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Rieti Province, Lazio, Italyi
Regional Level Types
Rieti ProvinceProvince
LazioAdministrative Region
Italy- not defined -

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PhotosMapsSearch
Locality type:
Largest Settlements:
PlacePopulation
Rieti39,068 (2015)
Poggio Mirteto3,343 (2014)
Santa Rufina2,813 (2014)
Antrodoco2,517 (2014)
Cittaducale2,411 (2014)
Poggio Moiano2,279 (2014)
Other Languages:
French:
Province de Rieti, Latium, Italie
German:
Provinz Rieti, Latium, Italien
Italian:
Provincia di Rieti, Lazio, Italia
Russian:
Π ΠΈΠ΅Ρ‚ΠΈ, Π›Π°Ρ†ΠΈΠΎ, Π˜Ρ‚Π°Π»ΠΈΡ
Simplified Chinese:
εˆ—θ’‚ηœ, 拉齐ε₯₯, ζ„ε€§εˆ©
Spanish:
Provincia de Rieti, Lacio, Italia
Arabic:
Ω…Ω‚Ψ§Ψ·ΨΉΨ© رييΨͺي, Ω„Ψ§Ψͺسيو, Ψ₯ΩŠΨ·Ψ§Ω„ΩŠΨ§
Armenian:
ՌիΥ₯ΥΏΥ«, ԼՑցիո, Τ»ΥΏΥ‘Υ¬Υ«Υ‘
Asturian:
Provincia de Rieti, Llaciu, Italia
Basque:
Rietiko probintzia, Lazio, Italia
Bavarian:
Provinz Rieti, Italien (Walsch; Belischelant; BalschlΓ²nt)
Bulgarian:
Π ΠΈΠ΅Ρ‚ΠΈ, Π›Π°Ρ†ΠΈΠΎ, Π˜Ρ‚Π°Π»ΠΈΡ
Catalan:
ProvΓ­ncia de Rieti, Laci, ItΓ lia
Cebuano:
Rieti, Lacio, Italya
Central Bikol:
Provincia nin Rieti, Lazio, Italya
Croatian:
Rieti, Lacij, Italija
Czech:
Provincie Rieti, Lazio, ItΓ‘lie
Dutch:
Rieti, Lazio, ItaliΓ«
Esperanto:
Provinco Rieti, Latio, Italio
Estonian:
Rieti provints, Lazio, Itaalia
Farsi/Persian:
Ψ§Ψ³ΨͺΨ§Ω† ریΨͺی, Ω„Ψ§Ψͺزیو, ایΨͺΨ§Ω„ΫŒΨ§
Finnish:
Rietin maakunta, Lazio, Italia
Galician:
Provincia de Rieti, Lazio, Italia
Georgian:
αƒ αƒ˜αƒ”αƒ’αƒ˜αƒ‘ αƒžαƒ αƒαƒ•αƒ˜αƒœαƒͺαƒ˜αƒ, αƒšαƒαƒͺαƒ˜αƒ, αƒ˜αƒ’αƒαƒšαƒ˜αƒ
Greek:
Αιέτι, Λάτιο, Ιταλία
Hebrew:
Χ¨Χ™ΧΧ˜Χ™, ΧœΧΧ¦Χ™Χ•, ΧΧ™Χ˜ΧœΧ™Χ”
Hungarian:
Rieti megye, Lazio, OlaszorszΓ‘g
Indonesian:
Provinsi Rieti, Lazio, Italia
Japanese:
γƒͺγ‚¨γƒΌγƒ†γ‚£ηœŒ, ラツィγ‚ͺ州, γ‚€γ‚Ώγƒͺγ‚’
Javanese:
Provinsi Rieti, Latium, Itali
Korean:
λ¦¬μ—ν‹°ν˜„, 라치였주, μ΄νƒˆλ¦¬μ•„
Latin:
Provincia Reatina, Latium, Italia
Latvian:
Rieti province, Lacio, Itālija
Lithuanian:
Riečio provincija, Lacijus, Italija
Lombard:
Pruvincia de Rieti, LΓ sio, Italia
Malay:
Wilayah Rieti, Latium, Itali
Norwegian:
Provinsen Rieti, Lazio, Italia
Norwegian (Nynorsk):
Provinsen Rieti, Lazio, Italia
Occitan:
ProvΓ­ncia de Rieti, Laci, ItΓ lia
Piedmontese:
Provincia Γ«d Rieti, Lassio, Italia
Polish:
Prowincja Rieti, Lacjum, WΕ‚ochy
Portuguese:
Rieti, LΓ‘cio, ItΓ‘lia
Romanian:
Provincia Rieti, Lazio, Italia
Scots:
Province o Rieti, Lazio, Italy
Serbian:
Π ΠΈΡ˜Π΅Ρ‚ΠΈ, Π›Π°Ρ†ΠΈΠΎ, Π˜Ρ‚Π°Π»ΠΈΡ˜Π°
Serbo-Croatian:
Rieti, Lacij, Italija
Sicilian:
Pruvincia di Rieti, Lazziu, Italia
Slovenian:
Rieti, Lacij, Italija
Swedish:
Rieti, Lazio, Italien
Tagalog:
Rieti, Lazio, Italya
Turkish:
Rieti ili, Lazio, Δ°talya
Ukrainian:
Π Ρ–Ρ”Ρ‚Ρ–, Π›Π°Ρ†Ρ–ΠΎ, Італія
Urdu:
ءوبہ ریئΨͺی, Ω„Ψ§Ψ²ΫŒΩˆ, Ψ§Ψ·Ψ§Ω„ΫŒΫ
Uzbek (Latin Script):
Rieti, Italiya
Venetian:
Provincia de Rieti, Łasio, ItaΕ‚ia
Vietnamese:
Rieti, Lazio, Ý
Waray:
Rieti, Lazio, Italya
Western Punjabi:
ΨΆΩ„ΨΉ رائیٹی, ءوبہ Ω„ΫŒΨ²ΫŒΩˆ, Ψ§ΩΉΩ„ΫŒ


