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Monte Duria peridotite (south), Peglio, Como Province, Lombardy, Italyi
Regional Level Types
Monte Duria peridotite (south)Group of Outcrops
PeglioCommune
Como ProvinceProvince
LombardyRegion
ItalyCountry

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Latitude & Longitude (WGS84):
46° 11' 57'' North , 9° 15' 44'' East
Latitude & Longitude (decimal):
Type:
Group of Outcrops
Köppen climate type:
Nearest Settlements:
PlacePopulationDistance
Dosso del Liro275 (2014)4.0km
Livo208 (2014)4.7km
Peglio197 (2014)5.0km
Gravedona-San Gregorio3,697 (2014)6.6km
Consiglio di Rumo1,175 (2014)6.7km
Nearest Clubs:
Local clubs are the best way to get access to collecting localities
ClubLocationDistance
Club Cercatori di Minerali e Fossili TicinoViganello, Ticino31km
Mindat Locality ID:
411676
Long-form identifier:
mindat:1:2:411676:2
GUID (UUID V4):
0
Other Languages:
Italian:
Peridotite del Monte Duria (sud), Peglio, Provincia di Como, Lombardia, Italia


Outcrops of peridotite lenses along the south slope of Monte Duria.

The Monte Duria peridotite consists of tens of 1–100 m size peridotite lenses embedded in biotite-plagioclase gneisses that are tightly folded. Both poikiloblastic and porphyroblastic garnet peridotites occur in close distance to each other. Along the south slope of Monte Duria the peridotite lenses crop out in a NW-SW direction, then they turn eastwards in the Val Piana extension - see Monte Duria peridotite (east).

Peridotites are often garnet bearing, although pyrope garnet (millimetre- to centimetre-sized) is invariably surrounded by kelyphites and often fully replaced by pseudomorphic assemblages. Orthopyroxene (enstatite) and emerald-green clinopyroxene (diopside) occur often as millimetre- to centimetre-sized porphyroclasts in an oriented dark fine-grained olivine (forsterite) matrix. Garnet-bearing clinopyroxenite veins locally cut these peridotite bodies. The peridotite lenses commonly display a strongly foliated rim, with a chlorite foliation parallel to the main foliation of hosting gneisses and a core where compositional layering with garnet-rich and garnet-poor horizons occurs.

Tiny crystals (∼1 μm) of srilankite in double coronas formed at the contact between olivine and garnet have been observed. Srilankite occurs both in the orthopyroxene coronae replacing former olivine and in orthopyroxene + clinopyroxene + spinel kelyphites replacing garnet. In this latter intergrowth, also a few crystals of zircon and baddeleyite have been found. In some samples, symplectites developed along garnet fractures contain sapphirine in textural equilibrium with spinel, orthopyroxene and amphibole (Tumiati et al., 2018).

Coordinates are indicative.

Select Mineral List Type

Standard Detailed Gallery Strunz Chemical Elements

Mineral List


14 valid minerals.

Rock Types Recorded

Note: data is currently VERY limited. Please bear with us while we work towards adding this information!

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Alphabetical List Tree Diagram

Detailed Mineral List:

'Amphibole Supergroup'
Formula: AB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Baddeleyite
Formula: ZrO2
'Chlorite Group'
Diopside
Formula: CaMgSi2O6
Enstatite
Formula: Mg2Si2O6
Forsterite
Formula: Mg2SiO4
Ilmenite
Formula: Fe2+TiO3
Pentlandite
Formula: (NixFey)Σ9S8
Phlogopite
Formula: KMg3(AlSi3O10)(OH)2
Pyrope
Formula: Mg3Al2(SiO4)3
Pyrrhotite
Formula: Fe1-xS
Rutile
Formula: TiO2
Sapphirine
Formula: Mg4(Mg3Al9)O4[Si3Al9O36]
'Serpentine Subgroup'
Formula: D3[Si2O5](OH)4
Spinel
Formula: MgAl2O4
Srilankite
Formula: ZrTi2O6
Zircon
Formula: Zr(SiO4)

