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Clinopyroxene Subgroup from African Plate

Algeria
 
  • Annaba Province
    • Annaba District
      • Edough-Cap de Fer Massif
Marignac, Christian (1988). P-T-X evolution of ore veins associated with palaeogeothermal activity at Aïn Barbar (NE Konstantine, Algeria): reconstruction from fluid inclusion data. Bulletin de Minéralogie, 111(3-4), 359-381.
  • Bordj Badji Mokhtar Province
    • Bordj Badji Mokhtar District
      • Bordj Badji Mokhtar
Greshake, Ansgar, Krot, Alexander N., Keil, Klaus (2004) Mineralogy and Chemistry of Fine-Grained Matrices, Rims, and Dark Inclusions in the CR Carbonaceous Chondrites Acfer/el Djouf 001 and the Ungrouped Carbonaceous Chondrites Acfer 094 and Adelaide. Workshop on Chondrites and Protoplanetary Disk.
Oba, T., Nagase, K. & Hayashi, A. (1998) Mineralogy and petrology of chondrule in Ouallen (Tanezrouft) meteorite: Bulletin Joetsu Univ. Educ. 17(2): 891-899. (March1998).
  • Illizi Province
    • Illizi District
      • Illizi
Dautria, J. M., Dupuy, C., Takherist, D., & Dostal, J. (1992). Carbonate metasomatism in the lithospheric mantle: peridotitic xenoliths from a melilititic district of the Sahara basin. Contributions to Mineralogy and Petrology, 111(1), 37-52.
BOSSIERE, G., & MEGARTSI, M. (1982). PETROLOGY OF PYROXENITE INCLUSIONS FROM THE RUSHAYITE OF IN TERIA (NE OF ILLIZI), ALGERIA. BULLETIN DE MINERALOGIE, 105(1), 89-98.
Bossiere, G., & Megartsi, M. (1971). Découverte d'un type de lave intermediare entre les rushayites et les Katungites dans le Sahara nord-oriental (Algérie). Comptes Rendus de l'Académie des Sciences (Series D), 273, 547-550.
  • In Guezzam Province
    • In Guezzam District
      • Laouni
Augé, T., Joubert, M., & Bailly, L. (2012). Typology of mafic–ultramafic complexes in Hoggar, Algeria: Implications for PGE, chromite and base-metal sulphide mineralisation. Journal of African Earth Sciences, 63, 32-47.
J.P. Lorand and J.Y. Cottin, Bull. Minéral. , 1987, 110, pp. 373-378.
  • Sétif Province
    • Sétif District
      • Sétif
Mason, B. & Wiik, H.B. (1966) The Composition of the Bath, Frankfort, Kakangari, Rose City, and Tadjera Meteorites. American Museum Novitates, No.2272, New York. 24 pp. (Dec 1966).
  • Skikda Province
    • Azzaba District
      • Es Sebt
Lustrino, M., Agostini, S., Chalal, Y., Fedele, L., Stagno, V., Colombi, F., & Bouguerra, A. (2016). Exotic lamproites or normal ultrapotassic rocks? The Late Miocene volcanic rocks from Kef Hahouner, NE Algeria, in the frame of the circum-Mediterranean lamproites. Journal of Volcanology and Geothermal Research, 327, 539-553.
  • Tamanrasset Province (Tamanghasset Province)
    • Abalessa District
Dautria, J. M., Dostal, J., Dupuy, C., & Liotard, J. M. (1988). Geochemistry and petrogenesis of alkali basalts from Tahalra (Hoggar, Northwest Africa). Chemical Geology, 69(1-2), 17-35.
Dautria, J. M., Liotard, J. M., Cabanes, N., Girod, M., & Briqueu, L. (1987). Amphibole-rich xenoliths and host alkali basalts: petrogenetic constraints and implications on the recent evolution of the upper mantle beneath Ahaggar (Central Sahara, Southern Algeria). Contributions to Mineralogy and Petrology, 95(2), 133-144.
Leblanc, M., Dautria, J. M., & Girod, M. (1982). Magnesian ilmenitite xenoliths in a basanite from Tahalra, Ahaggar (Southern Algeria). Contributions to Mineralogy and Petrology, 79(4), 347-354
Allègre, C. J., Dupré, B., Lambret, B., & Richard, P. (1981). The subcontinental versus suboceanic debate, I Lead-neodymium-strontium isotopes in primary alkali basalts from a shield area the Ahaggar volcanic suite. Earth and Planetary Science Letters, 52(1), 85-92.
Girod, M., Dautria, J. M., & De Giovanni, R. (1981). A first insight into the constitution of the upper mantle under the Hoggar area (southern Algeria): the lherzolite xenoliths in the alkali-basalts. Contributions to Mineralogy and Petrology, 77(1), 66-73.
Angola
 
  • Huíla Province
    • Chibia
Campeny, M., Proenza, J., Melgarejo, J. C., Torró, L., & Gonçalves, A. O. (2011) Petrology and geochemistry of the mafic-ultramafic Hamutenha intrusion (Kunene complex, SW Angola): metallogenic implications. in11 th SGA Biennial Meeting Let’s Talk Ore Deposits 26-29th September 2011 Antofagasta, Chile pp 663-665
    • Quilengues
Alberti, A., Castorina, F., Censi, P., Comin-Chiaramonti, P., & Gomes, C. B. (1999). Geochemical characteristics of Cretaceous carbonatites from Angola. Journal of African Earth Sciences, 29(4), 735-759. doi.org/10.1016/S0899-5362(99)00127-X
Issa Filho, A. B. R. M. D., Dos Santos, A. B. R. M. D., Riffel, B. F., Lapido-Loureiro, F. E. V., & McReath, I. (1991). Aspects of the geology, petrology and chemistry of some Angolan carbonatites. Journal of Geochemical Exploration, 40(1-3), 205-226. doi.org/10.1016/0375-6742(91)90039-W
Allsopp, H. L., & Hargraves, R. B. (1985). Rb-Sr ages and palaeomagnetic data for some Angolan alkaline intrusives. Transactions of the Geological Society of South Africa, 88(2), 295-299.
Torquato, J. R. (1977). GEOTECTONIC OUTLINE OF ANGOLA. Cahiers de l'Office de la Recherche Scientifique et Technique Outre-Mer. Paris, Serie Geologie, 9, 15-34.
Lapido-Loureiro, F. D. V. (1968). Sub-volcanic carbonatite structures of Angola. In Proceedings of the International Geological Congress, Report of the twenty-third session, Prague (Vol. 2, pp. 147-161).
Alves, C.A.M. 1968. Estudo geologico e petrologico do macico alcalino-carbonatitico do Quicuco. Junta de Investigacoes do Ultramar, Lisboa.
Lapido-Loureiro, F.E. 1973. Carbonatitos de Angola. Memorias e Trabalhos do Instituto de Investigacoes Cientifica de Angola, 11.
  • Lunda Sul Province
Nikitina, L. P., Marin, Y. B., Skublov, S. G., Korolev, N. M., Saltykova, A. K., Zinchenko, V. N., & Chissupa, H. M. (2012). U-Pb age and geochemistry of zircon from mantle xenoliths of the Katoka and Kat-115 kimberlitic pipes (Republic of Angola). In Doklady Earth Sciences (Vol. 445, No. 1, pp. 840-844). MAIK Nauka/Interperiodica.
Atlantic Ocean
 
Geldmacher, J., Hoernle, K., Klügel, A., van den Bogaard, P., & Bindeman, I. (2008). Geochemistry of a new enriched mantle type locality in the northern hemisphere: Implications for the origin of the EM-I source. Earth and Planetary Science Letters, 265(1-2), 167-182. doi.org/10.1016/j.epsl.2007.10.001
  • Mid-Atlantic Ridge complex
Liu, K., Huang, F., Gao, S., Zhang, Z., Ren, Y., & An, B. (2022). Morphology of framboidal pyrite and its textural evolution: Evidence from the Logatchev area, Mid-Atlantic Ridge. Ore Geology Reviews, 141, 104630.
Marchesi, C., Garrido, C. J., Harvey, J., González-Jiménez, J. M., Hidas, K., Lorand, J. P., & Gervilla, F. (2013). Platinum-group elements, S, Se and Cu in highly depleted abyssal peridotites from the Mid-Atlantic Ocean Ridge (ODP Hole 1274A): Influence of hydrothermal and magmatic processes. Contributions to Mineralogy and Petrology, 166(5), 1521-1538.
Moll, M., Paulick, H., Suhr, G., & Bach, W. (2007). Data report: microprobe analyses of primary phases (olivine, pyroxene, and spinel) and alteration products (serpentine, iowaite, talc, magnetite, and sulfides) in Holes 1268A, 1272A, and 1274A. In Proceedings of the Ocean Drilling Program, Scientific Results (Vol. 209, pp. 1-13). College Station, TX: Ocean Drilling Program.
    • Sierra Leone fracture zone
Bortnikov, N. S., Mochalov, A. G., & Cherkashev, G. A. (2006, July). Native minerals and intermetallides of noble and nonferrous metals in sediments of the Markov Deep, Mid-Atlantic Ridge. In Doklady earth sciences (Vol. 409, No. 2, p. 929). Springer Nature BV.
    • Trans-Atlantic Geotraverse hydrothermal field (TAG)
Wang, S., & Chang, L. (2022). Rock Magnetic Signatures of Hydrothermal Mineralization in the Trans‐Atlantic Geotraverse (TAG) Hydrothermal Field. Geochemistry, Geophysics, Geosystems, 23(5), e2022GC010368.
  • Walvis Ridge
Dietrich, V. J., Carman, M. F., Wyttenbach, A., & McKee, E. H. (1984). Geochemistry of basalts from Holes 519A, 520, 522B, and 524, Deep Sea Drilling Project Leg 73 (South Atlantic). Hsu «, KJ, LaBrecque, JL et al.(Eds.), Init. Rep. DSDP, 73, 579-601.
Carman, M.F., Dietrich, V.J & Sommerauer, J. 1984. Petrography and mineral chemistry of basalts from holes 519A, 520, 522B and 524 - Leg 73 (South Atlantic) of the Deep Sea Drilling Project. Initial Reports, Deep Sea Drilling Project, 73. US Government Printing Office, Washington, DC, 545-570.
Cameroon
 
