Applications of the database GEOROC

  1. Abouchami, W., Hofmann, A. W., Galer, S. J. G., Frey, F. A., Eisele, J., Feigenson, M.
    Lead isotopes reveal bilateral asymmetry and vertical continuity in the Hawaiian mantle plume, Nature 434 (2005) 851-856
  2. Abouchami, W., Zabel, M.
    Climate forcing of the Pb isotope record of terrigenous input into the Equatorial Atlantic, Earth Planet. Sci. Lett. 213 (2003) 221-234
  3. Akinin, V. V., Miller, E. L.
    Evolution of calc-alkaline magmas of the Okhotsk-Chukotka volcanic belt, Petrology 19 (2011) 237-277
  4. Albarède, F., Van der Hilst, R. D.
    Zoned mantle convection, Phil. Trans. R. Soc. London A360 (2002) 2569-2592
  5. Ali, J. R., Fitton, J. G., Herzberg, C.
    Enmeishan large igneous province (SW China) and the mantle-plume up-doming hypothesis, J. Geol. Soc. London 167 (2010) 953-959
  6. Arevalo, R., Jr., McDonough, W. F., Luong, M.
    The K/U ratio of the silicate Earth: Insights into mantle composition, structure and thermal evolution, Earth Planet. Sci. Lett. 278 (2009) 361-369
  7. Armienti, P., Gasperini, D.
    Do we really need mantle components to define mantle composition? J. Petrol. 48 (2007) 693-709
  8. Arndt N.
    Komatiites, kimberlites, and boninites, J. Geophys. Res 108 (B6), 2293 (2003) doi:10.1029/2002JB002157
  9. Asahara, Y., Takeuchi, F., Nagashima, K., Harada, N., Yamamoto, K., Oguri, K., Tadai, O.
    Provenance of terrigenous detritus of the surface sediments in the Bering and Chukchi Seas as derived from Sr and Nd isotopes: Implications for recent climate change in the Arctic regions, Deep Sea Research Part II: Topical Studies in Oceanography, Volumes 61–64 (2012) 155-171
  10. Aston, T.R.C. , Tammemagi, H.Y., Poon, A.W.
    .; A review and evaluation of empirical and analytical subsidence prediction techniques, Min. Sci. Technol. 5 (1987) 59-69
  11. Auer, S. L.
    Diverse oxygen isotope values and high magmatic water contents within the volcanic record of Klyuchevskoy Volcano, Kamchatka, Russia, Thesis University of Oregon, Dept. of Geological Sciences, 2007, pp. 1-80
  12. Auer, S., Bindeman, I., Wallace, P., Ponomareva, V., Portnyagin, M.
    The origin of hydrous, high-?18O voluminous volcanism: diverse oxygen isotope values and high magmatic water contents within the volcanic record of Klyuchevskoy volcano, Kamchatka, Russia, Contrib. Mineral. Petrol. 157 (2009) 209-230
  13. Aulinas, M., Gimeno, D., Fernandez-Turiel, J. L., Font, L., Perez-Torrado, F. J.
    Small-scale mantle heterogeneity on the source of the Gran Canaria (Canary Islands) Pliocene–Quaternary magmas, Lithos 119 (2010) 377-392
  14. Ayalew, D.
    Possible correlation of Oligocene climate changes with Ethiopian Oligocene ignimbrite eruptions, Arabian J.Geosci. 5 (2011) 999-1002
  15. Baksi, A. K.
    Comment on "40Ar / 39Ar dating of the Rajahmundry Traps, eastern India and their relationship to the Deccan Traps" by Knight et al. [Earth Planet Sci. Lett. 208 (2003) 85-99], Earth Planet. Sci. Lett. 239 (2005) 368-373.
