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Hokka, J.; Lahtinen, R. (2025) Facies architecture, ore genesis (Zn-Pb-Cu) and structural evolution of the Paleoproterozoic Aijala–Metsämonttu area, SW Finland. Ore Geology Reviews, 184. 106707 doi:10.1016/j.oregeorev.2025.106707

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Reference TypeJournal (article/letter/editorial)
TitleFacies architecture, ore genesis (Zn-Pb-Cu) and structural evolution of the Paleoproterozoic Aijala–Metsämonttu area, SW Finland
JournalOre Geology Reviews
AuthorsHokka, J.Author
Lahtinen, R.Author
Year2025Volume<   184   >
Page(s)106707
URL
DOIdoi:https://doi.org/10.1016/j.oregeorev.2025.106707Search in ResearchGate
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Mindat Ref. ID18539412Long-form Identifiermindat:1:5:18539412:7
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Full ReferenceHokka, J.; Lahtinen, R. (2025) Facies architecture, ore genesis (Zn-Pb-Cu) and structural evolution of the Paleoproterozoic Aijala–Metsämonttu area, SW Finland. Ore Geology Reviews, 184. 106707 doi:10.1016/j.oregeorev.2025.106707
Plain TextHokka, J.; Lahtinen, R. (2025) Facies architecture, ore genesis (Zn-Pb-Cu) and structural evolution of the Paleoproterozoic Aijala–Metsämonttu area, SW Finland. Ore Geology Reviews, 184. 106707 doi:10.1016/j.oregeorev.2025.106707
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Abstract/NotesA field-based study was conducted in the metamorphosed and deformed Aijala–Metsämonttu area within the Orijärvi formation, part of the Uusimaa belt (1.9–1.88 Ga) in southern Finland. The study aimed to enhance understanding of the regional facies architecture and tectonic framework. Volcanic facies analysis, lithogeochemistry, and sulfide textural interpretations were utilized, allowing us to reassess the previously suggested exhalative model of the Metsämonttu sulfide deposit (1.5 Mt at 3.5 wt% Zn, 0.8 wt% Pb, 0.3 wt% Cu, 13.2 wt% S, 25 g/t Ag, and 1.4 g/t Au, production 1952–1974) to assist regional exploration. Regionally, D1 thrusting was the primary significant structural event, associated with the common occurrence of both L–S and L-tectonites. D2 represents nearly orthogonal shortening, producing upright to steeply inclined F2 folds. The Aijala–Metsämonttu area is dominated by a felsic volcaniclastic lithofacies association, originating from voluminous silicic magmas. The region features both primary and redeposited rhyolitic pyroclastic deposits intercalated with carbonates and iron formations, alongside subordinate dacite-rhyolite complexes and submarine mafic fissure vents. Geochemically, the rocks exhibit subalkaline to transitional magmatic affinities, indicating a volcanic arc system likely associated with early-stage rifting, extensional basin formation in an intra-arc or back-arc setting. The Metsämonttu succession primarily consists of resedimented syn-eruptive volcaniclastic deposits intercalated with sedimentary facies. The Metsämonttu sulfide deposit, hosted by metavolcanic rocks, marble, and skarn, contains semimassive to stringer-style polymetallic sulfides, controlled by stretching along D1 recumbent fold axes (L-tectonite) and subsequent vertical stretching along D2 limbs. The mineralization is considered a metamorphosed subseafloor carbonate replacement deposit, hosted within permeable polymict dacitic fiamme-lithic pumiceous breccia.

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LocalityCitation Details
Aurums Aijala mine, Kisko, Salo, Southwest Finland, Finland
Metsämonttu mine, Kisko, Salo, Southwest Finland, Finland

Mineral Occurrences

LocalityMineral(s)
Aurums Aijala mine, Kisko, Salo, Southwest Finland, Finland Breccia, Marble, Pumice, Skarn
Metsämonttu mine, Kisko, Salo, Southwest Finland, Finland Actinolite, Almandine, Andesite, Anthophyllite, Apatite, Arsenopyrite, Basalt, Biotite, Boulangerite, Breccia, Calcite, Calcium Amphibole Subgroup, Chalcopyrite, Chlorite Group, Cordierite, Cubanite, Diopside, Dolomite, Electrum, Feldspar Group, Feldspar porphyry, Galena, Garnet Group, Geocronite, Gudmundite, Hornblende, Hyaloclastite, Ilmenite, Ironstone, Limestone, Magnesian Limestone, Magnetite, Marble, Marcasite, Metavolcaniclastic rock, Microcline, Molybdenite, Muscovite, Native Gold, Olivine Group, Phlogopite, Plagioclase, Porphyry, Prehnite, Pumice, Pyrite, Pyroxene Group, Pyrrhotite, Quartz, Quartz-feldspar porphyry, Sandstone, Sericite, Siltstone, Skarn, Sphalerite, Tetrahedrite Subgroup, Titanite, Tourmaline, Tremolite, Tuff, Vitric ash, Volcanic breccia, Volcaniclastic rock, Zircon


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