  • South Region
    • Océan
      • Nyong Complex greenstone belts
        • Anyouzok Fe deposit
Swiffa Fajong, Isaac, Marvine Nzepang Tankwa, Donald Hermann Fossi, Sylvestre Ganno, Cyriel Moudioh, Landry Soh Tamehe, Cheo Emmanuel Suh, and Jean Paul Nzenti. (2022) "Lithostratigraphy, Origin, and Geodynamic Setting of Iron Formations and Host Rocks of the Anyouzok Region, Congo Craton, Southwestern Cameroon" Minerals 12, no. 10: 1198. https://doi.org/10.3390/min12101198
  • Southwest Region
Marzoli, A., Piccirillo, E. M., Renne, P. R., Bellieni, G., Iacumin, M., Nyobe, J. B., & Tongwa, A. T. (2000). The Cameroon Volcanic Line revisited: petrogenesis of continental basaltic magmas from lithospheric and asthenospheric mantle sources. Journal of petrology, 41(1), 87-109. doi.org/10.1093/petrology/41.1.87
Ballentine, C. J., Lee, D. C., & Halliday, A. N. (1997). Hafnium isotopic studies of the Cameroon line and new HIMU paradoxes. Chemical Geology, 139(1-4), 111-124. doi.org/10.1016/S0009-2541(97)00028-4
Déruelle, B., Moreau, C., Nkoumbou, C., Kambou, R., Lissom, J., Njonfang, E., ... & Nono, A. (1991). The Cameroon line: a review. In Magmatism in extensional structural settings (pp. 274-327). Springer, Berlin, Heidelberg.
Halliday, A. N., Dickin, A. P., Fallick, A. E., & Fitton, J. G. (1988). Mantle dynamics: a Nd, Sr, Pb and O isotopic study of the Cameroon line volcanic chain. Journal of Petrology, 29(1), 181-211. doi.org/10.1093/petrology/29.1.181
Fitton, J. G. (1987). The Cameroon line, West Africa: a comparison between oceanic and continental alkaline volcanism. Geological Society, London, Special Publications, 30(1), 273-291.
Fitton, J. G., & Dunlop, H. M. (1985). The Cameroon line, West Africa, and its bearing on the origin of oceanic and continental alkali basalt. Earth and Planetary Science Letters, 72(1), 23-38. doi.org/10.1016/0012-821X(85)90114-1
Tchoua, F. (1973). SUR L'EXISTENCE D'UNE PHASE INITIALE IGNIMBRITIQUE DANS LE VOLCANISME DES MONTS BAMBOUTO (CAMEROUN). Comptes Rendus Hebdomadaires des Seances de l'Academie des Sciences, Paris, 276D, 2863-2866.
Tchoua, F. (1972). Sur la formation des caldéras des Monts Bambouto (Cameroun). CR Acad. Sci., Paris, 274, 799-801.
Tchoua, F. (1968). Découverte d‟ ignimbrites dans la région de Dschang (Cameroun). Ann. Fac. Sci. Univ. Féd. Cameroun, Yaoundé, Cameroun, 77-94.
Gèze, B. (1953). Les volcans du Cameroun occidental. Bulletin Volcanologique, 13(1), 63-92. doi.org/10.1007/BF02596792
    • Fako
      • Buea
Fitton, J. G. (1987). The Cameroon line, West Africa: a comparison between oceanic and continental alkaline volcanism. Geological Society, London, Special Publications, 30(1), 273-291. doi.org/10.1144/GSL.SP.1987.030.01.13
Fitton, J. G., & Dunlop, H. M. (1985). The Cameroon line, West Africa, and its bearing on the origin of oceanic and continental alkali basalt. Earth and Planetary Science Letters, 72(1), 23-38. doi.org/10.1016/0012-821X(85)90114-1
Fitton, J. G., Hughes, D. J. (1981) Strontian melilite in a nephelinite lava from Etinde, Cameroon. Mineralogical Magazine, 44 (335) 261-264 doi:10.1180/minmag.1981.044.335.03
Smith, A. L. (1970). Sphene, perovskite and coexisting Fe-Ti oxide minerals. American Mineralogist: Journal of Earth and Planetary Materials, 55(1-2), 264-269.
Gèze, B. (1943). Géographie physique et géologie du Cameroun occidental (Vol. 17). Éditions du Muséum, 1-271.
Jérémine, E. (1943). Contribution à l'étude pétrographique du Cameroun Occidental. In: Memoires du Museum National d'Histoire Naturelle. Paris, NS, 17, 273-320.
Lacroix, Alfred (1923) Minéralogie de Madagascar Tome 3 - Lithologie Appendice - Index Geographique. Société d'Éditions Géographiques, Maritimes et Coloniales, Paris. p.1-450.
doi.org/10.1017/S0016756800064128
doi.org/10.1093/petrology/36.2.373
Farges, François, Brown, Gordon E., Jr.,, Velde, Danielle (1994) Structural environment of Zr in two inosilicates from Cameroon: Mineralogical and geochemical implications. American Mineralogist, 79 (9-10) 838-847
Déruelle, B., Moreau, C., Nkoumbou, C., Kambou, R., Lissom, J., Njonfang, E., ... & Nono, A. (1991). The Cameroon line: a review. In Magmatism in extensional structural settings (pp. 274-327). Springer, Berlin, Heidelberg. doi.org/10.1007/978-3-642-73966-8_12
Jérémine, E. (1943). Contribution à l'étude pétrographique du Cameroun Occidental. In: Memoires du Museum National d'Histoire Naturelle. Paris, NS, 17, 273-320.
Cape Verde
 
Barker, A. K., Troll, V. R., Ellam, R. M., Hansteen, T. H., Harris, C., Stillman, C. J., & Andersson, A. (2012). Magmatic evolution of the Cadamosto Seamount, Cape Verde: beyond the spatial extent of EM1. Contributions to Mineralogy and Petrology, 163(6), 949-965. doi.org/10.1007/s00410-011-0708-2
DR Congo
 