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Select Mineral List Type

Standard Detailed Gallery Strunz Chemical Elements

Mineral List

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

29 valid minerals. 1 (TL) - type locality of valid minerals.

Rock Types Recorded

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

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

Select Rock List Type

Alphabetical List Tree Diagram

Detailed Mineral List:

β“˜ 'Apatite'
Formula: Ca5(PO4)3(Cl/F/OH)
Reference: Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ 'Apophyllite Group'
Formula: AB4[Si8O22]X · 8H2O
Reference: F. Stoppa and Y. Liu, Eur. J. Mineral. , 1995, 7, pp. 391-402.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ Aragonite
Formula: CaCO3
Reference: "Giorgio Bortolozzi (visual identification)"
β“˜ Baryte
Formula: BaSO4
Reference: "Giorgio Bortolozzi (visual identification)"; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ Calcite
Formula: CaCO3
Reference: F. Stoppa and Y. Liu, Eur. J. Mineral. , 1995, 7, pp. 391-402.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ Celadonite
Formula: K(MgFe3+◻)(Si4O10)(OH)2
Reference: "Giorgio Bortolozzi (visual identification)"
β“˜ 'Chabazite'
Reference: "Giorgio Bortolozzi (visual identification)"
β“˜ 'Chlorite Group'
Reference: Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ 'Clinopyroxene Subgroup'
Reference: Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ Combeite
Formula: Na4.5Ca3.5Si6O17.5(OH)0.5
Reference: Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ Diopside
Formula: CaMgSi2O6
Reference: F. Stoppa and Y. Liu, Eur. J. Mineral. , 1995, 7, pp. 391-402.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ 'Fayalite-Forsterite Series'
Description: Olivine composition mostly (Fa19Β±0.5), but Fa 23 in Mason (1963) a likely L-clast.
Reference: Tschermak, G. (1874) Die TrΓΌmmerstructur der Meteoriten von Orvinio und Chantonnay. Sitzungsberichte der Kaiserlichen Akademie der Wissenschaften in Wien, mathematisch-naturwissenschaftliche Classe, 70 (1875), 459-472; Mason, B. (1963) Olivine in ordinary chondrites. Geochimica et Cosmochimica Acta 27(9): 1011-1023. (Sept 1963).; Grady, M.M., Pratesi, G. & Moggi-Cecchi, V. (2015) Atlas of Meteorites. Cambridge University Press: Cambridge, United Kingdom. 373 pages. ; Grier,Β J.A., Kring,Β D.A., Swindle,Β T.D., Rivkin,Β A.S., Cohen,Β B.A. & Britt,Β D.T. (2004) Analyses of the chondritic meteorite Orvinio (H6): Insight into the origins and evolution of shocked H chondrite material: Meteoritics & Planetary Science 39 (9): 1475-1493. (Sept 2004).
β“˜ Fluorapatite
Formula: Ca5(PO4)3F
Reference: F. Stoppa and Y. Liu, Eur. J. Mineral. , 1995, 7, pp. 391-402.
β“˜ Fluorapophyllite-(K)
Formula: KCa4(Si8O20)(F,OH) · 8H2O
Reference: XRD analysis at Bari University
β“˜ 'Garnet Group'
Formula: X3Z2(SiO4)3
Reference: Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ 'Garnet Group var. Titanium-bearing Garnet'
Reference: Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ 'Gismondine'
Reference: Stoppani F.S. and Curti E. (1982): I minerali del Lazio, Olimpia Ed., Firenze 1982, pagg. 268-269.
β“˜ 'Glass'
Reference: F. Stoppa and Y. Liu, Eur. J. Mineral. , 1995, 7, pp. 391-402.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ GΓΆtzenite
Formula: NaCa6Ti(Si2O7)2OF3
Reference: Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ Gypsum
Formula: CaSO4 · 2H2O
Reference: "Giorgio Bortolozzi (visual identification)"
β“˜ Halite
Formula: NaCl
Reference: Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ Hydroxyapophyllite-(K)
Formula: KCa4(Si8O20)(OH,F) · 8H2O
Reference: XRD analysis at Bari University
β“˜ Iron
Formula: Fe
Reference: Tschermak, G. (1876) Die TrΓΌmmerstructur der Meteoriten von Orvinio und Chantonnay. K. K. Hof- und Staatsdruckerei. 14 pages w. figures.
β“˜ Iron var. Kamacite
Formula: (Fe,Ni)
Reference: Tschermak, G. (1876) Die TrΓΌmmerstructur der Meteoriten von Orvinio und Chantonnay. K. K. Hof- und Staatsdruckerei. 14 pages w. figures.
β“˜ Iron var. Martensite
Formula: Fe
Description: Small metal-rich globules have taenite w. martensite interiors.
Reference: Brearley, A.J. & Jones, R.H. (1998) Chondritic Meteorites. In: Planetary Materials (Papike, JJ - Ed.), Chapter 3: 1-398: Mineralogical Society of America, Washington, DC, USA.
β“˜ Kalsilite
Formula: KAlSiO4
Reference: F. Stoppa and Y. Liu, Eur. J. Mineral. , 1995, 7, pp. 391-402.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ 'K Feldspar'
Formula: KAlSi3O8
Reference: Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ Khibinskite
Formula: K2ZrSi2O7
Reference: F. Stoppa and Y. Liu, Eur. J. Mineral. , 1995, 7, pp. 391-402.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ Magnetite
Formula: Fe2+Fe3+2O4
Reference: Stoppa, F., and Woolley, A.R. (1997): Mineralogy and Petrology 59, 43-67.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ Magnetite var. Titanium-bearing Magnetite
Formula: Fe2+(Fe3+,Ti)2O4
Reference: Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ 'Manganese Oxides'
Reference: Giorgio Bortolozzi (visual identification)