  16. Baksi, A. K.
    40Ar / 39Ar dating of the Grande Ronde lavas, Columbia River Basalts, USA: Implications for duration of flood basalt eruption episodes- discussion, Lithos 146-147 (2012) 293-299
  17. Bali, E., Audetat, A., Keppler, H.
    The mobility of W and Mo in subduction zone fluids and the Mo–W–Th–U systematics of island arc magmas, Earth Planet. Sci. Lett. 351–352 (2012) 195-207
  18. Bali, E., Keppler, H., Audetat, A.
    The mobility of U and Th in subduction zone fluids: an indicator of oxygen fugacity and fluid salinity, Contrib. Mineral. Petrol. 161 (2011) 597-613
  19. Bataille, C. P., Bowen, G. J.
    Mapping 87Sr/86Sr variations in bedrock and water for large scale provenance studies, Chemic. Geol. 304–305 (2012) 39-52
  20. Beier, C., Haase, K. M., Turner, S. P.
    Conditions of melting beneath the Azores, Lithos 144-145 (2012) 1-11
  21. Beier, C., Stracke, A., Haase, K. M.
    The peculiar geochemical signatures of Sao Miguel (Azores) lavas: Metasomatised or recycled mantle sources? Earth Planet. Sci. Lett. 259 (2007) 186-199
  22. Bell, E. A., Harrison, T. M., McCulloch, M. T., Young, E. D.
    Early Archean crustal evolution of the Jack Hills Zircon source terrane inferred from Lu–Hf, 207Pb/206Pb, and d18O systematics of Jack Hills zircons, Geochim. Cosmochim. Acta 75 (2011) 4816-4829
  23. Belousov, I. A., Batanova, V. G., Savelieva, G. N., Sobolev, A. V.
    Evidence for the suprasubduction origin of mantle section rocks of Voykar ophiolite, Polar Urals, Dokl. Earth Sci. 429 (2009) 1394-1398
  24. Berger, J., Caby, R., Liégois, J.-P., Mercier, J.-C. C., Demaiffe, D.
    Deep inside a neoproterozoic intra-oceanic arc: growth, differentiation and exhumation of the Amalaoulaou complex (Gourma, Mali), Contrib. Mineral. Petrol. 162 (2011) 773-796
  25. Bertrand, S., Fagel, N.
    Nature, origin, transport and deposition of andosol parent material in south-central Chile (36-42°S), CATENA 73 (2008) 10-22
  26. Bezard, R., Hebert, R., Wang, C., Dostal, J., Dai, J., Zhong, H.
    Petrology and geochemistry of the Xiugugabu ophiolitic massif, western Yarlung Zangbo suture zone, Tibet, Lithos 125 (2011) 347-367
  27. Bianco, T. A., Ito, G., Becker, J. M., Garcia, M. O.
    Secondary Hawaiian volcanism formed by flexural arch decompression, Geochem. Geophys. Geosyst. 6 (2005), doi:10.1029/2005GC000945
  28. Bianco, T. A., Ito, G., van Hunen, J., Ballmer, M. D., Mahoney, J. J.
    Geochemical variation at the Hawaiian hot spot caused by upper mantle dynamics and melting of a heterogeneous plume, Geochem. Geophys. Geosyst. 9 (2008), doi:10.1029/2008GC002111
  29. Bindeman, I. N., Schmitt., A. K., Valley, J. W.
    U-Pb zircon geochronology of silicic tuffs from the Timber Mountain/Oasis Valley caldera complex, Nevada: rapid generation of large volume magmas by shallow-level remelting, Contrib. Mineral. Petrol. 152 (2006) 649-665
  30. Bizimis, M., Griselin, M., Lassiter, J. C., Salters, V. J.M., Sen, G.
    Ancient recycled mantle lithosphere in the Hawaiian plume: Osmium-Hafnium isotopic evidence from peridotite mantle xenoliths, Earth Planet. Sci. Lett. 257 (2007) 259-273.