  • North Kivu
    • Masisi Territory
      • Bahunde
Aoki, K. I., Yoshida, T., Yusa, K., & Nakamura, Y. (1985). Petrology and geochemistry of the Nyamuragira volcano, Zaire. Journal of Volcanology and Geothermal Research, 25(1-2), 1-28. doi.org/10.1016/0377-0273(85)90002-2
Aoki, K. I., & Kurasawa, H. (1984). Sr isotope study of the tephrite series from Nyamuragira volcano, Zaire. Geochemical Journal, 18(2), 95-100. doi.org/10.2343/geochemj.18.95
Hamaguchi, H. (1983). Volcanoes Nyiragongo and Nyamuragira: geophysical aspects. Tohoku Univ.
Ueki, S. (1983). Recent volcanism of Nyamuragira and Nyiragongo. Volcanoes Nyiragongo and Nyamuragira: geophysical aspects, 7-18.
Aoki, K., Ishiwaka, K., & Kanisawa, S. (1981). Fluorine geochemistry of basaltic rocks from continental and oceanic regions and petrogenetic application. Contributions to Mineralogy and Petrology, 76(1), 53-59. doi.org/10.1007/BF00373683
Bell, K., & Powell, J. L. (1969). Strontium isotopic studies of alkalic rocks: the potassium-rich lavas of the Birunga and Toro—Ankole Regions, East and Central Equatorial Africa. Journal of Petrology, 10(3), 536-572. doi.org/10.1093/petrology/10.3.536
Denaeyer, M. E., Schellinck, F., & Coppez, A. (1965). Recueil d'analyses des laves du fossé tectonique de l'Afrique centrale. Annales. Musée Roy. Afrique Centrale. Belgique, Ann. Ser. 8, Sci. Geol., 49, 1-234.
Thonnard, R. L. G., & Denaeyer, M. E. (1965). Carte volcanologique des Virunga, Feuille No. 1. 1:50000 and Introduction generale et Notice Explicative de la Feuille No. 1. Centre National de Volcanologie (Belgique), Bruxelles.
Holmes, A., & Harwood, H. F. (1937). The volcanic area of Bufumbira. Part 2. The petrology of the volcanic field of Bufumbria, south-west Uganda, and of other parts of the Birunga field. Geological Survey of Uganda, Memoir, 3 (Part 2).
Richard, J.J. & Padang, M.N. 1957. Active volcanoes of the world. Part 4 Africa and the Red Sea. International Volcanological Association, Napoli, Italy.
    • Nyiragongo Territory
Haapala, I. L. M. A. R. I. (2011). Th. G. Sahama’s (1910–1983) volcanological and mineralogical studies in Africa: Part I. Expeditions to the Virunga Volcanic Field and petrological-mineralogical studies on the Nyiragongo volcano. Bulletin of the Geological Society of Finland, 83, 41-55.
Demant, A., Lestrade, P., Lubala, R. T., Kampunzu, A. B., & Durieux, J. (1994). Volcanological and petrological evolution of Nyiragongo volcano, Virunga volcanic field, Zaire. Bulletin of Volcanology, 56(1), 47-61. doi.org/10.1007/BF00279728
GEE, L. L., & Sack, R. O. (1988). Experimental petrology of melilite nephelinites. Journal of Petrology, 29(6), 1233-1255. doi.org/10.1093/petrology/29.6.1233
Tazieff, H. (1984). Mt. Niragongo: renewed activity of the lava lake. Journal of Volcanology and Geothermal Research, 20(3-4), 267-280. doi.org/10.1016/0377-0273(84)90043-X
Hamaguchi, H. (1983). Volcanoes Nyiragongo and Nyamuragira: geophysical aspects. Tohoku Univ.
Vollmer, R., & Norry, M. J. (1983). Possible origin of K-rich volcanic rocks from Virunga, East Africa, by metasomatism of continental crustal material: Pb, Nd and Sr isotopic evidence. Earth and Planetary Science Letters, 64(3), 374-386. doi.org/10.1016/0012-821X(83)90097-3
Sahama, T. G. (1978). The Nyiragongo main cone. Annales, Musee Royal de l'Afrique Centrale, Tervuren, Belgique. Serie In 8º, Sciences Geologiques 81.
Sahama, T. G. (1973). Evolution of the Nyiragongo magma. Journal of Petrology, 14(1), 33-48. doi.org/10.1093/petrology/14.1.33
Denaeyer, M. E. (1972). LES LAVES DU FOSSE TECTONIQUE DE L'AFRIQUE CENTRALE (KIVU, RWANDA, TORO-ANKOLE). I. SUPPLEMENT AU RECUEIL D'ANALYSES DE 1965. II. MAGMATOLOGIE. Annales, Musee Royal de l'Afrique Centrale, Tervuren, Belgique. Serie In 8º, Sciences Geologiques, 72.
Bell, K., & Powell, J. L. (1969). Strontium isotopic studies of alkalic rocks: the potassium-rich lavas of the Birunga and Toro—Ankole Regions, East and Central Equatorial Africa. Journal of Petrology, 10(3), 536-572. doi.org/10.1093/petrology/10.3.536
Mineralogical Magazine (1958) 31 (2), 698-699.
Mineralogical Magazine 1957 31 : 698-699.
  • South Kivu
    • Kabare Territory
Kampunzu, A. B., Lubala, R. T., Makutu, M. N., Caron, J. P., Rocci, G., & Vellutini, P. J. (1985). Les complexes alcalins de la région interlacustre à l'est du Zaïre et au Burundi: un exemple de massifs anorogéniques de relaxation. Journal of African Earth Sciences (1983), 3(1-2), 151-167. doi.org/10.1016/0899-5362(85)90033-8
Lubala, R. T., Kampunzu, A. B., & Makutu, M. N. (1985). Un inventaire des complexes anorogéniques du Burundi, du Ruanda et du Zaïre. Journal of African Earth Sciences (1983), 3(1-2), 169-174. doi.org/10.1016/0899-5362(85)90034-X
VELLUTINI, P., BONHOMME, M., CARON, J., KAMPUNZU, A., & LUBALA, T. (1981). ON THE TECTONIC SIGNIFICANCE OF THE ALKALINE ACIDIC COMPLEXES OF KAHUZI AND BIEGA (KIVU, ZAIRE). COMPTES RENDUS DE L ACADEMIE DES SCIENCES SERIE II, 292(14), 1027-1029.
N.. Boutakoff. (1956). Les Massifs volcaniques du Kahusi et du Biega (Kivu, Congo belge). Memoires de l'Institut Geologique de l'Universite de Louvain, 9 (5), 1-41.
Egypt
 
  • New Valley Governorate
Methot, R. L., Noonan, Albert F., Jarosewich, E. & Degasparis, A. A. (1974). The Isna meteorite - a C3 find from Egypt. Meteoritics 9 (4): 381-382. (Dec 1974)
  • Qena Governorate
    • Qift area
Yousef, Samar, Oh, Chang Whan, Kawaguchi, Kenta, Abdelkareem, Mohamed (2023) Tectonic Evolution of the Fawakhir Ophiolite, Central Eastern Desert of Egypt: Implications for Island Arc Amalgamation and Subduction Polarity during the Neoproterozoic. Minerals, 13 (8) doi:10.3390/min13081022
  • Red Sea Governorate
Abdelnasser, A., Kumral, M. (2017) The nature of gold-bearing fluids in Atud gold deposit, Central Eastern Desert, Egypt. International Geology Review, 59:15, 1845-1860.
Sharara, N. A., Wilson, G. C., & Rucklidge, J. C. (1999). Platinum-group elements and gold in Cu-Ni-mineralized peridotite at Gabbro Akarem, Eastern Desert, Egypt. Canadian Mineralogist, 37(5), 1081-1098.
Kharbish, S. (2020). Mineral chemistry, geochemistry, Raman spectroscopy and geotectonic significance of Neoproterozoic ophiolitic peridotites and pyroxenites from Kab Amiri district, central Eastern Desert, Egypt. Frontiers in Scientific Research and Technology.
    • Wadi Nugrus
Ibrahim, M. E., Saleh, G. M., Dawood, N. A., & Aly, G. M. (2013). Ocellar lamprophyre dyke bearing mineralization, Wadi Nugrus, Eastern Desert, Egypt: Geology, mineralogy and geochemical implications. Journal of Geology and Mining Research, 2(4), 74-86.
Ethiopia
 
  • Oromia Region
    • East Shewa Zone
Gasparon, M., Innocenti, F., Manetti, P., Peccerillo, A., & Tsegaye, A. (1993). Genesis of the Pliocene to Recent bimodal mafic-felsic volcanism in the Debre Zeyt area, central Ethiopia: Volcanological and geochemical constraints. Journal of African Earth Sciences (and the Middle East), 17(2), 145-165. doi.org/10.1016/0899-5362(93)90032-L
Mohr, P. A. (1967). Further notes on the explosion craters of Bishoftu (Debre Zeit). Bulletin of the Geophysical Observatory, 10, 99-112.
Mohr, P. A. (1961). The geology, structure, and origin of the Bishoftu explosion craters. Bulletin of the Geophysical Observatory, The University College of Addis Ababa, 2(2), 65-101.
Di Paola, G.M. 1973. The Ethiopian rift valley (between 7º00' and 8º40' lat.north). Bulletin Volcanologique, 36, 517-560.
Gabon
 
  • Estuaire Province
    • Komo
      • Monts de Cristal complex
Maier, W. D., Rasmussen, B., Fletcher, I. R., Godel, B., Barnes, S. J., Fisher, L. A., ... & Lahaye, Y. (2015). Petrogenesis of the∼ 2· 77 Ga Monts de Cristal Complex, Gabon: Evidence for Direct Precipitation of Pt-arsenides from Basaltic Magma. Journal of Petrology, 56(7), 1285-1308.
Guinea
 
  • Kindia Region
Augé, T., Gloaguen, É., Chevillard, M., & Bailly, L. (2018). Mineralogy, geochemistry and emplacement of the Conakry Igneous Complex, Guinea: implications for the Ni–Cu–PGE mineralization. Mineralogical Magazine, 82(3), 593-624.
Israel
 
  • Southern District (HaDarom District)
    • Ramat Negev Regional Council
Woolley, Alan R. (2019) Alkaline Rocks and Carbonatites of the World. Part 4: Antarctica, Asia and Europe (excluding the former USSR), Australasia and Oceanic Islands. The Geological Society of London. doi:10.1144/mpar4
Samoilov, V. S., & Vapnik, Y. (2007). Fractional melting–the determining factor in the origin of the tephrite–basanite–nephelinite rock suite: evidence from western Makhtesh Ramon, Israel. Neues Jahrbuch für Mineralogie-Abhandlungen: Journal of Mineralogy and Geochemistry, 184(2), 181-195.
Vapnik, Y., Sharygin, V. V., Samoilov, V., & Yudalevich, Z. (2007). The petrogenesis of basic and ultrabasic alkaline rocks of western Makhtesh Ramon, Israel: geochemistry, melt and fluid inclusion study. International Journal of Earth Sciences, 96(4), 663-684.
Vapnik, Y. (2005). Melt and fluid inclusions and mineral thermobarometry of mantle xenoliths in Makhtesh Ramon, Israel. Israel Journal of Earth Sciences, 54(1), 15-28.
Eyal, M., Becker, A., & Samoylov, V. (1996). Mt. Arod–an Early Cretaceous basanitic volcano with a fossil lava lake. Isr. J. Earth Sci, 45, 31-38.
Bogoch, R., Weissbrod, T., & Bar-Matthews, M. (1992). Significance of REE-mineral inclusions in aegirine from an alkali syenite, Negev, Israel. European Journal of Mineralogy, 1337-1346.
Lang, B., Hebeda, E. H., Priem, H. N. A., Verdurmen, E. A., & Steinitz, G. (1988). K-Ar and Rb-Sr ages of early Cretaceous magmatic rocks from Makhtesh Ramon, southern Israel. Israel Journal of Earth-Sciences, 37(2-3), 65-72.
Starinsky, A., Bielski, M. & Bonen, D. (1980). Rb-Sr whole rock age of the syenitic intrusions (Shen Ramon and Gavnunim) in the Ramon area, southern Israel. Israel Journal of Earth Sciences, 29, 177-181.
Garfunkel, Z., & Katz, A. (1967). New magmatic features in Makhtesh Ramon, southern Israel. Geological Magazine, 104(6), 608-629.
Bentor, Y. K. (1952). Magmatic Intrusions and Lava-sheets in the Raman area of the Nagev (Southern Israel). Geological Magazine, 89(2), 129-140.
    • Tamar Regional Council
      • Hatrurim Basin
Britvin, Sergey N., Galuskina, Irina O., Vlasenko, Natalia S., Vereshchagin, Oleg S., Bocharov, Vladimir N., Krzhizhanovskaya, Maria G., Shilovskikh, Vladimir V., Galuskin, Evgeny V., Vapnik, Yevgeny, Obolonskaya, Edita V. (2021) Keplerite, Ca9(Ca0.50.5)Mg(PO4)7, a new meteoritic and terrestrial phosphate isomorphous with merrillite, Ca9NaMg(PO4)7. American Mineralogist, 106 (12) 1917-1927 doi:10.2138/am-2021-7834
Italy
 
