American Mineralogist Crystal Structure Database

9 matching records for this search.

Fluor-schorl
 
Bloodaxe E S, Hughes J M, Dyar M D, Grew E S, Guidotti C V
Download am/vol84/AM84_922.pdf
American Mineralogist 84 (1999) 922-928
Linking structure and chemistry in the schorl-dravite series
Sample DLux1
Locality: Sebago Granite, North Windham, Oxford County, Maine, USA
_database_code_amcsd 0002239
15.963 15.963 7.154 90 90 120 R3m
atom      x      y     z  occ B(1,1) B(2,2) B(3,3)  B(1,2)  B(1,3)   B(2,3)
NaX       0      0   .25 .608  .0025  .0025  .0086  .00125       0        0
CaX       0      0   .25 .031  .0025  .0025  .0086  .00125       0        0
KX        0      0   .25 .030  .0025  .0025  .0086  .00125       0        0
FeY  .27084 .54168 .3124 .588 .00006 .00019  .0052 .000095  .00026   .00052
MnY  .27084 .54168 .3124 .005 .00006 .00019  .0052 .000095  .00026   .00052
AlY  .27084 .54168 .3124 .368 .00006 .00019  .0052 .000095  .00026   .00052
TiY  .27084 .54168 .3124 .027 .00006 .00019  .0052 .000095  .00026   .00052
LiY  .27084 .54168 .3124 .007 .00006 .00019  .0052 .000095  .00026   .00052
AlZ  .29845 .26173 .6288 .912 .00020 .00032  .0016  .00010 -.00008    .0001
MgZ  .29845 .26173 .6288 .088 .00020 .00032  .0016  .00010 -.00008    .0001
SiT  .19187 .18987 .0179      .00074 .00072  .0025 .000355 -.00005 -.000105
B     .1103  .2206 .4716       .0010  .0013  .0032  .00065   .0002    .0004
O1        0      0 .7972 .445  .0035  .0035  .0032  .00175       0        0
F1        0      0 .7972 .355  .0035  .0035  .0032  .00175       0        0
OH1       0      0 .7972 .200  .0035  .0035  .0032  .00175       0        0
O2    .0617  .1234 .5035       .0024  .0011  .0044  .00055   .0003    .0006
OH3   .2681 .13405 .5275       .0023  .0015  .0032  .00115   .0003   .00015
O4    .0928  .1856 .0864      .00099  .0019  .0043  .00095  -.0002   -.0004
O5    .1866  .0933 .1081       .0017 .00086  .0042  .00085   .0004    .0002
O6    .1976  .1871 .7931      .00126 .00125  .0033  .00065 -.00005  -.00015
O7    .2852  .2860 .0969      .00092 .00087  .0039  .00022  -.0002   -.0002
O8    .2099  .2703 .4586      .00089 .00119  .0050 .000545   .0003    .0005
Download AMC data (View Text File)
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View JMOL 3-D Structure (permalink)
 
