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Predictive Mineralogy

Possible unrecorded species at Romania

This table is based on statistical analysis of other localities containing similar species to the ones found at this locality.

Possible missing speciesFormulaMatch %Due to recorded presence of
RockbridgeiteFe2+Fe3+4(PO4)3(OH)598.77%Hureaulite (51.43 %), Robertsite (54.55 %), Switzerite (52.00 %), Tavorite (76.92 %), Tinsleyite (50.00 %)
Clino-suenoite◻{Mn2+2}{Mg5}(Si8O22)(OH)296.63%Manganhumite (76.47 %), Turneaureite (85.71 %)
Schulenbergite(Cu,Zn)7(SO4)2(OH)10 · 3H2O96.01%Bechererite (57.89 %), Namuwite (65.75 %), Ramsbeckite (72.37 %)
OliveniteCu2(AsO4)(OH)95.73%Bayldonite (52.26 %), Chalcophyllite (52.00 %), Euchroite (55.17 %), Lavendulan (58.48 %)
PhosphosideriteFePO4 · 2H2O95.54%Hureaulite (55.00 %), Robertsite (61.36 %), Tavorite (74.36 %)
BerauniteFe3+6(PO4)4O(OH)4 · 6H2O88.00%Robertsite (50.00 %), Switzerite (52.00 %), Tinsleyite (50.00 %)
UmangiteCu3Se287.24%Eucairite (66.13 %), Klockmannite (62.34 %)
MitridatiteCa2Fe3+3(PO4)3O2 · 3H2O86.13%Robertsite (61.36 %), Tavorite (64.10 %)
StannoiditeCu+6Cu2+2(Fe2+,Zn)3Sn2S1284.50%Hemusite (66.67 %), Mawsonite (53.51 %)
PicropharmacoliteCa4Mg(AsO4)2(HAsO4)2 · 11H2O84.19%Pharmacolite (52.59 %), Villyaellenite (66.67 %)
Rutherfordine(UO2)CO383.33%Urancalcarite (83.33 %)
Studtite[(UO2)(O2)(H2O)2] · H2O83.33%Urancalcarite (83.33 %)
StrontianiteSrCO382.91%Burbankite (62.03 %), Cordylite-(Ce) (55.00 %)
BrunogeieriteGe4+Fe2+2O480.00%Argutite (80.00 %)
BerzelianiteCu2-xSe (x ≈ 0.12)78.88%Eucairite (54.84 %), Klockmannite (53.25 %)
MagnesioferriteMgFe3+2O477.94%Reinhardbraunsite (50.00 %), Srebrodolskite (55.88 %)
PosnjakiteCu4(SO4)(OH)6 · H2O77.91%Namuwite (52.05 %), Ramsbeckite (53.95 %)
HydrocerussitePb3(CO3)2(OH)276.28%Lanarkite (51.30 %), Susannite (51.30 %)
HocartiteAg2(Fe2+,Zn)SnS466.66%Pirquitasite (66.67 %)
Aeschynite-(Ce)(Ce,Ca,Fe,Th)(Ti,Nb)2(O,OH)666.66%Aeschynite-(Nd) (66.67 %)
BeudantitePbFe3(AsO4)(SO4)(OH)666.66%Nováčekite (66.67 %)
MetazeuneriteCu(UO2)2(AsO4)2 · 8H2O66.66%Nováčekite (66.67 %)
ZeuneriteCu(UO2)2(AsO4)2 · 12H2O66.66%Nováčekite (66.67 %)
LeucophaniteNaCaBeSi2O6F66.66%Tritomite-(Ce) (66.67 %)
VandendriesscheitePbU7O22 · 12H2O66.66%Urancalcarite (66.67 %)
CarnalliteKMgCl3 · 6H2O65.38%Leonite (65.38 %)
KainiteKMg(SO4)Cl · 3H2O65.38%Leonite (65.38 %)
FairfielditeCa2Mn2+(PO4)2 · 2H2O64.00%Switzerite (64.00 %)
MetaswitzeriteMn2+3(PO4)2 · 4H2O64.00%Switzerite (64.00 %)
LorenzeniteNa2Ti2(Si2O6)O363.63%Murmanite (63.64 %)
DaubréeliteFe2+Cr3+2S460.29%Oldhamite (60.29 %)
BlöditeNa2Mg(SO4)2 · 4H2O59.09%Konyaite (59.09 %)
ManganositeMnO58.82%Manganhumite (58.82 %)
LakargiiteCa(Zr,Sn,Ti)O358.33%Reinhardbraunsite (58.33 %)
WallkilldelliteCa2Mn2+3(AsO4)2(OH)4 · 9H2O57.14%Geigerite (57.14 %)
Ilesite(Mn,Zn,Fe)SO4 · 4H2O57.14%Jôkokuite (57.14 %)
MixiteBiCu6(AsO4)3(OH)6 · 3H2O57.14%Mrázekite (57.14 %)
WillemiteZn2SiO457.14%Turneaureite (57.14 %)
Meliphanite(Ca,Na)2(Be,Al)[Si2O6(OH,F)]54.54%Homilite (54.55 %)
BischofiteMgCl2 · 6H2O53.84%Leonite (53.85 %)
BarbosaliteFe2+Fe3+2(PO4)2(OH)253.84%Tavorite (53.85 %)
LaueiteMn2+Fe3+2(PO4)2(OH)2 · 8H2O53.84%Tavorite (53.85 %)
BermaniteMn2+Mn3+2(PO4)2(OH)2 · 4H2O51.28%Tavorite (51.28 %)
HedyphaneCa2Pb3(AsO4)3Cl50.00%Johnbaumite (50.00 %)
TilasiteCaMg(AsO4)F50.00%Johnbaumite (50.00 %)
CervantiteSb3+Sb5+O450.00%Klebelsbergite (50.00 %)
LangbeiniteK2Mg2(SO4)350.00%Leonite (50.00 %)
RichteriteNa(NaCa)Mg5(Si8O22)(OH)250.00%Leucophoenicite (50.00 %)
SeranditeNaMn2+2Si3O8(OH)50.00%Norrishite (50.00 %)
SugiliteKNa2Fe3+2Li3[Si12O30]50.00%Norrishite (50.00 %)
FrondeliteMn2+Fe3+4(PO4)3(OH)550.00%Robertsite (50.00 %)
ShattuckiteCu5(Si2O6)2(OH)250.00%Ajoite (50.00 %)