  • Sicily Channel (Sicilian Channel; Strait of Sicily)
    • Adventure Plateau (Adventure Bank)
Peccerillo, A. (2017): Cenozoic Volcanism in the Tyrrhenian Sea Region. Second Edition. Advances in Geology. Springer International Publishing AG, Cham, Switzerland, 398 pp.
Calanchi, N., Colantoni, P., Rossi, P.L., Saitta, M., and Serri, G. (1989): The Strait of Sicily continental rift systems: physiography and petrochemistry of the submarine volcanic centres. Mar. Geol., 87, 55–83
Peccerillo, A. (2017): Cenozoic Volcanism in the Tyrrhenian Sea Region. Second Edition. Advances in Geology. Springer International Publishing AG, Cham, Switzerland, 398 pp.
Calanchi, N., Colantoni, P., Rossi, P.L., Saitta, M., and Serri, G. (1989): The Strait of Sicily continental rift systems: physiography and petrochemistry of the submarine volcanic centres. Mar. Geol., 87, 55–83
Peccerillo, A. (2017): Cenozoic Volcanism in the Tyrrhenian Sea Region. Second Edition. Advances in Geology. Springer International Publishing AG, Cham, Switzerland, 398 pp.
Rotolo, S.G., Castorina, F., Cellura, D., Pompilio, M. (2006): Petrology and geochemistry of submarine volcanism in the Sicily Channel Rift. J. Geol., 114, 3, 355-365
Peccerillo, A. (2017): Cenozoic Volcanism in the Tyrrhenian Sea Region. Second Edition. Advances in Geology. Springer International Publishing AG, Cham, Switzerland, 398 pp.
Rotolo, S.G., Castorina, F., Cellura, D., Pompilio, M. (2006): Petrology and geochemistry of submarine volcanism in the Sicily Channel Rift. J. Geol., 114, 3, 355-365
Calanchi, N., Colantoni, P., Rossi, P. L., Saitta, M., & Serri, G. (1989). The Strait of Sicily continental rift systems: physiography and petrochemistry of the submarine volcanic centres. Marine Geology, 87(1), 55-83.
Beccaluva, L., Colantoni, P., Di Girolamo, P., Savelli, C. (1982-1983): Basalti alcalini dragati nel canale di Sicilia con età K-Ar indicanti il Miocene superiore. Rend. Soc. Ital. Mineral. Petrol., 38, 497-498
Beccaluva, L., Macciotta, G., Di Girolamo, P., Savelli, C. (1981): Upper Miocene submarine volcanism in the Strait of Sicily (Banco Senza Nome). Bulletin of Volcanology, 44, 573–581
Beccaluva, L., Macciotta, G., Di Girolamo, P., Savelli, C. (1981): Upper Miocene submarine volcanism in the Strait of Sicily (Banco Senza Nome). Bull. Volcanol., 44, 573–581.
Peccerillo, A. (2017): Cenozoic Volcanism in the Tyrrhenian Sea Region. Second Edition. Advances in Geology. Springer International Publishing AG, Cham, Switzerland, 398 pp.
Rotolo, S.G., Castorina, F., Cellura, D., Pompilio, M. (2006): Petrology and geochemistry of submarine volcanism in the Sicily Channel Rift. J. Geol., 114, 3, 355-365
  • Sicily
    • Metropolitan City of Catania
      • Catania
Manuella, F.C., Carbone, S., Ottolini, L., and Gibilisco, S. (2012) Micro-Raman spectroscopy and SIMS characterization of oxykinoshitalite in an olivine nephelinite from the Hyblean Plateau (Sicily, Italy). European Journal of Mineralogy, 24, 527–533.
      • Etna Volcanic Complex
Branca, S., Coltelli, M., De Beni, E., & Wijbrans, J. (2008). Geological evolution of Mount Etna volcano (Italy) from earliest products until the first central volcanism (between 500 and 100 ka ago) inferred from geochronological and stratigraphic data. International Journal of Earth Sciences, 97(1), 135-152.
Peccerillo, A. (2005). Plio-quaternary volcanism in Italy (Vol. 365). New York: Springer-Verlag Berlin Heidelberg.
Armienti, P. I. E. T. R. O., Tonarini, S., D’Orazio, M. A. S. S. I. M. O., & Innocenti, F. A. B. R. I. Z. I. O. (2004). Genesis and evolution of Mt. Etna alkaline lavas: petrological and Sr-Nd-B isotope constraints. Periodico di Mineralogia, 73(Special issue 1), 29-52.
Guest, J. E., Cole, P. D., Duncan, A. M., & Chester, D. K. (2003). Volcanoes of southern Italy (p. 284). London: Geological Society.
Coltelli, M., Del Carlo, P., & Vezzoli, L. (2000). Stratigraphic constraints for explosive activity in the past 100 ka at Etna Volcano, Italy. International Journal of Earth Sciences, 89(3), 665-677.
Corsaro, R. A., & Cristofolini, R. (1997). Geology, geochemistry and mineral chemistry of tholeiitic to transitional Etnean magmas. Acta Vulcanologica, 9, 55-66.
Tanguy, J. C., Condomines, M., & Kieffer, G. (1997). Evolution of the Mount Etna magma: constraints on the present feeding system and eruptive mechanism. Journal of Volcanology and Geothermal research, 75(3-4), 221-250.
Corsaro, R. A., & Cristofolini, R. (1996). Origin and differentiation of recent basaltic magmas from Mount Etna. Mineralogy and Petrology, 57(1-2), 1-21.
Chester, D. K., Duncan, A. M., Guest, J. E., & Kilburn, C. 1985. Mount Etna: the anatomy of a volcano. Chapman and Hall, London.
Di Sabatino, B. 1977. Significato petrologico della presenza di leucite in lave basaltiche di stirpe atlantica: eruzione dell'Etna della primavera del 1971. Periodico di Mineralogia, 46, 45-57.
    • Metropolitan City of Messina
      • Eolie Islands (Aeolian Islands)
        • Lipari
          • Vulcano Island
Bullock, Liam A., Gertisser, Ralf, O'Driscoll, Brian, and Harlan, Sophie (2019) Magmatic evolution and textural development of the 1739 CE Pietre Cotte lava flow, Vulcano, Italy. Journal of Volcanology and Geothermal Research: 372: 1-23.
Piochi, Monica, De Astis, Gianfilippo, Petrelli, Maurizio, Sulpizio, Roberto, and Zanetti, Alberto (2009) Constraining the recent plumbing system of Vulcano (Aeolian Arc, Italy) by textural, petrological, and fractal analysis: The 1739 A.D. Pietre Cotte lava flow. Geochemistry Geophysics Geosystems: 10: 1: 28 pp.
Lucchi, F., Tranne, C.A., De Astis, G, Keller, J., Losito, R., and Morche, W. (2008) Stratigraphy and significance of Brown Tuffs on the Aeolian Islands (southern Italy). Journal of Volcanology and Geothermal Research: 177: 49–70.
      • Messina
        • Upper Camaro Valley
Baldanza, B. & Triscari, M. (1985) Mineralogy, petrology and chemistry of the Messina (Italy) chondrite: Meteoritics 20: 79-87. (March 1985).
Ivory Coast
 
  • Montagnes
    • Tonkpi
      • Zouan-Hounien Department
Guillaume Vic, Mario Billa (2015) Geological setting and types of carbonate-hosted gold deposits in the Birimian of West Africa. SGA 2015 : Ressources minérales dans un monde durable, SGA (Society for Geology Applied to Mineral Deposits), Aug 2015, Nancy, France.
Libya
 
  • Jabal al Gharbi District
    • Gharyan Volcanic Field
Lustrino, M., Cucciniello, C., Melluso, L., Tassinari, C. C., dè Gennaro, R., & Serracino, M. (2012). Petrogenesis of Cenozoic volcanic rocks in the NW sector of the Gharyan volcanic field, Libya. Lithos, 155, 218-235.
    • Hamadah al Hamra
Grady, M. M., Pratesi, G. & Moggi Cecchi, V. (2015) Atlas of Meteorites. Cambridge University Press: Cambridge, United Kingdom. 373 pages.
  • Jufra District
    • Dar al Gani
Russell, Sara S., Zipfel, Jutta, Folco, Luigi, Jones, Rhian, Grady, Monica M., McCoy, Timothy, Grossman, Jeffrey N. (2003) The Meteoritical Bulletin, No. 87, 2003 July. Meteoritics & Planetary Science, 38. doi:10.1111/j.1945-5100.2003.tb00328.x
Mali
 
