Seidozerite Supergroup
A group of related mineral species
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About Seidozerite Supergroup
Formula:
AP2DP2MH2MO4(Si2O7)2X4+n
MH2 and MO4 are cations of the H and O sheets;
MH is Ti, Nb, Zr, Y, Mn, Ca + REE, Ca;
MO is Ti, Zr, Nb, Fe3+, Fe2+, Mg, Mn, Zn, Ca, Na;
AP and DP are cations at the peripheral (P) sites: Na, Ca + REE, Ca, Zn, Ba, Sr, K; X are anions: O, OH, F, H2O;
MH is Ti, Nb, Zr, Y, Mn, Ca + REE, Ca;
MO is Ti, Zr, Nb, Fe3+, Fe2+, Mg, Mn, Zn, Ca, Na;
AP and DP are cations at the peripheral (P) sites: Na, Ca + REE, Ca, Zn, Ba, Sr, K; X are anions: O, OH, F, H2O;
The Seidozerite supergroup is divided into four groups: rinkite group, bafertisite group, lamprophyllite group and murmanite group.
The four groups are characterized by having a Ti (+ Nb + Zr + Fe3+ + Mg + Mn) sum of 1, 2, 3 and 4 atoms per formula unit, respectively.
The minerals consist of titanosilicate (TS) and intermediate (I) blocks.
The four groups are characterized by having a Ti (+ Nb + Zr + Fe3+ + Mg + Mn) sum of 1, 2, 3 and 4 atoms per formula unit, respectively.
The minerals consist of titanosilicate (TS) and intermediate (I) blocks.
Unique Identifiers
Mindat ID:
50368
Long-form identifier:
mindat:1:1:50368:2
IMA Classification of Seidozerite Supergroup
IMA status notes:
IMA Approved Group Name
Approval year:
2016
Approval history:
Established by IMA in aug. 2016.
Chemistry of Seidozerite Supergroup
Mindat Formula:
AP2DP2MH2MO4(Si2O7)2X4+n
MH2 and MO4 are cations of the H and O sheets;
MH is Ti, Nb, Zr, Y, Mn, Ca + REE, Ca;
MO is Ti, Zr, Nb, Fe3+, Fe2+, Mg, Mn, Zn, Ca, Na;
AP and DP are cations at the peripheral (P) sites: Na, Ca + REE, Ca, Zn, Ba, Sr, K; X are anions: O, OH, F, H2O;
MH2 and MO4 are cations of the H and O sheets;
MH is Ti, Nb, Zr, Y, Mn, Ca + REE, Ca;
MO is Ti, Zr, Nb, Fe3+, Fe2+, Mg, Mn, Zn, Ca, Na;
AP and DP are cations at the peripheral (P) sites: Na, Ca + REE, Ca, Zn, Ba, Sr, K; X are anions: O, OH, F, H2O;
Chemical Analysis
Oxide wt%:
| 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | |
|---|---|---|---|---|---|---|---|---|---|---|
| SiO2 | 30.50 % | 30.71 % | 28.64 % | 30.51 % | 31.53 % | 31.19 % | 29.85 % | 29.96 % | 25.55 % | 29.79 % |
| Al2O3 | 0.05 % | 0.40 % | 0.05 % | 0.56 % | 0.04 % | 0.16 % | ||||
| TiO2 | 8.16 % | 5.33 % | 8.89 % | 6.83 % | 6.07 % | 8.42 % | 4.51 % | 8.01 % | 31.17 % | 27.85 % |
| ZrO2 | 3.96 % | 7.43 % | 1.45 % | 15.86 % | 18.69 % | 11.90 % | 31.63 % | 2.72 % | 2.31 % | |
| HfO2 | 0.08 % | 0.34 % | 0.09 % | |||||||
| Nb2O5 | 1.23 % | 2.25 % | 1.85 % | 0.06 % | 2.25 % | 6.69 % | 0.71 % | |||
| Ta2O5 | 0.03 % | 0.06 % | 0.02 % | |||||||
| MnO | 0.73 % | 0.45 % | 0.60 % | 1.08 % | 1.85 % | 4.92 % | 8.25 % | 1.31 % | 2.64 % | 3.52 % |
| FeO | 0.69 % | 0.25 % | 0.28 % | 2.01 % | 6.63 % | |||||
| CaO | 29.64 % | 22.53 % | 24.74 % | 24.54 % | 25.38 % | 21.39 % | 1.84 % | 24.98 % | 1.68 % | 0.15 % |