  31. Bizimis, M., Sen, G., Salters, V. M.
    Hf-Nd isotope decoupling in the oceanic lithosphere: constraints from spinel peridotites from Oahu, Hawaii, Earth Planet. Sci. Lett. 217 (2004) 43-58
  32. Bizimis, M., Sen, G., Salters, V. M., Keshav, S.
    Hf-Nd-Sr isotope systematics of garnet pyroxenites from Salt Lake Crater, Oahu, Hawaii: Evidence for a depleted component in Hawaiian volcanism, Geochim. Cosmochim. Acta 69 (2005) 2629-2646
  33. Blichert-Toft, J., Albarède, F.
    Hafnium isotopes in Jack Hills zircons and the formation of the Hadean crust, Earth Planet. Sci. Lett. 265 (2008) 686- 702
  34. Blichert-Toft, J., Albarède, F.
    Mixing of isotopic heterogeneities in the Mauna Kea plume conduit, Earth Planet. Sci. Lett. 282 (2009) 190-200
  35. Blight,J. H., Crowley, Q. G., Petterson, M. G., Cunningham, D.
    Granites of the Southern Mongolia Carboniferous Arc: New geochronological and geochemical constraints, Lithos 116 (2010) 35-52
  36. Blight, J. H., Petterson, M. G., Crowley, Q. G., Cunningham, D.
    The Oyut Ulaan Volcanic Group: stratigraphy, magmatic evolution and timing of Carboniferous arc development in SE Mongolia, J. Geol. Soc. London 167 (2010) 491-509
  37. Bodinier, J.-L., Godard, M.
    2.04 - Orogenic, Ophiolitic, and Abyssal Peridotites, Treatise on Geochemistry, Volume 2, 2007, Pages 1-73
  38. Böning,P., Brumsack,H.-J., Böttcher, M. E., Schnetger,B., Kriete, C., Kallmeyer, J., and Borchers, S. L.
    Geochemistry of Peruvian near-surface sediments, Geochim. Cosmochim. Acta 68 (2005) 4429-4451
  39. Bosch, D., Blichert-Toft, J., Moynier, F., Nelson, B. K., Telouk, P., Gillot, P.-Y., and Albarède, F.
    Pb, Hf and Nd isotope compositions of the two Réunion volcanoes (Indian Ocean): A tale of two small-scale mantle "blobs"? Earth Planet. Sci. Lett. 265 (2008) 748-768
  40. Botcharnikov, R. E., Almeev, R. R., Koepke, J., Holtz, F.
    Phase relations and liquid lines of descent in hydrous ferrobasalt - implications for the Skaergaard Intrusion and Columbia River Flood Basalts, J. Petrol. 49 (2008) 1687-1727
  41. Brandenburg, J. P., Hauri, E. H., Van Keken, P. E., Ballentine, C. J.
    A multiple-system study of the geochemical evolution of the mantle with force-balanced plates and thermochemical effects. Earth Planet. Sci. Lett. 276 (2008) 1-13
  42. Bryce, J. G., DePaolo, D. J., Lassiter, J. C.
    Geochemical structure of the Hawaiian plume: Sr, Nd, and Os isotopes in the 2.8 km HSDP-2 section of Mauna Kea volcano, Geochemistry Geophysics Geosystems 6 (2005), doi:10.1029/2004GC000809
  43. Buchko, I. V., Sorokin, A. A., Sal'nikova, E. B., Kotov, A. B., Velikoslavinskii, S. D., Larin, A. M., Izokh, A. E., Yakovleva, S. Z.
    The Triassic stage of mafic magmatism in the Dzhugdzhur–Stanovoi superterrane (southern framing of the North Asian craton), Russian Geol. Geophys. 51 (2010) 1157-1166
  44. Buchs, D. M., Arculus, R. J., Baumgartner, P. O., Baumgartner-Mora, C., Ulianov, A.
    Late Cretaceous arc development on the SW margin of the Caribbean plate: Insights from the Golfito, Coasta Rica, and Azuero, Panama, complexes, Geochemistry Geophysics Geosystems 11 (2010) doi:10.1029/2009GC002901
