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Nishitama district, Tokyo Metropolis, Japani
Regional Level Types
Nishitama districtDistrict
Tokyo MetropolisPrefecture
JapanCountry

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Locality type:
Other Languages:
French:
Nishitama, Tokyo, Japon
German:
Nishitama-gun, PrΓ€fektur Tokio, Japan
Italian:
Distretto di Nishitama, Tokyo, Giappone
Japanese:
θ₯Ώε€šζ‘©ιƒ‘, 東京都, ζ—₯本
Russian:
Ниситама, Π’ΠΎΠΊΠΈΠΎ, Япония
Simplified Chinese:
θ₯Ώε€šζ‘©ιƒ‘, 東京都, ζ—₯本
Spanish:
Distrito de Nishitama, Tokio, JapΓ³n
Arabic:
Ω†ΩŠΨ΄ΩŠΨͺΨ§Ω…Ψ§ , Ψ·ΩˆΩƒΩŠΩˆ, Ψ§Ω„ΩŠΨ§Ψ¨Ψ§Ω†
Basque:
Nishitama barrutia, Tokio, Japonia
Cebuano:
Nishitama-gun, Tokyo, Hapon
Dutch:
Nishi-Tama District, Tokio, Japan
Farsi/Persian:
Ω…Ω†Ψ·Ω‚Ω‡ ΨͺΨ§Ω…Ψ§ΫŒ غربی, Ψͺوکیو, Ϊ˜Ψ§ΩΎΩ†
Finnish:
Nishitaman piirikunta, Tokio, Japani
Korean:
λ‹ˆμ‹œνƒ€λ§ˆκ΅°, 도쿄도, 일본
Lithuanian:
NiΕ‘itamos apskritis, Tokijas, Japonija
Norwegian:
Nishitama, Tokyo, Japan
Polish:
Powiat Nishitama, Tokio, Japonia
Portuguese:
Distrito de Nishitama, TΓ³quio, JapΓ£o
Traditional Chinese:
θ₯Ώε€šζ‘©ιƒ‘, 東京都, ζ—₯本
Turkish:
Nishitama , Tokyo, Japonya
Ukrainian:
Нісітама, Π’ΠΎΠΊΡ–ΠΎ, Японія
Vietnamese:
Nishitama, Tokyo, NhαΊ­t BαΊ£n
Waray:
Nishitama District, Tokyo, Hapon


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Standard Detailed Gallery Strunz Chemical Elements

Mineral List

Mineral list contains entries from the region specified including sub-localities

52 valid minerals. 2 (TL) - type locality of valid minerals.

Rock Types Recorded

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Rock list contains entries from the region specified including sub-localities

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Detailed Mineral List:

