Vote for your favorite mineral in #MinCup26! - Sphalerite vs. Anorthite
Both zinc ore Sphalerite and calcium plagioclase feldspar Anorthite have perfect cleavage that will split cleanly if you hit them with a hammer, but only one can claim a larger split of your votes!
Log InRegister
Quick Links : The Mindat ManualThe Rock H. Currier Digital LibraryMindat Newsletter [Free Download]
Home PageAbout MindatThe Mindat ManualHistory of MindatCopyright StatusWho We AreContact UsAdvertise on Mindat
Donate to MindatCorporate SponsorshipSponsor a PageSponsored PagesMindat AdvertisersAdvertise on Mindat
Learning CenterWhat is a mineral?The most common minerals on earthInformation for EducatorsMindat ArticlesThe ElementsThe Rock H. Currier Digital LibraryGeologic TimeExplore Fossils
Minerals by PropertiesMinerals by ChemistryMineral Visual ExplorerAdvanced Locality SearchRandom MineralRandom LocalitySearch by minIDLocalities Near MeSearch ArticlesSearch GlossaryMore Search Options
Search For:
Mineral Name:
Locality Name:
Keyword(s):
 
The Mindat ManualAdd a New PhotoRate PhotosLocality Edit ReportCoordinate Completion ReportAdd Glossary Item
Mining CompaniesStatisticsUsersMineral MuseumsClubs & OrganizationsMineral Shows & EventsThe Mindat DirectoryDevice SettingsThe Mineral QuizTime Machine
Photo SearchPhoto GalleriesSearch by ColorPhoto Colour ExplorerNew Photos TodayNew Photos YesterdayMembers' Photo GalleriesPast Photo of the Day GalleryPhotography

Charles Davis Mine, Groton, Grafton County, New Hampshire, USAi
Regional Level Types
Charles Davis MineMine
GrotonTown
Grafton CountyCounty
New HampshireState
USACountry

This page is currently not sponsored. Click here to sponsor this page.
PhotosMapsSearch
Latitude & Longitude (WGS84):
43° 45' 47'' North , 71° 53' 1'' West
Latitude & Longitude (decimal):
Type:
Nearest Settlements:
PlacePopulationDistance
Dorchester376 (2017)5.2km
Rumney1,576 (2017)7.4km
Groton486 (2017)7.8km
Hebron489 (2017)9.9km
Wentworth850 (2017)12.3km
Mindat Locality ID:
6813
Long-form identifier:
mindat:1:2:6813:3
GUID (UUID V4):
0
Other/historical names associated with this locality:
Charles Davis Mica Mine


A former mice-feldspar occurrence/mine located near the village of North Groton. Owned by Paul Glover (1954). The USGS MRDS database accuracy for this locality is not stated.

Mineralization is a granite pegmatite hosted in quartz-sillimanite schist. Local rocks include rocks of the Littleton Formation, Upper unnamed member.

The Charles Davis mica mine (pl. 1, no. 24) is in the town of Groton 0. 7 mile N. 73 ° W. of the village of North Groton. To reach it from North Groton follow the North Groton-Cheever road northwest 0.6 mile to a mine access road on the left; follow the access road southwest 0.2 mile to the mine. The property is owned by Paul Glover of Bath, N. H. Mineral rights are leased by the Strafford Mining Co., Bristol, N.H.

An opencut 100 feet long, 12 to 18 feet wide, and 15 feet deep was made prior to 1920. Work by the Strafford Mining Co. began in December 1943 and continued until July 1944. The present opencut is about 150 feet long, 10 to 30 feet wide, and 40 feet deep near the southwest end. The northeastern half of the cut apparently contains considerable backfill. Open-pit mining methods were used and waste rock was removed by a bucket on an aerial tramway. About 1,350 tons of rock was removed from the cut between December 1943 and July 1944. The mine was mapped by Glenn W. Stewart and Norman K. Flint in June 1943 (fig. 62) and periodic visits were made to it by E. N. Cameron and Stewart.

The pegmatite is exposed for about 300 feet along strike. At the southwest end it narrows to 4 inches, but in the main part of the pit it averages 14½ feet thick. It appears to be a lens essentially parallel to the foliation of the wall rock. Minor rolls along the east edge suggest that the pegmatite plunges 40°-50°.

