A | This mineral is Anthropogenic. |
G | This mineral is directly dated. |
B | This mineral is reported as having this age. |
Y | This mineral is using an age reported as an element mineralization period. |
O | This mineral is using an age calculated from all data at the locality. |
R | The age displayed for this mineral originates from a different, non-child locality. |
P | The age displayed for this mineral is the range of ages for this mineral at all of this locality's children. |
This mineral's age has not yet been recorded. |
Mineral name | Structural Groups | IMA Formula | Max Age (Ma) | Min Age (Ma) | # of Sublocalities containing mineral | LOCALITY IDs, not mindat ids | # of localities containing mineral |
---|---|---|---|---|---|---|---|
Actinolite (*) | Amphibole | Ca2(Mg4.5-2.5Fe2+0.5-2.5)Si8O22(OH)2 | 485 | 300 | 0 | 3419 | |
Aluminocerite-(Ce) (*) | Cerite | (Ce6Ca3) Al(SiO4)3(SiO3OH)4(OH)3 | 485 | 300 | 0 | 8 | |
Ancylite-(Ce) (*) | Ancylite | CeSr(CO3)2(OH)·H2O | 485 | 300 | 0 | 92 | |
Ancylite-(La) (*) | Ancylite | LaSr(CO3)2(OH)·H2O | 485 | 300 | 0 | 13 | |
Aragonite (*) | Aragonite | Ca(CO3) | 485 | 300 | 0 | 3250 | |
Baotite (*) | Baotite | Ba4(Ti,Nb,W)8O16(SiO3)4Cl | 485 | 300 | 0 | 27 | |
Baryte (*) | Baryte | Ba(SO4) | 485 | 300 | 0 | 11547 | |
Bastnäsite-(Ce) (*) | Bastnäsite | Ce(CO3)F | 485 | 300 | 0 | 304 | |
Belkovite (*) | None | Ba3Nb6(Si2O7)2O12 | 485 | 300 | 0 | 3 | |
Benstonite (*) | None | Ba6Ca6Mg(CO3)13 | 485 | 300 | 0 | 17 | |
Biraite-(Ce) (*) | Biraite | Ce2Fe2+(Si2O7)(CO3) | 485 | 300 | 0 | 1 | |
Bornite (*) | None | Cu5FeS4 | 485 | 300 | 0 | 5516 | |
Calcioancylite-(Ce) (*) | Ancylite | (Ce,Ca,Sr)(CO3)(OH,H2O) | 485 | 300 | 0 | 46 | |
Calcite (*) | Calcite | Ca(CO3) | 485 | 300 | 0 | 27770 | |
Carbocernaite (*) | Carbocernaite | (Sr,Ce,La)(Ca,Na)(CO3)2 | 485 | 300 | 0 | 24 | |
Cerite-(Ce) (*) | Cerite | (Ce7Ca2) Mg(SiO4)3(SiO3OH)4(OH)3 | 485 | 300 | 0 | 47 | |
Chalcopyrite (*) | Chalcopyrite | CuFeS2 | 485 | 300 | 0 | 27198 | |
Chevkinite-(Ce) (*) | Chevkinite | Ce4(Ti,Fe2+,Fe3+)5O8(Si2O7)2 | 485 | 300 | 0 | 89 | |
Cordylite-(Ce) (*) | Cordylite | (Na,Ca, )BaCe2(CO3)4(F,O) | 485 | 300 | 0 | 15 | |
Cordylite-(La) (*) | Cordylite | NaCaBa2La3Sr(CO3)8F2 | 485 | 300 | 0 | 2 | |
Daqingshanite-(Ce) (*) | None | Sr3Ce(PO4)(CO3)3 | 485 | 300 | 0 | 9 | |
Dolomite (*) | None | CaMg(CO3)2 | 485 | 300 | 0 | 9895 | |
Fergusonite-(Ce) (*) | Scheelite | CeNbO4·0.3H2O | 485 | 300 | 0 | 16 | |
Ferriallanite-(Ce) (*) | Allanite Epidote | CaCe(Fe3+AlFe2+)[Si2O7][SiO4]O(OH) | 485 | 300 | 0 | 28 | |
Ferriperbøeite-(Ce) (*) | Gatelite | (CaCe3)(Fe3+Al2Fe2+)(Si2O7)(SiO4)3O(OH)2 | 485 | 300 | 0 | 2 | |
Fersmite (*) | Columbite | CaNb2O6 | 485 | 300 | 0 | 83 | |