β“˜ Aegirine
Formula: NaFe3+Si2O6
Reference: [MinRec 32:419]; Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367
β“˜ Albite
Formula: Na(AlSi3O8)
Reference: Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367; http://www.issp.u-tokyo.ac.jp/labs/mdcl/lab/denken/wordpress/?page_id=1969#a02; Tanaka, T. & Hamane, D. (2016) Epidote-(Sr) from Shiromaru mine, Tokyo prefecture, Japan. (conference presentation R1-P14)
β“˜ Alleghanyite
Formula: Mn2+5(SiO4)2(OH)2
Reference: Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan)
β“˜ Analcime
Formula: Na(AlSi2O6) · H2O
Reference: Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367
β“˜ Andradite
Formula: Ca3Fe3+2(SiO4)3
Reference: Matsubara S, Miyawaki R, Tiba T, Imai H (2000) Tamaite, the Ca-analogue of ganophyllite, from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 95, 79-83
β“˜ Axinite-(Mn)
Formula: Ca2Mn2+Al2BSi4O15(OH)
Reference: Tanaka, T. & Hamane, D. (2016) Epidote-(Sr) from Shiromaru mine, Tokyo prefecture, Japan. (conference presentation R1-P14)
β“˜ Banalsite
Formula: Na2BaAl4Si4O16
Reference: Tokyo University collection; Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367
β“˜ Baryte
Formula: BaSO4
Reference: Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367; photo in: Koubutsu Doshikai (2017) Kanto-to Shuhen-no Koubutsu (279pp).
β“˜ Bementite
Formula: Mn7Si6O15(OH)8
Reference: N. Aikawa (1987) Journal of Geosciences, Osaka City University, 30, 1-13.
β“˜ Benitoite
Formula: BaTi(Si3O9)
Description: (Multi-mm spots, shortwave fluorescent bright blue, embedded in metasedimentary manganese ore, were being sold at the Tokyo shows in June and December 2010.)
Reference: Ohe Rikosha specimens, and collector labels.; http://www.issp.u-tokyo.ac.jp/labs/mdcl/lab/denken/wordpress/?page_id=1969#a02; photo in: Koubutsu Doshikai (2017) Kanto-to Shuhen-no Koubutsu (279pp).
β“˜ Birnessite
Formula: (Na,Ca)0.5(Mn4+,Mn3+)2O4 · 1.5H2O
Reference: Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
β“˜ Braunite
Formula: Mn2+Mn3+6(SiO4)O8
Reference: Am Min 90:1468; Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367
β“˜ Calcite
Formula: CaCO3
Fluorescence: red
Description: White veinlets; red fluorescence.
Reference: Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367; Tanaka, T. & Hamane, D. (2016) Epidote-(Sr) from Shiromaru mine, Tokyo prefecture, Japan. (conference presentation R1-P14)
β“˜ Caryopilite
Formula: Mn2+3Si2O5(OH)4
Reference: Hirata, D. & Kato, A. (1993): Siegenite in a caryopilite ore from the Okutama mine, Tokyo. Bull. Kanagawa prefect. Mus. (Nat. Sci.), No. 22, 25-32.
β“˜ Celsian
Formula: Ba(Al2Si2O8)
Reference: [MinRec 32:419]; Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367
β“˜ Copper
Formula: Cu
Reference: [MinRec 32:419]; Matsubara S, Miyawaki R, Tiba T, Imai H (2000) Tamaite, the Ca-analogue of ganophyllite, from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 95, 79-83; photo in: Koubutsu Doshikai (2017) Kanto-to Shuhen-no Koubutsu (279pp).
β“˜ Cryptomelane
Formula: K(Mn4+7Mn3+)O16
Reference: Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan)
β“˜ Cuprite
Formula: Cu2O
Reference: photo in: Koubutsu Doshikai (2017) Kanto-to Shuhen-no Koubutsu (279pp).
β“˜ Cymrite
Formula: BaAl2Si2(O,OH)8 · H2O
Reference: Matsubara, S. (1985) Bulletin of the National Science Museum, 11, 37-95.; Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367
β“˜ Datolite
Formula: CaB(SiO4)(OH)
Reference: Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367; Tanaka, T. & Hamane, D. (2016) Epidote-(Sr) from Shiromaru mine, Tokyo prefecture, Japan. (conference presentation R1-P14)
β“˜ Edingtonite
Formula: Ba[Al2Si3O10] · 4H2O
Reference: Matsubara & Kato (1991): Ganseki-Kobutsu-Koshogaku Zasshi, 86, 273-277; Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367
β“˜ Eggletonite
Formula: (Na,K,Ca)2(Mn,Fe)8(Si,Al)12O29(OH)7 · 11H2O
Reference: Matsubara S, Miyawaki R, Tiba T, Imai H (2000) Tamaite, the Ca-analogue of ganophyllite, from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 95, 79-83; MinRec 32:419. ; Tanaka, T. & Hamane, D. (2016) Epidote-(Sr) from Shiromaru mine, Tokyo prefecture, Japan. (conference presentation R1-P14)
β“˜ Epidote-(Sr)
Formula: {CaSr}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Reference: Tanaka, T. & Hamane, D. (2016) Epidote-(Sr) from Shiromaru mine, Tokyo prefecture, Japan. (conference presentation R1-P14)
β“˜ Fluorapatite ?
Formula: Ca5(PO4)3F
Reference: Alfredo Petrov specimens
β“˜ Gamagarite
Formula: Ba2Fe3+(VO4)2(OH)
Reference: Matsubara, S. et al (2004) Journal of Mineralogical and Petrological Sciences, 99, 363-367.
β“˜ Ganophyllite
Formula: (K,Na,Ca)2Mn8(Si,Al)12(O,OH)32 · 8H2O
Reference: [MinRec 32:419]; Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367; photo in: Koubutsu Doshikai (2017) Kanto-to Shuhen-no Koubutsu (279pp).
β“˜ Grossular
Formula: Ca3Al2(SiO4)3
Reference: [MinRec 32:419]; Matsubara S, Miyawaki R, Tiba T, Imai H (2000) Tamaite, the Ca-analogue of ganophyllite, from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 95, 79-83
β“˜ Grossular var. Manganese-bearing Grossular
Formula: (Ca,Mn)3Al2(SiO4)3
Reference: [MinRec 32:419]; Matsubara S, Miyawaki R, Tiba T, Imai H (2000) Tamaite, the Ca-analogue of ganophyllite, from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 95, 79-83