The wall rock, part of the Littleton formation, is a quartz-sillimanite schist that strikes N. 35° E. and has a dip ranging from vertical to steeply east. Sillimanite crystals 1 inch long and a ¼ inch thick are abundant in it. In some places along the contact the schist contains many small tourmaline crystals but generally a very fine-grained dense band of recrystallized schist, 3 to 4 inches thick, occurs at the contact.

The pegmatite has a well-defined border zone and a core. The border zone, 3 to 8 inches thick, is composed of fine-grained quartz, muscovite, and minor plagioclase, tourmaline, and garnet. The core is composed of plagioclase, quartz, perthite, muscovite, minor biotite, secondary chlorite, and accessory tourmaline, beryl, and pyrite. Small anhedral crystals of lazulite are scattered in the core. Several quartz bodies, 2 by 7 feet or less, also occur in the core.

Sterrett reported that mica was most abundant near the hanging wall and E. N. Cameron, on his first visit, noted a similar occurrence. However, the mica along the hanging wall was soon mined out and most of the mica recovered in 1944 occurred as disseminated books. The pegmatite adjacent to a small roll near the bottom of the pit, on the southeast wall, had a slightly higher mica content than the central parts of the pegmatite. Mica was also slightly more. abundant near the margins of the quartz bodies.

The muscovite has a medium rum color, is ruled, stained, relatively hard, and flat. Most of the books average 4 by 4 inches but a few are 10 by 12 inches. Some are intergrown with biotite. The muscovite contains numerous inclusions of magnetite(?) or pyrite(?) and small tourmaline crystals.

Satisfactory quantities of mine-run mica were recovered during 1934-44, but because of structural defects the mica yielded only small sheet. The mine is still capable of producing considerable quantities of small-sized sheet mica.


Workings include surface openings comprised of an open cast mine.

Select Mineral List Type

Standard Detailed Gallery Strunz Chemical Elements

Commodity List

This is a list of exploitable or exploited mineral commodities recorded at this locality.


Mineral List


46 valid minerals. 1 erroneous literature entry.

Rock Types Recorded

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

Select Rock List Type

Alphabetical List Tree Diagram

Detailed Mineral List:

Albite
Formula: Na(AlSi3O8)
Almandine
Formula: Fe2+3Al2(SiO4)3
Anatase
Formula: TiO2
Arsenopyrite
Formula: FeAsS
Autunite
Formula: Ca(UO2)2(PO4)2 · 10-12H2O
Beraunite
Formula: Fe3+6(PO4)4O(OH)4 · 6H2O
Beryl
Formula: Be3Al2(Si6O18)
Beryl var. Aquamarine
Formula: Be3Al2Si6O18
Beryl var. Heliodor
Formula: Be3Al2(Si6O18)
Beryllonite
Formula: NaBePO4
'Biotite'
Formula: K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
Bjarebyite
Formula: (Ba,Sr)(Mn2+,Fe2+,Mg)2Al2(PO4)3(OH)3
Bornite ?
Formula: Cu5FeS4
Brazilianite
Formula: NaAl3(PO4)2(OH)4
Chalcopyrite
Formula: CuFeS2
Childrenite
Formula: Fe2+Al(PO4)(OH)2 · H2O
'Chlorite Group'
Crandallite
Formula: CaAl3(PO4)(PO3OH)(OH)6
Description: No data.
Fluorapatite
Formula: Ca5(PO4)3F
Galena
Formula: PbS
Goethite
Formula: Fe3+O(OH)
Gormanite
Formula: (Fe2+,Mg)3(Al,Fe3+)4(PO4)4(OH)6 · 2H2O
Goyazite
Formula: SrAl3(PO4)(PO3OH)(OH)6
Greifensteinite
Formula: Ca2Fe2+5Be4(PO4)6(OH)4 · 6H2O
Hydroxylherderite
Formula: CaBe(PO4)(OH)
Kulanite
Formula: Ba(Fe2+,Mn2+,Mg)2(Al,Fe3+)2(PO4)3(OH)3
Lazulite
Formula: MgAl2(PO4)2(OH)2
Description: Tom Mortimer, EDS analysis clearly showing Mg >> Fe: https://www.mindat.org/photo-1029670.html
Leucophosphite
Formula: KFe3+2(PO4)2(OH) · 2H2O
Meta-autunite
Formula: Ca(UO2)2(PO4)2 · 6H2O
Metatorbernite
Formula: Cu(UO2)2(PO4)2 · 8H2O
Microcline
Formula: K(AlSi3O8)
'Microlite Group' ?
Formula: A2-mTa2X6-wZ-n
Description: Very unlikely. No data.
Moraesite
Formula: Be2(PO4)(OH) · 4H2O
Muscovite
Formula: KAl2(AlSi3O10)(OH)2
Paravauxite
Formula: Fe2+Al2(PO4)2(OH)2 · 8H2O
Pyrite
Formula: FeS2
Quartz
Formula: SiO2
Quartz var. Rose Quartz
Formula: SiO2
Roscherite
Formula: Ca2Mn2+5Be4(PO4)6(OH)4 · 6H2O
Rutile ?
Formula: TiO2
Schorl
Formula: NaFe2+3Al6(Si6O18)(BO3)3(OH)3(OH)
Scorzalite
Formula: Fe2+Al2(PO4)2(OH)2
Habit: Complex equant crystals
Colour: deep blue
Siderite
Formula: FeCO3
Sillimanite
Formula: Al2(SiO4)O
Souzalite ?
Formula: (Mg,Fe2+)3(Al,Fe3+)4(PO4)4(OH)6 · 2H2O
Spessartine ?
Formula: Mn2+3Al2(SiO4)3
Stewartite
Formula: Mn2+Fe3+2(PO4)2(OH)2 · 8H2O
Strunzite
Formula: Mn2+Fe3+2(PO4)2(OH)2 · 6H2O
Topaz
Formula: Al2(SiO4)(F,OH)2
Torbernite
Formula: Cu(UO2)2(PO4)2 · 12H2O
Triphylite
Formula: LiFe2+PO4
Ushkovite
Formula: MgFe3+2(PO4)2(OH)2 · 8H2O
Xenotime-(Y) ?
Formula: Y(PO4)