  • Kayes Region
    • Kayes Cercle
Masurel, Q., Thébaud, N., Miller, J., Ulrich, S., Roberts, M. P., & Béziat, D. (2017). The Alamoutala Carbonate-Hosted Gold Deposit, Kédougou-Kénieba Inlier, West Africa. Economic Geology, 112(1), 49-72.
Mauritania
 
  • Adrar Region
    • Atar
Berger, J., Diot, H., Lo, K., Ohnenstetter, D., Féménias, O., Pivin, M., ... & Charlier, B. (2013). Petrogenesis of Archean PGM-bearing chromitites and associated ultramafic–mafic–anorthositic rocks from the Guelb el Azib layered complex (West African craton, Mauritania). Precambrian Research, 224, 612-628.
  • Dakhlet Nouadhibou Region
    • Nouadhibou
(n.d.) Meteoritical Bulletin Database, The Meteoritical Society.
  • Hodh el Gharbi Region
    • Ayoun El Atrous
Bowman, L.E., Spilde, M.N. & Papike, P.P. (1997) Automated dispersive spectrometer modal analysis applied to diogenites. Meteoritics & Planetary Science 32 (6): 869-875. (Nov 1997)
Morocco
 
  • Dakhla-Oued Ed-Dahab Region
    • Oued Ed-Dahab Province
      • Ouled Dlim Massif (Adrar Souttouf)
Bouabdellah, M., Boukirou, W., Jébrak, M., Bigot, F., Yans, J., Mouttaqi, A., ... & Levresse, G. (2022). Discovery of antiskarn-hosted strategic metal mineralization in the Upper Cretaceous Twihinate carbonatite intrusion (West African Craton Margin, Moroccan Sahara). Ore Geology Reviews, 105105.
  • Drâa-Tafilalet Region
    • Errachidia Province
      • Er-Rissani Cercle
        • Sidi Ali Caïdat
www.lpi.usra.edu (2020) http://www.lpi.usra.edu/meteor/metbull.php?code=44983
Connolly, Jr., H. C. et al., (2007) Meteoritical Bulletin, no. 92, 2007 September: MAPS 42 (9), 1647-1694. (Sept 2007)
Kuehner, S. M. & Irving, A. J. (2007) Grain Boundary Glasses in the Plutonic Angrite NWA 4590: Evidence for Rapid Decompressive Partial Melting and Cooling on Mercury? Lunar and Planetary Science XXXVIII. LPI Contribution No. 1338, pdf.1522. (March 2007)
Kuehner, S. M. & Irving, A. J. (2007) Primary Ferric Iron-Bearing Rhönite in Plutonic Igneous Angrite NWA 4590: Implications for Redox Conditions on the Angrite Parent Body. American Geophysical Union, Fall Meeting 2007, abstract #P41A-0219. (Dec 2007)
    • Midelt Province
      • Imilchil Cercle
        • Imilchil Caïdat
Jahn, Steffen, Bode, Rainer, Lyckberg, Peter, Medenbach, Olaf, Lierl, Hans-Jürgen (2003) Marokko - Land der schönen Mineralien und Fossilien [Morocco - land of beautiful minerals and fossils]. Bode Verlag GmbH. p.1-528.
      • Midelt Cercle
        • Aït Oufella Caïdat
Salvi, S., Fontan, F., Monchoux, P., Williams-Jones, A. E., & Moine, B. (2000). Hydrothermal mobilization of high field strength elements in alkaline igneous systems: evidence from the Tamazeght Complex (Morocco). Economic Geology, 95(3), 559-576. doi.org/10.2113/gsecongeo.95.3.559
Mourtada, S. (1997). Pétrogenèse des carbonatites et contribution à l'étude des minéralisations (NB, Tr, Ba et Sr) associées: exemple du complexe alcalin de Tamazert (Haut-Atlas marocain) (Doctoral dissertation, Clermont-Ferrand 2).
Mourtada, S., Le Bas, M. J., & Pin, C. (1997). Pétrogenèse des magnésio-carbonatites du complexe de Tamazert (Haut Atlas marocain). Comptes Rendus de l'Académie des Sciences-Series IIA-Earth and Planetary Science, 325(8), 559-564. doi.org/10.1016/S1251-8050(97)89455-4
Bernard-Griffiths, J., Fourcade, S., & Dupuy, C. (1991). Isotopic study (Sr, Nd, O and C) of lamprophyres and associated dykes from Tamazert (Morroco): crustal contamination processes and source characteristics. Earth and Planetary Science Letters, 103(1-4), 190-199. doi.org/10.1016/0012-821X(91)90160-J
Bouabdli, A., Dupuy, C., & Dostal, J. (1988). Geochemistry of Mesozoic alkaline lamprophyres and related rocks from the Tamazert massif, High Atlas (Morocco). Lithos, 22(1), 43-58. doi.org/10.1016/0024-4937(88)90028-X
Aghchmi, E. M. (1984). Les carbonatites filoniennes de l'Oued Tamazeght et leurs relations avec les métasyénites (Haut Atlas de Midelt Maroc).
Tisserant, D. (1976). DONNEES GEOCHRONOLOGIQUES SUR LE COMPLEXE DE ROCHES ALCALINES DU TAMAZEGHT (HAUT-ATLAS. DE MIDELT), MAROC. Bulletin du Bureau de Recherches Geologiques et Minieres, II, 3, 279-283.
Agard, J. (1960). Les carbonatites et les roches a'silicates et carbonates associe¤ s du massif de roches alcalines du Tamazeght (Haut Atlas de Midelt, Maroc) et les proble'mes de leur gene'se. In Proceedings of the 21st International Geological Congress, Norden, Norway (Vol. 13, pp. 293-303).
Jeremine, E. (1949). Étude pétrographique des roches éruptives et métamorphiques du massif de Bou Agrao. Notes. Serv. Geol. Maroc., 74, 119-147.
Jeremine, E., & Dubar, G. (1947). * MINERALOGIE-NOTE SUR LES SYENITES NEPHELINIQUES A EUDIALYTE DU MASSIF ERUPTIF DU BOU AGRAO (HAUT-ATLAS, MAROC). COMPTES RENDUS HEBDOMADAIRES DES SEANCES DE L ACADEMIE DES SCIENCES, 224(13), 1022-1023.
    • Ouarzazate Province
      • Amerzgane Cercle
        • Ouisselsate Caïdat
El Azmi, Mohammed, Aissa, Mohamed, Moussaid, Azizi, Ilmen, Said, Mezougane, Hafid, Prokopyev, Ilya, Loudaoued, Ilyasse, Souiri, Muhammad, Ouguir, Hassane, Aarab, Mohammed, Zouhair, Mohamed, Maacha, Lhou, Admou, Safouane (2023) The Açdif Gold-Bearing Shear Zone (Zenaga Inlier, Central Anti-Atlas, Morocco): New Petro-Structural and Geochemical Data. Minerals, 13 (9) doi:10.3390/min13091116
      • Ouarzazate Cercle
        • Ghassate Caïdat
Michael K. Weisberg & 7 others (2009). The Meteoritical Bulletin, No. 95. Meteoritics & Planetary Science 44(3): 429-462. (March 2009).
  • Fès-Meknès Region
    • El Hajeb Province
      • Agourai Cercle
        • Sebt Jahjouh Caidat
Mezougane, Hafid, Mohamed Aissa, Souiri Muhammad, Azizi Moussaid, Abdelaziz El Basbas, Mourad Essalhi, Abdel-ali Kharis, Mohammed El Azmi, Ahmed Touil, and Essaid Bilal. (2022) "Sulfide and Fluoride Mineralization of the NNE Region of Achemmach (Central Morocco): Paragenetic Sequences and Pyrrhotite-Sphalerite Geothermometry Constraints" Minerals 12, no. 7: 790. https://doi.org/10.3390/min12070790
  • Oriental Region
    • Nador Province
      • Guelaia Cercle
Bouabdellah, M., Lebret, N., Marcoux, E., Sadequi, M. (2013) Les mines de Beni Bou Ifrour-Ouixane (Rif Oriental): un district ferrugineux néogènede type skarns. The Beni Bou Ifrour-Ouixane mines (Eastern Rif), Neogene Skarn Type Iron Deposits. Chalouan, A.A., Rjimati , E., MouttaqiMichard, A., Saddiqi, O. Nouveaux Guides Géologiques et miniers du Maroc, Notes et mémoires du Service géologique du Maroc, pp.357-362, 2012, Notes et mémoires N° 564 du Service géologique du Maroc- 2011.
Bouabdellah, M., Lebret, N., Marcoux, E., Sadequi, M. (2013) Les mines de Beni Bou Ifrour-Ouixane (Rif Oriental): un district ferrugineux néogènede type skarns. The Beni Bou Ifrour-Ouixane mines (Eastern Rif), Neogene Skarn Type Iron Deposits. Chalouan, A.A., Rjimati , E., MouttaqiMichard, A., Saddiqi, O. Nouveaux Guides Géologiques et miniers du Maroc, Notes et mémoires du Service géologique du Maroc, pp.357-362, 2012, Notes et mémoires N° 564 du Service géologique du Maroc- 2011.
    • Taourirt Province
Mokhtari, A., Wagner, C., & Velde, D. (1996). Découverte d'une enclave de carbonatite dans une camptonite de la région de Taourirt (Nord-Est du Maroc). Conséquences géologiques. Comptes rendus de l'Académie des sciences. Série 2. Sciences de la terre et des planètes, 323(6), 467-474.
Mokhtari, A., Wagner, C., & Velde, D. (1996). Découverte d'une enclave de carbonatite dans une camptonite de la région de Taourirt (Nord-Est du Maroc). Conséquences géologiques. Comptes rendus de l'Académie des sciences. Série 2. Sciences de la terre et des planètes, 323(6), 467-474.
Wagner, C., Mokhtari, A., & Velde, D. (1993). Xenocrystic richterite in an olivine-nephelinite: destabilisation and diffusion phenomena. Mineralogical Magazine, 57(388), 515-525. doi.org/10.1180/minmag.1993.057.388.12
Wagner, C., Mokhtari, A., & Velde, D. (1993). Xenocrystic richterite in an olivine-nephelinite: destabilisation and diffusion phenomena. Mineralogical Magazine, 57(388), 515-525. doi.org/10.1180/minmag.1993.057.388.12
Mokhtari, A., & Velde, D. (1988). Xenocrysts in Eocene camptonites from Taourirt, northern Morocco. Mineralogical Magazine, 52(368), 587-601. https://www.researchgate.net/profile/Abdelkader_Mokhtari/publication/249849715_Xenocrysts_in_Eocene_Camptonites_from_Taourirt_Northern_Morocco/links/53fb9ae30cf2dca8fffe804e/Xenocrysts-in-Eocene-Camptonites-from-Taourirt-Northern-Morocco.pdf
Mokhtari, A., & Velde, D. (1988). Xenocrysts in Eocene camptonites from Taourirt, northern Morocco. Mineralogical Magazine, 52(368), 587-601. https://www.researchgate.net/profile/Abdelkader_Mokhtari/publication/249849715_Xenocrysts_in_Eocene_Camptonites_from_Taourirt_Northern_Morocco/links/53fb9ae30cf2dca8fffe804e/Xenocrysts-in-Eocene-Camptonites-from-Taourirt-Northern-Morocco.pdf
Charlot, R., Choubert, G., Faure-Muret, A., & Hamel, C. (1964). Age des aıounites du Maroc Nord-Oriental. Comptes Rendus Sommaire de la Socie¤ te¤ Ge¤ ologique de France, 9, 401-402.
Charlot, R., Choubert, G., Faure-Muret, A., & Hamel, C. (1964). Age des aıounites du Maroc Nord-Oriental. Comptes Rendus Sommaire de la Socie¤ te¤ Ge¤ ologique de France, 9, 401-402.
Agard, J. (1950). Sur l'âge et le mode de gisement des aïounites et mestigmérites du Maroc oriental. Notes et Mém. Serv. géol. Maroc, 76, 189-196.
Agard, J. (1950). Sur l'âge et le mode de gisement des aïounites et mestigmérites du Maroc oriental. Notes et Mém. Serv. géol. Maroc, 76, 189-196.
  • Souss-Massa Region
    • Taroudant Province
      • Taliouine Cercle
        • Askaouen Caïdat
Wagner, Christiane, Parodi, Gian Carlo, Semet, Michel, Robert, Jean-Louis, Berrahma, M'hamed, Velde, Danielle (1991) Crystal chemistry of narsarsukite. European Journal of Mineralogy, 3 (3) 575-586 doi:10.1127/ejm/3/3/0575
Berrahma, M., & Delaloye, M. (1989). Données géochronologiques nouvelles sur le massif volcanique du Siroua (Anti-Atlas, Maroc). Journal of African Earth Sciences (and the Middle East), 9(3-4), 651-656. doi.org/10.1016/0899-5362(89)90049-3
BERRAHMA, M. H., & Hernandez, J. (1985). Nouvelles donnees sur le volcanisme trachytique hyperalcalin du volcan du Siroua (Anti-Atlas, Maroc). Comptes rendus de l'Académie des sciences. Série 2, Mécanique, Physique, Chimie, Sciences de l'univers, Sciences de la Terre, 300(17), 863-868.
Choubert, G., Charlot, R., Faure-Muret, A., Hottinger, L., Marçais, J., Tisserant, D. & Vidal, P. 1968. Note préliminaire sur le volcanisme messinien (pontien) au Maroc. Comptes Rendus Hebdomadaires des Séances de l'Académie des Sciences, Paris, 266D, 197-199.
Namibia
 