β“˜ Halloysite
Formula: Al2(Si2O5)(OH)4
Reference: Bull. Kanagawa pref. Mus. (Nat. Sci.), 22, 25-32 (1993)
β“˜ Harmotome
Formula: Ba2(Si12Al4)O32 · 12H2O
Reference: Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan); photo in: Koubutsu Doshikai (2017) Kanto-to Shuhen-no Koubutsu (279pp).
β“˜ Hausmannite
Formula: Mn2+Mn3+2O4
Reference: Bull. Kanagawa pref. Mus. (Nat. Sci.), 22, 25-32 (1993)
β“˜ Hematite
Formula: Fe2O3
Reference: Alfredo Petrov specimens
β“˜ Jacobsite
Formula: Mn2+Fe3+2O4
Reference: N. Aikawa (1987) Journal of Geosciences, Osaka City University, 30, 1-13.; εŠ θ—€ζ˜­, & 松原聰. (1980). ζœ¬ι‚¦η”£γƒžγƒ³γ‚¬γƒ³η‘Όι…Έε‘©ι‰±η‰©. ι‰±η‰©ε­¦ι›œθͺŒ, 14(Special3), 86-97.
β“˜ 'Limonite'
Reference: Alfredo Petrov, field observations, june 2011.
β“˜ 'Manganese Oxides'
Reference: Alfredo Petrov specimens
β“˜ Manganosite
Formula: MnO
Reference: Bull. Kanagawa pref. Mus. (Nat. Sci.), 22, 25-32 (1993)
β“˜ Marsturite
Formula: NaCaMn3Si5O14(OH)
Reference: Matsubara et al (1990) Bulletin of the National Science Museum, 16, 79-89.; Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367; http://www.issp.u-tokyo.ac.jp/labs/mdcl/lab/denken/wordpress/?page_id=1969#a02; photo in: Koubutsu Doshikai (2017) Kanto-to Shuhen-no Koubutsu (279pp).; Tanaka, T. & Hamane, D. (2016) Epidote-(Sr) from Shiromaru mine, Tokyo prefecture, Japan. (conference presentation R1-P14)
β“˜ Microcline var. Hyalophane
Formula: (K,Ba)[Al(Si,Al)Si2O8]
Reference: Am Min 90:1468; Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367
β“˜ Neotocite
Formula: (Mn,Fe,Mg)SiO3 · H2O
Reference: Bull. Kanagawa pref. Mus. (Nat. Sci.), 22, 25-32 (1993)
β“˜ Orthoclase
Formula: K(AlSi3O8)
Reference: [MinRec 32:419]; Matsubara S, Miyawaki R, Tiba T, Imai H (2000) Tamaite, the Ca-analogue of ganophyllite, from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 95, 79-83; Tanaka, T. & Hamane, D. (2016) Epidote-(Sr) from Shiromaru mine, Tokyo prefecture, Japan. (conference presentation R1-P14)
β“˜ Orthoclase var. Barium-bearing Orthoclase
Formula: (K,Ba)(AlSi3O8)
Reference: [MinRec 32:419]; Matsubara S, Miyawaki R, Tiba T, Imai H (2000) Tamaite, the Ca-analogue of ganophyllite, from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 95, 79-83
β“˜ Piemontite-(Sr)
Formula: {CaSr}{Al2Mn3+}(Si2O7)(SiO4)O(OH)
Reference: [MinRec 32:419]; Kato & Matsubara (1986) Sanko-Gakkai Kou'en-Youshi, 69.; Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367; photo in: Koubutsu Doshikai (2017) Kanto-to Shuhen-no Koubutsu (279pp).
β“˜ Pyrite
Formula: FeS2
Reference: Alfredo Petrov, field observations, june 2011.
β“˜ Pyroxmangite
Formula: Mn2+SiO3
Reference: N. Aikawa (1987) Journal of Geosciences, Osaka City University, 30, 1-13.
β“˜ Quartz
Formula: SiO2
Reference: Bull. Kanagawa pref. Mus. (Nat. Sci.), 22, 25-32 (1993)
β“˜ Quartz var. Jasper
Reference: University of Tokyo collection
β“˜ Rhodochrosite
Formula: MnCO3
Reference: Hirata, D. & Kato, A. (1993): Siegenite in a caryopilite ore from the Okutama mine, Tokyo. Bull. Kanagawa prefect. Mus. (Nat. Sci.), No. 22, 25-32.
β“˜ Rhodonite
Formula: CaMn3Mn[Si5O15]
Reference: Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367
β“˜ Serandite
Formula: NaMn2+2Si3O8(OH)
Reference: Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367; photo in: Koubutsu Doshikai (2017) Kanto-to Shuhen-no Koubutsu (279pp).
β“˜ Siegenite
Formula: CoNi2S4
Reference: Hirata, D. & Kato, A. (1993): Siegenite in a caryopilite ore from the Okutama mine, Tokyo. Bull. Kanagawa prefect. Mus. (Nat. Sci.), No. 22, 25-32.
β“˜ Spessartine
Formula: Mn2+3Al2(SiO4)3
Reference: N. Aikawa (1987) Journal of Geosciences, Osaka City University, 30, 1-13.
β“˜ Strontianite
Formula: SrCO3
Reference: Matsubara & Kato (1977) Chigaku Kenkyu, 28, 61-64.; Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367; Tanaka, T. & Hamane, D. (2016) Epidote-(Sr) from Shiromaru mine, Tokyo prefecture, Japan. (conference presentation R1-P14)
β“˜ Sussexite
Formula: Mn2+BO2(OH)
Reference: εŠ θ—€ζ˜­, & 松原聰. (1980). ζœ¬ι‚¦η”£γƒžγƒ³γ‚¬γƒ³η‘Όι…Έε‘©ι‰±η‰©. ι‰±η‰©ε­¦ι›œθͺŒ, 14(Special3), 86-97.
β“˜ Tamaite (TL)
Formula: (Ca,K,Ba,Na)3-4Mn24(Si,Al)40(O,OH)112 · 21H2O
Type Locality:
Reference: [J.Mineral.Petrol.Sci.(2000) 95, 79-83; MinRec 32:419]; Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367; photo in: Koubutsu Doshikai (2017) Kanto-to Shuhen-no Koubutsu (279pp).; Tanaka, T. & Hamane, D. (2016) Epidote-(Sr) from Shiromaru mine, Tokyo prefecture, Japan. (conference presentation R1-P14)
β“˜ Tephroite
Formula: Mn2+2SiO4
Reference: Bull. Kanagawa pref. Mus. (Nat. Sci.), 22, 25-32 (1993)
β“˜ Tinzenite
Formula: Ca2Mn2+4Al4[B2Si8O30](OH)2
Reference: Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan)
β“˜ Tokyoite (TL)
Formula: Ba2Mn3+(VO4)2(OH)
Type Locality:
Reference: Am Min 90:1468; Matsubara S, Miyawaki R, Yokoyama K, Shimizu M, Imai H (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences 99, 363-367; photo in: Koubutsu Doshikai (2017) Kanto-to Shuhen-no Koubutsu (279pp).
β“˜ Wiserite
Formula: (Mn2+,Mg)14(B2O5)4(OH)8 · (Si,Mg)(O,OH)4Cl
Reference: εŠ θ—€ζ˜­, & 松原聰. (1980). ζœ¬ι‚¦η”£γƒžγƒ³γ‚¬γƒ³η‘Όι…Έε‘©ι‰±η‰©. ι‰±η‰©ε­¦ι›œθͺŒ, 14(Special3), 86-97.