  45. Bybee, G. M., Ashwal, L. D., Wilson, A. H.
    New evidence for a volcanic arc on the western margin of a rifting Rodinia from ultramafic intrusions in the Andriamena region, north-central Madagascar, Earth Planet. Sci. Lett. 293 (2010) 42-53
  46. Cadoux, A., Blichert-Toft, J., Pinti, D. L., Albarède, F.
    A unique lower mantle source for Southern Italy volcanics, Earth Planet. Sci. Lett. 259 (2007) 227-238
  47. Campos, E., Touret, J. L. R., Nikogosian, I.,Delgado, J.
    Overheated, Cu- bearing magmas in the Zaldívar porphyry-Cu deposit, Northern Chile. Geodynamic consequences, Tectonophysics 345 (2002) 229-251
  48. Carlson, R. W., Czamanske, G., Fedorenko, V., Ilupin, I.
    A comparison of Siberian meimechites and kimberlites: Implications for the source of high- Mg alkalic magmas and flood basalts, Geochem. Geophys. Geosyst. 7 (2006), doi:10.1029/2006GC001342
  49. Maria do Carmo P. G., Lafon, J. M., Hartmann, L. A., Koester, E.
    Sm-Nd isotopic investigation of Neoproterozoic and Cretaceous igneous rocks from southern Brazil: A study of magmatic processes, Lithos 82 (2005) 345-377
  50. Carpentier, M.
    Composition chimique des sédiments entrant dans la zone de subduction des Petites Antilles, Diss. Université Joseph-Fourier - Grenoble I Université Libre de Bruxelles 2007
  51. Carpentier, M., Chauvel, C., Mattielli, N.
    Pb-Nd isotopic constraints on sedimentary input into the Lesser Antilles arc system, Earth Planet. Sci. Lett. 272 (2008) 199-211
  52. Castillo, P. R.
    An overview of adakite petrogenesis, Chinese Sci. Bull. 51 (2006) 257 - 268
  53. Castillo, P.R., Lonsdale, P. F., Moran, C. L., Hawkins, J. W.
    Geochemistry of mid-Cretaceous Pacific crust being subducted along the Tonga-Kermadec trench: Implications for the generation of arc lavas, Lithos 112 (2009) 87-102
  54. Castillo, P.R., Scarsi, P., Craig, H.
    He, Sr, Nd, and Pb isotopic constraints on the origin of the Marquesas and other linear volcanic chains, Chem. Geol. 240 (2007) 205-221
  55. Castro, A., Vogt, K., Gerya, T.
    Generation of new continental crust by sublithospheric silicic-magma relamination in arcs: A test of Taylor's andesite model, Gondwana Research, In Press, 2012
  56. Chauvel, C., Marini, J.-C., Plank, T., Ludden, J. N.
    Hf-Nd input flux in the Izu-Mariana subduction zone and recycling of subducted material in the mantle, Geochem. Geophys. Geosyst. 10 (2009) doi:10.1029/2008GC002101
  57. Chauvel, C., Maury, R. C., Blais, S., Lewin, E., Guillou, H., Guille, G., Rossi, P., Gutscher, M.-A.
    The size of plume heterogeneities constrained by Marquesas isotopic studies, Geochem. Geophys. Geosyst. 13 (2012) doi:10.1029/2012GC004123
  58. Chen, L.-H., Zeng, G., Jiang, S.-Y., Hofmann, A. W., Xu, X.-S., Pan, M.- B.
    Sources of Anfengshan basalts: Subducted lower crust in the Sulu UHP belt, China, Earth Planet. Sci. Lett. 286 (2009) 426-435
  59. Class, C., Goldstein, S. L.
    EOS Trans. AGU 86, Fall Meeting Suppl. (2005)
  60. Class, C., Goldstein, S. L.
    Evolution of helium isotopes in the Earth's mantle, Nature 436 (2005) 1107-1112
  61. Class, C., Goldstein, S. L., Shirey, S. B.
    Osmium isotopes in Grande Comore lavas: A new extreme among a spectrum of EM-type mantle endmembers, Earth Planet. Sci. Lett. 284 (2009) 219-227
