrothermal veins on the south coast of the Tunulliarfik fjord. Mineral compositions were analyzed using a JEOL 8900 electron microprobe
14Mount Rittmann, Victoria Land, East Antarctica, AntarcticaRepresentative sample of amphibole from the groundmass of hyperalkaline volcanic rocks. The analysis was performed with an EDAX system mmounted on a Electronic Micropscope Phillips SEM-500. Analysis is normalized using Locock (2014)
1527/kelKovalo eclogites, Kechros, Arriana, Rhodope, Eastern Macedonia and Thrace, GreeceEMPA analysis of an amphibole grain from an eclogite.
16mat>gaEissee eclogite, Timmelbach valley, Prägraten am Großvenediger, Lienz District, Tyrol, AustriaEMPA analysis of an amphibole in contact with a garnet in a kyanite-eclogite. Hoscek (200) normalized the formula setting all Fe as Fe2+. This gives a slightly high content in the C position ( see empirical formula). The composition normalizes better by assuming some of the Fe to be Fe3+, giving a composition approaching the definition of ferro-sadanagaite.
17icl ga  "  "EMPA analysis of amphibole inclusion in garnet. Hoscek (2004) normalized the formula setting all Fe as Fe2+. This gives a slightly high content in the C position ( see empirical formula). The composition normalizes better by assuming some of the Fe to be Fe3+, giving a composition approaching the definition of ferro-sadanagaite.
1852iKovalo eclogites, Kechros, Arriana, Rhodope, Eastern Macedonia and Thrace, GreeceEMPA analysis of an amphibole inclusion in garnet from an eclogite
19GM1671Ilímaussaq complex, Kujalleq, GreenlandThe sample was collected from ilvaite bearing endoskarns formed by late-magmatic to hydrothermal veins on the south coast of the Tunulliarfik fjord. Mineral compositions were analyzed using a JEOL 8900 electron microprobe
20E103/103.3 38Engebøfjellet Eclogite Deposit, Naustdal, Sunnfjord, Vestland, NorwayAmphibole found as inclusion in garnet. Formula normalized by use of Locock, A. J. (2014). An Excel spreadsheet to classify chemical analyses of amphiboles following the IMA 2012 recommendations. Computers & Geosciences, 62, 1-11.
21Isasca, Cuneo Province, Piedmont, ItalyTropper et al. (2000) prints the analyses given as ferro-nybøite by : T. Hirajima and R. Compagnoni : "Petrology of a jadeite-quartz-almandine-phengite fels with retrograde ferro-nyböite from the Dora-Maira Massif, Western Alps", Eur. Journ. Mineral., 1993, 5, pp 943-955 The analyses normalizes to ferro-katophorite, see https://www.mindat.org/locentry-769804.html
22Type SpecimenJakobsberg Mine, Jakobsberg ore field, Nordmark mining district, Filipstad, Värmland County, Sweden
23Iimori mine, Afuzu-mura, Iwade city, Wakayama Prefecture, JapanChemical analyses of the amphibole were performed on JEOL JXA–8800R and JEOL JXA–8900R electron microprobes at the GSJ Laboratory, AIST. Based on the relatively high oxygen fugacity indicated by the high Fe3+/(Fe2++Fe3+) ratios (0.99–1.0) of associated aegirine and garnet (Banno and Yamada, 2012), the Fe3+/Fe2+ ratios of the amphibole were estimated using the maximum ferric method of Leake et al. (1997). Total Mn was expressed as Mn2+, because, in this way, formulae calculated using the maximum ferric method satisfied the six criteria for calculation of amphibole formulae outlined by Leake et al. (1997).

The amphibole is pale yellowish green and occurs as euhedral to subhedral crystals with lengths up to 500µm.
24Type SpecimenNybø eclogite pod, Sørpollen, Vågsøy, Kinn, Vestland, Norway
25740Coyote Peak, Humboldt County, California, USAAnalyzed by single crystal X-ray and electron- and ion-microprobe techniques. The sample is also analyzed for Li and H.
26Blueschist occurrence, Pinchi Lake, Omineca Mining Division, British Columbia, Canada
27E3/33.9 21Engebøfjellet Eclogite Deposit, Naustdal, Sunnfjord, Vestland, NorwayMatrix amphibole in eclogite. Formula normalized by use of Locock, A. J. (2014). An Excel spreadsheet to classify chemical analyses of amphiboles following the IMA 2012 recommendations. Computers & Geosciences, 62, 1-11.
2855/MCharakoma eclogite, Soufli, Evros, Eastern Macedonia and Thrace, GreeceMatrix amphibole from a kyanite-eclogite. Matrix amphiboles with similar compositions has formed both before and after omphacite. The composition is close to the border between tremolite and winchite, but should be considered winchite based on the 2012 nomenclature report. EMPA analysis.
2966i  "  "EMPA analaysis of an amphibole inclusion in garnet from a kyanite-eclogite
3065iKovalo eclogites, Kechros, Arriana, Rhodope, Eastern Macedonia and Thrace, GreeceEMPA analysis of an amphibole inclusion in an eclogite garnet.
312519Steinsteg eclogite, Frosnitz valley, Matrei in Osttirol, Lienz District, Tyrol, AustriaEMPA analysis of matrix amphibole from a kyanite-eclogite
322519  "  "EMPA analysis of an amphibole inclusion in garnet from a kyanite-eclogite.
332015  "  "EMPA analysis of the core of an amphibole grain in post-eclogite-facies mica schist
3458/KelCharakoma eclogite, Soufli, Evros, Eastern Macedonia and Thrace, GreeceEMPA analysis of a kelyphitic amphibole replacement after garnet from a kyanite-eclogite.
35Poudrette quarry, Mont Saint-Hilaire, La Vallée-du-Richelieu RCM, Montérégie, Québec, Canada
The analyses were perfromed on fragments of ferro-ferri-nybøite that were ground with an agate mortar and pestle, placed on a Pb ring (2 mm inner diameter), and secured in place with tape. EMPA was perfromed with a Cameca SX-100 operating in the wavelength-dispersive mode with an excitation voltage of 15 kV, specimen current 10 nA, beam diameter 5 μm, peak-count time 20 s, and background-count time 10 s. The Mössbauer spectrum was acquired in transmission geometry at room temperature using a 57Co(Rh) point source, and the spectrometer was calibrated with the room-temperature spectrum of α-Fe. The spectrum was analyzed in terms of a Voigt-function-based quadrupole-splitting distribution. The XRD powder-diffraction pattern was recorded using a D5000 Bruker powder diffractometer (Ni-filtered CuKα radiation, λ = 1.54178 Å). No internal standard was used.
36pt. 7Dara-i-Pioz Massif, Districts of Republican Subordination, TajikistanSee locentry for "Leakeite Root Name Group" for additional details about the occurrence and characterization. Analyzed by EPMA. Composition is normalized to ∑cations = 16. *Fe measured as Fe2+; Fe3+ and Fe2O3 are derived by charge balance. Li2O and H2O are estimated by stoichiometry.
37763Coyote Peak, Humboldt County, California, USAAnalyzed by single crystal X-ray and electron- and ion-microprobe techniques. The sample is also analyzed for Li and H.
38E103/103.3 30Engebøfjellet Eclogite Deposit, Naustdal, Sunnfjord, Vestland, NorwayMatrix amphibole in eclogite. Formula normalized by use of Locock, A. J. (2014). An Excel spreadsheet to classify chemical analyses of amphiboles following the IMA 2012 recommendations. Computers & Geosciences, 62, 1-11.
39Amphibole hostHohl-Felsen eclogite, Wernersdorf, Wies, Deutschlandsberg District, Styria, AustriaEMPA analysis (University of Vienna) of an amphibole from eclogite matrix
40Amphibole vein  "  "EMPA analysis (University of Vienna) of an amphibole from eclogite facies vein in eclogite
41Type SpecimenStora Pajsberg Mine, Pajsberg, Persberg ore district, Filipstad, Värmland County, SwedenEPMA analysis in combination with M
42pt. 90Água de Pau Volcano, São Miguel, Azores, PortugalSlightly darker BSE-Z central "core" of weakly zoned amphibole (compare with pts. 76 and 91). EPMA data normalized to ∑cations = 16. *valences of Fe and Mn calculated by normalization-imposed charge balance. X-site oxygen calculated from 2*Ti, with OH calculated from stoichiometry.
43pt. 76  "  "Slightly brighter BSE-Z main body of weakly zoned amphibole. Outermost rim grades to F-enriched ferro-ferri-katophorite (compare with pts. 90 and 91). EPMA data normalized to ∑cations = 16. *valences of Fe and Mn calculated by normalization-imposed charge balance. X-site oxygen calculated from 2*Ti, with OH calculated from stoichiometry.