Gallery:

List of minerals arranged by Strunz 10th Edition classification

Group 2 - Sulphides and Sulfosalts
Pentlandite2.BB.15(NixFey)Σ9S8
Pyrrhotite2.CC.10Fe1-xS
Group 4 - Oxides and Hydroxides
Spinel4.BB.05MgAl2O4
Ilmenite4.CB.05Fe2+TiO3
Rutile4.DB.05TiO2
Srilankite4.DB.25ZrTi2O6
Baddeleyite4.DE.35ZrO2
Group 9 - Silicates
Forsterite9.AC.05Mg2SiO4
Pyrope9.AD.25Mg3Al2(SiO4)3
Zircon9.AD.30Zr(SiO4)
Enstatite9.DA.05Mg2Si2O6
Diopside9.DA.15CaMgSi2O6
Sapphirine9.DH.45Mg4(Mg3Al9)O4[Si3Al9O36]
Phlogopite9.EC.20KMg3(AlSi3O10)(OH)2
Unclassified
'Amphibole Supergroup'-AB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
'Chlorite Group'-
'Serpentine Subgroup'-D3[Si2O5](OH)4

List of minerals for each chemical element

HHydrogen
H Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
H PhlogopiteKMg3(AlSi3O10)(OH)2
H Serpentine SubgroupD3[Si2O5](OH)4
OOxygen
O Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
O BaddeleyiteZrO2
O DiopsideCaMgSi2O6
O EnstatiteMg2Si2O6
O ForsteriteMg2SiO4
O IlmeniteFe2+TiO3
O PhlogopiteKMg3(AlSi3O10)(OH)2
O PyropeMg3Al2(SiO4)3
O RutileTiO2
O SapphirineMg4(Mg3Al9)O4[Si3Al9O36]
O SpinelMgAl2O4
O SrilankiteZrTi2O6
O ZirconZr(SiO4)
O Serpentine SubgroupD3[Si2O5](OH)4
FFluorine
F Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
MgMagnesium
Mg DiopsideCaMgSi2O6
Mg EnstatiteMg2Si2O6
Mg ForsteriteMg2SiO4
Mg PhlogopiteKMg3(AlSi3O10)(OH)2
Mg PyropeMg3Al2(SiO4)3
Mg SapphirineMg4(Mg3Al9)O4[Si3Al9O36]
Mg SpinelMgAl2O4
AlAluminium
Al Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Al PhlogopiteKMg3(AlSi3O10)(OH)2
Al PyropeMg3Al2(SiO4)3
Al SapphirineMg4(Mg3Al9)O4[Si3Al9O36]
Al SpinelMgAl2O4
SiSilicon
Si Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Si DiopsideCaMgSi2O6
Si EnstatiteMg2Si2O6
Si ForsteriteMg2SiO4
Si PhlogopiteKMg3(AlSi3O10)(OH)2
Si PyropeMg3Al2(SiO4)3
Si SapphirineMg4(Mg3Al9)O4[Si3Al9O36]
Si ZirconZr(SiO4)
Si Serpentine SubgroupD3[Si2O5](OH)4
SSulfur
S Pentlandite(NixFey)Σ9S8
S PyrrhotiteFe1-xS
ClChlorine
Cl Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
KPotassium
K PhlogopiteKMg3(AlSi3O10)(OH)2
CaCalcium
Ca DiopsideCaMgSi2O6
TiTitanium
Ti Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Ti IlmeniteFe2+TiO3
Ti RutileTiO2
Ti SrilankiteZrTi2O6
FeIron
Fe IlmeniteFe2+TiO3
Fe Pentlandite(NixFey)Σ9S8
Fe PyrrhotiteFe1-xS
NiNickel
Ni Pentlandite(NixFey)Σ9S8
ZrZirconium
Zr BaddeleyiteZrO2
Zr SrilankiteZrTi2O6
Zr ZirconZr(SiO4)

Other Regions, Features and Areas containing this locality

Eurasian PlateTectonic Plate
  • AlpsAccretionary Complex
EuropeContinent

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