β“˜ 'Melilite Group'
Formula: Ca2M(XSiO7)
Reference: F. Stoppa and Y. Liu, Eur. J. Mineral. , 1995, 7, pp. 391-402.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ Merlinoite (TL)
Formula: (K,Na)5(Ca,Ba)2Al9Si23O64 · 23H2O
Type Locality:
Reference: Passaglia, E., Pongiluppi, D., Rinaldi, R. (1977): Merlinoite, a new mineral of the zeolite group, Neues Jahrbuch fΓΌr Mineralogie, Monatshefte, 1977, 355-364. ; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ Monticellite
Formula: CaMgSiO4
Reference: F. Stoppa and Y. Liu, Eur. J. Mineral. , 1995, 7, pp. 391-402.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ 'Orthopyroxene Subgroup'
Description: Pyroxene in H & L chondrite material (Fs~14-17) & (Fs~16-22), respectively.
Reference: Tschermak, G. (1874) Die TrΓΌmmerstructur der Meteoriten von Orvinio und Chantonnay. Sitzungsberichte der Kaiserlichen Akademie der Wissenschaften in Wien, mathematisch-naturwissenschaftliche Classe, 70 (1875), 459-472; Grady, M.M., Pratesi, G. & Moggi-Cecchi, V. (2015) Atlas of Meteorites. Cambridge University Press: Cambridge, United Kingdom. 373 pages.
β“˜ Pectolite
Formula: NaCa2Si3O8(OH)
Reference: Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ Perovskite
Formula: CaTiO3
Reference: F. Stoppa and Y. Liu, Eur. J. Mineral. , 1995, 7, pp. 391-402.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ 'Phillipsite Subgroup'
Reference: Stoppani F.S. and Curti E. (1982): I minerali del Lazio, Olimpia Ed., Firenze 1982, pagg. 268-269.
β“˜ Phlogopite
Formula: KMg3(AlSi3O10)(OH)2
Reference: F. Stoppa and Y. Liu, Eur. J. Mineral. , 1995, 7, pp. 391-402.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ 'Plagioclase'
Formula: (Na,Ca)[(Si,Al)AlSi2]O8
Reference: Grier,Β J.A., Kring,Β D.A., Swindle,Β T.D., Rivkin,Β A.S., Cohen,Β B.A. & Britt,Β D.T. (2004) Analyses of the chondritic meteorite Orvinio (H6): Insight into the origins and evolution of shocked H chondrite material: Meteoritics & Planetary Science 39 (9): 1475-1493. (Sept 2004).
β“˜ 'Plessite'
Reference: Taylor, G.J. (1968) On the Thermal History of Chondrites: Master's Thesis: Rice University. 73 pages.
β“˜ Quartz
Formula: SiO2
Reference: "Giorgio Bortolozzi (visual identification)"
β“˜ Quartz var. Chalcedony
Formula: SiO2
Reference: "Giorgio Bortolozzi (visual identification)"
β“˜ 'Rhombohedral Carbonate'
Formula: (Ca/Mg/Fe/Mn etc)CO3
Reference: Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ Schorlomite
Formula: Ca3Ti2(SiO4)(Fe3+O4)2
Reference: Stoppa, F., and Woolley, A.R. (1997): Mineralogy and Petrology 59, 43-67.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ 'Serpentine Subgroup'
Formula: D3[Si2O5](OH)4
Reference: "Giorgio Bortolozzi (visual identification)"
β“˜ Spinel
Formula: MgAl2O4
Reference: F. Stoppa and Y. Liu, Eur. J. Mineral. , 1995, 7, pp. 391-402.; Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.
β“˜ Taenite
Formula: (Fe,Ni)
Description: Tschermak (1876) observed WidmannstΓ€tten patterns.
Reference: Tschermak, G. (1876) Die TrΓΌmmerstructur der Meteoriten von Orvinio und Chantonnay. K. K. Hof- und Staatsdruckerei. 14 pages w. figures.; Brearley, A.J. & Jones, R.H. (1998) Chondritic Meteorites. In: Planetary Materials (Papike, JJ - Ed.), Chapter 3: 1-398: Mineralogical Society of America, Washington, DC, USA. ; Taylor, G.J. (1968) On the Thermal History of Chondrites: Master's Thesis: Rice University. 73 pages.
β“˜ Thaumasite
Formula: Ca3(SO4)[Si(OH)6](CO3) · 12H2O
Reference: "Giorgio Bortolozzi (visual identification)"
β“˜ Tridymite
Formula: SiO2
Reference: Microprobe analysis by Victor Sharygin (Novosibirsk, Russia)
β“˜ Troilite
Formula: FeS
Reference: Tschermak, G. (1876) Die TrΓΌmmerstructur der Meteoriten von Orvinio und Chantonnay. K. K. Hof- und Staatsdruckerei. 14 pages w. figures.; Grady, M.M., Pratesi, G. & Moggi-Cecchi, V. (2015) Atlas of Meteorites. Cambridge University Press: Cambridge, United Kingdom. 373 pages. ; Taylor, G.J. (1968) On the Thermal History of Chondrites: Master's Thesis: Rice University. 73 pages.
β“˜ Willhendersonite
Formula: KCa[Al3Si3O12] · 5H2O
β“˜ 'Zeolite Group'
Reference: Conticelli, S., D’antonio, M., Pinarelli, L., & Civetta, L. (2002). Source contamination and mantle heterogeneity in the genesis of Italian potassic and ultrapotassic volcanic rocks: Sr–Nd–Pb isotope data from Roman Province and Southern Tuscany. Mineralogy and Petrology, 74(2-4), 189-222. Cundari, A., & Ferguson, A. K. (1991). Petrogenetic relationships between melilitite and lamproite. Contributions to Mineralogy and Petrology, 107(3), 343-357. Isakova, A. T., Panina, L. I., & Stoppa, F. (2017). Genesis of kalsilite melilitite at Cupaello, Central Italy: Evidence from melt inclusions. Petrology, 25(4), 433-447. Sabatini, V. (1903). La pirossenite melilitica di Coppaeli. Boll. R. Com. geol. Ital., 34, 376. Stoppa, F., & Cundari, A. (1995). A new Italian carbonatite occurrence at Cupaello (Rieti) and its genetic significance. Contributions to Mineralogy and Petrology, 122(3), 275-288. Villa, I., Serva, L., & Quercioli, C. (1991). Verso una datazione della lava di Cupaello (Rieti). Plinius, 4, 102-103.