44Arroyo de la Yedra, Manzanares el Real, Community of Madrid, Spain The analyses where performed on different sample containing granular aggregates of subhedral crystals of mean size 0.18(11) ´ 0.10(6) mm2. The following analytical techniques were used for this sample: - Wavelength-dispersive analyses on grain-mount thin sections were obtained with a JEOL-8900M electron-microprobe at the Universidad Complutense of Madrid - The crystals used for crystal-structure refinement were subsequently mounted, polished, and analyzed by ion-microprobe techniques to quantify in-situ light and volatile elements (Li, H, F, and Cl). Ion-microprobe analysis was done at CSCC on a Cameca IMS 4f probe - The X-ray powder-diffraction pattern was recorded from a mineral separate with a Philips X-PERT diffractometer with graphite-monochromatized CuKa X-radiation Further details on the analytical methods can be found in the reference
45pt. 24Dara-i-Pioz Massif, Districts of Republican Subordination, TajikistanSee locentry for "Leakeite Root Name Group" for additional details about the occurrence and characterization. Analyzed by EPMA. Composition is normalized to ∑cations = 16. *Fe measured as Fe2+; Fe3+ and Fe2O3 are derived by charge balance. Li2O and H2O are estimated by stoichiometry.
46South Tirodi Mine, Tirodi, Balaghat District, Jabalpur Division, Madhya Pradesh, IndiaA Cameca Camebax electron microprobe operated at 15 kV and a beam current of l0 nA was used to analyze amphiboles. A Philips CM-12 scanning transmission electron microscope (STEM) equipped with a Kevex Quantum detector (EDS system) was used for TEM and AEM analyses. Selected-area electron difraction (SAED) patterns and multibeam images were obtained in the TEM mode, whereas AEM analyses were acquired in scanning mode. Fe3+ and H2O was calculated
47Iimori mine, Afuzu-mura, Iwade city, Wakayama Prefecture, JapanChemical analyses of the amphibole were performed on JEOL JXA–8800R and JEOL JXA–8900R electron microprobes at the GSJ Laboratory, AIST. Based on the relatively high oxygen fugacity indicated by the high Fe3+/(Fe2++Fe3+) ratios (0.99–1.0) of associated aegirine and garnet (Banno and Yamada, 2012), the Fe3+/Fe2+ ratios of the amphibole were estimated using the maximum ferric method of Leake et al. (1997). Total Mn was expressed as Mn2+, because, in this way, formulae calculated using the maximum ferric method satisfied the six criteria for calculation of amphibole formulae outlined by Leake et al. (1997).
The amphibole is pale yellowish green and occurs as euhedral to subhedral crystals with lengths up to 500µm.
48Hilairitovoye pegmatite, 252 m level, Kirovskii apatite mine, Kukisvumchorr Mt, Murmansk Oblast, RussiaThe chemical composition of potassicarfvedsonite was obtained (fluorine and cations except Li) by a Camebax SX50 electron microprobe. Li was determined by atom emission using a Carl Zeiss AAS30 spectrophotometer. The water content calculated The Fe2+/ Fe3+ ratio was calculated.
49Type SpecimenHighway 366 roadcut, Val-des-Monts, Les Collines-de-l'Outaouais RCM, Outaouais, Québec, CanadaThe sample were analyzed at Virginia Polytechnic Institute by wavelength dispersion, using a 9-channel ARL - SEMQ microprobe.Fe2+/Fe3+ ratio were found by by Mossbauer spectroscopy. The cell parameters were determined from single-crystal X-ray powder-diffraction data.
50Type SpecimenPotassic-Arfvedsonite occurrence, Pegmatite Valley, Lilleelv, Head of Kangerluarsuk, Kangerluarsuk Fjord, Ilímaussaq complex, Kujalleq, GreenlandThe chemical composition of potassicarfvedsonite was obtained (fluorine and cations except Li) by a Camebax SX50 electron microprobe. Li was determined by atom emission using a Carl Zeiss AAS30 spectrophotometer. The water content was determined by the Alimarin method, a modified Penfield, with water absorption by Mg(ClO4)2. The Fe2+/ Fe3+ ratio was determined via Mössbauer spectroscopy. Single-crystal diffraction data were collected at room temperature using a Nonius Kappa CCD diffractometer. X-ray powder diffraction data were obtained using a DRON UM-1 diffractometer and Fe-filtered CoKα-radiation
51AS04-36Monte Metocha, Xixano, Montepuez District, Cabo Delgado Province, MozambiqueThe sample was analyzed by electron microprobe using a Cameca SX-100 operating in wavelength-dispersive mode. The powder-diffraction pattern was recorded from a small fragment on a 114.6 mm Debye-Scherrer powder camera with a Gandolfi attachment and Ni-filtered Cu-Ka X-radiation The Fe2+-Fe3+ ratio and the H2O content were derived from the results of crystal-structure refinement. The oxo component (O2 at the O(3) site) was estimated based on the Ti content.
52Coyote Peak, Humboldt County, California, USAAnalyzed by single crystal X-ray and electron- and ion-microprobe techniques. The sample is also analyzed for Li and H.
53A2Amalia tuff, Questa, Taos County, New Mexico, USAA single crystal about 0.2x2mm was analyzed with EMPA, XRD and site scattering techniques. Li is ordered at M3, which is compensated by Fe3+ in the M2 site.
54830C30-5Virgin Canyon pluton, Questa, Taos County, New Mexico, USAA single crystal about 0.2x2mm was analyzed with EMPA, XRD and site scattering techniques. Li is ordered at M3, which is compensated by Fe3+ in the M2 site.
55pt. 8Dara-i-Pioz Massif, Districts of Republican Subordination, TajikistanSee locentry for "Leakeite Root Name Group" for additional details about the occurrence and characterization. Analyzed by EPMA. Composition is normalized to ∑cations = 16. *Fe measured as Fe2+; Fe3+ and Fe2O3 are derived by charge balance. Li2O and H2O are estimated by stoichiometry.
56jym-1226Bratthagen 1, Lågendalen, Hedrum, Larvik Commune, Vestfold, NorwayThe rock specimen containing ferri-fluoro- leakeite from the nepheline syenite in Bratthagen is ~6 cm- 5 cm - 4 cm in size and also contains, as major constituents, anorthoclase and broken crystals of aegirine and, as minor constituents, catapleite, pyrochlore, pyrophanite and zircon. Analyzed by electron microprobe using a Cameca SX-100 operating in wavelength -dispersive mode with excitation voltage 15 kV, specimen current 10 nA, beam diameter 5 mm,peak-count time 20 s and background-count time 10 s. *Fe measured as Fe2+; Fe3+ and Fe2O3 are derived by charge balance. Li2O and H2O are estimated by stoichiometry.
572/M-rimKovalo eclogites, Kechros, Arriana, Rhodope, Eastern Macedonia and Thrace, GreeceEMPA analysis of an kelyphitic amphibole from a retrogressed eclogite. The silica content from the analysis is too high to match the end-member formula, but the amphibole still qualifies as ferro-sadanagite by the naming rules in the 2012 amphibole nomenclature.
58GM1400Ilímaussaq complex, Kujalleq, GreenlandThe sample was collected from ilvaite bearing endoskarns formed by late-magmatic to hydrothermal veins on the south coast of the Tunulliarfik fjord. Mineral compositions were analyzed using a JEOL 8900 electron microprobe
59H1Hurricane Mountain localities, North Conway, Conway, Carroll County, New Hampshire, USAChemical and structural analysis including site assignments. See reference for details.
60H2  "  "Chemical and structural analysis including site assignments. See reference for details.
61830C30-5Virgin Canyon pluton, Questa, Taos County, New Mexico, USAA single crystal about 0.2x2mm was analyzed with EMPA, XRD and site scattering techniques. Li is ordered at M3, which is compensated by Fe3+ in the M2 site. The sample is named magesio-ferri-fluoro-katophorite in the references, but as #B#Na>1.5 and M#3+# > 1,5, the composition corresponds to fluoro-arfvedsonite.
62Q83J70-3  "  "A single crystal about 0.2x2mm was analyzed with EMPA, XRD and site scattering techniques. Li is ordered at M3, which is compensated by Fe3+ in the M2 site.
63Type SpecimenRothenberg Quarry, Bell, Mendig, Mayen-Koblenz, Rhineland-Palatinate, GermanyChemical composition (10 analytical points) and unit formula (atoms per formula unit, apfu) calculated based on 24 (O, OH, F) apfu for holotype ferri-obertiite (crystal 1262). Results of electron-microprobe analysis and single-crystal structure refinement Fe3+ calculated with the constraints of non-negative Fe2+ values and W(O, OH, F) = 2 apfu
64Taguchi mine, Shitara, Kitashitara County, Aichi Prefecture, JapanThe amphibole in the sample was labeled as "richterite", but the high Mn and Fe contents indicate that the composition more appropriately falls along the hjalmarite-[ferri-ghoseite] join. The amphibole occurs abundantly in a manganiferous "amphibolite", with a rhodonite-group mineral (essentially on the composition boundary between Mn2+, Fe2+ and Mg-bearing versions of vittinkiite), some yoshimuraite, and abundant quartz, along with minor amounts of additional minerals (i.e. rhodochrosite, barian orthoclase, barite, nambulite, pyrite). The amphibole analysis is normalized to 8Si = 8, and gives B-site occupancy as Na = 1.32 apfu; Mn2+ = 0.47 apfu; Ca = 0.20 apfu. Fe2O3 and FeO calculated from total Fe by charge balance; H2O is calculated by stoichiometry.