  62. Class, C., Goldstein, S. L., Stute, M., Kurz, M. D., Schlosser, P.
    Grand Comore Island: A well-constrained "low 3He/4He" mantle plume, Earth Planet. Sci. Lett. 233 (2005) 391-409
  63. Class, C., Le Roex, A.
    South Atlantic DUPAL anomaly - Dynamic and composiitonal evidence against a recent shallow origin, Earth Planet. Sci. Lett. 305 (2011) 92-102
  64. Clemens, J. D., Belcher, R. W., Kisters, A. F. M.
    The Heerenveen Batholith, Barberton Mountain Land, South Africa: Mesoarchaean, potassic felsic magmas formed by melting of an ancient subduction complex, J. Petrol. 51 (2010) 1099-1120
  65. Clemens, J. D., Birch, W. D., Dudley, R. A.
    S-type ignimbrites with polybaric crystallisation histories: the Tolmie Igneous Complex, Central Victoria, Australia, Contrib. Mineral. Petrol. 162 (2011) 1315-1337
  66. Clift, P. D., Chan, L.-H., Blusztajn, J., Layne, G. D., Kastner, M., Kelly, R. K.
    Pulsed subduction accretion and tectonic erosion reconstructed since 2.5 Ma from the tephra record offshore Costa Rica, Geochem. Geophys. Geosyst. 6 (2005), doi:10.1029/2005GC000963
  67. Clift, P. D., Draut, A. E., Kelemen, P. B., Blusztajn, J., Greene, A.
    Stratigraphic and geochemical evolution of an oceanic arc upper crustal section: The Jurassic Talkeetna Volcanic Formation, south-central Alaska, Bull. Geol. Soc. Am. 117 (2005) 902-925
  68. Clift, P. D., Vannucchi, P., Morgan, J. P.
    Crustal redistribution, crust–mantle recycling and Phanerozoic evolution of the continental crust, Earth-Science Rev. 97 (2009) 80-104
  69. Cole, R. B., Stewart, B. W.
    Continental margin volcanism at sites of spreading ridge subduction: Examples from southern Alaska and western California, Tectonophysics 464 (2009) 118-136
  70. Conceição R.V., Mallmann, G., Koester, E., Schilling, M., Bertotto, G.W., Rodriguez-Vargas, A.
    Andean subduction-related mantle xenoliths: Isotopic evidence of Sr-Nd decoupling during metasomatism, Lithos 82 (2005) 273-287
  71. Coombs M. L., Clague, D. A., Moore, G. F., Cousens, B. L.
    Growth and collapse of Waianae Volcano, Hawaii, as revealed by exploration of its submarine flanks, Geochem. Geophys. Geosyst. 5 (2004) doi:10.1029/2004GC000717
  72. Costa, R., Mirao, J., Madureira, P., Ribeiro, L.P., Pimentel, F., Lourenco, N., Abreu, M.P., and the EMEPC Team
    Multi-variate analysis of elemental data from the Azores archipelago and Great Meteor seamounts, Geochim. Cosmochim. Acta 72, Suppl.1 (2008), A182
  73. Courtier, A. M., Jackson, M. G., Lawrence, J. F., Wang, Z., Lee, C. A., Halama, R., Warren, J. M., Workman, R., Xu, W., Hirschmann, M. M., Larson, A. M., Hart, S. R., Lithgow-Bertelloni, C., Stixrude, L., Chen, W.- P.
    Correlation of seismic and petrologic thermometers suggests deep thermal anomalies beneath hotspots, Earth Planet. Sci. Lett. 264 (2007) 308-316
  74. Dasgupta, D., Hirschmann, M. M., Smith, N. D.
    Partial melting experiments of peridotite + CO2 at 3 GPa and genesis of alkalic ocean island basalts, J. Petrol. 48 (2007) 2093-2124
  75. Dasgupta, D., Hirschmann, M. M.,Stalker, K.
    Immiscible transition from carbonate-rich to silicate-rich melts in the 3 GPa melting interval of eclogite + CO2 and genesis of silica-undersaturated ocean island lavas, J. Petrol. 47 (2006) 647-671