Fluor-schorl
 
Bloodaxe E S, Hughes J M, Dyar M D, Grew E S, Guidotti C V
Download am/vol84/AM84_922.pdf
American Mineralogist 84 (1999) 922-928
Linking structure and chemistry in the schorl-dravite series
Sample SmFalls
Locality: Small Falls pegmatite, Rumford, Oxford County, Maine, USA
_database_code_amcsd 0002243
15.934 15.934 7.167 90 90 120 R3m
atom      x      y     z  occ B(1,1) B(2,2) B(3,3)  B(1,2)  B(1,3)  B(2,3)
NaX       0      0   .25 .684  .0024  .0024  .0096   .0012       0       0
CaX       0      0   .25 .016  .0024  .0024  .0096   .0012       0       0
KX        0      0   .25 .015  .0024  .0024  .0096   .0012       0       0
Fe2Y .27098 .54196 .3130 .307 .00053 .00070  .0039  .00035 .000295  .00059
MgY  .27098 .54196 .3130 .201 .00053 .00070  .0039  .00035 .000295  .00059
MnY  .27098 .54196 .3130 .006 .00053 .00070  .0039  .00035 .000295  .00059
AlY  .27098 .54196 .3130 .423 .00053 .00070  .0039  .00035 .000295  .00059
Fe3Y .27098 .54196 .3130 .042 .00053 .00070  .0039  .00035 .000295  .00059
TiY  .27098 .54196 .3130 .008 .00053 .00070  .0039  .00035 .000295  .00059
VY   .27098 .54196 .3130 .002 .00053 .00070  .0039  .00035 .000295  .00059
LiY  .27098 .54196 .3130 .002 .00053 .00070  .0039  .00035 .000295  .00059
AlZ  .29811 .26160 .6279 .883 .00060 .00059  .0022 .000295 -.00006  .00000
MgZ  .29811 .26160 .6279 .117 .00060 .00059  .0022 .000295 -.00006  .00000
SiT  .19185 .18983 .0170      .00066 .00066 .00249  .00032  .00001 -.00006
B     .1096  .2192 .4704       .0011  .0009  .0024  .00045  .00005   .0001
O1        0      0 .7915 .465  .0027  .0027  .0046  .00135       0       0
F1        0      0 .7915 .301  .0027  .0027  .0046  .00135       0       0
OH1       0      0 .7915 .234  .0027  .0027  .0046  .00135       0       0
O2    .0616  .1232 .5035       .0019  .0010  .0060   .0005   .0001   .0002
OH3   .2651 .13255 .5271       .0027 .00124  .0034  .00135  -.0002  -.0001
O4    .0931  .1862 .0863      .00083  .0018  .0047   .0009  .00005   .0001
O5    .1861 .09305 .1087       .0017 .00081  .0045  .00085  .00045 .000225
O6    .1967  .1862 .7925      .00126 .00128  .0029 .000725 -.00005 -.00025
O7    .2853  .2857 .0954      .00082 .00086  .0034  .00021  -.0002 -.00025
O8    .2097  .2701 .4572      .00076 .00130  .0054  .00065 -.00005  .00045
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View JMOL 3-D Structure (permalink)
 
Fluor-schorl
 
Ertl A, Kolitsch U, Dyar M D, Hughes J M, Rossman G R, Pieczka A, Henry D J,
Pezzotta F, Prowatke S, Lengauer C L, Korner W, Brandstatter F,
Francis C A, Prem M, Tillmanns E
 
American Mineralogist 97 (2012) 1402-1416
Limitations of Fe2+ and Mn2+ site occupancy in tourmaline:
Evidence from Fe2+ - and Mn2+ -rich tourmaline
Note: sample bls1
Locality: Blocherleitengraben, Lower Austria
_database_code_amcsd 0019249
16.0393 16.0393 7.2536 90 90 120 R3m
atom      x       y     z  occ   Uiso U(1,1) U(2,2) U(3,3) U(1,2)  U(1,3)  U(2,3)
NaX       0       0   .75  .94  .0232  .0223  .0223  .0252  .0111       0       0
CaX       0       0   .75  .06  .0232  .0223  .0223  .0252  .0111       0       0
AlY  .87678 .938390 .3393 .171 .01064 .01091 .00810 .01386 .00546 -.00379 -.00189
FeY  .87678 .938390 .3393 .829 .01064 .01091 .00810 .01386 .00546 -.00379 -.00189
AlZ  .70130  .73828 .3619 .797 .00771 .00729 .00751 .00779 .00330      04  .00052
FeZ  .70130  .73828 .3619 .203 .00771 .00729 .00751 .00779 .00330      04  .00052
SiT  .80868  .81039 .9732      .00755 .00706 .00672 .00890 .00349 -.00056 -.00061
B    .88976  .77952 .5194       .0102  .0102  .0096  .0107  .0048   .0007   .0014
O1        0       0 .1895  .47  .0219  .0258  .0258  .0141  .0129       0       0
OH1       0       0 .1895  .23  .0219  .0258  .0258  .0141  .0129       0       0
F1        0       0 .1895  .30  .0219  .0258  .0258  .0141  .0129       0       0
O2   .93852  .87704 .4919       .0144  .0164  .0092  .0151  .0046   .0003   .0007
O3   .73317  .86659 .4614       .0171  .0255  .0185  .0098  .0127   .0031   .0015
O4   .90743  .81485 .9047       .0130  .0107  .0186  .0122  .0093  -.0007  -.0014
O5   .81543  .90772 .8840       .0130  .0187  .0105  .0126  .0094   .0015   .0008
O6   .80337  .81272 .1945      .01157  .0130  .0128  .0092  .0066  -.0006  -.0009
O7   .71602  .71574 .8939      .01232  .0114  .0094  .0136  .0032  -.0035  -.0012
O8   .79074  .72986 .5317       .0150  .0088  .0140  .0224  .0058   .0011   .0024
H3     .730    .865  .583        .081
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View JMOL 3-D Structure (permalink)
 