65Type SpecimenLångban Mine, Långban Ore District, Filipstad, Värmland County, SwedenThe precise composition was determined from point analyses on a polished surface using two electron probe micro-analysers (EPMA) in wavelength-dispersive (WDS) mode. In addition, polarised single-crystal FTIR-spectra in the range 2000–8000 cm1 were collected at a spectral resolution of 2 cm1 from a 35 lm thick doubly polished single-crystal fragment. . Powder X-ray diffraction data were recorded on a PANalytical X’Pert3 Powder diffractometer equipped with an X’celerator silicon-strip detectore and single-crystal X-ray study was done at room temperature using an Oxford Diffraction Xcalibur diffractor. H2O content is calculated
66Matsumaezawa pit, Tanohata mine, Tanohata, Shimohei District, Iwate Prefecture, Japanvia EPMA, SIMS, and SC-XRD-based structure refinement; empirical formula basis: O+OH=24

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IDSpeciesReferenceLinkYearLocalityPressure (GPa)Temp (K)
0020689KatophoriteOberti R, Boiocchi M, Hawthorne F C, Ball N A, Harlow G E (2015) Katophorite from the Jade Mine Tract, Myanmar: mineral description of a rare (grandfathered) endmember of the amphibole supergroup Mineralogical Magazine 79 355-3632015near Hpakan, Jade Mine Tract, Kachin State, Myanmar0293
0020742Magnesio-arfvedsoniteOberti R, Boiocchi M, Hawthorne F C, Ball N A, Harlow G E (2015) Magnesio-arfvedsonite from Jade mine tract, Myanmar: mineral description and crystal chemistry Mineralogical Magazine 79 253-2602015Jade mine tract, Myanmar0293
0020422EckermanniteOberti R, Boiocchi M, Hawthorne F C, Ball N A, Harlow G E (2015) Eckermannite revised: The new holotype from the Jade Mine Tract, Myanmar-crystal structure, mineral data, and hints on the reasons for the rarity of eckermannite American Mineralogist 100 909-9142015Jade Mine Tract, Kachin Province, Myanmar0293
0020505Ferri-fluoro-leakeiteOberti R, Boiocchi M, Hawthorne F C, Kristiansen R (2014) Ferri-fluoro-leakeite: a second occurrence at Bratthagen (Norway), with new data on Zn partitioning and the oxo component in Na amphiboles Mineralogical Magazine 78 861-8692014Bratthagen nepheline syenite pegmatite, Vestfold County, Norway0293
0020430Fluoro-pargasiteDella Ventura G, Bellatreccia F, Camara F, Oberti R (2014) Crystal-chemistry and short-range order of fluoro-edenite and fluoro-pargasite: a combined X-ray diffraction and FTIR spectroscopic approach Mineralogical Magazine 78 293-3102014Edenville, Orange County, New York, USA0293
0020429Fluoro-pargasiteDella Ventura G, Bellatreccia F, Camara F, Oberti R (2014) Crystal-chemistry and short-range order of fluoro-edenite and fluoro-pargasite: a combined X-ray diffraction and FTIR spectroscopic approach Mineralogical Magazine 78 293-3102014Edenville, Orange County, New York, USA0293
0020433Fluoro-edeniteDella Ventura G, Bellatreccia F, Camara F, Oberti R (2014) Crystal-chemistry and short-range order of fluoro-edenite and fluoro-pargasite: a combined X-ray diffraction and FTIR spectroscopic approach Mineralogical Magazine 78 293-3102014Franklin Quarry, Franklin, New Jersey, USA0293
0020432Fluoro-edeniteDella Ventura G, Bellatreccia F, Camara F, Oberti R (2014) Crystal-chemistry and short-range order of fluoro-edenite and fluoro-pargasite: a combined X-ray diffraction and FTIR spectroscopic approach Mineralogical Magazine 78 293-3102014Limecrest-Southdown Quarry, Sparta, New Jersey, USA0293
0020431Fluoro-edeniteDella Ventura G, Bellatreccia F, Camara F, Oberti R (2014) Crystal-chemistry and short-range order of fluoro-edenite and fluoro-pargasite: a combined X-ray diffraction and FTIR spectroscopic approach Mineralogical Magazine 78 293-3102014Sterling Hill, Ogdensburg, New Jersey, USA0293
0020108WinchiteJenkins D M, Della Ventura G, Oberti R, Bozhilov K (2013) Synthesis and characterization of amphiboles along the tremolite-glaucophane join American Mineralogist 98 588-6002013synthetic0293
0020107WinchiteJenkins D M, Della Ventura G, Oberti R, Bozhilov K (2013) Synthesis and characterization of amphiboles along the tremolite-glaucophane join American Mineralogist 98 588-6002013synthetic0293
0019938Chromio-pargasiteNishio-Hamane D, Ohnishi M, Minakawa T, Yamaura J, Saito S, Kadota R (2012) Ehimeite, NaCa2Mg4CrSi6Al2O22(OH)2: The first Cr-dominant amphibole from the Akaishi Mine, Higashi-Akaishi Mountain, Ehime Prefecture, Japan Journal of Mineralogical and Petrological Sciences 107 1-72012Akaishi mine, Higashi-Akaishi Mountain, Ehime Prefecture, Japan0293
0019530PargasiteHalenius U, Bosi F (2012) Cation ordering in Pb2+-bearing, Mn3+-rich pargasite from Langban, Sweden American Mineralogist 97 1635-16402012Langban, Sweden0293
0015898Ferri-fluoro-leakeiteCamara F, Hawthorne F C, Ball N A, Bekenova G, Stepanov A V, Kotelnikov P E (2010) Fluoroleakeite, NaNa2(Mg2Fe3+2Li)Si8O22F2, a new mineral of the amphibole group from the Verkhnee Espe deposit, Akjailyautas Mountains, Eastern Kazakhstan District, Kazakhstan: description and crystal structure Mineralogical Magazine 74 521-5282010Verkhnee Espe deposit, Akjailyautas Mountains, Kazakhstan0293
0017887Mangano-ferri-eckermanniteBarkley M C, Yang H, Downs R T (2010) Kozulite, a Mn-rich alkali amphibole Acta Crystallographica E66 i83-i832010Tanohata mine, Iwate Prefecture, Tohoku Region, Honshu Island, Japan0293
0005067KaersutiteComopdi P, Boffa Ballaran T, Zanazzi P F, Capalbo C, Zanetti A, Nazzareni S (2010) The effect of oxo-component on the high-pressure behavior of amphiboles American Mineralogist 95 1042-10512010an alkaline basalt of Deadman Lake Volcanic Area, USA0.0001293
0005060KaersutiteComopdi P, Boffa Ballaran T, Zanazzi P F, Capalbo C, Zanetti A, Nazzareni S (2010) The effect of oxo-component on the high-pressure behavior of amphiboles American Mineralogist 95 1042-10512010an alkaline basalt of the Massif Central, France0.0001293
0014595Fluoro-leakeiteOberti R, Camara F, Hawthorne F C, Ball N A (2009) Fluoro-aluminoleakeite, NaNa2(Mg2Al2Li)Si8O22F2, a new mineral of the amphibole group from Norra Karr, Sweden: description and crystal structure Mineralogical Magazine 73 817-8242009Norra Karr, Granna, Jonkoping, Smaland, Sweden0293
0004978Fluoro-edeniteAndreozzi G B, Ballirano P, Gianfagna A, Mazziotti-Tagliani S, Pacella A (2009) Structural and spectroscopic characterization of a suite of fibrous amphiboles with high environmental and health relevance from Biancaville (Sicily, Italy) Sample Name: Sample 4 American Mineralogist 94 1333-13402009Biancaville, Sicily, Italy0293
0004977Fluoro-edeniteAndreozzi G B, Ballirano P, Gianfagna A, Mazziotti-Tagliani S, Pacella A (2009) Structural and spectroscopic characterization of a suite of fibrous amphiboles with high environmental and health relevance from Biancaville (Sicily, Italy) Sample Name: Sample 3 American Mineralogist 94 1333-13402009Biancaville, Sicily, Italy0293
0004976Fluoro-edeniteAndreozzi G B, Ballirano P, Gianfagna A, Mazziotti-Tagliani S, Pacella A (2009) Structural and spectroscopic characterization of a suite of fibrous amphiboles with high environmental and health relevance from Biancaville (Sicily, Italy) Sample Name: Sample 2 American Mineralogist 94 1333-13402009Biancaville, Sicily, Italy0293
0004975Fluoro-edeniteAndreozzi G B, Ballirano P, Gianfagna A, Mazziotti-Tagliani S, Pacella A (2009) Structural and spectroscopic characterization of a suite of fibrous amphiboles with high environmental and health relevance from Biancaville (Sicily, Italy) Sample Name: Sample 1 American Mineralogist 94 1333-13402009Biancaville, Sicily, Italy0293
0007271Potassic-ferro-taramiteOberti R, Boiocchi M, Smith D C, Medenbach O, Helmers H (2008) Potassic-aluminotaramite from Sierra de los Filabres, Spain European Journal of Mineralogy 20 1005-10102008Sierra de los Filabres, Spain0293
0006136Fluoro-edeniteGianfagna A, Andreozzi G B, Ballirano P, Mazziotti-Tagliani S, Bruni B M (2007) Structural and chemical contrasts between prismatic and fibrous fluoro-edenite from Biancavilla, Sicily, Italy The Canadian Mineralogist 45 249-2622007Biancavilla, Mt. Etna, Sicily, Italy0293
