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Clinopyroxene Subgroup from Atlantic Ocean

Atlantic Ocean
 
D'Orazio, Massimo, Boschi, Chiara, Brunelli, Daniele (2004) Talc-rich hydrothermal rocks from the St. Paul and Conrad fracture zones in the Atlantic Ocean. European Journal of Mineralogy, 16 (1) 73-83 doi:10.1127/0935-1221/2004/0016-0073
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
  • Gorringe Ridge
Chernysheva, E. A., & Kharin, G. S. (2012). Melilitites in the alkaline volcanic succession of the Gorringe bank, Southwestern Portugal. Geochemistry International, 50(1), 54-62. doi.org/10.1134/S0016702912010028
Chernysheva, E. A., & Kharin, G. S. (2012). Melilitites in the alkaline volcanic succession of the Gorringe bank, Southwestern Portugal. Geochemistry International, 50(1), 54-62. doi.org/10.1134/S0016702912010028
Chernysheva, E. A., & Kharin, G. S. (2012). Melilitites in the alkaline volcanic succession of the Gorringe bank, Southwestern Portugal. Geochemistry International, 50(1), 54-62. doi.org/10.1134/S0016702912010028
Bernard-Griffiths, J., Gruau, G., Cornen, G., Azambre, B., & Macé, J. (1997). Continental lithospheric contribution to alkaline magmatism: isotopic (Nd, Sr, Pb) and geochemical (REE) evidence from Serra de Monchique and Mount Ormonde complexes. Journal of Petrology, 38(1), 115-132. doi.org/10.1093/petroj/38.1.115
Bernard-Griffiths, J., Gruau, G., Cornen, G., Azambre, B., & Macé, J. (1997). Continental lithospheric contribution to alkaline magmatism: isotopic (Nd, Sr, Pb) and geochemical (REE) evidence from Serra de Monchique and Mount Ormonde complexes. Journal of Petrology, 38(1), 115-132. doi.org/10.1093/petroj/38.1.115
Bernard-Griffiths, J., Gruau, G., Cornen, G., Azambre, B., & Macé, J. (1997). Continental lithospheric contribution to alkaline magmatism: isotopic (Nd, Sr, Pb) and geochemical (REE) evidence from Serra de Monchique and Mount Ormonde complexes. Journal of Petrology, 38(1), 115-132. doi.org/10.1093/petroj/38.1.115
Féraud, G., York, D., Mével, C., Cornen, G., Hall, C. M., & Auzende, J. M. (1986). Additional 40Ar-39Ar dating of the basement and the alkaline volcanism of Gorringe Bank (Atlantic Ocean). Earth and Planetary Science Letters, 79(3-4), 255-269. doi.org/10.1016/0012-821X(86)90184-6
Féraud, G., York, D., Mével, C., Cornen, G., Hall, C. M., & Auzende, J. M. (1986). Additional 40Ar-39Ar dating of the basement and the alkaline volcanism of Gorringe Bank (Atlantic Ocean). Earth and Planetary Science Letters, 79(3-4), 255-269. doi.org/10.1016/0012-821X(86)90184-6
Féraud, G., York, D., Mével, C., Cornen, G., Hall, C. M., & Auzende, J. M. (1986). Additional 40Ar-39Ar dating of the basement and the alkaline volcanism of Gorringe Bank (Atlantic Ocean). Earth and Planetary Science Letters, 79(3-4), 255-269. doi.org/10.1016/0012-821X(86)90184-6
Cornen, G. (1982). Petrology of the alkaline volcanism of Gorringe Bank (southwest Portugal). Marine Geology, 47(1-2), 101-130. doi.org/10.1016/0025-3227(82)90022-6
Plas, A. A. (1997). Petrologic and stable isotope constraints on fluid-rock interaction, serpentinization and alternation of oceanic ultramafic rocks (Doctoral dissertation, ETH Zurich).
  • Mid-Atlantic Ridge complex
Beard, J. S., Frost, B. R., Fryer, P., McCaig, A., Searle, R., Ildefonse, B., ... & Sharma, S. K. (2009). Onset and progression of serpentinization and magnetite formation in olivine-rich troctolite from IODP Hole U1309D. Journal of Petrology, 50(3), 387-403.
Beard, J. S., Frost, B. R., Fryer, P., McCaig, A., Searle, R., Ildefonse, B., ... & Sharma, S. K. (2009). Onset and progression of serpentinization and magnetite formation in olivine-rich troctolite from IODP Hole U1309D. Journal of Petrology, 50(3), 387-403.
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.
Haase, K. M., Hartmann, M., & Wallrabe-Adams, H. J. (1996). The geochemistry of ashes from Vesterisbanken Seamount, Greenland Basin: implications for the evolution of an alkaline volcano. Journal of Volcanology and Geothermal Research, 70(1-2), 1-19. doi.org/10.1016/0377-0273(95)00059-3
Haase, K. M., & Devey, C. W. (1994). The petrology and geochemistry of Vesteris Seamount, Greenland Basin—an intraplate alkaline volcano of non-plume origin. Journal of Petrology, 35(2), 295-328. doi.org/10.1093/petrology/35.2.295
Harland, W. B., Armstrong, R. L., Cox, A. V., Craig, L. E., Smith, A. G., & Smith, D. G. (1990). A geologic time scale 1989. Cambridge University Press.
Mertz, D.F., Raczek, I., Renne, P. & Todt, W. 1993. Plate tectonic implications of Ar/Ar laser heating ages and Sr, Nd, Pb isotope characteristics of Vesteris Seamount volcanism (Norwegian-Greenland Sea). Terra Abstracts, 5, 549.
  • 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.
Brazil
 
  • São Paulo
    • Ilhabela
      • Búzios island
de Barros Gomes, Celso, Alves, Francisco Rubens, Azzone, Rogério Guitarrari , Rojas, Gaston Eduardo Enrich, Ruberti, Excelso (2017) Geochemistry and petrology of the Búzios Island alkaline massif, SE, Brazil (Geoquímica e petrologia do maciço alcalino da Ilha dos Búzios, SE, Brasil) Brazilian Journal of Geology, 47 (1) 127-145 doi:10.1590/2317-4889201720160121
Canada
 
  • Newfoundland and Labrador
    • Newfoundland
      • Avalon Peninsula
Pohlner, J. E., Schmitt, A. K., Chamberlain, K. R., Davies, J. H., Hildenbrand, A., & Austermann, G. (2020). Multimethod U–Pb baddeleyite dating: insights from the Spread Eagle Intrusive Complex and Cape St. Mary's sills, Newfoundland, Canada. Geochronology, 2(2), 187-208.
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
Greenland
 
  • Sermersooq
Namur, O., Humphreys, M.C.S., Holness, M.B., and Veksler, I.V. (2013) Solidification of interstitial melt in a gabbroic crystal mush: the Skaergaard intrusion, Greenland (Abstract). Geophysical Research Abstracts, Vol. 15, EGU2013-4290.
Portugal
 
  • Azores
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
    • São Miguel
      • Ponta Delgada
        • Mosteiros
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
 
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