Gallery:

List of minerals arranged by Strunz 10th Edition classification

Group 1 - Elements
β“˜Iron1.AE.05Fe
β“˜var. Kamacite1.AE.05(Fe,Ni)
β“˜var. Martensite1.AE.05Fe
β“˜Taenite1.AE.10(Fe,Ni)
Group 2 - Sulphides and Sulfosalts
β“˜Troilite2.CC.10FeS
Group 3 - Halides
β“˜Halite3.AA.20NaCl
Group 4 - Oxides and Hydroxides
β“˜Magnetite4.BB.05Fe2+Fe3+2O4
β“˜var. Titanium-bearing Magnetite4.BB.05Fe2+(Fe3+,Ti)2O4
β“˜Perovskite4.CC.30CaTiO3
β“˜Quartz4.DA.05SiO2
β“˜var. Chalcedony4.DA.05SiO2
β“˜Spinel4.BB.05MgAl2O4
β“˜Tridymite4.DA.10SiO2
Group 5 - Nitrates and Carbonates
β“˜Aragonite5.AB.15CaCO3
β“˜Calcite5.AB.05CaCO3
Group 7 - Sulphates, Chromates, Molybdates and Tungstates
β“˜Baryte7.AD.35BaSO4
β“˜Gypsum7.CD.40CaSO4 Β· 2H2O
β“˜Thaumasite7.DG.15Ca3(SO4)[Si(OH)6](CO3) Β· 12H2O
Group 8 - Phosphates, Arsenates and Vanadates
β“˜Fluorapatite8.BN.05Ca5(PO4)3F
Group 9 - Silicates
β“˜Celadonite9.EC.15K(MgFe3+β—»)(Si4O10)(OH)2
β“˜Combeite9.CJ.15aNa4.5Ca3.5Si6O17.5(OH)0.5
β“˜Diopside9.DA.15CaMgSi2O6
β“˜Fluorapophyllite-(K)9.EA.15KCa4(Si8O20)(F,OH) Β· 8H2O
β“˜'Gismondine'9..
β“˜GΓΆtzenite9.BE.22NaCa6Ti(Si2O7)2OF3
β“˜Hydroxyapophyllite-(K)9.EA.15KCa4(Si8O20)(OH,F) Β· 8H2O
β“˜Kalsilite9.FA.05KAlSiO4
β“˜Khibinskite9.BC.10K2ZrSi2O7
β“˜Merlinoite (TL)9.GC.15(K,Na)5(Ca,Ba)2Al9Si23O64 Β· 23H2O
β“˜Monticellite9.AC.10CaMgSiO4
β“˜Pectolite9.DG.05NaCa2Si3O8(OH)
β“˜Phlogopite9.EC.20KMg3(AlSi3O10)(OH)2
β“˜Schorlomite9.AD.25Ca3Ti2(SiO4)(Fe3+O4)2
β“˜Willhendersonite9.GD.10KCa[Al3Si3O12] Β· 5H2O
β“˜'Zeolite Group'9.G0.
Unclassified Minerals, Rocks, etc.
β“˜'Apatite'-Ca5(PO4)3(Cl/F/OH)
β“˜'Apophyllite Group'-AB4[Si8O22]X Β· 8H2O
β“˜'Chabazite'-
β“˜'Chlorite Group'-
β“˜'Clinopyroxene Subgroup'-
β“˜'Fayalite-Forsterite Series'-
β“˜'Garnet Group'-X3Z2(SiO4)3
β“˜'var. Titanium-bearing Garnet'-X3Z2(SiO4)3
β“˜'Glass'-
β“˜'K Feldspar'-KAlSi3O8
β“˜'Manganese Oxides'-
β“˜'Melilite Group'-Ca2M(XSiO7)
β“˜'Orthopyroxene Subgroup'-
β“˜'Phillipsite Subgroup'-
β“˜'Plagioclase'-(Na,Ca)[(Si,Al)AlSi2]O8
β“˜'Plessite'-
β“˜'Rhombohedral Carbonate'-(Ca/Mg/Fe/Mn etc)CO3
β“˜'Serpentine Subgroup'-D3[Si2O5](OH)4