Fluor-schorl
 
Ertl A, Kolitsch U, Dyar M D, Hughes J M, Rossman G R, Pieczka A, Henry D J,
Pezzotta F, Prowatke S, Lengauer C L, Korner W, Brandstatter F,
Francis C A, Prem M, Tillmanns E
 
American Mineralogist 97 (2012) 1402-1416
Limitations of Fe2+ and Mn2+ site occupancy in tourmaline:
Evidence from Fe2+ - and Mn2+ -rich tourmaline
Note: sample bls2
Locality: Blocherleitengraben, Lower Austria
_database_code_amcsd 0019250
16.043 16.043 7.2470 90 90 120 R3m
atom       x       y       z  occ   Uiso U(1,1) U(2,2) U(3,3) U(1,2)  U(1,3)  U(2,3)
NaX        0       0   .2214 .938  .0233  .0223  .0223  .0252  .0111       0       0
CaX        0       0   .2214 .062  .0233  .0223  .0223  .0252  .0111       0       0
FeY  .123380 .061690  .63190 .819 .00889 .00907 .00633 .01218 .00453 -.00402 -.00201
AlY  .123380 .061690  .63190 .181 .00889 .00907 .00633 .01218 .00453 -.00402 -.00201
AlZ  .298753 .261743  .60992 .818 .00578 .00549 .00554 .00589 .00243 -.00015  .00037
FeZ  .298753 .261743  .60992 .182 .00578 .00549 .00554 .00589 .00243 -.00015  .00037
SiT  .191418 .189671 -.00132      .00569 .00523 .00509 .00687 .00267 -.00073 -.00069
B     .11031  .22062   .4529       .0080  .0068  .0066  .0106  .0033   .0005   .0009
O1         0       0   .7819  .47  .0237  .0278  .0278  .0154  .0139       0       0
OH1        0       0   .7819  .23  .0237  .0278  .0278  .0154  .0139       0       0
F1         0       0   .7819  .30  .0237  .0278  .0278  .0154  .0139       0       0
O2    .06156  .12313  .48000       .0127  .0152  .0069  .0131  .0034  .00040   .0008
O3    .26778  .13389  .51011       .0148  .0230  .0159  .0077  .0115   .0026  .00131
O4    .09269  .18539  .06750      .01073  .0079  .0162  .0109  .0081 -.00049  -.0010
O5    .18477  .09238  .08793      .01057  .0156  .0076  .0112  .0078   .0012  .00061
O6    .19673  .18745  .77711      .00945  .0108  .0106  .0069  .0054  -.0006  -.0009
O7    .28411  .28447  .07804      .01003  .0087  .0075  .0112  .0021  -.0031  -.0011
O8    .20933  .27023  .44032      .01231  .0056  .0113  .0194  .0037   .0010   .0022
H3      .260    .130    .381        .055
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View JMOL 3-D Structure (permalink)
 