0004419Ferro-taramiteOberti R, Boiocchi M, Smith D C, Medenbach O (2007) Aluminotaramite, alumino-magnesiotaramite, and fluoro-alumino-magnesiotaramite: Mineral data and crystal chemistry American Mineralogist 92 1428-14352007Liset kyanite-eclogite pod, Vestlandet, Norway0293
0006114Ferri-fluoro-katophoriteHawthorne F C, Oberti R, Martin R F (2006) Short-range order in amphiboles from the Bear Lake diggings, Ontario The Canadian Mineralogist 44 1171-11792006Bear Lake diggings, Bancroft area of Ontario, Canada0293
0006116Ferri-fluoro-katophoriteHawthorne F C, Oberti R, Martin R F (2006) Short-range order in amphiboles from the Bear Lake diggings, Ontario The Canadian Mineralogist 44 1171-11792006Bear Lake diggings, Bancroft area of Ontario, Canada0293
0006115KatophoriteHawthorne F C, Oberti R, Martin R F (2006) Short-range order in amphiboles from the Bear Lake diggings, Ontario The Canadian Mineralogist 44 1171-11792006Bear Lake diggings, Bancroft area of Ontario, Canada0293
0006056Fluoro-pargasiteLupulescu M V, Rakovan J, Robinson G W, Hughes J M (2005) Fluoropargasite, a new member of the calcic amphiboles from Edenville, Orange County, New York The Canadian Mineralogist 43 1423-14282005Edenville, Orange County, New York0293
0020051Ferri-leakeiteOberti R, Camara F, Caballero J M (2004) Ferri-ottoliniite and ferriwhittakerite, two new end-members of the new Group 5 for monoclinic amphiboles American Mineralogist 89 888-8932004Pedriza massif, Sierra de Guadarrama, Spain0293
0012382Ferri-katophoritePushcharovsky D Y, Lebedeva Y S, Pekov I V, Ferraris G, Novakova A A, Ivaldi G (2003) Crystal structure of magnesioferrikatophorite Crystallography Reports 48 16-232003Turiy Cape, Kola Peninsula, Russia0293
0005710WinchiteSokolova E V, Hawthorne F C, Gorbatova V, McCammon C, Schneider J (2001) Ferrian winchite from the Ilmen mountains, southern Urals, Russia and some problems with the current scheme for amphibole nomenclature adjusted to match reported bond lengths The Canadian Mineralogist 39 171-1772001Ilmen mountains, southern Urals, Russia0293
0005759PargasiteTait K T, Hawthorne F C, Della Ventura G (2001) Al-Mg disorder in a gem-quality pargasite from Baffin Island, Nunavut, Canada The Canadian Mineralogist 39 1725-17322001Baffin Island, Nunavut, Canada0293
0002347Ferri-obertiiteHawthorne F C, Cooper M A, Grice J D, Ottolini L (2000) A new anhydrous amphibole from the Eifel region, Germany: Description and crystal structure of obertiite, NaNa2(Mg3FeTi)Si8O22O2 American Mineralogist 85 236-2412000Eifel region, Germany0293
0002347Mangani-obertiiteHawthorne F C, Cooper M A, Grice J D, Ottolini L (2000) A new anhydrous amphibole from the Eifel region, Germany: Description and crystal structure of obertiite, NaNa2(Mg3FeTi)Si8O22O2 American Mineralogist 85 236-2412000Eifel region, Germany0293
0005426Fluoro-pargasiteOberti R, Sardone N, Hawthorne F C, Raudsepp M, Turnock A C (1995) Synthesis and crystal-structure refinement of synthetic fluor-pargasite Sample FP2 [note: ideal = NaCa2(Mg4Al)(Si6Al2)O22(OH)2] The Canadian Mineralogist 33 25-311995Synthetic0293
0005425Fluoro-pargasiteOberti R, Sardone N, Hawthorne F C, Raudsepp M, Turnock A C (1995) Synthesis and crystal-structure refinement of synthetic fluor-pargasite The Canadian Mineralogist 33 25-311995Synthetic0293
0012347Fluoro-edeniteRastsvetaeva R K, Pushcharovsky D Y, Borutskii B E (1995) Crystal structure of K,F-edenite from Khibini Crystallography Reports 40 27-301995Khibini alkali massif, Yum'erchorr mountain, Kola Peninsula, Russia0293
0001715Mangano-mangani-ungarettiiteHawthorne F C, Oberti R, Cannillo E, Sardone N, Zanetti A, Grice J D, Ashley P M (1995) A new anhydrous amphibole from the Hoskins mine, Grenfell, New South Wales, Australia: Description and crystal structure of ungarettiite, NaNa2(Mn2Mn3)Si8O22O2 Sample U2 American Mineralogist 80 165-1721995Hoskins mine, Grenfell, New South Wales, Australia0293
0001714Mangano-mangani-ungarettiiteHawthorne F C, Oberti R, Cannillo E, Sardone N, Zanetti A, Grice J D, Ashley P M (1995) A new anhydrous amphibole from the Hoskins mine, Grenfell, New South Wales, Australia: Description and crystal structure of ungarettiite, NaNa2(Mn2Mn3)Si8O22O2 Sample U1 American Mineralogist 80 165-1721995Hoskins mine, Grenfell, New South Wales, Australia0293
0005424PargasiteJenkins D M, Hawthorne F C (1995) Synthesis and rietveld refinement of amphibole along the join Ca2Mg5Si8O22F2 - NaCa2Mg4Ga3Si6O22F2 The Canadian Mineralogist 33 13-241995Synthetic0293
0005423PargasiteJenkins D M, Hawthorne F C (1995) Synthesis and rietveld refinement of amphibole along the join Ca2Mg5Si8O22F2 - NaCa2Mg4Ga3Si6O22F2 The Canadian Mineralogist 33 13-241995Synthetic0293
0005422PargasiteJenkins D M, Hawthorne F C (1995) Synthesis and rietveld refinement of amphibole along the join Ca2Mg5Si8O22F2 - NaCa2Mg4Ga3Si6O22F2 The Canadian Mineralogist 33 13-241995Synthetic0293
0005421PargasiteJenkins D M, Hawthorne F C (1995) Synthesis and rietveld refinement of amphibole along the join Ca2Mg5Si8O22F2 - NaCa2Mg4Ga3Si6O22F2 The Canadian Mineralogist 33 13-241995Synthetic0293
0005420PargasiteJenkins D M, Hawthorne F C (1995) Synthesis and rietveld refinement of amphibole along the join Ca2Mg5Si8O22F2 - NaCa2Mg4Ga3Si6O22F2 The Canadian Mineralogist 33 13-241995Synthetic0293
0001657Ferri-leakeiteHawthorne F C, Ungaretti L, Oberti R, Cannillo E (1994) The mechanism of Li incorporation in amphiboles American Mineralogist 79 443-4511994Kajlidongri, Madhya Pradesh, India0293
0001656Ferri-leakeiteHawthorne F C, Ungaretti L, Oberti R, Cannillo E (1994) The mechanism of Li incorporation in amphiboles American Mineralogist 79 443-4511994Kajlidongri, Madhya Pradesh, India0293
0001655Ferri-leakeiteHawthorne F C, Ungaretti L, Oberti R, Cannillo E (1994) The mechanism of Li incorporation in amphiboles American Mineralogist 79 443-4511994Kajlidongri, Madhya Pradesh, India0293
0001590Ferro-ferri-fluoro-leakeiteHawthorne F C, Ungaretti L, Oberti R, Bottazzi P, Czamanske G K (1993) Li: an important component in igneous alkali amphiboles American Mineralogist 78 733-7451993Questa caldera, New Mexico0293
0001589Ferro-ferri-fluoro-leakeiteHawthorne F C, Ungaretti L, Oberti R, Bottazzi P, Czamanske G K (1993) Li: an important component in igneous alkali amphiboles American Mineralogist 78 733-7451993Questa caldera, New Mexico0293
0001588Ferro-ferri-fluoro-leakeiteHawthorne F C, Ungaretti L, Oberti R, Bottazzi P, Czamanske G K (1993) Li: an important component in igneous alkali amphiboles American Mineralogist 78 733-7451993Questa caldera, New Mexico0293
0014502HastingsiteMakino K, Tomita K, Suwa K (1993) Effect of chlorine on the crystal structure of a chlorine-rich hastingsite Mineralogical Magazine 57 677-6851993West Ongul, East Antarctica0293
0001597ArfvedsoniteHawthorne F C, Ungaretti L, Oberti R, Bottazzi P, Czamanske G K (1993) Li: an important component in igneous alkali amphiboles American Mineralogist 78 733-7451993Questa caldera, New Mexico0293
0001541Ferri-leakeiteHawthorne F C, Oberti R, Ungaretti L, Grice J D (1992) Leakeite, NaNa2(Mg2Fe2Li)Si8O22(OH)2, a new alkali amphibole from the Kajlidongri manganese mine, Jhabua district, Madhya Pradesh, India American Mineralogist 77 1112-11151992Kajlidongri manganese mine, Jhabua district, Madhya Pradesh, India0293
0005155Fluoro-riebeckiteHawthorne F C (1978) The crystal chemistry of the amphiboles. VIII. The crystal structure and site chemistry of fluor-riebeckite The Canadian Mineralogist 16 187-1941978Pikes Peak, Colorado, USA0293
0005061KaersutiteComopdi P, Boffa Ballaran T, Zanazzi P F, Capalbo C, Zanetti A, Nazzareni S (2010) The effect of oxo-component on the high-pressure behavior of amphiboles American Mineralogist 95 1042-10512010an alkaline basalt of the Massif Central, France0.26293
0005068KaersutiteComopdi P, Boffa Ballaran T, Zanazzi P F, Capalbo C, Zanetti A, Nazzareni S (2010) The effect of oxo-component on the high-pressure behavior of amphiboles American Mineralogist 95 1042-10512010an alkaline basalt of Deadman Lake Volcanic Area, USA0.67293