Gallery:

List of minerals arranged by Strunz 10th Edition classification

Group 1 - Elements
β“˜Copper1.AA.05Cu
Group 2 - Sulphides and Sulfosalts
β“˜Pyrite2.EB.05aFeS2
β“˜Siegenite2.DA.05CoNi2S4
Group 4 - Oxides and Hydroxides
β“˜Birnessite4.FL.45(Na,Ca)0.5(Mn4+,Mn3+)2O4 Β· 1.5H2O
β“˜Cryptomelane4.DK.05aK(Mn4+7Mn3+)O16
β“˜Cuprite4.AA.10Cu2O
β“˜Hausmannite4.BB.10Mn2+Mn3+2O4
β“˜Hematite4.CB.05Fe2O3
β“˜Jacobsite4.BB.05Mn2+Fe3+2O4
β“˜Manganosite4.AB.25MnO
β“˜Quartz4.DA.05SiO2
β“˜var. Jasper4.DA.05SiO2
Group 5 - Nitrates and Carbonates
β“˜Calcite5.AB.05CaCO3
β“˜Rhodochrosite5.AB.05MnCO3
β“˜Strontianite5.AB.15SrCO3
Group 6 - Borates
β“˜Sussexite6.BA.15Mn2+BO2(OH)
β“˜Wiserite6.BA.20(Mn2+,Mg)14(B2O5)4(OH)8 Β· (Si,Mg)(O,OH)4Cl
Group 7 - Sulphates, Chromates, Molybdates and Tungstates
β“˜Baryte7.AD.35BaSO4
Group 8 - Phosphates, Arsenates and Vanadates
β“˜Fluorapatite ?8.BN.05Ca5(PO4)3F
β“˜Gamagarite8.BG.05Ba2Fe3+(VO4)2(OH)
β“˜Tokyoite (TL)8.BG.05Ba2Mn3+(VO4)2(OH)
Group 9 - Silicates
β“˜Aegirine9.DA.25NaFe3+Si2O6
β“˜Albite9.FA.35Na(AlSi3O8)
β“˜Alleghanyite9.AF.45Mn2+5(SiO4)2(OH)2
β“˜Analcime9.GB.05Na(AlSi2O6) Β· H2O
β“˜Andradite9.AD.25Ca3Fe3+2(SiO4)3
β“˜Axinite-(Mn)9.BD.20Ca2Mn2+Al2BSi4O15(OH)
β“˜Banalsite9.FA.60Na2BaAl4Si4O16
β“˜Bementite9.EE.05Mn7Si6O15(OH)8
β“˜Benitoite9.CA.05BaTi(Si3O9)
β“˜Braunite9.AG.05Mn2+Mn3+6(SiO4)O8
β“˜Caryopilite9.ED.15Mn2+3Si2O5(OH)4
β“˜Celsian9.FA.30Ba(Al2Si2O8)
β“˜Cymrite9.EG.05BaAl2Si2(O,OH)8 Β· H2O
β“˜Datolite9.AJ.20CaB(SiO4)(OH)
β“˜Edingtonite9.GA.15Ba[Al2Si3O10] Β· 4H2O
β“˜Eggletonite9.EG.30(Na,K,Ca)2(Mn,Fe)8(Si,Al)12O29(OH)7 Β· 11H2O
β“˜Epidote-(Sr)9.BG.05a{CaSr}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
β“˜Ganophyllite9.EG.30(K,Na,Ca)2Mn8(Si,Al)12(O,OH)32 Β· 8H2O
β“˜Grossular9.AD.25Ca3Al2(SiO4)3
β“˜var. Manganese-bearing Grossular9.AD.25(Ca,Mn)3Al2(SiO4)3
β“˜Halloysite9.ED.10Al2(Si2O5)(OH)4
β“˜Harmotome9.GC.10Ba2(Si12Al4)O32 Β· 12H2O
β“˜Marsturite9.DK.05NaCaMn3Si5O14(OH)
β“˜Microcline
var. Hyalophane
9.FA.30(K,Ba)[Al(Si,Al)Si2O8]
β“˜Neotocite9.ED.20(Mn,Fe,Mg)SiO3 Β· H2O
β“˜Orthoclase9.FA.30K(AlSi3O8)
β“˜var. Barium-bearing Orthoclase9.FA.30(K,Ba)(AlSi3O8)
β“˜Piemontite-(Sr)9.BG.05{CaSr}{Al2Mn3+}(Si2O7)(SiO4)O(OH)
β“˜Pyroxmangite9.DO.05Mn2+SiO3
β“˜Rhodonite9.DK.05CaMn3Mn[Si5O15]
β“˜Serandite9.DG.05NaMn2+2Si3O8(OH)
β“˜Spessartine9.AD.25Mn2+3Al2(SiO4)3
β“˜Tamaite (TL)9.EG.30(Ca,K,Ba,Na)3-4Mn24(Si,Al)40(O,OH)112 Β· 21H2O
β“˜Tephroite9.AC.05Mn2+2SiO4
β“˜Tinzenite9.BD.20Ca2Mn2+4Al4[B2Si8O30](OH)2
Unclassified Minerals, Rocks, etc.
β“˜'Limonite'-
β“˜'Manganese Oxides'-