List of minerals arranged by Strunz 10th Edition classification

Group 2 - Sulphides and Sulfosalts
Bornite ?2.BA.15Cu5FeS4
Chalcopyrite2.CB.10aCuFeS2
Galena2.CD.10PbS
Pyrite2.EB.05aFeS2
Arsenopyrite2.EB.20FeAsS
Group 4 - Oxides and Hydroxides
Goethite4.00.Fe3+O(OH)
'Microlite Group' ?4.00.A2-mTa2X6-wZ-n
Quartz4.DA.05SiO2
var. Rose Quartz4.DA.05SiO2
Rutile ?4.DB.05TiO2
Anatase4.DD.05TiO2
Group 5 - Nitrates and Carbonates
Siderite5.AB.05FeCO3
Group 8 - Phosphates, Arsenates and Vanadates
Beryllonite8.AA.10NaBePO4
Triphylite8.AB.10LiFe2+PO4
Xenotime-(Y) ?8.AD.35Y(PO4)
Hydroxylherderite8.BA.10CaBe(PO4)(OH)
Lazulite8.BB.40MgAl2(PO4)2(OH)2
Scorzalite8.BB.40Fe2+Al2(PO4)2(OH)2
Bjarebyite8.BH.20(Ba,Sr)(Mn2+,Fe2+,Mg)2Al2(PO4)3(OH)3
Kulanite8.BH.20Ba(Fe2+,Mn2+,Mg)2(Al,Fe3+)2(PO4)3(OH)3
Brazilianite8.BK.05NaAl3(PO4)2(OH)4
Crandallite8.BL.10CaAl3(PO4)(PO3OH)(OH)6
Goyazite8.BL.10SrAl3(PO4)(PO3OH)(OH)6
Fluorapatite8.BN.05Ca5(PO4)3F
Moraesite8.DA.05Be2(PO4)(OH) · 4H2O
Roscherite ?8.DA.10Ca2Mn2+5Be4(PO4)6(OH)4 · 6H2O
Greifensteinite8.DA.10Ca2Fe2+5Be4(PO4)6(OH)4 · 6H2O
Strunzite8.DC.25Mn2+Fe3+2(PO4)2(OH)2 · 6H2O
Beraunite8.DC.27Fe3+6(PO4)4O(OH)4 · 6H2O
Paravauxite8.DC.30Fe2+Al2(PO4)2(OH)2 · 8H2O
Stewartite8.DC.30Mn2+Fe3+2(PO4)2(OH)2 · 8H2O
Ushkovite8.DC.30MgFe3+2(PO4)2(OH)2 · 8H2O
Gormanite8.DC.45(Fe2+,Mg)3(Al,Fe3+)4(PO4)4(OH)6 · 2H2O
Souzalite ?8.DC.45(Mg,Fe2+)3(Al,Fe3+)4(PO4)4(OH)6 · 2H2O
Childrenite8.DD.20Fe2+Al(PO4)(OH)2 · H2O
Leucophosphite8.DH.10KFe3+2(PO4)2(OH) · 2H2O
Autunite8.EB.05Ca(UO2)2(PO4)2 · 10-12H2O
Torbernite8.EB.05Cu(UO2)2(PO4)2 · 12H2O
Meta-autunite8.EB.10Ca(UO2)2(PO4)2 · 6H2O
Metatorbernite8.EB.10Cu(UO2)2(PO4)2 · 8H2O
Group 9 - Silicates
Almandine9.AD.25Fe2+3Al2(SiO4)3
Spessartine ?9.AD.25Mn2+3Al2(SiO4)3
Sillimanite9.AF.05Al2(SiO4)O
Topaz9.AF.35Al2(SiO4)(F,OH)2
Beryl
var. Aquamarine
9.CJ.05Be3Al2Si6O18
9.CJ.05Be3Al2(Si6O18)
var. Heliodor9.CJ.05Be3Al2(Si6O18)
Schorl9.CK.05NaFe2+3Al6(Si6O18)(BO3)3(OH)3(OH)
Muscovite9.EC.15KAl2(AlSi3O10)(OH)2
Microcline9.FA.30K(AlSi3O8)
Albite9.FA.35Na(AlSi3O8)
Unclassified
'Biotite'-K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
'Chlorite Group'-