0005062KaersutiteComopdi P, Boffa Ballaran T, Zanazzi P F, Capalbo C, Zanetti A, Nazzareni S (2010) The effect of oxo-component on the high-pressure behavior of amphiboles American Mineralogist 95 1042-10512010an alkaline basalt of the Massif Central, France2.85293
0005069KaersutiteComopdi P, Boffa Ballaran T, Zanazzi P F, Capalbo C, Zanetti A, Nazzareni S (2010) The effect of oxo-component on the high-pressure behavior of amphiboles American Mineralogist 95 1042-10512010an alkaline basalt of Deadman Lake Volcanic Area, USA3.65293
0005063KaersutiteComopdi P, Boffa Ballaran T, Zanazzi P F, Capalbo C, Zanetti A, Nazzareni S (2010) The effect of oxo-component on the high-pressure behavior of amphiboles American Mineralogist 95 1042-10512010an alkaline basalt of the Massif Central, France3.74293
0005064KaersutiteComopdi P, Boffa Ballaran T, Zanazzi P F, Capalbo C, Zanetti A, Nazzareni S (2010) The effect of oxo-component on the high-pressure behavior of amphiboles American Mineralogist 95 1042-10512010an alkaline basalt of the Massif Central, France4.31293
0005070KaersutiteComopdi P, Boffa Ballaran T, Zanazzi P F, Capalbo C, Zanetti A, Nazzareni S (2010) The effect of oxo-component on the high-pressure behavior of amphiboles American Mineralogist 95 1042-10512010an alkaline basalt of Deadman Lake Volcanic Area, USA4.54293
0005065KaersutiteComopdi P, Boffa Ballaran T, Zanazzi P F, Capalbo C, Zanetti A, Nazzareni S (2010) The effect of oxo-component on the high-pressure behavior of amphiboles American Mineralogist 95 1042-10512010an alkaline basalt of the Massif Central, France4.84293
0005071KaersutiteComopdi P, Boffa Ballaran T, Zanazzi P F, Capalbo C, Zanetti A, Nazzareni S (2010) The effect of oxo-component on the high-pressure behavior of amphiboles American Mineralogist 95 1042-10512010an alkaline basalt of Deadman Lake Volcanic Area, USA5.42293
0005066KaersutiteComopdi P, Boffa Ballaran T, Zanazzi P F, Capalbo C, Zanetti A, Nazzareni S (2010) The effect of oxo-component on the high-pressure behavior of amphiboles American Mineralogist 95 1042-10512010an alkaline basalt of the Massif Central, France6.35293
0000917Fluoro-richteriteCameron M, Sueno S, Papike J J, Prewitt C T (1983) High temperature crystal chemistry of K and Na fluor-richterites American Mineralogist 68 924-94319830297
0000912Fluoro-richteriteCameron M, Sueno S, Papike J J, Prewitt C T (1983) High temperature crystal chemistry of K and Na fluor-richterites American Mineralogist 68 924-94319830297
0003735Mangani-dellaventuraiteTait K T, Hawthorne F C, Grice J D, Ottolini L, Nayak V K (2005) Dellaventuraite, NaNa2(MgMn2TiLi)Si8O22O2, a new anhydrous amphibole from the Kajlidongri Manganese Mine, Jhabua District, Madhya Pradesh, India American Mineralogist 90 304-30920050293
0003796RichteriteSenda K, Ishida K, Jenkins D M (2005) X-ray Rietveld refinement and FTIR spectra of synthetic (Si,Ge)-richterites American Mineralogist 90 1062-107120050293
0003795RichteriteSenda K, Ishida K, Jenkins D M (2005) X-ray Rietveld refinement and FTIR spectra of synthetic (Si,Ge)-richterites American Mineralogist 90 1062-107120050293
0003794RichteriteSenda K, Ishida K, Jenkins D M (2005) X-ray Rietveld refinement and FTIR spectra of synthetic (Si,Ge)-richterites American Mineralogist 90 1062-107120050293
0003793RichteriteSenda K, Ishida K, Jenkins D M (2005) X-ray Rietveld refinement and FTIR spectra of synthetic (Si,Ge)-richterites American Mineralogist 90 1062-107120050293
0003792RichteriteSenda K, Ishida K, Jenkins D M (2005) X-ray Rietveld refinement and FTIR spectra of synthetic (Si,Ge)-richterites American Mineralogist 90 1062-107120050293
0003791RichteriteSenda K, Ishida K, Jenkins D M (2005) X-ray Rietveld refinement and FTIR spectra of synthetic (Si,Ge)-richterites American Mineralogist 90 1062-107120050293
0005890Ferro-ferri-pedriziteOberti R, Camara F, Caballero J M, Ottolini L (2003) Sodic-ferri-ferropedrizite and ferri-clinoferroholmquistite: mineral data and degree of order of the A-site cations in Li-rich amphiboles Sequence number in the CNR-IGG database: SEQ 1039 The Canadian Mineralogist 41 1345-135420030293
0003186RichteriteGunter M E, Dyar M D, Twamley B, Foit F F, Cornelius S (2003) Composition, Fe3+/Sum(Fe), and crystal structure of non-asbestiform and asbestiform amphiboles from Libby, Montana, U.S.A. American Mineralogist 88 1970-197820030293
0002746Fluoro-edeniteGianfagna A, Oberti R (2001) Fluoro-edenite from Biancavilla (Catania, Sicily, Italy): Crystal chemistry of a new amphibole end-member American Mineralogist 86 1489-149320010293
0002384RichteriteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 34 American Mineralogist 85 407-41920000293
0002383RichteriteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 33 American Mineralogist 85 407-41920000293
0002382RichteriteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 32 American Mineralogist 85 407-41920000293
0002381RichteriteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 31 American Mineralogist 85 407-41920000293
0002380RichteriteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 30 American Mineralogist 85 407-41920000293
0002379RichteriteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 29 American Mineralogist 85 407-41920000293
0002378RichteriteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 28 American Mineralogist 85 407-41920000293
0002377RichteriteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 27 American Mineralogist 85 407-41920000293
0002376RichteriteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 26 American Mineralogist 85 407-41920000293
0002375RichteriteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 25 American Mineralogist 85 407-41920000293
0002374RichteriteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 24 American Mineralogist 85 407-41920000293
0002373RichteriteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 23 American Mineralogist 85 407-41920000293
0002372PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 22 American Mineralogist 85 407-41920000293
0002371PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 21 American Mineralogist 85 407-41920000293
0002370PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 20 American Mineralogist 85 407-41920000293
0002369PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 19 American Mineralogist 85 407-41920000293
0002368PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 18 American Mineralogist 85 407-41920000293
0002367PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 17 American Mineralogist 85 407-41920000293
0002366PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 16 American Mineralogist 85 407-41920000293
0002365PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 15 American Mineralogist 85 407-41920000293
0002364PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 14 American Mineralogist 85 407-41920000293
0002363PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 13 American Mineralogist 85 407-41920000293
0002362PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 12 American Mineralogist 85 407-41920000293
0002361PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 11 American Mineralogist 85 407-41920000293
0002360PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 10 American Mineralogist 85 407-41920000293
0002359PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 9 American Mineralogist 85 407-41920000293
0002358PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 8 American Mineralogist 85 407-41920000293
0002357PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 7 American Mineralogist 85 407-41920000293
0002356PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 6 American Mineralogist 85 407-41920000293
0002355PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 5 American Mineralogist 85 407-41920000293
0002354PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies Sample 4 American Mineralogist 85 407-41920000293
0002353PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 3 American Mineralogist 85 407-41920000293