List of minerals for each chemical element

HHydrogen
Hβ“˜ Merlinoite(K,Na)5(Ca,Ba)2Al9Si23O64 · 23H2O
Hβ“˜ PhlogopiteKMg3(AlSi3O10)(OH)2
Hβ“˜ WillhendersoniteKCa[Al3Si3O12] · 5H2O
Hβ“˜ Apophyllite GroupAB4[Si8O22]X · 8H2O
Hβ“˜ Fluorapophyllite-(K)KCa4(Si8O20)(F,OH) · 8H2O
Hβ“˜ Hydroxyapophyllite-(K)KCa4(Si8O20)(OH,F) · 8H2O
Hβ“˜ GypsumCaSO4 · 2H2O
Hβ“˜ Serpentine SubgroupD3[Si2O5](OH)4
Hβ“˜ ThaumasiteCa3(SO4)[Si(OH)6](CO3) · 12H2O
Hβ“˜ CeladoniteK(MgFe3+◻)(Si4O10)(OH)2
Hβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Hβ“˜ PectoliteNaCa2Si3O8(OH)
Hβ“˜ CombeiteNa4.5Ca3.5Si6O17.5(OH)0.5
CCarbon
Cβ“˜ CalciteCaCO3
Cβ“˜ AragoniteCaCO3
Cβ“˜ ThaumasiteCa3(SO4)[Si(OH)6](CO3) · 12H2O
Cβ“˜ Rhombohedral Carbonate(Ca/Mg/Fe/Mn etc)CO3
OOxygen
Oβ“˜ Merlinoite(K,Na)5(Ca,Ba)2Al9Si23O64 · 23H2O
Oβ“˜ PhlogopiteKMg3(AlSi3O10)(OH)2
Oβ“˜ DiopsideCaMgSi2O6
Oβ“˜ KalsiliteKAlSiO4
Oβ“˜ WillhendersoniteKCa[Al3Si3O12] · 5H2O
Oβ“˜ MonticelliteCaMgSiO4
Oβ“˜ Melilite GroupCa2M(XSiO7)
Oβ“˜ SpinelMgAl2O4
Oβ“˜ KhibinskiteK2ZrSi2O7
Oβ“˜ CalciteCaCO3
Oβ“˜ Apophyllite GroupAB4[Si8O22]X · 8H2O
Oβ“˜ FluorapatiteCa5(PO4)3F
Oβ“˜ PerovskiteCaTiO3
Oβ“˜ MagnetiteFe2+Fe23+O4
Oβ“˜ SchorlomiteCa3Ti2(SiO4)(Fe3+O4)2
Oβ“˜ TridymiteSiO2
Oβ“˜ Fluorapophyllite-(K)KCa4(Si8O20)(F,OH) · 8H2O
Oβ“˜ Hydroxyapophyllite-(K)KCa4(Si8O20)(OH,F) · 8H2O
Oβ“˜ AragoniteCaCO3
Oβ“˜ BaryteBaSO4
Oβ“˜ GypsumCaSO4 · 2H2O
Oβ“˜ Serpentine SubgroupD3[Si2O5](OH)4
Oβ“˜ ThaumasiteCa3(SO4)[Si(OH)6](CO3) · 12H2O
Oβ“˜ Quartz var. ChalcedonySiO2
Oβ“˜ CeladoniteK(MgFe3+◻)(Si4O10)(OH)2
Oβ“˜ Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Oβ“˜ QuartzSiO2
Oβ“˜ Rhombohedral Carbonate(Ca/Mg/Fe/Mn etc)CO3
Oβ“˜ K FeldsparKAlSi3O8
Oβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Oβ“˜ GΓΆtzeniteNaCa6Ti(Si2O7)2OF3
Oβ“˜ PectoliteNaCa2Si3O8(OH)
Oβ“˜ CombeiteNa4.5Ca3.5Si6O17.5(OH)0.5
Oβ“˜ Magnetite var. Titanium-bearing MagnetiteFe2+(Fe3+,Ti)2O4
Oβ“˜ Garnet GroupX3Z2(SiO4)3
FFluorine
Fβ“˜ FluorapatiteCa5(PO4)3F
