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Predictive Mineralogy

Possible unrecorded species at North Atlantic Igneous Province

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
MicheneritePdBiTe99.83%Atokite (57.69 %), Kotulskite (50.90 %), Majakite (54.29 %), Merenskyite (51.53 %), Naldrettite (68.75 %), Sopcheite (52.38 %), Telargpalite (51.72 %), Zvyagintsevite (50.00 %)
SobolevskitePdBi97.16%Atokite (50.00 %), Cabriite (52.94 %), Naldrettite (50.00 %), Telargpalite (51.72 %), Vincentite (50.00 %)
MilleriteNiS91.72%Heazlewoodite (52.99 %), Orcelite (63.04 %), Sopcheite (52.38 %)
Hollingworthite(Rh,Pt,Pd)AsS79.99%Atokite (53.85 %), Keithconnite (56.14 %), Majakite (51.43 %), Palarstanide (57.14 %), Skaergaardite (60.00 %), Sopcheite (50.00 %), Telargpalite (51.72 %), Telluropalladinite (64.00 %), Tulameenite (50.00 %), Vasilite (64.29 %), Vincentite (53.85 %), Zvyagintsevite (55.77 %)
LauriteRuS279.98%Braggite (52.05 %), Hongshiite (61.11 %), Irarsite (67.32 %), Isoferroplatinum (55.23 %), Keithconnite (61.40 %), Orcelite (50.00 %), Telluropalladinite (52.00 %), Tulameenite (68.57 %), Vasilite (78.57 %)
UraniniteUO276.64%Coffinite (76.64 %)
FoshagiteCa4(Si3O9)(OH)271.42%Bicchulite (71.43 %)
SudburyitePdSb68.75%Naldrettite (68.75 %)
BrochantiteCu4(SO4)(OH)668.10%Connellite (68.10 %)
BismuthBi65.95%Russellite (65.96 %)
IsomertieitePd11Sb2As262.50%Nielsenite (62.50 %)
Rustenburgite(Pt,Pd)3Sn61.53%Atokite (61.54 %)
BismuthiniteBi2S359.57%Russellite (59.57 %)
RhodoniteCaMn3Mn[Si5O15]57.98%Bustamite (57.98 %)
CassiteriteSnO257.44%Russellite (57.45 %)
AenigmatiteNa4[Fe2+10Ti2]O4[Si12O36]57.14%Ferro-richterite (57.14 %)
CooperitePtS53.42%Braggite (53.42 %)
JarositeKFe3+3(SO4)2(OH)653.16%Hydroniumjarosite (53.16 %)
PaolovitePd2Sn51.72%Telargpalite (51.72 %)
TetraferroplatinumPtFe50.00%Tulameenite (50.00 %)
Iridium(Ir,Os,Ru)50.00%Vasilite (50.00 %)
PlatinumPt50.00%Vasilite (50.00 %)
PalladoarsenidePd2As50.00%Vincentite (50.00 %)
SylvaniteAgAuTe450.00%Bogdanovite (50.00 %)
MolybdeniteMoS247.65%Russellite (59.57 %)
Osmium(Os,Ir,Ru)42.28%Tulameenite (52.86 %)

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
31 : Thermally altered carbonate, phosphate, and iron formations

Unique: Ferrobustamite, Harkerite, Tobermorite, Xonotlite
567
33 : Minerals deposited by hydrothermal metal-rich fluids (see also [#12])

Unique: Bogdanovite, Hessite, Shandite
489
10 : Basalt-hosted zeolite minerals

Unique: Lévyne-Ca, Offretite, Paulingite-K, Stellerite
410
22 : Hydration and low-𝑇 subsurface aqueous alteration (see also #23)

Unique: Cowlesite, Garronite-Ca, Gismondine Subgroup
326
37 : Layered igneous intrusions and related PGE minerals

Unique: Skaergaardite
310
47a : Low-𝑇 subaerial oxidative hydration, weathering (see also #16 and #23) - [Near-surface hydration of prior minerals]

Unique: Halloysite, Hydrokenoelsmoreite
273
35 : Ultra-alkali and agpaitic igneous rocks

Unique: Gobbinsite, Neptunite
257
6 : Secondary asteroid phases

Unique: Maskelynite
162
36 : Carbonatites, kimberlites, and related igneous rocks

Unique: Kimzeyite
120
19 : Granitic intrusive rocks

Unique: Ferro-richterite
108
47h : Low-𝑇 subaerial oxidative hydration, weathering (see also #16 and #23) - [Near-surface oxidized, dehydrated minerals]

Unique: Russellite
105
23 : Subaerial aqueous alteration by non-redox-sensitive fluids (see also #47)103
47g : Low-𝑇 subaerial oxidative hydration, weathering (see also #16 and #23) - [Halogen-bearing surface weathering minerals]

Unique: Chlorargyrite
100
40 : Regional metamorphism (greenschist, amphibolite, granulite facies)78
51 : Pyrometamorphic minerals (see also #54 and #56)74
26 : Hadean detrital minerals68
16 : Low-𝑇 aqueous alteration of Hadean subaerial lithologies (see also #23)49
9 : Lava/xenolith minerals (hornfels, sanidinite facies)42
34 : Complex granite pegmatites40
47c : Low-𝑇 subaerial oxidative hydration, weathering (see also #16 and #23) - [Carbonates, phosphates, borates, nitrates]33
45b : Oxidized fumarolic minerals (see also [#11]) - [Other oxidized fumarolic minerals]28
7 : Ultramafic igneous rocks26