Fluor-schorl
 
Ertl A, Kolitsch U, Dyar M D, Hughes J M, Rossman G R, Pieczka A, Henry D J,
Pezzotta F, Prowatke S, Lengauer C L, Korner W, Brandstatter F,
Francis C A, Prem M, Tillmanns E
 
American Mineralogist 97 (2012) 1402-1416
Limitations of Fe2+ and Mn2+ site occupancy in tourmaline:
Evidence from Fe2+ - and Mn2+ -rich tourmaline
Note: sample bls2h1, heated in air at 700 C for 10 h
Locality: Blocherleitengraben, Lower Austria
_database_code_amcsd 0019251
15.917 15.917 7.2520 90 90 120 R3m
atom       x       y      z  occ   Uiso U(1,1) U(2,2) U(3,3) U(1,2)  U(1,3)  U(2,3)
NaX        0       0 .21929 .970  .0207  .0222  .0222  .0176  .0111       0       0
CaX        0       0 .21929 .030  .0207  .0222  .0222  .0176  .0111       0       0
FeY  .126210 .063105 .63391 .724 .00985 .01277 .00741 .01114 .00639 -.00559 -.00280
AlY  .126210 .063105 .63391 .276 .00985 .01277 .00741 .01114 .00639 -.00559 -.00280
AlZ  .297531  .25723 .60489 .773 .00732 .00524 .00927 .00681 .00314  .00007  .00207
FeZ  .297531  .25723 .60489 .227 .00732 .00524 .00927 .00681 .00314  .00007  .00207
SiT  .191134  .19027 .00136      .00554 .00524 .00498 .00645 .00260 -.00043 -.00055
B     .11019  .22039  .4533       .0071  .0060  .0064  .0090  .0032   .0001   .0001
O1         0       0  .7643       .0102  .0106  .0106  .0094  .0053       0       0
O2    .06080  .12160 .48499      .00948  .0101  .0057  .0112 .00284  .00012   .0002
O3    .26034  .13017 .52235      .01054  .0146  .0099  .0086  .0073  -.0003 -.00014
O4    .09408  .18815 .07761      .00968  .0072  .0140  .0101  .0070 -.00037  -.0007
O5    .18202  .09101 .08532      .01018  .0153  .0075  .0103  .0077   .0015  .00076
O6    .19188  .18634 .77885      .00846  .0093  .0091  .0061  .0041  -.0005  -.0007
O7    .28586  .28515 .07673      .00855  .0070  .0069  .0093  .0017  -.0012  -.0010
O8    .20932  .27020 .44018      .00910  .0054  .0089  .0129  .0034   .0005   .0024
Download AMC data (View Text File)
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View JMOL 3-D Structure (permalink)
 
Fluor-schorl
 
Ertl A, Kolitsch U, Dyar M D, Hughes J M, Rossman G R, Pieczka A, Henry D J,
Pezzotta F, Prowatke S, Lengauer C L, Korner W, Brandstatter F,
Francis C A, Prem M, Tillmanns E
 