List of minerals for each chemical element

HHydrogen
H AutuniteCa(UO2)2(PO4)2 · 10-12H2O
H BerauniteFe63+(PO4)4O(OH)4 · 6H2O
H BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
H Bjarebyite(Ba,Sr)(Mn2+,Fe2+,Mg)2Al2(PO4)3(OH)3
H BrazilianiteNaAl3(PO4)2(OH)4
H ChildreniteFe2+Al(PO4)(OH)2 · H2O
H CrandalliteCaAl3(PO4)(PO3OH)(OH)6
H GoethiteFe3+O(OH)
H Gormanite(Fe2+,Mg)3(Al,Fe3+)4(PO4)4(OH)6 · 2H2O
H GoyaziteSrAl3(PO4)(PO3OH)(OH)6
H HydroxylherderiteCaBe(PO4)(OH)
H KulaniteBa(Fe2+,Mn2+,Mg)2(Al,Fe3+)2(PO4)3(OH)3
H LazuliteMgAl2(PO4)2(OH)2
H LeucophosphiteKFe23+(PO4)2(OH) · 2H2O
H Meta-autuniteCa(UO2)2(PO4)2 · 6H2O
H MetatorberniteCu(UO2)2(PO4)2 · 8H2O
H MoraesiteBe2(PO4)(OH) · 4H2O
H MuscoviteKAl2(AlSi3O10)(OH)2
H ParavauxiteFe2+Al2(PO4)2(OH)2 · 8H2O
H RoscheriteCa2Mn52+Be4(PO4)6(OH)4 · 6H2O
H SchorlNaFe32+Al6(Si6O18)(BO3)3(OH)3(OH)
H ScorzaliteFe2+Al2(PO4)2(OH)2
H Souzalite(Mg,Fe2+)3(Al,Fe3+)4(PO4)4(OH)6 · 2H2O
H StewartiteMn2+Fe23+(PO4)2(OH)2 · 8H2O
H StrunziteMn2+Fe23+(PO4)2(OH)2 · 6H2O
H TopazAl2(SiO4)(F,OH)2
H TorberniteCu(UO2)2(PO4)2 · 12H2O
H UshkoviteMgFe23+(PO4)2(OH)2 · 8H2O
H GreifensteiniteCa2Fe52+Be4(PO4)6(OH)4 · 6H2O
LiLithium
Li TriphyliteLiFe2+PO4
BeBeryllium
Be Beryl var. AquamarineBe3Al2Si6O18
Be BerylloniteNaBePO4
Be BerylBe3Al2(Si6O18)
Be HydroxylherderiteCaBe(PO4)(OH)
Be MoraesiteBe2(PO4)(OH) · 4H2O
Be RoscheriteCa2Mn52+Be4(PO4)6(OH)4 · 6H2O
Be Beryl var. HeliodorBe3Al2(Si6O18)
Be GreifensteiniteCa2Fe52+Be4(PO4)6(OH)4 · 6H2O
BBoron
B SchorlNaFe32+Al6(Si6O18)(BO3)3(OH)3(OH)
CCarbon
C SideriteFeCO3
OOxygen
O AlbiteNa(AlSi3O8)
O AnataseTiO2
O Beryl var. AquamarineBe3Al2Si6O18
O AutuniteCa(UO2)2(PO4)2 · 10-12H2O
O AlmandineFe32+Al2(SiO4)3
O BerauniteFe63+(PO4)4O(OH)4 · 6H2O
O BerylloniteNaBePO4
O BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
O Bjarebyite(Ba,Sr)(Mn2+,Fe2+,Mg)2Al2(PO4)3(OH)3
O BrazilianiteNaAl3(PO4)2(OH)4
O BerylBe3Al2(Si6O18)
O ChildreniteFe2+Al(PO4)(OH)2 · H2O
O CrandalliteCaAl3(PO4)(PO3OH)(OH)6
O FluorapatiteCa5(PO4)3F
O GoethiteFe3+O(OH)
O Gormanite(Fe2+,Mg)3(Al,Fe3+)4(PO4)4(OH)6 · 2H2O
O GoyaziteSrAl3(PO4)(PO3OH)(OH)6
O HydroxylherderiteCaBe(PO4)(OH)
O KulaniteBa(Fe2+,Mn2+,Mg)2(Al,Fe3+)2(PO4)3(OH)3
O LazuliteMgAl2(PO4)2(OH)2
O LeucophosphiteKFe23+(PO4)2(OH) · 2H2O
O Meta-autuniteCa(UO2)2(PO4)2 · 6H2O
O MetatorberniteCu(UO2)2(PO4)2 · 8H2O
O MicroclineK(AlSi3O8)
O MoraesiteBe2(PO4)(OH) · 4H2O
O MuscoviteKAl2(AlSi3O10)(OH)2
O ParavauxiteFe2+Al2(PO4)2(OH)2 · 8H2O
O QuartzSiO2
O RoscheriteCa2Mn52+Be4(PO4)6(OH)4 · 6H2O
O Quartz var. Rose QuartzSiO2
O RutileTiO2
O SchorlNaFe32+Al6(Si6O18)(BO3)3(OH)3(OH)
O ScorzaliteFe2+Al2(PO4)2(OH)2
O SideriteFeCO3
O SillimaniteAl2(SiO4)O
O Souzalite(Mg,Fe2+)3(Al,Fe3+)4(PO4)4(OH)6 · 2H2O
O SpessartineMn32+Al2(SiO4)3