Fβ“˜ Fluorapophyllite-(K)KCa4(Si8O20)(F,OH) · 8H2O
Fβ“˜ Hydroxyapophyllite-(K)KCa4(Si8O20)(OH,F) · 8H2O
Fβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Fβ“˜ GΓΆtzeniteNaCa6Ti(Si2O7)2OF3
NaSodium
Naβ“˜ Merlinoite(K,Na)5(Ca,Ba)2Al9Si23O64 · 23H2O
Naβ“˜ Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Naβ“˜ GΓΆtzeniteNaCa6Ti(Si2O7)2OF3
Naβ“˜ PectoliteNaCa2Si3O8(OH)
Naβ“˜ CombeiteNa4.5Ca3.5Si6O17.5(OH)0.5
Naβ“˜ HaliteNaCl
MgMagnesium
Mgβ“˜ PhlogopiteKMg3(AlSi3O10)(OH)2
Mgβ“˜ DiopsideCaMgSi2O6
Mgβ“˜ MonticelliteCaMgSiO4
Mgβ“˜ SpinelMgAl2O4
Mgβ“˜ CeladoniteK(MgFe3+◻)(Si4O10)(OH)2
Mgβ“˜ Rhombohedral Carbonate(Ca/Mg/Fe/Mn etc)CO3
AlAluminium
Alβ“˜ Merlinoite(K,Na)5(Ca,Ba)2Al9Si23O64 · 23H2O
Alβ“˜ PhlogopiteKMg3(AlSi3O10)(OH)2
Alβ“˜ KalsiliteKAlSiO4
Alβ“˜ WillhendersoniteKCa[Al3Si3O12] · 5H2O
Alβ“˜ SpinelMgAl2O4
Alβ“˜ Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Alβ“˜ K FeldsparKAlSi3O8
SiSilicon
Siβ“˜ Merlinoite(K,Na)5(Ca,Ba)2Al9Si23O64 · 23H2O
Siβ“˜ PhlogopiteKMg3(AlSi3O10)(OH)2
Siβ“˜ DiopsideCaMgSi2O6
Siβ“˜ KalsiliteKAlSiO4
Siβ“˜ WillhendersoniteKCa[Al3Si3O12] · 5H2O
Siβ“˜ MonticelliteCaMgSiO4
Siβ“˜ Melilite GroupCa2M(XSiO7)
Siβ“˜ KhibinskiteK2ZrSi2O7
Siβ“˜ Apophyllite GroupAB4[Si8O22]X · 8H2O
Siβ“˜ SchorlomiteCa3Ti2(SiO4)(Fe3+O4)2
Siβ“˜ TridymiteSiO2
Siβ“˜ Fluorapophyllite-(K)KCa4(Si8O20)(F,OH) · 8H2O
Siβ“˜ Hydroxyapophyllite-(K)KCa4(Si8O20)(OH,F) · 8H2O
Siβ“˜ Serpentine SubgroupD3[Si2O5](OH)4
Siβ“˜ ThaumasiteCa3(SO4)[Si(OH)6](CO3) · 12H2O
Siβ“˜ Quartz var. ChalcedonySiO2
Siβ“˜ CeladoniteK(MgFe3+◻)(Si4O10)(OH)2
Siβ“˜ Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Siβ“˜ QuartzSiO2
Siβ“˜ K FeldsparKAlSi3O8
Siβ“˜ GΓΆtzeniteNaCa6Ti(Si2O7)2OF3
Siβ“˜ PectoliteNaCa2Si3O8(OH)
Siβ“˜ CombeiteNa4.5Ca3.5Si6O17.5(OH)0.5
Siβ“˜ Garnet GroupX3Z2(SiO4)3
PPhosphorus
Pβ“˜ FluorapatiteCa5(PO4)3F
Pβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
SSulfur
Sβ“˜ BaryteBaSO4
Sβ“˜ GypsumCaSO4 · 2H2O
Sβ“˜ ThaumasiteCa3(SO4)[Si(OH)6](CO3) · 12H2O