  • Erongo Region
    • Arandis Constituency
      • Rössing Mountains area
Nash, C.R. (1972) Primary anhydrite in Precambrian gneisses from the Swakopmund District, South West Africa. Contrib. Mineral. Petrol. 36: 27-32.
    • Dâures Constituency
      • Brandberg Area
Harris, C. (1995). Oxygen isotope geochemistry of the Mesozoic anorogenic complexes of Damaraland, northwest Namibia: evidence for crustal contamination and its effect on silica saturation. Contributions to Mineralogy and Petrology, 122(3), 308-321. doi.org/10.1007/s004100050130
Milner, S. C., Le Roex, A. P., & O'CONNOR, J. M. (1995). Age of Mesozoic igneous rocks in northwesternNamibia, and their relationship to continental breakup. Journal of the Geological Society, 152(1), 97-104. doi.org/10.1144/gsjgs.152.1.0097
Milner, S. C., & Ewart, A. (1989). The geology of the Goboboseb Mountain volcanics and their relationship to the Messum Complex, Namibia. Communications of the Geological Survey of Namibia, 5, 31-40.
Aldrich, S. (1986). Progress report on a gravity and magnetic investigation of the Messum and Erongo igneous complexes. Communications of the Geological Survey of South West Africa/Namibia, 2, 47-52.
Allsopp, H. L., Bristow, J. W., Logan, C. T., Eales, H. V., & Erlank, A. J. (1984). Rb-Sr geochronology of three Karoo-related intrusive complexes. In: Erlank, A.J. (ed.) Petrogenesis of the volcanic rocks of the Karoo Province. Geological Society of South Africa, Special Publications, 13,281-287.
Fitch, F. J., & Miller, J. A. (1984). Dating Karoo igneous rocks by the conventional K-Ar and 40Ar/39Ar age spectrum methods. In:Erlank, A.J. (ed.) Petrogenesis of the volcanic rocks of the Karoo Province. Geological Society of South Africa, Special Publication, 13, 247-266.
Mathias, M. (1957). The geochemistry of the Messum igneous complex, south-west Africa. Geochimica et Cosmochimica Acta, 12(1-2), 29-46. doi.org/10.1016/0016-7037(57)90015-7
Korn, H.& Martin, H. 1955. The Messum igneous complex in South-West Africa. Transactions of the Geological Society of South Africa, 57, 83-124.
Mathias, M. 1956. The petrology of the Messum igneous complex, South-West Africa. Transactions of the Geological Society of South Africa, 59, 1-35. doi.org/10.10520/AJA10120750_2142
Le Roex, A. P., & Lanyon, R. (1998). Isotope and trace element geochemistry of Cretaceous Damaraland lamprophyres and carbonatites, northwestern Namibia: Evidence for plume—lithosphere interactions. Journal of Petrology, 39(6), 1117-1146. doi.org/10.1093/petroj/39.6.1117
Watkins, R. T., & Le Roex, A. P. (1994). A reinvestigation of the Okenyenya igneous complex: a new geological map, structural interpretation and model of emplacement. Communications of the Geological Survey of Namibia, 9, 13-21. http://www.mme.gov.na/files/publications/09b_Watkins%20and%20Le%20Roex_Okonyenya%20IC.pdf
Watkins, R. T., McDougall, I., & Le Roex, A. P. (1994). K-Ar ages of the Brandberg and Okenyenya igneous complexes, north-western Namibia. Geologische Rundschau, 83(2), 348-356. doi.org/10.1007/BF00210550
Milner, S. C., Le Roex, A. P., & Watkins, R. T. (1993). Rb-Sr age determinations of rocks from the Okenyenya igneous complex, northwestern Namibia. Geological Magazine, 130(3), 335-343. doi.org/10.1017/S001675680002001X
Watkins, R. T., & Le Roex, A. P. (1991). Petrology and structure of syenite intrusions of the Okenyenya igneous complex. Communications of the Geological Survey Namibia, 7, 55-70. http://www.mme.gov.na/files/publications/433_Watkins%20and%20le%20Roex_Okonyenya%20IC.pdf
Simpson, E.S.W. 1954. The Okenjeje igneous complex, South-West Africa. Transactions of the Geological Society of South Africa, 57, 125-173.
  • Hardap Region
    • Gibeon
Ashwal, L. D. (2001) Korra Korrabes: A new, large H3 chondrite breccia from Namibia: Meteoritics & Planetary Science 36 (8),1027-1038. (Aug 2001).
  • Khomas Region
    • Windhoek Rural
      • Auas Mountains Occurrences
Von Knorring, O., & Franke, W. (1987). A preliminary note on the mineralogy and geochemistry of the Aris phonolite, SWA/Namibia. Communications of the Geological Survey of SW Africa/Namibia, 3, 61.
Von Knorring, O., & Franke, W. (1987). A preliminary note on the mineralogy and geochemistry of the Aris phonolite, SWA/Namibia. Communications of the Geological Survey of SW Africa/Namibia, 3, 61.
Fitch, F. J., & Miller, J. A. (1984). Dating Karoo igneous rocks by the conventional K-Ar and 40Ar/39Ar age spectrum methods. In:Erlank, A.J. (ed.) Petrogenesis of the volcanic rocks of the Karoo Province. Geological Society of South Africa, Special Publication, 13, 247-266.
Fitch, F. J., & Miller, J. A. (1984). Dating Karoo igneous rocks by the conventional K-Ar and 40Ar/39Ar age spectrum methods. In:Erlank, A.J. (ed.) Petrogenesis of the volcanic rocks of the Karoo Province. Geological Society of South Africa, Special Publication, 13, 247-266.
Ferreira, C. A. M., Jacob, R. E., Marsh, J. S. (1979) Base-Metal Mineralization in Alkaline Pyroclastics - the Regenstein Vent, South West Africa. Transactions of the Geological Society of South Africa, 82.
Ferreira, C. A. M., Jacob, R. E., Marsh, J. S. (1979) Base-Metal Mineralization in Alkaline Pyroclastics - the Regenstein Vent, South West Africa. Transactions of the Geological Society of South Africa, 82.
Gevers, T. W. (1933). Alkali-rocks in the Auas Mountains, south of Windhoek, SWA. South African Journal of Geology, 36(1), 77-88. https://journals.co.za/doi/pdf/10.10520/AJA10120750_1737
Gevers, T. W. (1933). Alkali-rocks in the Auas Mountains, south of Windhoek, SWA. South African Journal of Geology, 36(1), 77-88. https://journals.co.za/doi/pdf/10.10520/AJA10120750_1737
  • Kunene Region
    • Epupa
      • Swartbooisdrif Dikes
von Seckendorff, V., Drüppel, K., Okrusch, M., Cook, N.J., and Littmann, S. (2000): Mineralium Deposita 35, 430-450.
von Seckendorff, V., Drüppel, K., Okrusch, M., Cook, N.J., and Littmann, S. (2000): Mineralium Deposita 35, 430-450.
    • Outjo
Harris, C. (1995). Oxygen isotope geochemistry of the Mesozoic anorogenic complexes of Damaraland, northwest Namibia: evidence for crustal contamination and its effect on silica saturation. Contributions to Mineralogy and Petrology, 122(3), 308-321. doi.org/10.1007/s004100050130
Milner, S. C., Le Roex, A. P., & O'CONNOR, J. M. (1995). Age of Mesozoic igneous rocks in northwesternNamibia, and their relationship to continental breakup. Journal of the Geological Society, 152(1), 97-104. doi.org/10.1144/gsjgs.152.1.0097
Siedner, G., & Miller, J. A. (1968). K-Ar age determinations on basaltic rocks from South-West Africa and their bearing on continental drift: Earth and Planetary Science letters, 4, 451-458.
Manton, W. I., & Siedner, G. (1967). Age of the Paresis Complex, south-west Africa. Nature, 216(5121), 1197-1198.
Siedner, G. E. R. A. R. D. (1965). Structure and evolution of the Paresis igneous complex, South West Africa. South African Journal of Geology, 68(1), 177-202. https://journals.co.za/doi/pdf/10.10520/AJA10120750_1476
Siedner, G. (1965). Geochemical features of a strongly fractionated alkali igneous suite. Geochimica et Cosmochimica Acta, 29(2), 113-137. doi.org/10.1016/0016-7037(65)90120-1
  • Otjozondjupa Region
    • Omatako Constituency
Cabral, A. R., Moore, J. M., Mapani, B. S., Koubová, M., & Sattler, C. D. (2011). Geochemical and mineralogical constraints on the genesis of the Otjosondu ferromanganese deposit, Namibia: hydrothermal exhalative versus hydrogenetic (including snowball-earth) origins. South African Journal of Geology, 114(1), 57-76.
  • ǁKaras Region
    • ǃNamiǂNûs Constituency
Koller F, Skoda R, Palfi A, Popp F, Jost B (2014) Paleogene phonolites of the Aris, Staalhart and Klinghardt groups, central and south Namibia, Africa. 21 st meeting of the International Mineralogical Association. p 194
Niger
 