| SrO | 0.08 % | 0.10 % | 0.12 % | 6.09 % | ||||||
| Na2O | 7.45 % | 2.44 % | 1.06 % | 9.47 % | 10.15 % | 9.85 % | 15.43 % | 1.13 % | 5.45 % | 10.89 % |
| Y2O3 | 4.35 % | 3.52 % | 2.82 % | 1.28 % | 0.38 % | 0.22 % | 11.45 % | |||
| La2O3 | 0.63 % | 3.81 % | 0.24 % | 0.00 % | 0.22 % | |||||
| Ce2O3 | 1.67 % | 10.45 % | 8.22 % | 0.17 % | 0.57 % | 0.01 % | 0.33 % | |||
| Nd2O3 | 0.71 % | 2.13 % | 0.02 % | |||||||
| Gd2O3 | 0.20 % | 0.31 % | 0.07 % | |||||||
| Dy2O3 | 0.98 % | 0.32 % | 0.47 % | |||||||
| Er2O3 | 0.59 % | 0.39 % | 1.07 % | |||||||
| Yb2O3 | 0.74 % | 0.19 % | 0.08 % | 2.81 % | ||||||
| F | 7.81 % | 2.06 % | 2.08 % | 6.72 % | 6.70 % | 5.24 % | 2.88 % | 1.53 % | ||
| O=F | -3.29 % | -2.21 % | ||||||||
| ThO2 | 0.34 % | 1.04 % | ||||||||
| MgO | 0.63 % | 0.01 % | 0.01 % | 0.59 % | 0.20 % | |||||
| Fe2O3 | 0.56 % | 1.15 % | 0.43 % | 1.05 % | ||||||
| K2O | 0.38 % | 0.05 % | 0.02 % | 0.63 % | 1.14 % | |||||
| CeO2 | 6.34 % | |||||||||
| O=F Cl | -0.86 % | -0.88 % | ||||||||
| H2O | 7.70 % | 7.50 % | 17.0 % | 0.99 % | ||||||
| Nb2O3 | 1.40 % | |||||||||
| Pr2O3 | 1.19 % | |||||||||
| Sm2O3 | 0.26 % | |||||||||
| Cl | 0.04 % | 0.19 % | ||||||||
| F = O | -2.83 % | |||||||||
| Ti2O3 | 1.31 % | |||||||||
| La2O3 +Ce, Dy | 2.38 % | |||||||||
| Ignition loss | 0.20 % | |||||||||
| FwO | 1.08 % | |||||||||
| F=O | -2.82 % | |||||||||
| Tm2O3 | 0.25 % | |||||||||
| Lu2O3 | 0.45 % | |||||||||
| H2O | 6.75 % | |||||||||
| O=(F,Cl) | -1.25 % | |||||||||
| BaO | 16.55 % | |||||||||
| Total: | 96.99 % | 100.01 % | 96.9 % | 96.74 % | 98.71 % | 95.96 % | 96.84 % | 97.09 % | 100.38 % | 100.62 % |
Empirical formulas:
| Sample ID | Empirical Formula |
|---|---|
| 7 | (Zr1.52Mn0.46Y0.02)Σ2.00(Zr0.55Ti0.45 )Σ1.00 (Mn0.48Na0.29Fe0.23)Σ1.00(Na3.72Ca0.26)Σ3.98Si4O15.40F2.22 |
| 8 | (Y0.81Ca0.65Mn0.15Zr0.12Yb0.11Er0.04Fe3+0.04Ce0.02Dy0.02Lu0.02La0.01Tm0.01)Σ2.00((H2O)0.75Ca0.70◻0.55)Σ2.00Ca2.00(◻0.61Na0.25(H2O)0.14)Σ1.00(Ti0.76Nb0.15Zr0.09)Σ1.00[(Si3.91Al0.09)Σ4.00O14]((OH)1.56F0.44)Σ2.00((H2O)1.27F0.73)Σ2.00 |
| 9 | (Na1.65Mn0.35Ca0.28Zr0.18Mg0.14K0.13)Σ 2.73(Ti3.67Fe3+0.78Nb0.47Al0.01)Σ4.93[Si4O19.72]8.87H2O |
| 10 | Ba0.87Sr0.47Na0.28K0.20Ca0.02◻0.16)?=2(Na2.56Mn2+0.40Mg0.04)?=3(Ti2.81Fe3+0.11Nb0.04Al0.03)?=3(Si2O7)2 [(OH)0.89F0.65O0.46]?=2 |
Sample references:
Crystal Structure
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Data courtesy of the American Mineralogist Crystal Structure Database. Click on an AMCSD ID to view structure
| ID | Species | Reference | Link | Year | Locality | Pressure (GPa) | Temp (K) |
|---|---|---|---|---|---|---|---|
| 0020471 | Saamite | Camara F, Sokolova E, Abdu Y A, Hawthorne F C (2014) Saamite, Ba[]TiNbNa3Ti(Si2O7)2O2(OH)2(H2O)2, a group-III Ti-disilicate mineral from the Khibiny alkaline massif, Kola Peninsula, Russia: description and crystal structure The Canadian Mineralogist 52 745-761 | 2014 | Kirovskii mine, Khibiny alkaline massif, Kola Peninsula, Russia | 0 | 293 | |