O StewartiteMn2+Fe23+(PO4)2(OH)2 · 8H2O
O StrunziteMn2+Fe23+(PO4)2(OH)2 · 6H2O
O TopazAl2(SiO4)(F,OH)2
O TorberniteCu(UO2)2(PO4)2 · 12H2O
O TriphyliteLiFe2+PO4
O UshkoviteMgFe23+(PO4)2(OH)2 · 8H2O
O Xenotime-(Y)Y(PO4)
O Beryl var. HeliodorBe3Al2(Si6O18)
O GreifensteiniteCa2Fe52+Be4(PO4)6(OH)4 · 6H2O
FFluorine
F BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
F FluorapatiteCa5(PO4)3F
F TopazAl2(SiO4)(F,OH)2
NaSodium
Na AlbiteNa(AlSi3O8)
Na BerylloniteNaBePO4
Na BrazilianiteNaAl3(PO4)2(OH)4
Na SchorlNaFe32+Al6(Si6O18)(BO3)3(OH)3(OH)
MgMagnesium
Mg BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
Mg Bjarebyite(Ba,Sr)(Mn2+,Fe2+,Mg)2Al2(PO4)3(OH)3
Mg Gormanite(Fe2+,Mg)3(Al,Fe3+)4(PO4)4(OH)6 · 2H2O
Mg KulaniteBa(Fe2+,Mn2+,Mg)2(Al,Fe3+)2(PO4)3(OH)3
Mg LazuliteMgAl2(PO4)2(OH)2
Mg Souzalite(Mg,Fe2+)3(Al,Fe3+)4(PO4)4(OH)6 · 2H2O
Mg UshkoviteMgFe23+(PO4)2(OH)2 · 8H2O
AlAluminium
Al AlbiteNa(AlSi3O8)
Al Beryl var. AquamarineBe3Al2Si6O18
Al AlmandineFe32+Al2(SiO4)3
Al BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
Al Bjarebyite(Ba,Sr)(Mn2+,Fe2+,Mg)2Al2(PO4)3(OH)3
Al BrazilianiteNaAl3(PO4)2(OH)4
Al BerylBe3Al2(Si6O18)
Al ChildreniteFe2+Al(PO4)(OH)2 · H2O
Al CrandalliteCaAl3(PO4)(PO3OH)(OH)6
Al Gormanite(Fe2+,Mg)3(Al,Fe3+)4(PO4)4(OH)6 · 2H2O
Al GoyaziteSrAl3(PO4)(PO3OH)(OH)6
Al KulaniteBa(Fe2+,Mn2+,Mg)2(Al,Fe3+)2(PO4)3(OH)3
Al LazuliteMgAl2(PO4)2(OH)2
Al MicroclineK(AlSi3O8)
Al MuscoviteKAl2(AlSi3O10)(OH)2
Al ParavauxiteFe2+Al2(PO4)2(OH)2 · 8H2O
Al SchorlNaFe32+Al6(Si6O18)(BO3)3(OH)3(OH)
Al ScorzaliteFe2+Al2(PO4)2(OH)2
Al SillimaniteAl2(SiO4)O
Al Souzalite(Mg,Fe2+)3(Al,Fe3+)4(PO4)4(OH)6 · 2H2O
Al SpessartineMn32+Al2(SiO4)3
Al TopazAl2(SiO4)(F,OH)2
Al Beryl var. HeliodorBe3Al2(Si6O18)
SiSilicon
Si AlbiteNa(AlSi3O8)
Si Beryl var. AquamarineBe3Al2Si6O18
Si AlmandineFe32+Al2(SiO4)3
Si BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
Si BerylBe3Al2(Si6O18)
Si MicroclineK(AlSi3O8)
Si MuscoviteKAl2(AlSi3O10)(OH)2
Si QuartzSiO2
Si Quartz var. Rose QuartzSiO2
Si SchorlNaFe32+Al6(Si6O18)(BO3)3(OH)3(OH)
Si SillimaniteAl2(SiO4)O
Si SpessartineMn32+Al2(SiO4)3
Si TopazAl2(SiO4)(F,OH)2
Si Beryl var. HeliodorBe3Al2(Si6O18)
PPhosphorus
P AutuniteCa(UO2)2(PO4)2 · 10-12H2O
P BerauniteFe63+(PO4)4O(OH)4 · 6H2O
P BerylloniteNaBePO4
P Bjarebyite(Ba,Sr)(Mn2+,Fe2+,Mg)2Al2(PO4)3(OH)3
P BrazilianiteNaAl3(PO4)2(OH)4
P ChildreniteFe2+Al(PO4)(OH)2 · H2O
P CrandalliteCaAl3(PO4)(PO3OH)(OH)6
P FluorapatiteCa5(PO4)3F
P Gormanite(Fe2+,Mg)3(Al,Fe3+)4(PO4)4(OH)6 · 2H2O
P GoyaziteSrAl3(PO4)(PO3OH)(OH)6
P HydroxylherderiteCaBe(PO4)(OH)
P KulaniteBa(Fe2+,Mn2+,Mg)2(Al,Fe3+)2(PO4)3(OH)3
P LazuliteMgAl2(PO4)2(OH)2
P LeucophosphiteKFe23+(PO4)2(OH) · 2H2O
P Meta-autuniteCa(UO2)2(PO4)2 · 6H2O
P MetatorberniteCu(UO2)2(PO4)2 · 8H2O