  76. Dasgupta, R., Jackson, M. G., Lee, C.-T. A.
    Major element chemistry of ocean island basalts - Conditions of mantle melting and heterogeneity of mantle source, Earth Planet. Sci. Lett. 289 (2010) 377-392
  77. Davis, F. A., Hirschmann, M. M., Humayun, M.
    The composition of the incipient partial melt of garnet peridotite at 3 GPa and the origin of OIB, Earth Planet. Sci.Lett. 308 (2011) 380-390
  78. De Astis, G., Kempton, P. D., Peccerillo, A., Wu, T. W.
    Trace element and isotopic variations from Mt. Vulture to Campanian volcanoes: constraints for slab detachment and mantle inflow beneath southern Italy, Contrib. Mineral. Petrol. 151 (2006) 331-351
  79. Dekov, V. M., Cuadros, J., Kamenenov, G. D., Weiss, D., Arnold, T., Basak, C., Rochette, P.
    Metalliferous sediments from the H.M.S. Challenger voyage (1872–1876), Geochim. Cosmochim. Acta 74 (2010) 5019-5038
  80. Demény, A., Harangi, S., Vennemann, T.W., Casillas, R., Horváth, P., Milton, A.J. ; Mason, P.R.D., Ulianov, A.
    Amphiboles as indicators of mantle source contamination: Combined evaluation of stable H and O isotope compositions and trace element ratios, Lithos, In Press, 2012
  81. Demeny, A., Vennemann, T. W., Hegner, E., Ahijado, A., Casillas, R., Nagy, G., Homonnay, Z., Gutierrez, M., Szabó, C.
    H, O, Sr, Nd, and Pb isotopic evidence for recycled oceanic crust in the Transitional Volcanic Group of Fuerteventura, Canary Islands, Spain, Chem. Geol.205 (2004) 37-54
  82. DePaolo, D. J., Bryce, J. G., Dodson, A., Shuster, D. L., Kennedy, B. M.
    Isotopic evolution of Mauna Loa and the chemical structure of the Hawaiian plume, Geochem. Geophys. Geosyst. 2 (2001), doi:10.1029/2000GC000139
  83. Devey, C. W., Haase, K. M.
    The sources for hotspot volcanism in the South Pacific Ocean, In: Hekinian, R., Stoffers, P., Cheminée, J.-L. (eds.)
    Oceanic Hotspots, Springer, Berlin 2009, pp. 253-283
  84. Dey, S.
    Evolution of Archaean crust in the Dharwar craton: The Nd isotope record, Precambrian Res., In Press 2012
  85. Dhuime, B., Bosch, D., Garrido, C. J., Bodinier, J.-L., Bruguier, O., Hussain, S. S., Dawood, H.
    Geochemical architecture of the lower- to middle-crustal section of a Paleo-island arc (Kohistan Complex, Jijal^Kamila Area, Northern Pakistan): Implications for the evolution of an oceanic subduction zone, J. Petrol. 50 (2009) 531-569
  86. Dhuime, B., Hawkesworth, C., Cawood, P.
    When continents formed, Science 331 (2011) 154-155
  87. Dreyer, B., Chavagnac, V., Morris, J., Font, L.
    Source and petrogenesis of the igneous complex cored during ODP Leg 205: implications for off- axis plume-ridge interaction on the Cocos plate. In Morris, J.D., Villinger, H.W., and Klaus, A. (Eds.), Proc. ODP, Sci. Results, 205 (2006) http://www-odp.tamu.edu/publications/205_SR/212/212.htm
  88. Duggen, S., Portnyagin, M., Baker, J., Ulfbeck, D., Hoernle, K., Garbe- Schönberg, D., Grassineau, G.
    Drastic shift in lava geochemistry in the volcanic-front to rear-arc region of the Southern Kamchatkan subduction zone: Evidence for the transition from slab surface dehydration to sediment melting, Geochim. Cosmochim. Acta 71 (2007) 452-480