| 0020036 | Kolskyite | Camara F, Sokolova E, Abdu Y, Hawthorne F C, Khomyakov A P (2013) Kolskyite, (Ca[_])Na2Ti4(Si2O7)2O4(H2O)7, a group-IV Ti-disilicate mineral from the Khibiny alkaline massif, Kola Peninsula, Russia: Description and crystal structure The Canadian Mineralogist 51 921-936 | 2013 | Khibiny alkaline massif, Kola Peninsula, Russia | 0 | 293 | |
| 0018995 | Kazanskyite | Camara F, Sokolova E, Hawthorne F C (2012) Kazanskyite, BaTiNbNa3Ti(Si2O7)2O2(OH)2(H2O)4, a Group-III Ti-disilicate mineral from the Khibiny alkaline massif, Kola Peninsula, Russia: description and crystal structure Mineralogical Magazine 76 473-492 | 2012 | Khibiny alkaline massif, Kola Peninsula, Russia | 0 | 293 | |
| 0018496 | Innelite | Sokolova E, Camara F, Hawthorne F C (2011) From structure topology to chemical composition. XI. Titanium silicates: crystal structures of innelite-1T and innelite-2M from the Inagli massif, Yakutia, Russia, and the crystal chemistry of innelite Mineralogical Magazine 75 2495-2518 | 2011 | Inagli massif, Yakutia, Russia | 0 | 293 | |
| 0018495 | Innelite | Sokolova E, Camara F, Hawthorne F C (2011) From structure topology to chemical composition. XI. Titanium silicates: crystal structures of innelite-1T and innelite-2M from the Inagli massif, Yakutia, Russia, and the crystal chemistry of innelite Mineralogical Magazine 75 2495-2518 | 2011 | Inagli massif, Yakutia, Russia | 0 | 293 | |
| 0014594 | Nechelyustovite | Camara F, Sokolova E (2009) From structure topology to chemical composition. X. Titanium silicates: the crystal structure and crystal chemistry of nechelyustovite, a group III Ti-disilicate mineral Khibina alkaline massif, Kola peninsula, Russia Mineralogical Magazine 73 753-775 | 2009 | hydrothermally altered pegmatite, Kirovskii mine, Mt Kukisvumchorr, | 0 | 293 | |
| 0007327 | Jinshajiangite | Sokolova E, Camara F, Hawthorne F C, Abdu Y (2009) From structure topology to chemical composition. VII. Titanium silicates: the crystal structure and crystal chemistry of jinshajiangite European Journal of Mineralogy 21 871-883 | 2009 | Norra Karr, Tonkoping province, Sweden | 0 | 293 | |
| 0019470 | Nabalamprophyllite | Sokolova E, Hawthorne F C (2008) From structure topology to chemical composition. IV. Titanium silicates: The orthorhombic polytype of nabalamprophyllite from Lovozero Massif, Kola Peninsula, Russia The Canadian Mineralogist 46 1323-1331 | ![]() | 2008 | Lovozero Massif, Kola Peninsula, Russia | 0 | 293 |
| 0019480 | Nacareniobsite-(Ce) | Sokolova E, Hawthorne F C (2008) From structure topology to chemical composition. V. Titanium silicates: The crystal chemistry of nacareniobsite-(Ce) The Canadian Mineralogist 46 1333-1342 | ![]() | 2008 | Kvanefjeld, Ilimaussaq alkaline complex, South Greenland | 0 | 293 |