Sβ“˜ TroiliteFeS
ClChlorine
Clβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Clβ“˜ HaliteNaCl
KPotassium
Kβ“˜ Merlinoite(K,Na)5(Ca,Ba)2Al9Si23O64 · 23H2O
Kβ“˜ PhlogopiteKMg3(AlSi3O10)(OH)2
Kβ“˜ KalsiliteKAlSiO4
Kβ“˜ WillhendersoniteKCa[Al3Si3O12] · 5H2O
Kβ“˜ KhibinskiteK2ZrSi2O7
Kβ“˜ Fluorapophyllite-(K)KCa4(Si8O20)(F,OH) · 8H2O
Kβ“˜ Hydroxyapophyllite-(K)KCa4(Si8O20)(OH,F) · 8H2O
Kβ“˜ CeladoniteK(MgFe3+◻)(Si4O10)(OH)2
Kβ“˜ K FeldsparKAlSi3O8
CaCalcium
Caβ“˜ Merlinoite(K,Na)5(Ca,Ba)2Al9Si23O64 · 23H2O
Caβ“˜ DiopsideCaMgSi2O6
Caβ“˜ WillhendersoniteKCa[Al3Si3O12] · 5H2O
Caβ“˜ MonticelliteCaMgSiO4
Caβ“˜ Melilite GroupCa2M(XSiO7)
Caβ“˜ CalciteCaCO3
Caβ“˜ FluorapatiteCa5(PO4)3F
Caβ“˜ PerovskiteCaTiO3
Caβ“˜ SchorlomiteCa3Ti2(SiO4)(Fe3+O4)2
Caβ“˜ Fluorapophyllite-(K)KCa4(Si8O20)(F,OH) · 8H2O
Caβ“˜ Hydroxyapophyllite-(K)KCa4(Si8O20)(OH,F) · 8H2O
Caβ“˜ AragoniteCaCO3
Caβ“˜ GypsumCaSO4 · 2H2O
Caβ“˜ ThaumasiteCa3(SO4)[Si(OH)6](CO3) · 12H2O
Caβ“˜ Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Caβ“˜ Rhombohedral Carbonate(Ca/Mg/Fe/Mn etc)CO3
Caβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Caβ“˜ GΓΆtzeniteNaCa6Ti(Si2O7)2OF3
Caβ“˜ PectoliteNaCa2Si3O8(OH)
Caβ“˜ CombeiteNa4.5Ca3.5Si6O17.5(OH)0.5
TiTitanium
Tiβ“˜ PerovskiteCaTiO3
Tiβ“˜ SchorlomiteCa3Ti2(SiO4)(Fe3+O4)2
Tiβ“˜ GΓΆtzeniteNaCa6Ti(Si2O7)2OF3
Tiβ“˜ Magnetite var. Titanium-bearing MagnetiteFe2+(Fe3+,Ti)2O4
MnManganese
Mnβ“˜ Rhombohedral Carbonate(Ca/Mg/Fe/Mn etc)CO3
FeIron
Feβ“˜ MagnetiteFe2+Fe23+O4
Feβ“˜ SchorlomiteCa3Ti2(SiO4)(Fe3+O4)2
Feβ“˜ CeladoniteK(MgFe3+◻)(Si4O10)(OH)2
Feβ“˜ TroiliteFeS
Feβ“˜ Iron var. Kamacite(Fe,Ni)
Feβ“˜ Taenite(Fe,Ni)
Feβ“˜ Iron var. MartensiteFe
Feβ“˜ IronFe
Feβ“˜ Rhombohedral Carbonate(Ca/Mg/Fe/Mn etc)CO3
Feβ“˜ Magnetite var. Titanium-bearing MagnetiteFe2+(Fe3+,Ti)2O4
NiNickel
Niβ“˜ Iron var. Kamacite(Fe,Ni)
Niβ“˜ Taenite(Fe,Ni)
ZrZirconium
Zrβ“˜ KhibinskiteK2ZrSi2O7
BaBarium
Baβ“˜ Merlinoite(K,Na)5(Ca,Ba)2Al9Si23O64 · 23H2O
Baβ“˜ BaryteBaSO4