List of minerals for each chemical element

HHydrogen
Hβ“˜ Tamaite(Ca,K,Ba,Na)3-4Mn24(Si,Al)40(O,OH)112 · 21H2O
Hβ“˜ TokyoiteBa2Mn3+(VO4)2(OH)
Hβ“˜ Piemontite-(Sr){CaSr}{Al2Mn3+}(Si2O7)(SiO4)O(OH)
Hβ“˜ Eggletonite(Na,K,Ca)2(Mn,Fe)8(Si,Al)12O29(OH)7 · 11H2O
Hβ“˜ Ganophyllite(K,Na,Ca)2Mn8(Si,Al)12(O,OH)32 · 8H2O
Hβ“˜ EdingtoniteBa[Al2Si3O10] · 4H2O
Hβ“˜ CaryopiliteMn32+Si2O5(OH)4
Hβ“˜ Neotocite(Mn,Fe,Mg)SiO3 · H2O
Hβ“˜ HalloysiteAl2(Si2O5)(OH)4
Hβ“˜ CymriteBaAl2Si2(O,OH)8 · H2O
Hβ“˜ GamagariteBa2Fe3+(VO4)2(OH)
Hβ“˜ BementiteMn7Si6O15(OH)8
Hβ“˜ TinzeniteCa2Mn42+Al4[B2Si8O30](OH)2
Hβ“˜ AlleghanyiteMn52+(SiO4)2(OH)2
Hβ“˜ MarsturiteNaCaMn3Si5O14(OH)
Hβ“˜ HarmotomeBa2(Si12Al4)O32 · 12H2O
Hβ“˜ Birnessite(Na,Ca)0.5(Mn4+,Mn3+)2O4 · 1.5H2O
Hβ“˜ AnalcimeNa(AlSi2O6) · H2O
Hβ“˜ DatoliteCaB(SiO4)(OH)
Hβ“˜ SeranditeNaMn22+Si3O8(OH)
Hβ“˜ Wiserite(Mn2+,Mg)14(B2O5)4(OH)8 · (Si,Mg)(O,OH)4Cl
Hβ“˜ SussexiteMn2+BO2(OH)
Hβ“˜ Epidote-(Sr){CaSr}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Hβ“˜ Axinite-(Mn)Ca2Mn2+Al2BSi4O15(OH)
BBoron
Bβ“˜ TinzeniteCa2Mn42+Al4[B2Si8O30](OH)2
Bβ“˜ DatoliteCaB(SiO4)(OH)
Bβ“˜ Wiserite(Mn2+,Mg)14(B2O5)4(OH)8 · (Si,Mg)(O,OH)4Cl
Bβ“˜ SussexiteMn2+BO2(OH)
Bβ“˜ Axinite-(Mn)Ca2Mn2+Al2BSi4O15(OH)
CCarbon
Cβ“˜ RhodochrositeMnCO3
Cβ“˜ CalciteCaCO3
Cβ“˜ StrontianiteSrCO3
OOxygen
Oβ“˜ Tamaite(Ca,K,Ba,Na)3-4Mn24(Si,Al)40(O,OH)112 · 21H2O
Oβ“˜ TokyoiteBa2Mn3+(VO4)2(OH)
Oβ“˜ CelsianBa(Al2Si2O8)
Oβ“˜ AegirineNaFe3+Si2O6
Oβ“˜ Piemontite-(Sr){CaSr}{Al2Mn3+}(Si2O7)(SiO4)O(OH)
Oβ“˜ Eggletonite(Na,K,Ca)2(Mn,Fe)8(Si,Al)12O29(OH)7 · 11H2O
Oβ“˜ Ganophyllite(K,Na,Ca)2Mn8(Si,Al)12(O,OH)32 · 8H2O
Oβ“˜ Grossular var. Manganese-bearing Grossular(Ca,Mn)3Al2(SiO4)3
Oβ“˜ Orthoclase var. Barium-bearing Orthoclase(K,Ba)(AlSi3O8)
Oβ“˜ RhodoniteCaMn3Mn[Si5O15]
Oβ“˜ EdingtoniteBa[Al2Si3O10] · 4H2O
Oβ“˜ BanalsiteNa2BaAl4Si4O16
Oβ“˜ AndraditeCa3Fe23+(SiO4)3
Oβ“˜ CaryopiliteMn32+Si2O5(OH)4
Oβ“˜ RhodochrositeMnCO3
Oβ“˜ HausmanniteMn2+Mn23+O4
Oβ“˜ TephroiteMn22+SiO4
Oβ“˜ Neotocite(Mn,Fe,Mg)SiO3 · H2O
Oβ“˜ ManganositeMnO
Oβ“˜ QuartzSiO2
Oβ“˜ HalloysiteAl2(Si2O5)(OH)4
Oβ“˜ BrauniteMn2+Mn63+(SiO4)O8
Oβ“˜ Microcline var. Hyalophane(K,Ba)[Al(Si,Al)Si2O8]
Oβ“˜ CalciteCaCO3
Oβ“˜ CymriteBaAl2Si2(O,OH)8 · H2O
Oβ“˜ GamagariteBa2Fe3+(VO4)2(OH)
Oβ“˜ PyroxmangiteMn2+SiO3
Oβ“˜ JacobsiteMn2+Fe23+O4
Oβ“˜ BementiteMn7Si6O15(OH)8
Oβ“˜ SpessartineMn32+Al2(SiO4)3
Oβ“˜ TinzeniteCa2Mn42+Al4[B2Si8O30](OH)2
Oβ“˜ StrontianiteSrCO3
Oβ“˜ CryptomelaneK(Mn74+Mn3+)O16
Oβ“˜ AlleghanyiteMn52+(SiO4)2(OH)2
Oβ“˜ MarsturiteNaCaMn3Si5O14(OH)
Oβ“˜ HarmotomeBa2(Si12Al4)O32 · 12H2O
Oβ“˜ BenitoiteBaTi(Si3O9)
Oβ“˜ Birnessite(Na,Ca)0.5(Mn4+,Mn3+)2O4 · 1.5H2O
Oβ“˜ HematiteFe2O3
Oβ“˜ AlbiteNa(AlSi3O8)
Oβ“˜ AnalcimeNa(AlSi2O6) · H2O
Oβ“˜ BaryteBaSO4
Oβ“˜ DatoliteCaB(SiO4)(OH)
Oβ“˜ SeranditeNaMn22+Si3O8(OH)
Oβ“˜ Wiserite(Mn2+,Mg)14(B2O5)4(OH)8 · (Si,Mg)(O,OH)4Cl
Oβ“˜ SussexiteMn2+BO2(OH)
Oβ“˜ GrossularCa3Al2(SiO4)3
Oβ“˜ OrthoclaseK(AlSi3O8)
Oβ“˜ CupriteCu2O
Oβ“˜ Epidote-(Sr){CaSr}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Oβ“˜ Axinite-(Mn)Ca2Mn2+Al2BSi4O15(OH)
Oβ“˜ FluorapatiteCa5(PO4)3F
FFluorine
Fβ“˜ FluorapatiteCa5(PO4)3F
NaSodium
Naβ“˜ Tamaite(Ca,K,Ba,Na)3-4Mn24(Si,Al)40(O,OH)112 · 21H2O