| 0018519 | Murmanite | Camara F, Sokolova E, Hawthorne F C, Abdu Y (2008) From structure topology to chemical composition. IX. Titanium silicates: revision of the crystal chemistry of lomonosovite and murmanite, Group-IV minerals Mineralogical Magazine 72 1207-1228 | 2008 | Yubileynaya pegmatite vein, Karnasut Mountain, Lovozero alkaline massif | 0 | 293 | |
| 0018518 | Lomonosovite | Camara F, Sokolova E, Hawthorne F C, Abdu Y (2008) From structure topology to chemical composition. IX. Titanium silicates: revision of the crystal chemistry of lomonosovite and murmanite, Group-IV minerals Mineralogical Magazine 72 1207-1228 | 2008 | Lovozero alkaline massif, Russia | 0 | 293 | |
| 0012410 | Jinshajiangite | Rastsvetaeva R K, Chukanov N V, Rozenberg K (2008) A crystal structure of jinshajiangite from the Norra Karr complex (Sweden) Crystallography Reports 53 553-556 | 2008 | Norra Karr alkaline complex, Sweden | 0 | 293 | |
| 0006183 | Barytolamprophyllite | Sokolova E, Camara F (2008) From structure topology to chemical composition. III. Titanium silicates: The crystal chemistry of barytolamprophyllite The Canadian Mineralogist 46 403-412 | ![]() | 2008 | Mt. Yuksporr, Khibina alkaline massif, Kola Peninsula, Russia | 0 | 293 |
| 0006156 | Delindeite | Sokolova E, Camara F (2007) From structure topology to chemical composition. II. Titanium silicates: revision of the crystal structure and chemical formula of delindeite The Canadian Mineralogist 45 1247-1261 | ![]() | 2007 | Mt. Yuksporr, Khibina alkaline massif, Kola Peninsula, Russia | 0 | 293 |
| 0006066 | Sobolevite | Sokolova E, Hawthorne F C, Khomyakov A P (2005) Polyphite and sobolevite: Revision of their crystal structures The Canadian Mineralogist 43 1527-1544 | ![]() | 2005 | Khibina-Lovozero alkaline complex, Kola peninsula, Russia | 0 | 293 |
| 0006065 | Polyphite | Sokolova E, Hawthorne F C, Khomyakov A P (2005) Polyphite and sobolevite: Revision of their crystal structures The Canadian Mineralogist 43 1527-1544 | ![]() | 2005 | Khibina-Lovozero alkaline complex, Kola peninsula, Russia | 0 | 293 |
| 0007085 | Grenmarite | Bellezza M, Franzini M, Larsen A O , Merlino S, Perchiazzi N (2004) Grenmarite, a new member of the gotzenite-seidozerite-rosenbuschite group from the Langesundsfjord district, Norway: definition and crystal structure European Journal of Mineralogy 16 971-978 | 2004 | Langesundsfjord district, Norway | 0 | 293 | |
| 0006999 | Kochite | Christiansen C C, Gault R A, Grice J D, Johnsen O (2003) Kochite, a new member of the rosenbuschite group from the Werner Bjerge alkaline complex, East Greenland European Journal of Mineralogy 15 551-554 | 2003 | Werner Bjerge alkaline complex, East Greenland | 0 | 293 | |
| 0005888 | Seidozerite | Christiansen C C, Johnsen O, Makovicky E (2003) Crystal chemistry of the rosenbuschite group The Canadian Mineralogist 41 1203-1224 | ![]() | 2003 | Lovozero Complex, Kola Peninsula, Russia | 0 | 293 |