Key: Mineral matches key element mineralogy of deposit Key element(s) in mineral not listed for deposit (-20% score)


Predicting paragenetic modes of deposit

Green indicates almost certain match based on minerals unique to a certain deposit type. Yellow indicates a possibly poor match, but should not be entirely discounted. Scores > 100 indicate strong confidence.

Paragenetic ModeScore
33 : Minerals deposited by hydrothermal metal-rich fluids (see also [#12])

Unique: Aikinite, Alburnite, Aleksite, Anorpiment, Argyrodite, Arsenic, etc.
11,875
32 : Ba/Mn/Pb/Zn deposits, including metamorphic deposits

Unique: Argutite, Bannisterite, Bixbyite-(Mn), Ericssonite, Eveite, Friedelite, etc.
2,599
35 : Ultra-alkali and agpaitic igneous rocks

Unique: Astrophyllite, Britholite-(Ce), Calcioancylite-(Ce), Catapleiite, Cordylite-(Ce), Fersmanite, etc.
1,984
47a : Low-𝑇 subaerial oxidative hydration, weathering (see also #16 and #23) - [Near-surface hydration of prior minerals]

Unique: Ajoite, Dioptase, Ferrimolybdite, Fraipontite, Halloysite, Hubeite, etc.
1,574
12 : Hadean hydrothermal subsurface sulfide deposits (see also #33)

Unique: Briartite, Cattierite, Famatinite, Ferrokësterite, Gustavite, Hemusite, etc.
1,202
34 : Complex granite pegmatites

Unique: Aeschynite-(Nd), Columbite-(Mg), Triphylite, Ixiolite-(Mn2+)-Ixiolite-(Fe2+) Series, Lithiophilite, Microlite Group, etc.
968
31 : Thermally altered carbonate, phosphate, and iron formations

Unique: Fukalite, Hörnesite, Kamaishilite, Manganilvaite, Tobermorite, Törnebohmite-(Ce), etc.
925
23 : Subaerial aqueous alteration by non-redox-sensitive fluids (see also #47)

Unique: Kotoite, Suanite, Sussexite
551
22 : Hydration and low-𝑇 subsurface aqueous alteration (see also #23)

Unique: Arsenoclasite, Gismondine Subgroup, Inesite, Switzerite
489
40 : Regional metamorphism (greenschist, amphibolite, granulite facies)

Unique: Amesite, Minnesotaite
389
47c : Low-𝑇 subaerial oxidative hydration, weathering (see also #16 and #23) - [Carbonates, phosphates, borates, nitrates]

Unique: Smithsonite
376
47h : Low-𝑇 subaerial oxidative hydration, weathering (see also #16 and #23) - [Near-surface oxidized, dehydrated minerals]

Unique: Bismite, Wulfenite
341
36 : Carbonatites, kimberlites, and related igneous rocks

Unique: Bastnäsite-(La)
231
47b : Low-𝑇 subaerial oxidative hydration, weathering (see also #16 and #23) - [Sulfates and sulfites]210
10 : Basalt-hosted zeolite minerals

Unique: Barrerite, Lévyne-Ca
191
47d : Low-𝑇 subaerial oxidative hydration, weathering (see also #16 and #23) - [Arsenates, antimonates, selenates, bismuthinates]188
6 : Secondary asteroid phases

Unique: Maskelynite
177
18 : Minerals formed by freezing

Unique: Hydrohalite, Ikaite
177
13 : Hadean serpentinization

Unique: Hydrotalcite
140
52 : Guano- and urine-derived minerals

Unique: Ardealite
137
48 : Soil leaching zone minerals

Unique: Gibbsite
132
26 : Hadean detrital minerals116
51 : Pyrometamorphic minerals (see also #54 and #56)111
47f : Low-𝑇 subaerial oxidative hydration, weathering (see also #16 and #23) - [Uranyl (U⁶⁺) minerals]108
55 : Anthropogenic mine minerals108
47e : Low-𝑇 subaerial oxidative hydration, weathering (see also #16 and #23) - [Vanadates, chromates, manganates]103
47g : Low-𝑇 subaerial oxidative hydration, weathering (see also #16 and #23) - [Halogen-bearing surface weathering minerals]

Unique: Chlorargyrite
101
46 : Near-surface hydrothermal alteration of minerals (see also #22)

Unique: Cesanite
100
45a : Oxidized fumarolic minerals (see also [#11]) - [Sulfates, arsenates, selenates, antimonates]81
50 : Coal and/or oil shale minerals72
37 : Layered igneous intrusions and related PGE minerals69