0002352PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 2 American Mineralogist 85 407-41920000293
0002351PargasiteOberti R, Vannucci R, Zanetti A, Tiepolo M, Brumm R C (2000) A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 1 American Mineralogist 85 407-41920000293
0006770Fluoro-edeniteWelch M D, Knight K S (1999) A neutron powder diffraction study of cation ordering in high-temperature synthetic amphiboles European Journal of Mineralogy 11 321-33119990293
0002223RichteriteYang H, Konzett J, Prewitt C T, Fei Y (1999) Single-crystal structure refinement of synthetic K-substituted potassic richterite, K(KCa)Mg5Si8O22(OH)2 American Mineralogist 84 681-68419990293
0006771PargasiteWelch M D, Knight K S (1999) A neutron powder diffraction study of cation ordering in high-temperature synthetic amphiboles European Journal of Mineralogy 11 321-33119990293
0002279PargasiteSharma A, Jenkins D M (1999) Hydrothermal synthesis of amphiboles along the tremolite-pargasite join and in the ternary system tremolite-pargasite-cummingtonite American Mineralogist 84 1304-131819990293
0002278PargasiteSharma A, Jenkins D M (1999) Hydrothermal synthesis of amphiboles along the tremolite-pargasite join and in the ternary system tremolite-pargasite-cummingtonite American Mineralogist 84 1304-131819990293
0002277PargasiteSharma A, Jenkins D M (1999) Hydrothermal synthesis of amphiboles along the tremolite-pargasite join and in the ternary system tremolite-pargasite-cummingtonite American Mineralogist 84 1304-131819990293
0002276PargasiteSharma A, Jenkins D M (1999) Hydrothermal synthesis of amphiboles along the tremolite-pargasite join and in the ternary system tremolite-pargasite-cummingtonite American Mineralogist 84 1304-131819990293
0002275PargasiteSharma A, Jenkins D M (1999) Hydrothermal synthesis of amphiboles along the tremolite-pargasite join and in the ternary system tremolite-pargasite-cummingtonite American Mineralogist 84 1304-131819990293
0006776KaersutiteTiepolo M, Zanetti A, Oberti R (1999) Detection, crystal-chemical mechanisms and petrological implications of Ti4+ partitioning in pargasite and kaersutite European Journal of Mineralogy 11 345-35419990293
0006775KaersutiteTiepolo M, Zanetti A, Oberti R (1999) Detection, crystal-chemical mechanisms and petrological implications of Ti4+ partitioning in pargasite and kaersutite European Journal of Mineralogy 11 345-35419990293
0006774KaersutiteTiepolo M, Zanetti A, Oberti R (1999) Detection, crystal-chemical mechanisms and petrological implications of Ti4+ partitioning in pargasite and kaersutite European Journal of Mineralogy 11 345-35419990293
0006773KaersutiteTiepolo M, Zanetti A, Oberti R (1999) Detection, crystal-chemical mechanisms and petrological implications of Ti partitioning in pargasite and kaersutite European Journal of Mineralogy 11 345-35419990293
0005571PargasiteOberti R, Hawthorne F C, Camara F, Raudsepp M (1998) Synthetic fluoro-amphiboles: site preferences of Al, Ga, Sc and inductive effects on mean bond-lengths of octahedra The Canadian Mineralogist 36 1245-125219980293
0006647Fluoro-edeniteOberti R, Hawthorne F C, Raudsepp M (1997) The behaviour of Mn in amphiboles: Mn in synthetic fluor-edenite and synthetic fluor-pargasite European Journal of Mineralogy 9 115-12219970293
0001918RichteriteHawthorne F C, Della Ventura G, Robert J-L, Welch M D, Jenkins D M (1997) A Rietveld and infrared study of synthetic amphiboles along the potassium-richterite-tremolite join Note, Kr0 sample from Smelik et al (1994) Am Min 79, 1110-1122 American Mineralogist 82 708-71619970293
0001917RichteriteHawthorne F C, Della Ventura G, Robert J-L, Welch M D, Jenkins D M (1997) A Rietveld and infrared study of synthetic amphiboles along the potassium-richterite-tremolite join American Mineralogist 82 708-71619970293
0001916RichteriteHawthorne F C, Della Ventura G, Robert J-L, Welch M D, Jenkins D M (1997) A Rietveld and infrared study of synthetic amphiboles along the potassium-richterite-tremolite join American Mineralogist 82 708-71619970293
0001915RichteriteHawthorne F C, Della Ventura G, Robert J-L, Welch M D, Jenkins D M (1997) A Rietveld and infrared study of synthetic amphiboles along the potassium-richterite-tremolite join American Mineralogist 82 708-71619970293
0001914RichteriteHawthorne F C, Della Ventura G, Robert J-L, Welch M D, Jenkins D M (1997) A Rietveld and infrared study of synthetic amphiboles along the potassium-richterite-tremolite join American Mineralogist 82 708-71619970293
0001885RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C, Welch M D (1997) Site occupancies in synthetic monoclinic amphiboles: Rietveld structure refinement and infrared spectroscopy of (nickel, magnesium, cobalt)-richterite American Mineralogist 82 291-30119970293
0001884RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C, Welch M D (1997) Site occupancies in synthetic monoclinic amphiboles: Rietveld structure refinement and infrared spectroscopy of (nickel, magnesium, cobalt)-richterite American Mineralogist 82 291-30119970293
0001883RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C, Welch M D (1997) Site occupancies in synthetic monoclinic amphiboles: Rietveld structure refinement and infrared spectroscopy of (nickel, magnesium, cobalt)-richterite American Mineralogist 82 291-30119970293
0001882RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C, Welch M D (1997) Site occupancies in synthetic monoclinic amphiboles: Rietveld structure refinement and infrared spectroscopy of (nickel, magnesium, cobalt)-richterite American Mineralogist 82 291-30119970293
0001881RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C, Welch M D (1997) Site occupancies in synthetic monoclinic amphiboles: Rietveld structure refinement and infrared spectroscopy of (nickel, magnesium, cobalt)-richterite American Mineralogist 82 291-30119970293
0001880RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C, Welch M D (1997) Site occupancies in synthetic monoclinic amphiboles: Rietveld structure refinement and infrared spectroscopy of (nickel, magnesium, cobalt)-richterite American Mineralogist 82 291-30119970293
0001879RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C, Welch M D (1997) Site occupancies in synthetic monoclinic amphiboles: Rietveld structure refinement and infrared spectroscopy of (nickel, magnesium, cobalt)-richterite American Mineralogist 82 291-30119970293
0001878RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C, Welch M D (1997) Site occupancies in synthetic monoclinic amphiboles: Rietveld structure refinement and infrared spectroscopy of (nickel, magnesium, cobalt)-richterite American Mineralogist 82 291-30119970293
0001877RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C, Welch M D (1997) Site occupancies in synthetic monoclinic amphiboles: Rietveld structure refinement and infrared spectroscopy of (nickel, magnesium, cobalt)-richterite American Mineralogist 82 291-30119970293
0001876RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C, Welch M D (1997) Site occupancies in synthetic monoclinic amphiboles: Rietveld structure refinement and infrared spectroscopy of (nickel, magnesium, cobalt)-richterite American Mineralogist 82 291-30119970293
0001875RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C, Welch M D (1997) Site occupancies in synthetic monoclinic amphiboles: Rietveld structure refinement and infrared spectroscopy of (nickel, magnesium, cobalt)-richterite American Mineralogist 82 291-30119970293
0005493KatophoriteHawthorne F C, Oberti R, Sardone N (1996) Sodium at the A site in clinoamphiboles: the effects of composition on patterns of order The Canadian Mineralogist 34 577-59319960293
0005492KatophoriteHawthorne F C, Oberti R, Sardone N (1996) Sodium at the A site in clinoamphiboles: the effects of composition on patterns of order The Canadian Mineralogist 34 577-59319960293
0005497PargasiteHawthorne F C, Oberti R, Sardone N (1996) Sodium at the A site in clinoamphiboles: the effects of composition on patterns of order The Canadian Mineralogist 34 577-59319960293