| 0005887 | Rosenbuschite | Christiansen C C, Johnsen O, Makovicky E (2003) Crystal chemistry of the rosenbuschite group The Canadian Mineralogist 41 1203-1224 | ![]() | 2003 | Langesund Fjord, Norway | 0 | 293 |
| 0007013 | Lamprophyllite | Krivovichev S V, Armbruster T, Yakovenchuk V N, Pakhomovsky Y A, Men'shikov Y P (2003) Crystal structures of lamprophyllite-2M and lamprophyllite-2O from the Lovozero alkaline massif, Kola peninsula, Russia European Journal of Mineralogy 15 711-718 | 2003 | Lovozero alkaline massif, Kola peninsula, Russia | 0 | 293 | |
| 0007012 | Lamprophyllite | Krivovichev S V, Armbruster T, Yakovenchuk V N, Pakhomovsky Y A, Men'shikov Y P (2003) Crystal structures of lamprophyllite-2M and lamprophyllite-2O from the Lovozero alkaline massif, Kola peninsula, Russia European Journal of Mineralogy 15 711-718 | 2003 | Lovozero alkaline massif, Kola peninsula, Russia | 0 | 293 | |
| 0012376 | Bussenite | Zhou H, Rastsvetaeva R K, Khomyakov A P, Ma Z, Shi N (2002) Crystal structure of new micalike titanosilicate - bussenite, Na2Ba2Fe2+[TiSi2O7][CO3]O(OH)(H2O)F Crystallography Reports 47 43-46 | 2002 | Khibiny alkaline massif, Kola Peninsula, Russia | 0 | 293 | |
| 0005582 | Vuonnemite | Ercit T S, Cooper M A, Hawthorne F C (1998) The crystal structure of vuonnemite, Na11TiNb2(Si2O7)2(PO4)2O3(F,OH), a phosphate-bearing sorosilicate of the lomonosovite group The Canadian Mineralogist 36 1311-1320 | ![]() | 1998 | Lovozero, Kola Peninsula, Russia | 0 | 293 |
| 0005581 | Vuonnemite | Ercit T S, Cooper M A, Hawthorne F C (1998) The crystal structure of vuonnemite, Na11TiNb2(Si2O7)2(PO4)2O3(F,OH), a phosphate-bearing sorosilicate of the lomonosovite group The Canadian Mineralogist 36 1311-1320 | ![]() | 1998 | Ilimaussaq, Greenland | 0 | 293 |
| 0012356 | Perraultite | Yamnova N A, Egorov-Tismenko Y K, Pekov I V (1998) Crystal structure of perraultite from the coastal region of the Sea of Azov Crystallography Reports 43 401-410 | 1998 | Sea of Azov, Mariupol massif, Ukraine | 0 | 293 | |
| 0012348 | Barytolamprophyllite | Rastsvetaeva R K, Dorfman M D (1995) Crystal structure of Ba-lamprophyllite in the isomorphous lamprophyllite- baritolamprophyllite series Crystallography Reports 40 951-954 | 1995 | Khibiny Massif | 0 | 293 | |
| 0020129 | Hejtmanite | Rastsvetaeva R K, Tamazyan R A, Sokolova E V, Belakovskii D I (1991) Crystal structures of two modifications of natural Ba, Mn-titanosilicate Soviet Physics Crystallography 36 186-189 | 1991 | Inyl'chek ridge, southeast Kirgiziya | 0 | 293 | |
| 0020128 | Hejtmanite | Rastsvetaeva R K, Tamazyan R A, Sokolova E V, Belakovskii D I (1991) Crystal structures of two modifications of natural Ba, Mn-titanosilicate Soviet Physics Crystallography 36 186-189 | 1991 | Inyl'chek ridge, southeast Kirgiziya | 0 | 293 | |
| 0015612 | Lamprophyllite | Saf'yanov Y N, Vasil'eva N O, Golovachev V P, Kuz'min E A, Belov N V (1983) The crystal structure of lamprophyllite Soviet Physics Doklady 28 207-209 | 1983 | Kola Peninsula, Russia | 0 | 293 | |