P MoraesiteBe2(PO4)(OH) · 4H2O
P ParavauxiteFe2+Al2(PO4)2(OH)2 · 8H2O
P RoscheriteCa2Mn52+Be4(PO4)6(OH)4 · 6H2O
P ScorzaliteFe2+Al2(PO4)2(OH)2
P Souzalite(Mg,Fe2+)3(Al,Fe3+)4(PO4)4(OH)6 · 2H2O
P StewartiteMn2+Fe23+(PO4)2(OH)2 · 8H2O
P StrunziteMn2+Fe23+(PO4)2(OH)2 · 6H2O
P TorberniteCu(UO2)2(PO4)2 · 12H2O
P TriphyliteLiFe2+PO4
P UshkoviteMgFe23+(PO4)2(OH)2 · 8H2O
P Xenotime-(Y)Y(PO4)
P GreifensteiniteCa2Fe52+Be4(PO4)6(OH)4 · 6H2O
SSulfur
S ArsenopyriteFeAsS
S BorniteCu5FeS4
S ChalcopyriteCuFeS2
S GalenaPbS
S PyriteFeS2
KPotassium
K BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
K LeucophosphiteKFe23+(PO4)2(OH) · 2H2O
K MicroclineK(AlSi3O8)
K MuscoviteKAl2(AlSi3O10)(OH)2
CaCalcium
Ca AutuniteCa(UO2)2(PO4)2 · 10-12H2O
Ca CrandalliteCaAl3(PO4)(PO3OH)(OH)6
Ca FluorapatiteCa5(PO4)3F
Ca HydroxylherderiteCaBe(PO4)(OH)
Ca Meta-autuniteCa(UO2)2(PO4)2 · 6H2O
Ca RoscheriteCa2Mn52+Be4(PO4)6(OH)4 · 6H2O
Ca GreifensteiniteCa2Fe52+Be4(PO4)6(OH)4 · 6H2O
TiTitanium
Ti AnataseTiO2
Ti BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
Ti RutileTiO2
MnManganese
Mn Bjarebyite(Ba,Sr)(Mn2+,Fe2+,Mg)2Al2(PO4)3(OH)3
Mn KulaniteBa(Fe2+,Mn2+,Mg)2(Al,Fe3+)2(PO4)3(OH)3
Mn RoscheriteCa2Mn52+Be4(PO4)6(OH)4 · 6H2O
Mn SpessartineMn32+Al2(SiO4)3
Mn StewartiteMn2+Fe23+(PO4)2(OH)2 · 8H2O
Mn StrunziteMn2+Fe23+(PO4)2(OH)2 · 6H2O
FeIron
Fe ArsenopyriteFeAsS
Fe AlmandineFe32+Al2(SiO4)3
Fe BerauniteFe63+(PO4)4O(OH)4 · 6H2O
Fe BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2
Fe Bjarebyite(Ba,Sr)(Mn2+,Fe2+,Mg)2Al2(PO4)3(OH)3
Fe BorniteCu5FeS4
Fe ChalcopyriteCuFeS2
Fe ChildreniteFe2+Al(PO4)(OH)2 · H2O
Fe GoethiteFe3+O(OH)
Fe Gormanite(Fe2+,Mg)3(Al,Fe3+)4(PO4)4(OH)6 · 2H2O
Fe KulaniteBa(Fe2+,Mn2+,Mg)2(Al,Fe3+)2(PO4)3(OH)3
Fe LeucophosphiteKFe23+(PO4)2(OH) · 2H2O
Fe ParavauxiteFe2+Al2(PO4)2(OH)2 · 8H2O
Fe PyriteFeS2
Fe SchorlNaFe32+Al6(Si6O18)(BO3)3(OH)3(OH)
Fe ScorzaliteFe2+Al2(PO4)2(OH)2
Fe SideriteFeCO3
Fe Souzalite(Mg,Fe2+)3(Al,Fe3+)4(PO4)4(OH)6 · 2H2O
Fe StewartiteMn2+Fe23+(PO4)2(OH)2 · 8H2O
Fe StrunziteMn2+Fe23+(PO4)2(OH)2 · 6H2O
Fe TriphyliteLiFe2+PO4
Fe UshkoviteMgFe23+(PO4)2(OH)2 · 8H2O
Fe GreifensteiniteCa2Fe52+Be4(PO4)6(OH)4 · 6H2O
CuCopper
Cu BorniteCu5FeS4
Cu ChalcopyriteCuFeS2
Cu MetatorberniteCu(UO2)2(PO4)2 · 8H2O
Cu TorberniteCu(UO2)2(PO4)2 · 12H2O
AsArsenic
As ArsenopyriteFeAsS
SrStrontium
Sr Bjarebyite(Ba,Sr)(Mn2+,Fe2+,Mg)2Al2(PO4)3(OH)3
Sr GoyaziteSrAl3(PO4)(PO3OH)(OH)6
YYttrium
Y Xenotime-(Y)Y(PO4)
BaBarium
Ba Bjarebyite(Ba,Sr)(Mn2+,Fe2+,Mg)2Al2(PO4)3(OH)3
Ba KulaniteBa(Fe2+,Mn2+,Mg)2(Al,Fe3+)2(PO4)3(OH)3
TaTantalum
Ta Microlite GroupA2-mTa2X6-wZ-n
PbLead
Pb GalenaPbS
UUranium
U AutuniteCa(UO2)2(PO4)2 · 10-12H2O
U Meta-autuniteCa(UO2)2(PO4)2 · 6H2O
U MetatorberniteCu(UO2)2(PO4)2 · 8H2O
U TorberniteCu(UO2)2(PO4)2 · 12H2O

