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Predictive Mineralogy

Possible unrecorded species at Le Prabis, Villapourçon, Château-Chinon, Nièvre, Bourgogne-Franche-Comté, France

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
ChalcopyriteCuFeS299.99%Acanthite (62.06 %), Arseniosiderite (61.95 %), Arsenopyrite (61.33 %), Bariopharmacosiderite (67.20 %), Beudantite (61.52 %), Carminite (60.93 %), Covellite (85.83 %), Dussertite (58.33 %), Galena (56.79 %), Hydrotungstite (61.11 %), Jarosite (50.73 %), Lepidocrocite (58.40 %), Mimetite (52.87 %), Pharmacosiderite (59.35 %), Philipsbornite (59.68 %), Pyrite (51.72 %), Raspite (53.57 %), Scorodite (53.74 %), Segnitite (70.00 %), Silver (50.22 %), Sphalerite (63.80 %), Stolzite (58.76 %), Tungstite (64.89 %)
MalachiteCu2(CO3)(OH)299.97%Arseniosiderite (53.98 %), Bariopharmacosiderite (65.05 %), Beudantite (59.67 %), Carminite (52.56 %), Covellite (54.66 %), Dussertite (69.44 %), Mimetite (60.02 %), Philipsbornite (64.52 %), Segnitite (59.41 %)
CerussitePbCO399.93%Beudantite (65.23 %), Carminite (58.60 %), Dussertite (50.00 %), Mimetite (66.77 %), Philipsbornite (64.52 %), Raspite (53.57 %), Segnitite (64.71 %), Stolzite (53.11 %)
CalciteCaCO399.91%Acanthite (51.71 %), Arseniosiderite (65.04 %), Bariopharmacosiderite (52.15 %), Baryte (51.88 %), Dussertite (52.78 %), Hydrotungstite (50.00 %), Jarosite (50.12 %), Lepidocrocite (55.87 %), Mimetite (56.29 %)
AnglesitePbSO495.55%Beudantite (54.12 %), Carminite (53.02 %), Philipsbornite (53.23 %), Segnitite (55.88 %)
AzuriteCu3(CO3)2(OH)291.40%Bariopharmacosiderite (54.30 %), Dussertite (58.33 %), Philipsbornite (54.84 %)
OliveniteCu2(AsO4)(OH)80.97%Bariopharmacosiderite (51.08 %), Dussertite (61.11 %)
MuscoviteKAl2(AlSi3O10)(OH)280.53%Hydrotungstite (50.00 %), Tungstite (61.07 %)
BrochantiteCu4(SO4)(OH)678.49%Bariopharmacosiderite (51.61 %), Dussertite (55.56 %)
CupriteCu2O52.77%Dussertite (52.78 %)
ChalcociteCu2S50.30%Covellite (50.30 %)
MolybdeniteMoS240.00%Hydrotungstite (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
47a : Low-𝑇 subaerial oxidative hydration, weathering (see also #16 and #23) - [Near-surface hydration of prior minerals]

Unique: Hydrotungstite, Hydroxykenoelsmoreite, Tungstite
174
47h : Low-𝑇 subaerial oxidative hydration, weathering (see also #16 and #23) - [Near-surface oxidized, dehydrated minerals]

Unique: Raspite, Stolzite
100
47d : Low-𝑇 subaerial oxidative hydration, weathering (see also #16 and #23) - [Arsenates, antimonates, selenates, bismuthinates]36
47c : Low-𝑇 subaerial oxidative hydration, weathering (see also #16 and #23) - [Carbonates, phosphates, borates, nitrates]13
33 : Minerals deposited by hydrothermal metal-rich fluids (see also [#12])8
49 : Oxic cellular biomineralization (see also #44)7
34 : Complex granite pegmatites3
47b : Low-𝑇 subaerial oxidative hydration, weathering (see also #16 and #23) - [Sulfates and sulfites]2
26 : Hadean detrital minerals2
55 : Anthropogenic mine minerals2
31 : Thermally altered carbonate, phosphate, and iron formations2
45a : Oxidized fumarolic minerals (see also [#11]) - [Sulfates, arsenates, selenates, antimonates]1