| 0015554 | Innelite | Chernov A N, Ilyukhin V V, Maksimov B A, Belov N V (1971) Crystal structure of innelite - Na2Ba3(Ba,K,Mn)(Ca,Na)Ti(TiO2)2[Si2O7]2(SO4)2 Soviet Physics Crystallography 16 65-69 | 1971 | Inaglinskii Massif, Southern Yakusk, Russia | 0 | 293 | |
| 0015550 | Seidozerite | Skszat S M, Simonov V I (1966) The structure of calcium seidozerite Soviet Physics Crystallography 10 505-508 | 1966 | Baikal area, Russia | 0 | 293 | |
| 0015546 | Rosenbuschite | Shibaeva R P, Simonov V I, Belov N V (1963) Crystal structure of the Ca,Na,Zr,Ti silicate rosenbuschite, Ca3.5Na2.5Zr(Ti,Mn,Nb)[Si2O7]2F2O(F,O) Soviet Physics Crystallography 8 406-413 | 1963 | Kol'skii Peninsula, Russia | 0 | 293 | |
| 0005940 | Epistolite | Sokolova E V, Hawthorne F C (2004) The crystal chemistry of epistolite The Canadian Mineralogist 42 797-806 | ![]() | 2004 | 0 | 293 | |
| 0005739 | Quadruphite | Sokolova E V, Hawthorne F C (2001) The crystal chemistry of the [M3_11-14] trimeric structures: From hyperagpaitic complexes to saline lakes The Canadian Mineralogist 39 1275-1294 | ![]() | 2001 | 0 | 293 | |
| 0005741 | Delindeite | Ferraris G, Ivaldi G, Pushcharovsky D Y, Zubkova N V, Pekov I V (2001) The crystal structure of delindeite, Ba2{(Na,K,_)3(Ti,Fe)[Ti2(O,OH)4Si4O14](H2O,OH)2}, a member of the mero-plesiotype bafertisite series The Canadian Mineralogist 39 1307-1316 | ![]() | 2001 | 0 | 293 | |
| 0005756 | Bornemanite | Ferraris G, Belluso E, Gula A, Soboleva S V, Ageeva O A, Borutskii B E (2001) A structure model of the layer titanosilicate bornemanite based on seidozerite and lomonosovite modules The Canadian Mineralogist 39 1665-1673 | ![]() | 2001 | 0 | 293 | |
| 0005651 | Yoshimuraite | McDonald A M, Grice J D, Chao G Y (2000) The crystal structure of yoshimuraite, a layered Ba-Mn-Ti silicophosphate, with comments on five-coordinated Ti The Canadian Mineralogist 38 649-656 | ![]() | 2000 | 0 | 293 | |
| 0018521 | Murmanite | Khalilov A D (1989) Refinement of the crystal structure of murmanite and new data on its crystal-chemical characteristics Mineralogiceskij Zhurnal 11 19-27 | 1989 | 0 | 293 | ||
| 0015586 | Murmanite | Rastsvetaeva R K, Andrianov V I (1986) New data on the crystal structure of murmanite Soviet Physics Crystallography 31 44-48 | 1986 | 0 | 293 | ||
| 0015603 | Lomonosovite | Belov N V, Gavrilova G S, Solov'eva L P, Khalilov A D (1977) The refined structure of lomonosovite Soviet Physics Doklady 22 422-424 | 1977 | 0 | 293 | ||
| 0015566 | Paralomonosovite | Rastsvetaeva R K, Sirota M I, Belov N V (1975) Crystal structure of betalomonosovite Soviet Physics Crystallography 20 158-160 | 1975 | 0 | 293 | ||
| 0012444 | Murmanite | Khalilov A D, Mamedov K S, Makarov E S, Pyanzina L A (1965) Crystal structure of murmanite Doklady Akademii Nauk SSSR 161 1409-1411 | 1965 | 0 | 293 | ||