Naβ“˜ AegirineNaFe3+Si2O6
Naβ“˜ Eggletonite(Na,K,Ca)2(Mn,Fe)8(Si,Al)12O29(OH)7 · 11H2O
Naβ“˜ Ganophyllite(K,Na,Ca)2Mn8(Si,Al)12(O,OH)32 · 8H2O
Naβ“˜ BanalsiteNa2BaAl4Si4O16
Naβ“˜ MarsturiteNaCaMn3Si5O14(OH)
Naβ“˜ Birnessite(Na,Ca)0.5(Mn4+,Mn3+)2O4 · 1.5H2O
Naβ“˜ AlbiteNa(AlSi3O8)
Naβ“˜ AnalcimeNa(AlSi2O6) · H2O
Naβ“˜ SeranditeNaMn22+Si3O8(OH)
MgMagnesium
Mgβ“˜ Neotocite(Mn,Fe,Mg)SiO3 · H2O
Mgβ“˜ Wiserite(Mn2+,Mg)14(B2O5)4(OH)8 · (Si,Mg)(O,OH)4Cl
AlAluminium
Alβ“˜ Tamaite(Ca,K,Ba,Na)3-4Mn24(Si,Al)40(O,OH)112 · 21H2O
Alβ“˜ CelsianBa(Al2Si2O8)
Alβ“˜ Piemontite-(Sr){CaSr}{Al2Mn3+}(Si2O7)(SiO4)O(OH)
Alβ“˜ Eggletonite(Na,K,Ca)2(Mn,Fe)8(Si,Al)12O29(OH)7 · 11H2O
Alβ“˜ Ganophyllite(K,Na,Ca)2Mn8(Si,Al)12(O,OH)32 · 8H2O
Alβ“˜ Grossular var. Manganese-bearing Grossular(Ca,Mn)3Al2(SiO4)3
Alβ“˜ Orthoclase var. Barium-bearing Orthoclase(K,Ba)(AlSi3O8)
Alβ“˜ EdingtoniteBa[Al2Si3O10] · 4H2O
Alβ“˜ BanalsiteNa2BaAl4Si4O16
Alβ“˜ HalloysiteAl2(Si2O5)(OH)4
Alβ“˜ Microcline var. Hyalophane(K,Ba)[Al(Si,Al)Si2O8]
Alβ“˜ CymriteBaAl2Si2(O,OH)8 · H2O
Alβ“˜ SpessartineMn32+Al2(SiO4)3
Alβ“˜ TinzeniteCa2Mn42+Al4[B2Si8O30](OH)2
Alβ“˜ HarmotomeBa2(Si12Al4)O32 · 12H2O
Alβ“˜ AlbiteNa(AlSi3O8)
Alβ“˜ AnalcimeNa(AlSi2O6) · H2O
Alβ“˜ GrossularCa3Al2(SiO4)3
Alβ“˜ OrthoclaseK(AlSi3O8)
Alβ“˜ Epidote-(Sr){CaSr}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Alβ“˜ Axinite-(Mn)Ca2Mn2+Al2BSi4O15(OH)
SiSilicon
Siβ“˜ Tamaite(Ca,K,Ba,Na)3-4Mn24(Si,Al)40(O,OH)112 · 21H2O
Siβ“˜ CelsianBa(Al2Si2O8)
Siβ“˜ AegirineNaFe3+Si2O6
Siβ“˜ Piemontite-(Sr){CaSr}{Al2Mn3+}(Si2O7)(SiO4)O(OH)
Siβ“˜ Eggletonite(Na,K,Ca)2(Mn,Fe)8(Si,Al)12O29(OH)7 · 11H2O
Siβ“˜ Ganophyllite(K,Na,Ca)2Mn8(Si,Al)12(O,OH)32 · 8H2O
Siβ“˜ Grossular var. Manganese-bearing Grossular(Ca,Mn)3Al2(SiO4)3
Siβ“˜ Orthoclase var. Barium-bearing Orthoclase(K,Ba)(AlSi3O8)
Siβ“˜ RhodoniteCaMn3Mn[Si5O15]
Siβ“˜ EdingtoniteBa[Al2Si3O10] · 4H2O
Siβ“˜ BanalsiteNa2BaAl4Si4O16
Siβ“˜ AndraditeCa3Fe23+(SiO4)3
Siβ“˜ CaryopiliteMn32+Si2O5(OH)4
Siβ“˜ TephroiteMn22+SiO4
Siβ“˜ Neotocite(Mn,Fe,Mg)SiO3 · H2O
Siβ“˜ QuartzSiO2
Siβ“˜ HalloysiteAl2(Si2O5)(OH)4
Siβ“˜ BrauniteMn2+Mn63+(SiO4)O8
Siβ“˜ Microcline var. Hyalophane(K,Ba)[Al(Si,Al)Si2O8]
Siβ“˜ CymriteBaAl2Si2(O,OH)8 · H2O
Siβ“˜ PyroxmangiteMn2+SiO3
Siβ“˜ BementiteMn7Si6O15(OH)8
Siβ“˜ SpessartineMn32+Al2(SiO4)3
Siβ“˜ TinzeniteCa2Mn42+Al4[B2Si8O30](OH)2
Siβ“˜ AlleghanyiteMn52+(SiO4)2(OH)2
Siβ“˜ MarsturiteNaCaMn3Si5O14(OH)
Siβ“˜ HarmotomeBa2(Si12Al4)O32 · 12H2O
Siβ“˜ BenitoiteBaTi(Si3O9)
Siβ“˜ AlbiteNa(AlSi3O8)
Siβ“˜ AnalcimeNa(AlSi2O6) · H2O
Siβ“˜ DatoliteCaB(SiO4)(OH)
Siβ“˜ SeranditeNaMn22+Si3O8(OH)
Siβ“˜ Wiserite(Mn2+,Mg)14(B2O5)4(OH)8 · (Si,Mg)(O,OH)4Cl
Siβ“˜ GrossularCa3Al2(SiO4)3
Siβ“˜ OrthoclaseK(AlSi3O8)
Siβ“˜ Epidote-(Sr){CaSr}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Siβ“˜ Axinite-(Mn)Ca2Mn2+Al2BSi4O15(OH)
PPhosphorus
Pβ“˜ FluorapatiteCa5(PO4)3F
SSulfur
Sβ“˜ SiegeniteCoNi2S4
Sβ“˜ PyriteFeS2
Sβ“˜ BaryteBaSO4
ClChlorine
Clβ“˜ Wiserite(Mn2+,Mg)14(B2O5)4(OH)8 · (Si,Mg)(O,OH)4Cl
KPotassium
Kβ“˜ Tamaite(Ca,K,Ba,Na)3-4Mn24(Si,Al)40(O,OH)112 · 21H2O
Kβ“˜ Eggletonite(Na,K,Ca)2(Mn,Fe)8(Si,Al)12O29(OH)7 · 11H2O