  • Agadez
    • Aïr Mountains
Leger, J. M. (1985). Géologie et évolution magmatique du complexe plutonique d'Iskou (Aïr, Niger). Journal of African Earth Sciences (1983), 3(1-2), 89-96. doi.org/10.1016/0899-5362(85)90026-0
Karche, J. P., & Vachette, M. (1978). Age et migration de l'activite magmatique dans les complexes paleozoiques du Niger
consequences. Bulletin de la Société géologique de France, 7(6), 941-953. doi.org/10.2113/gssgfbull.S7-XX.6.941
Moreau, C. 1987. Les complexes anorogéniques á suite anorthositique de l'Aïr (Niger): contribution à l'étude des anorthosites. Bulletin de la Société Géologique de France, 8(3), 115-122.
    • Arlit
Brown, W. L., Moreau, C., & Demaiffe, D. (1989). An anorthosite suite in a ring-complex: crystallization and emplacement of an anorogenic type from Abontorok, Aïr, Niger. Journal of Petrology, 30(6), 1501-1540. doi.org/10.1093/petrology/30.6.1501
Husch, J. M., & Moreau, C. (1982). Geology and major element geochemistry of anorthositic rocks associated with Paleozoic hypabyssal ring complexes, Air massif, Niger, West Africa. Journal of Volcanology and Geothermal Research, 14(1-2), 47-66. doi.org/10.1016/0377-0273(82)90042-7
Karche, J. P. & Moreau, C. (1977). NOTE PRELIMINAIRE SUR LE MASSIF SUBVOLCANIQUE A STRUCTURE ANNULAIRE D'ABONTOROK (AIR-NIGER). Comptes Rendus Hebdomadaires des Séances de l'Académie des Sciences, Paris, 284D, 1259-1262.
Moreau, C. 1987. Les complexes anorogéniques á suite anorthositique de l'Aïr (Niger): contribution à l'étude des anorthosites. Bulletin de la Société Géologique de France, 8(3), 115-122.
Moreau, C., Ohnenstetter, D., Diot, H., Demaiffe, D., Brown, W. L., Baer, G., & Heimann, A. (1995). Emplacement of the Meugueur-Meugueur cone-sheet (Niger, W. Africa), one of the world's largest igneous ring-structures. Physics and Chemistry of Dykes, 41-49.
Moreau, C., Demaiffe, D., Bellion, Y., & Boullier, A. M. (1994). A tectonic model for the location of Palaeozoic ring complexes in Air (Niger, West Africa). Tectonophysics, 234(1-2), 129-146. doi.org/10.1016/0040-1951(94)90208-9
Moreau, C., Brown, W., Demaiffe, D., Dupont, P. L., & Rocci, G. (1986). Un des plus grands ring-dykes du monde: le Meugueur-Meugueur, massif de l'Aïr, République du Niger. Comptes rendus de l'Académie des sciences. Série 2, Mécanique, Physique, Chimie, Sciences de l'univers, Sciences de la Terre, 302(5), 223-226.
Husch, J. M., & Moreau, C. (1982). Geology and major element geochemistry of anorthositic rocks associated with Paleozoic hypabyssal ring complexes, Air massif, Niger, West Africa. Journal of Volcanology and Geothermal Research, 14(1-2), 47-66. doi.org/10.1016/0377-0273(82)90042-7
Bowden, P., Van Breemen, O., Hutchinson, J., & Turner, D. C. (1976). Palaeozoic and Mesozoic age trends for some ring complexes in Niger and Nigeria. Nature, 259(5541), 297-299. doi.org/10.1038/259297a0
Russell, S.S., Zipfel, J., Grossman, J.N. & Grady, M.M. (2002). The Meteoritical Bulletin, No. 86, 2002 July. Meteoritics & Planetary Science 37 (7,Suppl.): pp. A157-A184. (July 2002).
Nigeria
 
  • Bauchi
    • Dass
Mason, B. (1967) The Bununu meteorite, and a discussion of the pyroxene-plagioclase achondrites: Geochimica et Cosmochimica Acta 31(2): 107-115.
  • Niger
    • Benue River
Bunch, T.E., Keil, K., and Olsen, E. (1970) Contributions to Mineralogy and Petrology: 25: 297-340.
  • Yobe
    • Geidam
Mason, B. & Wiik, H.B. (1965) The Composition of the Forest City, Tennasilm, Weston, and Geidam Meteorites. American Museum Novitates, No. 2220, New York. 20 pages. (June 1965).
Northwest Africa Meteorites
 
Weisberg et al., (2008) Meteoritical Bulletin, no. 94: Meteoritics and Planetary Science 43 (9): 1551-1588. (Sept 2008)
Portugal
 