| 0012443 | Bafertisite | Guan Y S, Simonov V I, Belov N V (1963) The crystal structure of bafertisite BaFe2TiO[Si2O7](OH)2 Doklady Akademii Nauk SSSR 149 1416-1419 | 1963 | 0 | 293 | ||
| 0015540 | Seidozerite | Simonov V I, Belov N V (1960) The determination of the structure of seidozerite Soviet Physics Crystallography 4 146-157 | 1960 | 0 | 293 |
CIF Raw Data - click here to close
Relationship of Seidozerite Supergroup to other Species
Seidozerite Supergroup Members:
| Bafertisite Group | APDPMO4MH2(Si2O7)2(XOm)2(XOa)2XPm | |
| Bafertisite | Ba2Fe2+4Ti2(Si2O7)2O2(OH)2F2 | Tric. |
| Bobshannonite | Na2KBa(Mn,Na)8(Nb,Ti)4(Si2O7)4O4(OH)4(O,F)2 | Tric. |
| Bussenite | Na2Ba2Fe2+Ti(Si2O7)(CO3)(OH)3F | Tric. 1 : P1 |
| Cámaraite | Ba3Na(Fe2+,Mn)8Ti4(Si2O7)4O4(OH,F)7 | Tric. 1 |
| Hejtmanite | Ba2Mn2+4Ti2(Si2O7)2O2(OH)2F2 | Tric. 1 |
| Horiite | Ba2Mn2Mn4Ti2(Si2O7)2(PO4)2O2(OH)2 | Tric. 1 : P1 |
| Jinshajiangite | BaNaFe2+4Ti2(Si2O7)2O2(OH)2F | Tric. 1 : P1 |
| Perraultite | BaNaMn2+4Ti2(Si2O7)2O2(OH)2F | Tric. 1 |
| Yoshimuraite | Ba2Mn2Ti(Si2O7)(PO4)O(OH) | Tric. 1 : P1 |
| Lamprophyllite Group | AP2MH2MO4(Si2O7)2(XOm)2(XOa)2 | |
| Barytolamprophyllite | (Ba,Na)2(Na,Ti,Fe3+)4Ti2(Si2O7)2O(OH,F) | Mon. |
| Bornemanite | Na6BaTi2Nb(Si2O7)2(PO4)O2(OH)F | Tric. 1 : P1 |
| Delindeite | (Na,K)2(Ba,Ca)2(Ti,Fe,Al)3(Si2O7)2O2(OH)2 · 2H2O | Mon. 2/m : B2/m |
| Emmerichite | Ba2Na(Na,Fe2+)2(Fe3+,Mg)Ti2(Si2O7)2O2F2 | Mon. 2/m : B2/m |
| Epistolite | (Na◻)Nb2Na3Ti(Si2O7)2O2(OH)2(H2O)4 | Tric. 1 : P1 |
| Fluorbarytolamprophyllite | (Ba,Sr)2[(Na,Fe2+)3(Ti,Mg)F2][Ti2(Si2O7)2O2] | Mon. 2/m : B2/m |
| Fluorlamprophyllite | Na3(SrNa)Ti3(Si2O7)2O2F2 | Mon. 2/m : B2/m |
| Innelite | Ba4Ti2Na(NaMn2+)Ti(Si2O7)2[(SO4)(PO4)]O2[O(OH)] | Tric. 1 : P1 |
| Kazanskyite | BaNa3Ti2Nb(Si2O7)2O2(OH)2(H2O)4 | Tric. 1 : P1 |
| Lamprophyllite | (Na,Mn2+)3(Sr,Na)2(Ti,Fe3+)3(Si2O7)2O2(OH,O,F)2 | Mon. 2/m |
| Lileyite | Ba2(Na,Fe,Ca)3MgTi2(Si2O7)2O2F2 | Mon. 2/m : B2/m |
| Nabalamprophyllite | (BaNa)Ti2Na3Ti(Si2O7)2O2(OH)2 | Mon. 2/m : P2/m |
| Nechelyustovite | (Ba,Sr,K)2(Na,Ti,Mn)4(Ti,Nb)2(Si2O7)2O2(O,H2O,F)2 · 4.5H2O | Mon. 2/m : B2/m |
| Phosphoinnelite | Na3Ba4Ti3(Si2O7)2(PO4,SO4)2O2F | Tric. |
| Polyphite | Na5(Na4Ca2)Ti2(Si2O7)(PO4)3O2F2 | Tric. 1 : P1 |
| Saamite | Ba◻Na3Ti2Nb(Si2O7)2O2(OH)F(H2O)2 | Tric. 1 : P1 |
| Shkatulkalite | Na2Nb2Na3Ti(Si2O7)2O2(FO)(H2O)4(H2O)3 | Tric. 1 : P1 |
| Vuonnemite | Na11Ti4+Nb2(Si2O7)2(PO4)2O3(F,OH) | Tric. |
| Zvyaginite | NaZnNb2Ti[Si2O7]2(OH,F)3(H2O)4+x (x < 1) | Tric. 1 : P1 |
| Murmanite Group | AP2MH2MO4(Si2O7)2(XOm,a)4 (XPm,a)4 | |
| Calciomurmanite | (Na,◻)2Ca(Ti,Mg,Nb)4[Si2O7]2O2(OH,O)2(H2O)4 | Tric. 1 : P1 |
| Kolskyite | CaNa2Ti4(Si2O7)2O4(H2O)7 | Tric. 1 : P1 |
| Lomonosovite | Na5Ti2(Si2O7)(PO4)O2 | Tric. 1 : P1 |
| Murmanite | Na2Ti2(Si2O7)O2 · 2H2O | Tric. 1 : P1 |
| Paralomonosovite | Na6◻4Ti4(Si2O7)2[PO3OH][PO2(OH)2]O2(OF) | Tric. 1 : P1 |
| Quadruphite | Na6Na2(CaNa)2Na2Ti2Na2Ti2(Si2O7)2(PO4)4O4F2 | Tric. 1 : P1 |