0005496PargasiteHawthorne F C, Oberti R, Sardone N (1996) Sodium at the A site in clinoamphiboles: the effects of composition on patterns of order The Canadian Mineralogist 34 577-59319960293
0005495PargasiteHawthorne F C, Oberti R, Sardone N (1996) Sodium at the A site in clinoamphiboles: the effects of composition on patterns of order The Canadian Mineralogist 34 577-59319960293
0005494PargasiteHawthorne F C, Oberti R, Sardone N (1996) Sodium at the A site in clinoamphiboles: the effects of composition on patterns of order The Canadian Mineralogist 34 577-59319960293
0001826PargasiteHawthorne F C, Oberti R, Ungaretti L, Grice J D (1996) A new hyper-calcic amphibole with Ca at the A site: Fluor-cannilloite from Pargas, Finland American Mineralogist 81 995-100219960293
0006605PargasiteOberti R, Ungaretti L, Cannillo E, Hawthorne F C, Memmi I (1995) Temperature-dependent Al order-disorder in the tetrahedral double chain of C2/m amphiboles European Journal of Mineralogy 7 1049-106319950293
0006604PargasiteOberti R, Ungaretti L, Cannillo E, Hawthorne F C, Memmi I (1995) Temperature-dependent Al order-disorder in the tetrahedral double chain of C2/m amphiboles European Journal of Mineralogy 7 1049-106319950293
0006603PargasiteOberti R, Ungaretti L, Cannillo E, Hawthorne F C, Memmi I (1995) Temperature-dependent Al order-disorder in the tetrahedral double chain of C2/m amphiboles European Journal of Mineralogy 7 1049-106319950293
0005459PargasiteOberti R, Hawthorne F C, Ungaretti L, Cannillo E (1995) [6]Al disorder in amphiboles from mantle peridotites The Canadian Mineralogist 33 867-87819950293
0005458PargasiteOberti R, Hawthorne F C, Ungaretti L, Cannillo E (1995) [6]Al disorder in amphiboles from mantle peridotites The Canadian Mineralogist 33 867-87819950293
0005456PargasiteOberti R, Hawthorne F C, Ungaretti L, Cannillo E (1995) [6]Al disorder in amphiboles from mantle peridotites The Canadian Mineralogist 33 867-87819950293
0005455PargasiteOberti R, Hawthorne F C, Ungaretti L, Cannillo E (1995) [6]Al disorder in amphiboles from mantle peridotites The Canadian Mineralogist 33 867-87819950293
0005344Fluoro-edeniteBoschmann K F, Burns P C, Hawthorne F C, Raudsepp M, Turnock A C (1994) A-site disorder in synthetic fluor-edenite, a crystal-structure study The Canadian Mineralogist 32 21-3019940293
0006506Ferri-ghoseiteOberti R, Ghose S (1993) Crystal-chemistry of a complex Mn-bearing alkali amphibole ("tirodite") on the verge of exsolution European Journal of Mineralogy 5 1153-116019930293
0006477RichteriteRobert J-L, Della Ventura G, Raudsepp M, Hawthorne F C (1993) Rietveld structure refinement of synthetic strontium-rich potassium-richterites European Journal of Mineralogy 5 199-20619930293
0006476RichteriteRobert J-L, Della Ventura G, Raudsepp M, Hawthorne F C (1993) Rietveld structure refinement of synthetic strontium-rich potassium-richterites European Journal of Mineralogy 5 199-20619930293
0006475RichteriteRobert J-L, Della Ventura G, Raudsepp M, Hawthorne F C (1993) Rietveld structure refinement of synthetic strontium-rich potassium-richterites European Journal of Mineralogy 5 199-20619930293
0006468RichteriteOberti R, Hawthorne F C, Ungaretti L, Cannillo E (1993) The behaviour of Mn in amphiboles: Mn in richerite European Journal of Mineralogy 5 43-5119930293
0006467RichteriteOberti R, Hawthorne F C, Ungaretti L, Cannillo E (1993) The behaviour of Mn in amphiboles: Mn in richerite European Journal of Mineralogy 5 43-5119930293
0006466RichteriteOberti R, Hawthorne F C, Ungaretti L, Cannillo E (1993) The behaviour of Mn in amphiboles: Mn in richerite European Journal of Mineralogy 5 43-5119930293
0006465RichteriteOberti R, Hawthorne F C, Ungaretti L, Cannillo E (1993) The behaviour of Mn in amphiboles: Mn in richerite European Journal of Mineralogy 5 43-5119930293
0006464RichteriteOberti R, Hawthorne F C, Ungaretti L, Cannillo E (1993) The behaviour of Mn in amphiboles: Mn in richerite European Journal of Mineralogy 5 43-5119930293
0001614RichteriteDella Ventura G, Robert J-L, Beny J-M, Raudsepp M, Hawthorne F C (1993) The OH-F substitution in Ti-rich potassium richterite: Rietveld structure refinement and FTIR and micro-Raman spectroscopic studies of synthetic amphiboles in the system K2O-Na2O-CaO-MgO-SiO2-TiO2-H2O-HF Sample Rich63 Atomic parameters from ICSD American Mineralogist 78 980-98719930293
0001613RichteriteDella Ventura G, Robert J-L, Beny J-M, Raudsepp M, Hawthorne F C (1993) The OH-F substitution in Ti-rich potassium richterite: Rietveld structure refinement and FTIR and micro-Raman spectroscopic studies of synthetic amphiboles in the system K2O-Na2O-CaO-MgO-SiO2-TiO2-H2O-HF Sample Rich62 Atomic parameters from ICSD American Mineralogist 78 980-98719930293
0001612RichteriteDella Ventura G, Robert J-L, Beny J-M, Raudsepp M, Hawthorne F C (1993) The OH-F substitution in Ti-rich potassium richterite: Rietveld structure refinement and FTIR and micro-Raman spectroscopic studies of synthetic amphiboles in the system K2O-Na2O-CaO-MgO-SiO2-TiO2-H2O-HF Sample Rich61 Atomic parameters from ICSD American Mineralogist 78 980-98719930293
0001611RichteriteDella Ventura G, Robert J-L, Beny J-M, Raudsepp M, Hawthorne F C (1993) The OH-F substitution in Ti-rich potassium richterite: Rietveld structure refinement and FTIR and micro-Raman spectroscopic studies of synthetic amphiboles in the system K2O-Na2O-CaO-MgO-SiO2-TiO2-H2O-HF Sample Rich60 Atomic parameters from ICSD American Mineralogist 78 980-98719930293
0001610RichteriteDella Ventura G, Robert J-L, Beny J-M, Raudsepp M, Hawthorne F C (1993) The OH-F substitution in Ti-rich potassium richterite: Rietveld structure refinement and FTIR and micro-Raman spectroscopic studies of synthetic amphiboles in the system K2O-Na2O-CaO-MgO-SiO2-TiO2-H2O-HF Sample Rich59 Atomic parameters from ICSD American Mineralogist 78 980-98719930293
0001609RichteriteDella Ventura G, Robert J-L, Beny J-M, Raudsepp M, Hawthorne F C (1993) The OH-F substitution in Ti-rich potassium richterite: Rietveld structure refinement and FTIR and micro-Raman spectroscopic studies of synthetic amphiboles in the system K2O-Na2O-CaO-MgO-SiO2-TiO2-H2O-HF Sample Rich58 Atomic parameters from ICSD American Mineralogist 78 980-98719930293
0001584RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C (1993) Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Atomic parameters from ICSD American Mineralogist 78 633-64019930293
0001583RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C (1993) Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Atomic parameters from ICSD American Mineralogist 78 633-64019930293
0001582RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C (1993) Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Atomic parameters from ICSD American Mineralogist 78 633-64019930293
0001581RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C (1993) Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Atomic parameters from ICSD American Mineralogist 78 633-64019930293
0001580RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C (1993) Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Atomic parameters from ICSD American Mineralogist 78 633-64019930293
0001579RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C (1993) Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Atomic parameters from ICSD American Mineralogist 78 633-64019930293
0001578RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C (1993) Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Atomic parameters from ICSD American Mineralogist 78 633-64019930293
0001577RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C (1993) Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Atomic parameters from ICSD American Mineralogist 78 633-64019930293
0001576RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C (1993) Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Atomic parameters from ICSD American Mineralogist 78 633-64019930293