American Mineralogist 97 (2012) 1402-1416
Limitations of Fe2+ and Mn2+ site occupancy in tourmaline:
Evidence from Fe2+ - and Mn2+ -rich tourmaline
Note: sample bls2h2, heated a second time in air at 750 C for 72 h
Locality: Blocherleitengraben, Lower Austria
_database_code_amcsd 0019252
15.918 15.918 7.2600 90 90 120 R3m
atom       x       y      z  occ   Uiso U(1,1) U(2,2) U(3,3) U(1,2)  U(1,3)  U(2,3)
NaX        0       0  .2199 .971  .0209  .0224  .0224  .0178  .0112       0       0
CaX        0       0  .2199 .029  .0209  .0224  .0224  .0178  .0112       0       0
FeY   .12583 .062916 .63456 .676 .00990 .01256 .00763 .01116 .00628 -.00515 -.00257
AlY   .12583 .062916 .63456 .324 .00990 .01256 .00763 .01116 .00628 -.00515 -.00257
AlZ  .297414  .25699 .60442 .751 .00767 .00541 .00953 .00728 .00314  .00017  .00223
FeZ  .297414  .25699 .60442 .249 .00767 .00541 .00953 .00728 .00314  .00017  .00223
SiT   .19105  .19018 .00121      .00590 .00562 .00553 .00662 .00284 -.00037 -.00057
B     .11011  .22023  .4532       .0079  .0075  .0067  .0094  .0033   .0002   .0003
O1         0       0  .7627       .0100  .0096  .0096  .0106  .0048       0       0
O2    .06072  .12143 .48567       .0100  .0102  .0064  .0121  .0032  .00010   .0002
O3    .25949  .12974 .52253       .0109  .0143  .0103  .0094  .0072  -.0001  -.0001
O4    .09423  .18846 .07786       .0102  .0077  .0146  .0106  .0073 -.00054  -.0011
O5    .18185  .09092 .08526       .0106  .0156  .0081  .0107  .0078   .0013   .0007
O6    .19142  .18593 .77868      .00888  .0101  .0095  .0065  .0045  -.0007  -.0006
O7    .28587  .28509 .07625      .00898  .0075  .0072  .0099  .0019  -.0011  -.0013
O8    .20918  .26999 .43951      .00993  .0060  .0090  .0142  .0033   .0004   .0023
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View JMOL 3-D Structure (permalink)
 
Fluor-schorl
 
Ertl A, Kolitsch U, Prowatke S, Dyar M D, Henry D J
 
European Journal of Mineralogy 18 (2006) 583-588
The F-analogue of schorl from Grasstein, Trentino - South Tyrol, Italy: crystal
structure and chemistry
Locality: pegmatite at Grasstein, Trentino-South Tyrol, Italy
_database_code_amcsd 0007165
15.997 15.997 7.179 90 90 120 R3m
atom       x       y      z occ   Uiso
NaX        0       0  .2295 .78  .0243
KX         0       0  .2295 .01  .0243
Fe2+Y .12643 .063214 .62633 .63 .00763
AlY   .12643 .063214 .62633 .19 .00763
Fe3+Y .12643 .063214 .62633 .04 .00763
Mn2+Y .12643 .063214 .62633 .04 .00763
Ti4+Y .12643 .063214 .62633 .01 .00763
MgY   .12643 .063214 .62633 .01 .00763
ZnY   .12643 .063214 .62633 .01 .00763
AlZ   .29899  .26186 .61246 .96 .00545
FeZ   .29899  .26186 .61246 .04 .00545
SiT   .19174  .18983 .00079 .98 .00480
AlT   .19174  .18983 .00079 .02 .00480
B     .11013  .22027  .4567      .0066
O2    .06163  .12325 .48601      .0146
Oh3V  .26992  .13496 .51180      .0125
FW         0       0  .7848 .76  .0408
OHW        0       0  .7848 .24  .0408
O4    .09295  .18590 .06917      .0091
O5    .18634  .09317 .09123     .00924
O6    .19797  .18804 .77760     .00828
O7    .28469  .28525 .08089     .00796
O8    .20979  .27035 .44298     .00962
H       .255   .1276   .385       .049
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View JMOL 3-D Structure (permalink)
 