Kβ“˜ Ganophyllite(K,Na,Ca)2Mn8(Si,Al)12(O,OH)32 · 8H2O
Kβ“˜ Orthoclase var. Barium-bearing Orthoclase(K,Ba)(AlSi3O8)
Kβ“˜ Microcline var. Hyalophane(K,Ba)[Al(Si,Al)Si2O8]
Kβ“˜ CryptomelaneK(Mn74+Mn3+)O16
Kβ“˜ OrthoclaseK(AlSi3O8)
CaCalcium
Caβ“˜ Tamaite(Ca,K,Ba,Na)3-4Mn24(Si,Al)40(O,OH)112 · 21H2O
Caβ“˜ Piemontite-(Sr){CaSr}{Al2Mn3+}(Si2O7)(SiO4)O(OH)
Caβ“˜ Eggletonite(Na,K,Ca)2(Mn,Fe)8(Si,Al)12O29(OH)7 · 11H2O
Caβ“˜ Ganophyllite(K,Na,Ca)2Mn8(Si,Al)12(O,OH)32 · 8H2O
Caβ“˜ Grossular var. Manganese-bearing Grossular(Ca,Mn)3Al2(SiO4)3
Caβ“˜ RhodoniteCaMn3Mn[Si5O15]
Caβ“˜ AndraditeCa3Fe23+(SiO4)3
Caβ“˜ CalciteCaCO3
Caβ“˜ TinzeniteCa2Mn42+Al4[B2Si8O30](OH)2
Caβ“˜ MarsturiteNaCaMn3Si5O14(OH)
Caβ“˜ Birnessite(Na,Ca)0.5(Mn4+,Mn3+)2O4 · 1.5H2O
Caβ“˜ DatoliteCaB(SiO4)(OH)
Caβ“˜ GrossularCa3Al2(SiO4)3
Caβ“˜ Epidote-(Sr){CaSr}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Caβ“˜ Axinite-(Mn)Ca2Mn2+Al2BSi4O15(OH)
Caβ“˜ FluorapatiteCa5(PO4)3F
TiTitanium
Tiβ“˜ BenitoiteBaTi(Si3O9)
VVanadium
Vβ“˜ TokyoiteBa2Mn3+(VO4)2(OH)
Vβ“˜ GamagariteBa2Fe3+(VO4)2(OH)
MnManganese
Mnβ“˜ Tamaite(Ca,K,Ba,Na)3-4Mn24(Si,Al)40(O,OH)112 · 21H2O
Mnβ“˜ TokyoiteBa2Mn3+(VO4)2(OH)
Mnβ“˜ Piemontite-(Sr){CaSr}{Al2Mn3+}(Si2O7)(SiO4)O(OH)
Mnβ“˜ Eggletonite(Na,K,Ca)2(Mn,Fe)8(Si,Al)12O29(OH)7 · 11H2O
Mnβ“˜ Ganophyllite(K,Na,Ca)2Mn8(Si,Al)12(O,OH)32 · 8H2O
Mnβ“˜ Grossular var. Manganese-bearing Grossular(Ca,Mn)3Al2(SiO4)3
Mnβ“˜ RhodoniteCaMn3Mn[Si5O15]
Mnβ“˜ CaryopiliteMn32+Si2O5(OH)4
Mnβ“˜ RhodochrositeMnCO3
Mnβ“˜ HausmanniteMn2+Mn23+O4
Mnβ“˜ TephroiteMn22+SiO4
Mnβ“˜ Neotocite(Mn,Fe,Mg)SiO3 · H2O
Mnβ“˜ ManganositeMnO
Mnβ“˜ BrauniteMn2+Mn63+(SiO4)O8
Mnβ“˜ PyroxmangiteMn2+SiO3
Mnβ“˜ JacobsiteMn2+Fe23+O4
Mnβ“˜ BementiteMn7Si6O15(OH)8
Mnβ“˜ SpessartineMn32+Al2(SiO4)3
Mnβ“˜ TinzeniteCa2Mn42+Al4[B2Si8O30](OH)2
Mnβ“˜ CryptomelaneK(Mn74+Mn3+)O16
Mnβ“˜ AlleghanyiteMn52+(SiO4)2(OH)2
Mnβ“˜ MarsturiteNaCaMn3Si5O14(OH)
Mnβ“˜ Birnessite(Na,Ca)0.5(Mn4+,Mn3+)2O4 · 1.5H2O
Mnβ“˜ SeranditeNaMn22+Si3O8(OH)
Mnβ“˜ Wiserite(Mn2+,Mg)14(B2O5)4(OH)8 · (Si,Mg)(O,OH)4Cl
Mnβ“˜ SussexiteMn2+BO2(OH)
Mnβ“˜ Axinite-(Mn)Ca2Mn2+Al2BSi4O15(OH)
FeIron
Feβ“˜ AegirineNaFe3+Si2O6
Feβ“˜ Eggletonite(Na,K,Ca)2(Mn,Fe)8(Si,Al)12O29(OH)7 · 11H2O
Feβ“˜ AndraditeCa3Fe23+(SiO4)3
Feβ“˜ Neotocite(Mn,Fe,Mg)SiO3 · H2O
Feβ“˜ GamagariteBa2Fe3+(VO4)2(OH)
Feβ“˜ JacobsiteMn2+Fe23+O4
Feβ“˜ HematiteFe2O3
Feβ“˜ PyriteFeS2
Feβ“˜ Epidote-(Sr){CaSr}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
CoCobalt
Coβ“˜ SiegeniteCoNi2S4
NiNickel
Niβ“˜ SiegeniteCoNi2S4
CuCopper
Cuβ“˜ CopperCu
Cuβ“˜ CupriteCu2O
SrStrontium
Srβ“˜ Piemontite-(Sr){CaSr}{Al2Mn3+}(Si2O7)(SiO4)O(OH)
Srβ“˜ StrontianiteSrCO3
Srβ“˜ Epidote-(Sr){CaSr}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
BaBarium
Baβ“˜ Tamaite(Ca,K,Ba,Na)3-4Mn24(Si,Al)40(O,OH)112 · 21H2O
Baβ“˜ TokyoiteBa2Mn3+(VO4)2(OH)
Baβ“˜ CelsianBa(Al2Si2O8)
Baβ“˜ Orthoclase var. Barium-bearing Orthoclase(K,Ba)(AlSi3O8)
Baβ“˜ EdingtoniteBa[Al2Si3O10] · 4H2O
Baβ“˜ BanalsiteNa2BaAl4Si4O16
Baβ“˜ Microcline var. Hyalophane(K,Ba)[Al(Si,Al)Si2O8]
Baβ“˜ CymriteBaAl2Si2(O,OH)8 · H2O
Baβ“˜ GamagariteBa2Fe3+(VO4)2(OH)
Baβ“˜ HarmotomeBa2(Si12Al4)O32 · 12H2O
Baβ“˜ BenitoiteBaTi(Si3O9)
Baβ“˜ BaryteBaSO4