0001575RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C (1993) Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Atomic parameters from ICSD American Mineralogist 78 633-64019930293
0001574RichteriteDella Ventura G, Robert J-L, Raudsepp M, Hawthorne F C (1993) Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Atomic parameters from ICSD American Mineralogist 78 633-64019930293
0001598ArfvedsoniteHawthorne F C, Ungaretti L, Oberti R, Bottazzi P, Czamanske G K (1993) Li: an important component in igneous alkali amphiboles American Mineralogist 78 733-74519930293
0006446RichteriteOberti R, Ungaretti L, Cannillo E, Hawthorne F C (1992) The behaviour of Ti in amphiboles: I. Four- and six-coordinate Ti in richterite European Journal of Mineralogy 4 425-43919920293
0006445RichteriteOberti R, Ungaretti L, Cannillo E, Hawthorne F C (1992) The behaviour of Ti in amphiboles: I. Four- and six-coordinate Ti in richterite European Journal of Mineralogy 4 425-43919920293
0006444RichteriteOberti R, Ungaretti L, Cannillo E, Hawthorne F C (1992) The behaviour of Ti in amphiboles: I. Four- and six-coordinate Ti in richterite European Journal of Mineralogy 4 425-43919920293
0006443RichteriteOberti R, Ungaretti L, Cannillo E, Hawthorne F C (1992) The behaviour of Ti in amphiboles: I. Four- and six-coordinate Ti in richterite European Journal of Mineralogy 4 425-43919920293
0006442RichteriteOberti R, Ungaretti L, Cannillo E, Hawthorne F C (1992) The behaviour of Ti in amphiboles: I. Four- and six-coordinate Ti in richterite European Journal of Mineralogy 4 425-43919920293
0006441RichteriteOberti R, Ungaretti L, Cannillo E, Hawthorne F C (1992) The behaviour of Ti in amphiboles: I. Four- and six-coordinate Ti in richterite European Journal of Mineralogy 4 425-43919920293
0006440RichteriteOberti R, Ungaretti L, Cannillo E, Hawthorne F C (1992) The behaviour of Ti in amphiboles: I. Four- and six-coordinate Ti in richterite European Journal of Mineralogy 4 425-43919920293
0006439RichteriteOberti R, Ungaretti L, Cannillo E, Hawthorne F C (1992) The behaviour of Ti in amphiboles: I. Four- and six-coordinate Ti in richterite European Journal of Mineralogy 4 425-43919920293
0006438RichteriteOberti R, Ungaretti L, Cannillo E, Hawthorne F C (1992) The behaviour of Ti in amphiboles: I. Four- and six-coordinate Ti in richterite European Journal of Mineralogy 4 425-43919920293
0006419PargasiteComodi P, Mellini M, Ungaretti L, Zanazzi P F (1991) Compressibility and high pressure structure refinement of tremolite, pargasite and glaucophane European Journal of Mineralogy 3 485-49919910293
0006418PargasiteComodi P, Mellini M, Ungaretti L, Zanazzi P F (1991) Compressibility and high pressure structure refinement of tremolite, pargasite and glaucophane European Journal of Mineralogy 3 485-49919910293
0006417GlaucophaneComodi P, Mellini M, Ungaretti L, Zanazzi P F (1991) Compressibility and high pressure structure refinement of tremolite, pargasite and glaucophane European Journal of Mineralogy 3 485-49919910293
0006416GlaucophaneComodi P, Mellini M, Ungaretti L, Zanazzi P F (1991) Compressibility and high pressure structure refinement of tremolite, pargasite and glaucophane European Journal of Mineralogy 3 485-49919910293
0006415GlaucophaneComodi P, Mellini M, Ungaretti L, Zanazzi P F (1991) Compressibility and high pressure structure refinement of tremolite, pargasite and glaucophane European Journal of Mineralogy 3 485-49919910293
0001270PargasiteMakino K, Tomita K (1989) Cation distribution in the octahedral sites of hornblendes sample P-P from Parau Island American Mineralogist 74 1097-110519890293
0001268PargasiteMakino K, Tomita K (1989) Cation distribution in the octahedral sites of hornblendes sample E-P from Einstodingen, Antarctica American Mineralogist 74 1097-110519890293
0001267PargasiteMakino K, Tomita K (1989) Cation distribution in the octahedral sites of hornblendes sample I-P from Iratsu, Japan American Mineralogist 74 1097-110519890293
0001269HastingsiteMakino K, Tomita K (1989) Cation distribution in the octahedral sites of hornblendes sample O-H from Obira, Japan American Mineralogist 74 1097-110519890293
0001085PargasiteRaudsepp M, Turnock A C, Hawthorne F C, Sherriff B L, Hartman J S (1987) Characterization of synthetic pargasitic amphiboles (NaCa2Mg4M3+Si6Al2O22(OH,F)2; M3+ = Al,Cr,Ga,Sc,In) by infrared spectroscopy, Rietveld structure refinement, and 27Al, 29Si, and 19F MAS NMR spectroscopy American Mineralogist 72 580-59319870293
0001084PargasiteRaudsepp M, Turnock A C, Hawthorne F C, Sherriff B L, Hartman J S (1987) Characterization of synthetic pargasitic amphiboles (NaCa2Mg4M3+Si6Al2O22(OH,F)2; M3+ = Al,Cr,Ga,Sc,In) by infrared spectroscopy, Rietveld structure refinement, and 27Al, 29Si, and 19F MAS NMR spectroscopy American Mineralogist 72 580-59319870293
0001083PargasiteRaudsepp M, Turnock A C, Hawthorne F C, Sherriff B L, Hartman J S (1987) Characterization of synthetic pargasitic amphiboles (NaCa2Mg4M3+Si6Al2O22(OH,F)2; M3+ = Al,Cr,Ga,Sc,In) by infrared spectroscopy, Rietveld structure refinement, and 27Al, 29Si, and 19F MAS NMR spectroscopy American Mineralogist 72 580-59319870293
0001082PargasiteRaudsepp M, Turnock A C, Hawthorne F C, Sherriff B L, Hartman J S (1987) Characterization of synthetic pargasitic amphiboles (NaCa2Mg4M3+Si6Al2O22(OH,F)2; M3+ = Al,Cr,Ga,Sc,In) by infrared spectroscopy, Rietveld structure refinement, and 27Al, 29Si, and 19F MAS NMR spectroscopy American Mineralogist 72 580-59319870293
0001081PargasiteRaudsepp M, Turnock A C, Hawthorne F C, Sherriff B L, Hartman J S (1987) Characterization of synthetic pargasitic amphiboles (NaCa2Mg4M3+Si6Al2O22(OH,F)2; M3+ = Al,Cr,Ga,Sc,In) by infrared spectroscopy, Rietveld structure refinement, and 27Al, 29Si, and 19F MAS NMR spectroscopy American Mineralogist 72 580-59319870293
0007426WinchiteGhose S, Kersten M, Langer K, Rossi G, Ungaretti L (1986) Crystal field spectra and Jahn Teller effect of Mn3+ in clinopyroxene and clinoamphiboles from India Physics and Chemistry of Minerals 13 291-30519860293
0007427Magnesio-arfvedsoniteGhose S, Kersten M, Langer K, Rossi G, Ungaretti L (1986) Crystal field spectra and Jahn Teller effect of Mn3+ in clinopyroxene and clinoamphiboles from India Physics and Chemistry of Minerals 13 291-30519860293
0005126ArfvedsoniteHawthorne F C (1976) The crystal chemistry of the amphiboles: V. The structure and chemistry of arfvedsonite The Canadian Mineralogist 14 346-35619760293
0000182GlaucophanePapike J J, Clark J R (1968) The crystal structure and cation distribution of glaucophane American Mineralogist 53 1156-117319680293
0019554BarroisiteHeritsch H, Paulitsch P, Walitzi E M (1957) Die Struktur von Karinthin und einer barroisitischen Hornblende Tschermaks Mineralogische und Petrographische Mitteilungen 6 215-2219570293
0000918Fluoro-richteriteCameron M, Sueno S, Papike J J, Prewitt C T (1983) High temperature crystal chemistry of K and Na fluor-richterites American Mineralogist 68 924-94319830673
0000913Fluoro-richteriteCameron M, Sueno S, Papike J J, Prewitt C T (1983) High temperature crystal chemistry of K and Na fluor-richterites American Mineralogist 68 924-94319830673
0000919Fluoro-richteriteCameron M, Sueno S, Papike J J, Prewitt C T (1983) High temperature crystal chemistry of K and Na fluor-richterites American Mineralogist 68 924-94319830873
0000914Fluoro-richteriteCameron M, Sueno S, Papike J J, Prewitt C T (1983) High temperature crystal chemistry of K and Na fluor-richterites American Mineralogist 68 924-94319830873
0000920Fluoro-richteriteCameron M, Sueno S, Papike J J, Prewitt C T (1983) High temperature crystal chemistry of K and Na fluor-richterites American Mineralogist 68 924-943198301073
0000915Fluoro-richteriteCameron M, Sueno S, Papike J J, Prewitt C T (1983) High temperature crystal chemistry of K and Na fluor-richterites American Mineralogist 68 924-943198301073
0000916Fluoro-richteriteCameron M, Sueno S, Papike J J, Prewitt C T (1983) High temperature crystal chemistry of K and Na fluor-richterites American Mineralogist 68 924-943198301173
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