Franklinite (*) | Spinel | ZnFe3+2O4 | 485 | 300 | 0 | 52 | |
Galena (*) | Rocksalt | PbS | 485 | 300 | 0 | 24243 | |
Huanghoite-(Ce) (*) | None | BaCe(CO3)2F | 485 | 300 | 0 | 9 | |
Humite (*) | Humite | Mg7(SiO4)3F2 | 485 | 300 | 0 | 80 | |
Hydroxylbastnäsite-(Ce) (*) | Bastnäsite | Ce(CO3)(OH) | 485 | 300 | 0 | 16 | |
Kukharenkoite-(Ce) (*) | None | Ba2Ce(CO3)3F | 485 | 300 | 0 | 8 | |
Magnesio-riebeckite (*) | Amphibole | Na2(Mg3Fe3+2)Si8O22(OH)2 | 485 | 300 | 0 | 93 | |
Magnetite (*) | Spinel | Fe2+Fe3+2O4 | 485 | 300 | 0 | 14899 | |
Molybdenite (*) | Molybdenite | MoS2 | 485 | 300 | 0 | 5800 | |
Monazite-(Ce) (*) | Monazite | Ce(PO4) | 485 | 300 | 0 | 945 | |
Monazite-(La) (*) | Monazite | La(PO4) | 485 | 300 | 0 | 38 | |
Nioboaeschynite-(Ce) (*) | Aeschynite | (Ce,Ca)(Nb,Ti)2(O,OH)6 | 485 | 300 | 0 | 17 | |
Norsethite (*) | None | BaMg(CO3)2 | 485 | 300 | 0 | 30 | |
Pyrite (*) | Pyrite | FeS2 | 485 | 300 | 0 | 39462 | |
Pyrrhotite (*) | Nickeline | Fe7S8 | 485 | 300 | 0 | 9056 | |
Strontianite (*) | Aragonite | Sr(CO3) | 485 | 300 | 0 | 589 | |
Talc (*) | Clay Talc | Mg3Si4O10(OH)2 | 485 | 300 | 0 | 3337 | |
Thorite (*) | Zircon | Th(SiO4) | 485 | 300 | 0 | 1006 | |
Törnebohmite-(Ce) (*) | Fornacite | Ce2Al(SiO4)2(OH) | 485 | 300 | 0 | 23 | |
Tremolite (*) | Amphibole | Ca2(Mg5.0-4.5Fe2+0.0-0.5)Si8O22(OH)2 | 485 | 300 | 0 | 2562 | |
Winchite (*) | Amphibole | (NaCa)(Mg4Al)Si8O22(OH)2 | 485 | 300 | 0 | 51 | |
Zircon (*) | Zircon | Zr(SiO4) | 485 | 300 | 0 | 5251 |
Age ID | Locality Notes |
---|---|
Michelle_540 | The Biraya deposit is comprised of a sequence of lens-shaped carbonatite bodies accompanied by fenites of the Biraya dike. The fenites developed at the expense of Precambrian gneisses, and schists are crosscut by Permian granitoids. These sequences represent the Eastern margin of the North Baikal Highlands. |
Excel ID | Max Age (Ma) | Min Age (Ma) | Age as listed in reference | Dating Method | Age Interpret | Prioritized? | Sample Source | Sample Num | Run Num | Age from other Locality | Dated Mineral | Minerals explicitely stated as having this age | Age applies to these Elements | MinDat Locality ID | Dated Locality (Max Age) | Location as listed in reference | Reference | Reference DOI | Reference ID | Age Notes | |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Michelle_540 | 485 | 300 | Middle Paleozoic | Age of carbonatite dyke | 68872 | Ust'-Biraya, Biraya Fe-REE Ore Occurrence, Biraya And Bya Rivers Confluence Area (Chara Basin), Vitim Plateau, Irkutsk Oblast, Russia | Biraya deposit | Mills et al. (2012) | 10.3749/canmin.50.5.1281 | CM50_1281 | Age of carbonatite dyke |
Sample | Source Locality | Reference URL |
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