Fluor-schorl
 
Ertl A, Kolitsch U, Prowatke S, Dyar M D, Henry D J
 
European Journal of Mineralogy 18 (2006) 583-588
The F-analogue of schorl from Grasstein, Trentino - South Tyrol, Italy: crystal
structure and chemistry
Locality: pegmatite at Grasstein, Trentino-South Tyrol, Italy
_database_code_amcsd 0007165
15.997 15.997 7.179 90 90 120 R3m
atom       x       y      z occ   Uiso
NaX        0       0  .2295 .78  .0243
KX         0       0  .2295 .01  .0243
Fe2+Y .12643 .063214 .62633 .63 .00763
AlY   .12643 .063214 .62633 .19 .00763
Fe3+Y .12643 .063214 .62633 .04 .00763
Mn2+Y .12643 .063214 .62633 .04 .00763
Ti4+Y .12643 .063214 .62633 .01 .00763
MgY   .12643 .063214 .62633 .01 .00763
ZnY   .12643 .063214 .62633 .01 .00763
AlZ   .29899  .26186 .61246 .96 .00545
FeZ   .29899  .26186 .61246 .04 .00545
SiT   .19174  .18983 .00079 .98 .00480
AlT   .19174  .18983 .00079 .02 .00480
B     .11013  .22027  .4567      .0066
O2    .06163  .12325 .48601      .0146
Oh3V  .26992  .13496 .51180      .0125
FW         0       0  .7848 .76  .0408
OHW        0       0  .7848 .24  .0408
O4    .09295  .18590 .06917      .0091
O5    .18634  .09317 .09123     .00924
O6    .19797  .18804 .77760     .00828
O7    .28469  .28525 .08089     .00796
O8    .20979  .27035 .44298     .00962
H       .255   .1276   .385       .049
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Fluor-schorl
 
Ertl A, Schuster R, Hughes J M, Ludwig T, Meyer H-P,
Finger F, Dyar M D, Ruschel K, Rossman G R, Klotzli U,
Brandstatter F, Lengauer C L, Tillmanns E
 
European Journal of Mineralogy 24 (2012) 695-715
Li-bearing tourmalines in Variscan granitic pegmatites
from the Moldanubian nappes, Lower Austria
Note: Sample TK12
Locality: Konigsalm, Moldanubian nappes, Lower Austria
_database_code_amcsd 0019398
15.987 15.987 7.163 90 90 120 R3m
atom       x       y      z  occ   Uiso
NaX        0       0  .2498  .76  .0249
CaX        0       0  .2498  .05  .0249
KX         0       0  .2498  .01  .0249
Fe2+Y .12555 .062775 .35054 .598 .01047
AlY   .12555 .062775 .35054 .207 .01047
MnY   .12555 .062775 .35054 .063 .01047
Ti4+Y .12555 .062775 .35054 .040 .01047
Mn2+Y .12555 .062775 .35054 .033 .01047
Fe3+Y .12555 .062775 .35054 .030 .01047
LiY   .12555 .062775 .35054 .023 .01047
ZnY   .12555 .062775 .35054 .003 .01047
AlZ   .29863  .26179 .36581 .960  .0070
MgZ   .29863  .26179 .36581 .038  .0070
Fe3+Z .29863  .26179 .36581 .002  .0070
SiT   .01919  .18998 .02289 .962  .0078
AlT   .01919  .18998 .02289 .035  .0078
BT    .01919  .18998 .02289 .003  .0078
B     .11023  .22046  .4774       .0100
F1         0       0  .1934  .58   .041
OH1        0       0  .1934  .18   .041
O1         0       0  .1934  .24   .041
O2    .06176  .12352  .5069       .0172
O3     .2695  .13475  .4669       .0144
H3      .270    .135   .585         .19
O4    .09310  .18620  .0914       .0125
O5     .1868   .0934  .1142       .0127
O6    .19796  .18793  .2011       .0110
O7    .28509  .28556  .1028       .0106
O8    .20990  .27070  .4643       .0122
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Multiple datasets can be downloaded as individual files inside a ZIP archive by selecting the datasets and then clicking

Total number of retrieved datasets: 9
View in amc, download in amc

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