| Schüllerite | Ba2Na(Mn,Ca)(Fe3+,Mg,Fe2+)2Ti2(Si2O7)2(O,F)4 | Tric. 1 : P1 |
| Selivanovaite | NaFe3+Ti4(Si2O7)2O4(H2O)4 | Tric. 1 : P1 |
| Sobolevite | Na13Ca2Mn2Ti3(Si2O7)2(PO4)4O3F3 | Mon. m : Pb |
| Vigrishinite | NaZnTi4(Si2O7)2O3(OH)(H2O)4 | Tric. 1 : P1 |
| Rinkite Group | AP2MH2MO4(Si2O7)2(XOm)2(XOa)2 | |
| Batievaite-(Y) | Y2Ca2Ti(Si2O7)2(OH)2(H2O)4 | Tric. 1 : P1 |
| Bortolanite | Ca2(Ca1.5Zr0.5)Na(NaCa)Ti(Si2O7)2(OF)F2 | Tric. 1 : P1 |
| Fogoite-(Y) | Na3Ca2Y2Ti(Si2O7)2OF3 | Tric. 1 : P1 |
| Götzenite | NaCa6Ti(Si2O7)2OF3 | Tric. 1 : P1 |
| Grenmarite | Na4MnZr3(Si2O7)2O2F2 | Mon. 2/m : P2/b |
| Hainite-(Y) | Na2Ca4(Y,REE)Ti(Si2O7)2OF3 | Tric. 1 : P1 |
| Kochite | Na3Ca2MnZrTi(Si2O7)2OF3 | Tric. 1 : P1 |
| Mosandrite-(Ce) | (Ca3REE)[(H2O)2Ca0.5◻0.5]Ti(Si2O7)2(OH)2(H2O)2 | Mon. 2/m : P21/b |
| Nacareniobsite-(Ce) | Na3Ca3(Ce,REE)Nb(Si2O7)2OF3 | Mon. 2/m : P21/b |
| Nacareniobsite-(Y) | Na3Ca3YNb(Si2O7)2OF3 | Mon. 2/m : P21/b |
| Rinkite-(Ce) | (Ca3Ce)Na(NaCa)Ti(Si2O7)2(OF)F2 | Mon. 2/m : P21/b |
| Rinkite-(Y) | Na2Ca4YTi(Si2O7)2OF3 | Mon. 2/m : P21/b |
| Rosenbuschite | Na6Ca6Zr3Ti(Si2O7)4O2F6 | Tric. 1 : P1 |
| Roumaite | (Ca,Na,REE,◻)7(Nb,Ti)[Si2O7]2OF3 | Mon. m : Bb |
| Seidozerite | Na4MnZr2Ti(Si2O7)2O2F2 | Mon. 2/m : P2/b |
| 'Unnamed (Ca-deficient Mosandrite)' | (Ca1.2REE0.9Th0.1Zn0.1Al0.1Na0.2K0.1)((H2O)2◻)(Ti,Nb)(Si2O7)2(OH,F,Cl)2(H2O)2 | |
| Ferroinnelite | Ba4Ti2Na(NaFe2+)Ti(Si2O7)2[(SO4)(PO4)]O2[O(OH)] | Tric. 1 : P1 |
| Nacareniobsite-(Nd) | Ca2(CaNd)Na3Nb(Si2O7)2(OF)F2 | Mon. 2/m : P21/b |
Click on any node to view relationships. Formula-derived relationship network for the group members above. Use Find related species to add formula-neighbour species outside the current group view. Solid links show inferred chemical differences; dashed violet links show same-formula crystallographic differences. Hydration states are not treated as relationship changes. These relationships do not imply any real-world substitution reactions between these species.
Other Information
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Internet Links for Seidozerite Supergroup
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References for Seidozerite Supergroup
Reference List:
Sokolova, E.; Cámara, F. (2017) The seidozerite supergroup of TS-block minerals: nomenclature and classification, with change of the following names: rinkite to rinkite-(Ce), mosandrite to mosandrite-(Ce), hainite to hainite-(Y) and innelite-1T to innelite-1A. Mineralogical Magazine, 81 (6). p.1457-1484. doi:10.1180/minmag.2017.081.010
Localities for Seidozerite Supergroup
Showing 758 localities.
Locality List
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All localities listed without proper references should be considered as questionable.




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The
Umbozero mine, Alluaiv Mountain, Lovozersky District, Murmansk Oblast, Russia