Fossils

There are 25 fossil localities from the PaleoBioDB database within this region.

BETA TEST - These data are provided on an experimental basis and are taken from external databases. Mindat.org has no control currently over the accuracy of these data.

Occurrences275
Youngest Fossil Listed247 Ma (Early/Lower Triassic)
Oldest Fossil Listed299 Ma (Permian)
Stratigraphic Units
UnitNo. OccurrencesAge
Iwai1251.3 - 247.2 Ma (Early/Lower Triassic)
Kamiyozawa266259.9 - 252.17 Ma (Permian)
Takamizuyama8298.9 - 279.3 Ma (Paleozoic)
Fossils from RegionClick here to show the list.
Accepted NameHierarchy Age
Agathammina
genus
Chromista : Foraminifera : Tubothalamea : Miliolida : Hemigordiopsidae : Agathammina298.9 - 259.9 Ma
Paleozoic
Baisalina
genus
Chromista : Foraminifera : Tubothalamea : Miliolida : Baisalinidae : Baisalina279.3 - 265.1 Ma
Permian
Biwaella
genus
Chromista : Foraminifera : Tubothalamea : Schubertellidae : Biwaella298.9 - 259.9 Ma
Paleozoic
Boultonia
genus
Chromista : Foraminifera : Boultoniidae : Boultonia268.8 - 265.1 Ma
Permian
Calcitornella
genus
Chromista : Foraminifera : Tubothalamea : Miliolida : Cornuspiridae : Calcitornella290.1 - 259.9 Ma
Permian
Cancellina
genus
Chromista : Foraminifera : Tubothalamea : Neoschwagerinidae : Cancellina298.9 - 259.9 Ma
Paleozoic
Chalaroschwagerina
genus
Chromista : Foraminifera : Tubothalamea : Schwagerinidae : Chalaroschwagerina298.9 - 279.3 Ma
Paleozoic
Chusenella
genus
Chromista : Foraminifera : Tubothalamea : Schwagerinidae : Chusenella298.9 - 259.9 Ma
Paleozoic
Climacammina
genus
Chromista : Foraminifera : Globothalamea : Textulariida : Palaeotextulariidae : Climacammina268.8 - 265.1 Ma
Permian
Codonofusiella
genus
Chromista : Foraminifera : Boultoniidae : Codonofusiella279.3 - 265.1 Ma
Permian
Darvasites
genus
Chromista : Foraminifera : Triticitidae : Darvasites279.3 - 265.1 Ma
Permian
Diplosphaerina
genus
Chromista : Foraminifera : Tubothalamea : Tuberitinidae : Diplosphaerina298.9 - 259.9 Ma
Paleozoic
Dunbarula
genus
Chromista : Foraminifera : Dunbarulidae : Dunbarula268.8 - 265.1 Ma
Permian
Endothyra
genus
Chromista : Foraminifera : Tubothalamea : Endothyridae : Endothyra298.9 - 252.17 Ma
Paleozoic
Globivalvulina
genus
Chromista : Foraminifera : Globivalvulinidae : Globivalvulina298.9 - 259.9 Ma
Paleozoic
Kahlerina
genus
Chromista : Foraminifera : Tubothalamea : Verbeekinidae : Kahlerina290.1 - 259.9 Ma
Permian
Misellina
genus
Chromista : Foraminifera : Misellinidae : Misellina279.3 - 265.1 Ma
Permian
Nagatoella
genus
Chromista : Foraminifera : Triticitidae : Nagatoella298.9 - 279.3 Ma
Paleozoic
Nankinella
genus
Chromista : Foraminifera : Nankinellidae : Nankinella298.9 - 259.9 Ma
Paleozoic
Palaeotextularia
genus
Chromista : Foraminifera : Globothalamea : Textulariida : Palaeotextulariidae : Palaeotextularia298.9 - 259.9 Ma
Paleozoic
Pamirina
genus
Chromista : Foraminifera : Misellinidae : Pamirina298.9 - 259.9 Ma
Paleozoic
Polytaxis
genus
Chromista : Foraminifera : Tubothalamea : Tetrataxidae : Polytaxis268.8 - 265.1 Ma
Permian
Pseudoendothyra
genus
Chromista : Foraminifera : Tubothalamea : Pseudoendothyridae : Pseudoendothyra298.9 - 259.9 Ma
Paleozoic
Pseudofusulina
genus
Chromista : Foraminifera : Pseudofusulinidae : Pseudofusulina298.9 - 259.9 Ma
Paleozoic
Pseudoreichelina
genus
Chromista : Foraminifera : Tubothalamea : Staffellidae : Pseudoreichelina298.9 - 259.9 Ma
Paleozoic
Pseudoschwagerina
genus
Foraminifera : Schwagerinidae : Pseudoschwagerina298.9 - 279.3 Ma
Paleozoic
Rauserella
genus
Chromista : Foraminifera : Dunbarulidae : Rauserella279.3 - 265.1 Ma
Permian
Reichelina
genus
Chromista : Foraminifera : Reichelinidae : Reichelina290.1 - 259.9 Ma
Permian
Schubertella
genus
Foraminifera : Schubertellidae : Schubertella298.9 - 259.9 Ma
Paleozoic
Schwagerina
genus
Animalia : Schwagerina298.9 - 259.9 Ma
Paleozoic
Staffella
genus
Chromista : Foraminifera : Tubothalamea : Staffellidae : Staffella279.3 - 265.1 Ma
Permian
Tetrataxis
genus
Foraminifera : Tetrataxidae : Tetrataxis290.1 - 259.9 Ma
Permian
Toriyamaia
genus
Chromista : Foraminifera : Tubothalamea : Schubertellidae : Toriyamaia290.1 - 265.1 Ma
Permian
Tuberitina
genus
Chromista : Foraminifera : Tubothalamea : Tuberitinidae : Tuberitina298.9 - 259.9 Ma
Paleozoic
Verbeekina
genus
Chromista : Foraminifera : Tubothalamea : Verbeekinidae : Verbeekina268.8 - 265.1 Ma
Permian
Aspenites
genus
Animalia : Mollusca : Cephalopoda : Ammonoidea : Aspenitidae : Aspenites251.3 - 247.2 Ma
Early/Lower Triassic
Hemigordius
genus
Chromista : Foraminifera : Tubothalamea : Miliolida : Hemigordiidae : Hemigordius279.3 - 265.1 Ma
Permian
Palaeotextulariidae
family
Chromista : Foraminifera : Globothalamea : Textulariida : Palaeotextulariidae298.9 - 259.9 Ma
Paleozoic
Schwagerinidae
family
Chromista : Foraminifera : Tubothalamea : Schwagerinidae298.9 - 252.17 Ma
Paleozoic
Neoschwagerinidae
family
Chromista : Foraminifera : Tubothalamea : Neoschwagerinidae279.3 - 259.9 Ma
Permian
Pseudolangella fragilis
species
Chromista : Foraminifera : Lagenida : Protonodosariidae : Pseudolangella : Pseudolangella fragilis290.1 - 259.9 Ma
Permian
Ichthyofrondina
genus
Chromista : Foraminifera : Lagenida : Ichthyolariidae : Ichthyofrondina290.1 - 259.9 Ma
Permian
Yangchienia compressa
species
Foraminifera : Schubertellidae : Yangchienia : Yangchienia compressa298.9 - 259.9 Ma
Paleozoic
Pseudofusulina kraffti
species
Foraminifera : Schwagerinidae : Pseudofusulina : Pseudofusulina kraffti290.1 - 265.1 Ma
Permian
Parafusulina kaerimizensis
species
Foraminifera : Schwagerinidae : Parafusulina : Parafusulina kaerimizensis279.3 - 265.1 Ma
Permian
Neoschwagerina simplex
species
Chromista : Foraminifera : Tubothalamea : Neoschwagerinidae : Neoschwagerina : Neoschwagerina simplex298.9 - 259.9 Ma
Paleozoic
Globivalvulina cyprica
species
Chromista : Foraminifera : Globivalvulinidae : Globivalvulina : Globivalvulina cyprica298.9 - 259.9 Ma
Paleozoic
Schubertella kingi
species
Chromista : Foraminifera : Tubothalamea : Schubertellidae : Schubertella : Schubertella kingi298.9 - 279.3 Ma
Paleozoic
Dunbarula nana
species
Chromista : Foraminifera : Dunbarulidae : Dunbarula : Dunbarula nana298.9 - 259.9 Ma
Paleozoic
Chusenella sinensis
species
Chromista : Foraminifera : Tubothalamea : Schwagerinidae : Chusenella : Chusenella sinensis298.9 - 259.9 Ma
Paleozoic
Pseudodoliolina ozawai
species
Chromista : Foraminifera : Tubothalamea : Verbeekinidae : Pseudodoliolina : Pseudodoliolina ozawai298.9 - 259.9 Ma
Paleozoic
Neofusulinella giraudi
species
Chromista : Foraminifera : Tubothalamea : Schubertellidae : Neofusulinella : Neofusulinella giraudi298.9 - 259.9 Ma
Paleozoic
Parafusulina japonica
species
Foraminifera : Schwagerinidae : Parafusulina : Parafusulina japonica290.1 - 259.9 Ma
Permian
Climacammina valvulinoides
species
Chromista : Foraminifera : Globothalamea : Textulariida : Palaeotextulariidae : Climacammina : Climacammina valvulinoides290.1 - 259.9 Ma
Permian
Abadehella coniformis
species
Chromista : Foraminifera : Tubothalamea : Tetrataxidae : Abadehella : Abadehella coniformis272.3 - 259.9 Ma
Permian
Neoschwagerina craticulifera
species
Foraminifera : Neoschwagerinidae : Neoschwagerina : Neoschwagerina craticulifera298.9 - 259.9 Ma
Paleozoic
Armenina sphaera
species
Foraminifera : Verbeekinidae : Armenina : Armenina sphaera298.9 - 259.9 Ma
Paleozoic
Neoschwagerina margaritae
species
Chromista : Foraminifera : Tubothalamea : Neoschwagerinidae : Neoschwagerina : Neoschwagerina margaritae290.1 - 259.9 Ma
Permian
Neoschwagerina minoensis
species
Chromista : Foraminifera : Tubothalamea : Neoschwagerinidae : Neoschwagerina : Neoschwagerina minoensis290.1 - 259.9 Ma
Permian
Yabeina globosa
species
Foraminifera : Neoschwagerinidae : Yabeina : Yabeina globosa298.9 - 259.9 Ma
Paleozoic
Yabeina
genus
Foraminifera : Neoschwagerinidae : Yabeina298.9 - 259.9 Ma
Paleozoic
Pachyphloia ovata
species
Chromista : Foraminifera : Lagenida : Pachyphloiidae : Pachyphloia : Pachyphloia ovata298.9 - 259.9 Ma
Paleozoic
Misellina sphaerica
species
Chromista : Foraminifera : Misellinidae : Misellina : Misellina sphaerica279.3 - 265.1 Ma
Permian
Maklaya zarodensis
species
Foraminifera : Neoschwagerinidae : Cancellina : Maklaya zarodensis279.3 - 265.1 Ma
Permian
Mesoschubertella thompsoni
species
Chromista : Foraminifera : Tubothalamea : Schubertellidae : Mesoschubertella : Mesoschubertella thompsoni290.1 - 265.1 Ma
Permian
Misellina (Brevaxina) dyhrenfurthi
species
Foraminifera : Verbeekinidae : Misellina : Misellina (Brevaxina) dyhrenfurthi298.9 - 259.9 Ma
Paleozoic
Misellina (Brevaxina) olgae
species
Foraminifera : Verbeekinidae : Misellina : Misellina (Brevaxina) olgae279.3 - 265.1 Ma
Permian
Misellina (Misellina) claudiae
species
Foraminifera : Verbeekinidae : Misellina : Misellina (Misellina) claudiae290.1 - 259.9 Ma
Permian
Chalaroschwagerina vulgaris
species
Foraminifera : Schwagerinidae : Chalaroschwagerina : Chalaroschwagerina vulgaris290.1 - 259.9 Ma
Permian
Chalaroschwagerina globosa
species
Foraminifera : Schwagerinidae : Chalaroschwagerina : Chalaroschwagerina globosa298.9 - 279.3 Ma
Paleozoic
Neoschwagerina
genus
Foraminifera : Neoschwagerinidae : Neoschwagerina268.8 - 265.1 Ma
Permian
Schubertella silvestrii
species
Chromista : Foraminifera : Tubothalamea : Schubertellidae : Schubertella : Schubertella silvestrii290.1 - 259.9 Ma
Permian
Fossil LocalitiesClick to show 25 fossil localities

Other Databases

Wikipedia:https://en.wikipedia.org/wiki/Nishitama_District,_Tokyo
Wikidata ID:Q1048689
GeoNames ID:1855156

Localities in this Region

Other Regions, Features and Areas that Intersect

Japan
Okhotsk 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.
 
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