Other Databases

Link to USGS MRDS:10174972

Other Regions, Features and Areas containing this locality

North AmericaContinent
North America PlateTectonic Plate

This page contains all mineral locality references listed on mindat.org. This does not claim to be a complete list. If you know of more minerals from this site, please register so you can add to our database. This locality information is for reference purposes only. You should never attempt to visit any sites listed in mindat.org without first ensuring that you have the permission of the land and/or mineral rights holders for access and that you are aware of all safety precautions necessary.

References

 
and/or  
Mindat.org® is an outreach project of the Hudson Institute of Mineralogy, a 501(c)(3) not-for-profit organization. Mindat® and mindat.org® are registered trademarks of the Hudson Institute of Mineralogy.
Copyright © mindat.org and the Hudson Institute of Mineralogy 1993-2026, except where stated. Most political location boundaries are © OpenStreetMap contributors. Mindat.org relies on the contributions of thousands of members and supporters. Founded in 2000 by Jolyon Ralph and Ida Chau.
Content on this site may not be used to train, fine-tune, or otherwise develop artificial intelligence or machine learning models without prior written permission - see our Terms & Conditions.
To cite: Ralph, J., Von Bargen, D., Martynov, P., Zhang, J., Que, X., Prabhu, A., Morrison, S. M., Li, W., Chen, W., & Ma, X. (2025). Mindat.org: The open access mineralogy database to accelerate data-intensive geoscience research. American Mineralogist, 110(6), 833–844. doi:10.2138/am-2024-9486.
Privacy Policy - Terms & Conditions - Contact Us / DMCA issues - Report a bug/vulnerability Current server date and time: September 3, 2026 14:31:47 Page updated: August 10, 2025 08:49:56
Go to top of page