Fossils

There are 5 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.

Occurrences30
Youngest Fossil Listed2.59 Ma (Pleistocene)
Oldest Fossil Listed191 Ma (Early Jurassic)
Stratigraphic Units
UnitNo. OccurrencesAge
Maiolica1129.4 - 122.46 Ma (Early/Lower Cretaceous)
Bugarone superiore1150.8 - 145 Ma (Late Jurassic)
Fossils from RegionClick here to show the list.
Accepted NameHierarchy Age
Cuneolina
genus
Chromista : Foraminifera : Globothalamea : Loftusiida : Cuneolinidae : Cuneolina86.3 - 72.1 Ma
Late/Upper Cretaceous
Globotruncana
genus
Chromista : Foraminifera : Globothalamea : Rotaliida : Globotruncanidae : Globotruncana85.8 - 72.1 Ma
Late/Upper Cretaceous
Orbitoides
genus
Chromista : Foraminifera : Globothalamea : Rotaliida : Orbitoididae : Orbitoides85.8 - 72.1 Ma
Late/Upper Cretaceous
Siderolites
genus
Chromista : Foraminifera : Globothalamea : Rotaliida : Calcarinidae : Siderolites85.8 - 72.1 Ma
Late/Upper Cretaceous
Columastrea
genus
Animalia : Cnidaria : Anthozoa : Scleractinia : Columastraeidae : Columastrea86.3 - 83.6 Ma
Late/Upper Cretaceous
Elasmocoenia
genus
Animalia : Cnidaria : Anthozoa : Scleractinia : Stylinidae : Elasmocoenia86.3 - 83.6 Ma
Late/Upper Cretaceous
Belemnitida
order
Animalia : Mollusca : Cephalopoda : Belemnitida190.8 - 182.7 Ma
Early Jurassic
Durania
genus
Animalia : Mollusca : Bivalvia : Hippuritida : Radiolitidae : Durania85.8 - 72.1 Ma
Late/Upper Cretaceous
Gorjanovicia
genus
Animalia : Mollusca : Bivalvia : Hippuritida : Radiolitidae : Gorjanovicia86.3 - 72.1 Ma
Late/Upper Cretaceous
Hippurites
genus
Animalia : Mollusca : Bivalvia : Hippuritida : Hippuritidae : Hippurites86.3 - 83.6 Ma
Late/Upper Cretaceous
Sauvagesia
genus
Animalia : Mollusca : Bivalvia : Hippuritida : Radiolitidae : Sauvagesia85.8 - 72.1 Ma
Late/Upper Cretaceous
Clausastrea
genus
Animalia : Cnidaria : Anthozoa : Scleractinia : Montlivaltiidae : Clausastrea86.3 - 83.6 Ma
Late/Upper Cretaceous
Miliolidae
family
Chromista : Foraminifera : Tubothalamea : Miliolida : Miliolidae86.3 - 83.6 Ma
Late/Upper Cretaceous
Thaumatoporella
genus
Plantae : Chlorophyta : Thaumatoporella86.3 - 83.6 Ma
Late/Upper Cretaceous
Acteonella
genus
Animalia : Mollusca : Gastropoda : Cephalaspidea : Acteonidae : Acteonella86.3 - 83.6 Ma
Late/Upper Cretaceous
Kobya monteneronensis
species
Animalia : Cnidaria : Anthozoa : Scleractinia : Microsolenidae : Kobya : Kobya monteneronensis152.1 - 145 Ma
Late Jurassic
Castiglionastrea tenuisepta
species
Animalia : Cnidaria : Anthozoa : Scleractinia : Heterocoeniidae : Castiglionastrea : Castiglionastrea tenuisepta157.3 - 152.1 Ma
Jurassic
Actinostreon gregareum
species
Animalia : Mollusca : Bivalvia : Ostreida : Palaeolophidae : Actinostreon : Actinostreon gregareum157.3 - 152.1 Ma
Jurassic
Anancus arvernensis
species
Animalia : Chordata : Mammalia : Proboscidea : Gomphotheriidae : Anancus : Anancus arvernensis5.333 - 2.588 Ma
Cenozoic
Plagioptychus aguilloni
species
Animalia : Mollusca : Bivalvia : Hippuritida : Plagioptychidae : Plagioptychus : Plagioptychus aguilloni86.3 - 83.6 Ma
Late/Upper Cretaceous
Stomiosphaera
genus
Ciliophora : Stomiosphaera85.8 - 72.1 Ma
Late/Upper Cretaceous
Pseudohastites longiformis
species
Animalia : Mollusca : Cephalopoda : Belemnitida : Passaloteuthididae : Pseudohastites : Pseudohastites longiformis190.8 - 182.7 Ma
Early Jurassic
Tapirus arvernensis
species
Animalia : Chordata : Mammalia : Perissodactyla : Tapiridae : Tapirus : Tapirus arvernensis5.333 - 2.588 Ma
Cenozoic
Fossil LocalitiesClick to show 5 fossil localities

Other Databases

Wikipedia:https://en.wikipedia.org/wiki/Province_of_Rieti
Wikidata ID:Q16267
GeoNames ID:3169411

Localities in this Region

Other Regions, Features and Areas that Intersect

Eurasian 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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