  • Azores
    • Pico
Métrich, N., Zanon, V., Créon, L., Hildenbrand, A., Moreira, M., & Marques, F. O. (2014). Is the ‘Azores hotspot’a wetspot? Insights from the geochemistry of fluid and melt inclusions in olivine of Pico basalts. Journal of Petrology, 55(2), 377-393. doi.org/10.1093/petrology/egt071
Elliott, T., Blichert-Toft, J., Heumann, A., Koetsier, G., & Forjaz, V. (2007). The origin of enriched mantle beneath São Miguel, Azores. Geochimica et Cosmochimica Acta, 71(1), 219-240. doi.org/10.1016/j.gca.2006.07.043
França, Z. T., Tassinari, C. C., Cruz, J. V., Aparicio, A. Y., Araña, V., & Rodrigues, B. N. (2006). Petrology, geochemistry and Sr–Nd–Pb isotopes of the volcanic rocks from Pico Island—Azores (Portugal). Journal of Volcanology and Geothermal Research, 156(1-2), 71-89. doi.org/10.1016/j.jvolgeores.2006.03.013
Feraud, G., Kaneoka, I., & Allègre, C. J. (1980). K/Ar ages and stress pattern in the Azores: geodynamic implications. Earth and planetary science letters, 46(2), 275-286. doi.org/10.1016/0012-821X(80)90013-8
Weston, F. S. (1964). List of recorded volcanic eruptions in the Azores with brief reports. Boletim do Museu e Laboratorio Mineralogico e Geologico da Faculdade de Ciencias, Lisboa, 10, 3-18.
Larrea, P., França, Z., Widom, E., & Lago, M. (2018). Petrology of the Azores Islands. In Volcanoes of the Azores (pp. 197-249). Springer, Berlin, Heidelberg.
Beier, C., Mata, J., Stöckhert, F., Mattielli, N., Brandl, P. A., Madureira, P., ... & Haase, K. M. (2013). Geochemical evidence for melting of carbonated peridotite on Santa Maria Island, Azores. Contributions to Mineralogy and Petrology, 165(5), 823-841. doi.org/10.1007/s00410-012-0837-2
Feraud, G., Gastaud, J., Schmincke, H. U., Pritchard, G., Lietz, J., & Bleil, U. (1981). New K-Ar ages, chemical analyses and magnetic data of rocks from the islands of Santa Maria (Azores), Porto Santo and Madeira (Madeira Archipelago) and Gran Canaria (Canary Islands). Bulletin volcanologique, 44(3), 359-375. doi.org/10.1007/BF02600570
Feraud, G., Kaneoka, I., & Allègre, C. J. (1980). K/Ar ages and stress pattern in the Azores: geodynamic implications. Earth and planetary science letters, 46(2), 275-286. doi.org/10.1016/0012-821X(80)90013-8
White, William M., Tapia, Maria D. M., Schilling, Jean -Guy (1979) The petrology and geochemistry of the Azores Islands. Contributions to Mineralogy and Petrology, 69 (3) 201-213 doi:10.1007/bf00372322
Abdel-Monem, A. A., Fernandez, L. A., & Boone, G. M. (1975). K-Ar ages from the eastern Azores group (Santa Maria, São Miguel and the Formigas islands). Lithos, 8(4), 247-254. doi.org/10.1016/0024-4937(75)90008-0
    • Terceira
Zaccarini, Federica, Garuti, Giorgio, Moser, Reinhard, Mavrogonatos, Constantinos, Voudouris, Panagiotis, Pimentel, Adriano, Nazzareni, Sabrina (2024) Mineral Chemistry of Olivine, Oxy-Spinel, and Clinopyroxene in Lavas and Xenoliths from the Canary, Azores, and Cape Verde Islands (Macaronesia, North Atlantic Ocean): New Data and Comparisons with the Literature. Minerals, 14 (2) 161 doi:10.3390/min14020161
Senegal
 
  • Tambacounda Region
    • Falémé River basin
Schwartz, M. O., & Melcher, F. (2004). The Falémé iron district, Senegal. Economic Geology, 99(5), 917-939.
Schwartz, M. O., & Melcher, F. (2004). The Falémé iron district, Senegal. Economic Geology, 99(5), 917-939.
South Africa
 
  • Eastern Cape
    • Chris Hani District Municipality
      • Enoch Mgijima Local Municipality
Frost, M. J. (1971) The Molteno Meteorite
Mineralogical Magazine 38 (293): 89-93. (Mar 1971)
  • Free State
    • Lejweleputswa District Municipality
      • Tokologo Local Municipality
        • Boshof
Hughes, H.S., Compton-Jones, C., McDonald, I., Kiseeva, E.S., Kamenetsky, V.S., Rollinson, G., Coggon, J.A., Kinnaird, J.A. and Bybee, G.M., (202). Base metal sulphide geochemistry of southern African mantle eclogites (Roberts Victor): Implications for cratonic mafic magmatism and metallogenesis. Lithos, 382, p.105918.
    • Xhariep District Municipality
      • Letsemeng Local Municipality
        • Koffiefontein
Meyer, N. A. (2021). Diamonds and Their Inclusions From the Koffiefontein Mine. Doctor of Philosophy, Department of Earth and Atmospheric Sciences, University of Alberta
  • Limpopo
    • Waterberg District Municipality
      • Thabazimbi Local Municipality
        • Thabazimbi
MinMag 66:857
Roberts, M. D., Basson, I. J., Miller, J. A., Reid, D. L., Roberts, M., & Smith, D. S. Continuity of PGE Mineralization Associated with the Merensky Event in the Regional Pothole Sub-facies at Northam Platinum Mine.
  • North West
    • Bojanala Platinum District Municipality
      • Kgetlengrivier Local Municipality
        • Swartruggens
Field, M., Stiefenhofer, J., Robey, J., and Kurszlaukis, S. (2008): Ore Geology Reviews 34, 33-75.
      • Moses Kotane Local Municipality
Mitchell, R. H., Liferovich, R. P. (2004) Ecandrewsite — zincian pyrophanite from lujavrite, Pilansberg alkaline complex, South Africa. The Canadian Mineralogist, 42 (4) 1169-1178 doi:10.2113/gscanmin.42.4.1169
  • Northern Cape
    • Frances Baard District Municipality
      • Dikgatlong Local Municipality
        • Windsorton
Clarke, D. B., Pe, G. G., MacKay, R. M., Gill, K. R., O'hara, M. J., & Gard, J. A. (1977). A new potassium-iron-nickel sulphide from a nodule in kimberlite. Earth and Planetary Science Letters, 35(3), 421-428.
    • Namakwa District Municipality
      • Khâi-Ma Local Municipality
        • Aggeneys
www.portergeo.com.au/database/mineinfo.asp?mineid=mn017
  • Western Cape
    • Cape Winelands District Municipality
      • Drakenstein Local Municipality
        • Simondium
Mittlefehldt, D. W., McCoy, T. J., Goodrich, C. A. & Kracher, A. (1998). Non-chondritic meteorites from asteroidal bodies. In: Planetary Materials (Papike, J. J. [Ed.]): Chapter 4, 195 pages. Mineralogical Society of America: Washington, DC, USA.
    • West Coast District Municipality
      • Matzikama Local Municipality
Macdonald, W.G., Rozendaal, A., and de Meijer, R.J. (1997): Mineralium Deposita 32, 371-381.
Spain
 
  • Canary Islands
    • Las Palmas Province
      • Fuerteventura
        • Fuerteventura Basal Complex
Casillas, Ramón, Ahijado, Agustina, Nagy, Géza, Demény, Attila, Fernández, Carlos (2024) The Esquinzo Ultra-Alkaline Rock Suite of Fuerteventura Basal Complex (Canary Islands): Evidence for Origin of Carbonatites by Fractional Crystallization. Minerals, 14 (3) doi:10.3390/min14030295
      • Lanzarote
        • Tinajo
Zaccarini, Federica, Garuti, Giorgio, Moser, Reinhard, Mavrogonatos, Constantinos, Voudouris, Panagiotis, Pimentel, Adriano, Nazzareni, Sabrina (2024) Mineral Chemistry of Olivine, Oxy-Spinel, and Clinopyroxene in Lavas and Xenoliths from the Canary, Azores, and Cape Verde Islands (Macaronesia, North Atlantic Ocean): New Data and Comparisons with the Literature. Minerals, 14 (2) 161 doi:10.3390/min14020161
        • Yaiza
Zaccarini, Federica, Garuti, Giorgio, Moser, Reinhard, Mavrogonatos, Constantinos, Voudouris, Panagiotis, Pimentel, Adriano, Nazzareni, Sabrina (2024) Mineral Chemistry of Olivine, Oxy-Spinel, and Clinopyroxene in Lavas and Xenoliths from the Canary, Azores, and Cape Verde Islands (Macaronesia, North Atlantic Ocean): New Data and Comparisons with the Literature. Minerals, 14 (2) 161 doi:10.3390/min14020161
    • Santa Cruz de Tenerife Province
      • La Palma
        • Cumbre Vieja Area
Sánchez-España, Javier, Castillo, Ana M. Nieto, Mata, M. Pilar, Martínez-Martínez, Javier, Mediato, Jose F. (2024) Fluorite and Gibbsite Solubility Controls the Vertical Transport of Fluoride and Aluminum during Rainwater Percolation through Ashfall Deposits in La Palma (Canary Islands, Spain) Minerals, 14 (4) doi:10.3390/min14040338
Syria
 
  • Idlib Governorate
Ma, G. S. K., Malpas, J., Xenophontos, C., & Chan, G. H. N. (2011). Petrogenesis of latest Miocene–Quaternary continental intraplate volcanism along the northern Dead Sea Fault System (Al Ghab–Homs Volcanic Field), western Syria: evidence for lithosphere–asthenosphere interaction. Journal of Petrology, 52(2), 401-430.
Zambia
 
  • Southern Province
    • Mazabuka District
      • Munali Intrusive Complex
Blanks, Daryl E., Holwell, David A., Barnes, Stephen J., Schoneveld, Louise E., Boyce, Adrian J., Mbiri, Laston (2022) Evolution of the Munali Intrusive Complex: Host to a carbonate-rich Ni-(Cu-PGE) sulfide deposit. Ore Geology Reviews, 150. 105109 doi:10.1016/j.oregeorev.2022.105109
Zimbabwe
 
  • Masvingo
    • Gutu District
MacPherson, G. J., Jarosewich, E. & Lowenstein, P. (1993) Magombedze - A new H-chondrite with light-dark structure: Meteoritics 28(1): 138-142. (March 1993).
  • Matabeleland South
    • Beitbridge District
Field, M., Stiefenhofer, J., Robey, J., and Kurszlaukis, S. (2008): Ore Geology Reviews 34, 33-75.
 
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