  89. Elburg, M., Kamenetsky, V. S.
    Limited influence of subducted continental material on mineralogy and elemental geochemistry of primitive magmas from Indonesia-Australia collision zone, Lithos 105 (2008) 73-84
  90. Ellam, R. M.
    The graphical presentation of lead isotope data for environmental source apportionment, Science of The Total Environment 408 (2010) 3490-3492
  91. Ersoy, E. Y., Helvaci, C., Uysal, I., Karaoglu, Ö., Palmer, M. R., Dindi, F.
    Petrogenesis of the Miocene volcanism along the Izmir-Balikesir Transfer Zone in western Anatolia, Turkey: Implications for origin and evolution of potassic volcanism in post-collisional areas, J. Volcanol. Geotherm. Res. 241-242 (2012) 21-38
  92. Ersoy, E. Y., Helvaci, C., Palmer, M. R.
    Mantle source characteristics and melting models for the early-middle Miocene mafic volcanism in Western Anatolia: Implications for enrichment processes of mantle lithosphere and origin of K-rich volcanism in post-collisionalsettings, J. Volcanol. Geotherm. Res. 198 (2010) 112-128
  93. Escrig, S., Bezos, A., Goldstein, S. L., Langmuir, C. H., Michael, P. J.
    Mantle source variations beneath the Eastern Lau Spreading Center and the nature of subduction components in the Lau basin-Tonga arc system, Geochem. Geophys. Geosystyst. 10 (2009) doi: 10.1029/2008GC002254
  94. Escrig, S., Capmas, F., Dupré, B., Allègre, C. J.
    Osmium isotopic constraints on the nature of the DUPAL anomaly from Indian mid-ocean- ridge basalts, Nature 431 (2004) 59-63
  95. Escrig, S., Schiano, P., Schilling, J.-G., Allègre, C. J.
    Rhenium-osmium isotope systematics in MORB from the Southern Mid-Atlantic Ridge (40°- 50° S), Earth Planet. Sci. Lett. 235 (2005) 528-548
  96. Evans, K. A., Elburg, M. A., Kamenetsky, V. S.
    Oxidation state of subarc mantle, Geology 40 (2012) 783-786
  97. Farina, F., Stevens, G., Dini, A., Rocchi, S.
    Peritectic phase entrainment and magma mixing in the late Miocene Elba Island laccolith–pluton–dyke complex (Italy), Lithos, In Press, Corrected Proof 2012
  98. Fekiacova, Z., Mertz, D., Hofmann, A. W.
    Geodynamic setting of the Tertiary Hocheifel volcanism (Germany), Part II: Geochemistry and Sr, Nd and Pb isotopic compositions, Mantle Plumes 2007, pp. 207-239
  99. Ferrari, L., Orozco-Esquivel, T., Manea, V., Manea, M.
    The dynamic history of the Trans-Mexican Volcanic Belt and the Mexico subduction zone, Tectonophysics 522–523 (2012) 122-149
  100. Filiberto, J., Dasgupta, R.
    Fe2+–Mg partitioning between olivine and basaltic melts: Applications to genesis of olivine-phyric shergottites and conditions of melting in the Martian interior, Earth Planet. Sci. Lett. 304 (2011) 527-537
  101. Fonseca, R. O. C., Mallmann, G., O'Neill, H. St.C., Campbell, I. H.
    How chalcophile is rhenium? An experimental study of the solubility of Re in sulphide mattes, Earth Planet. Sci. Lett. 260 (2007) 537-548
  102. Frank, M., Marbler, H., Koschinsky, A., van de Flierdt, T., Klemm, V., Gutjahr, M., Halliday, A. N., Kubik, P. W., Halbach, P.
    Submarine hydrothermal venting related to volcanism in the Lesser Antilles: Evidence from ferromanganese precipitates, Geochem. Geophys. Geosyst. 7 (2006), doi:10.1029/2005GC001140
  103. Frank, M., Whiteley, N., van de Flierdt, T., Reynolds, B. C., O'Nions, K.
    Nd and Pb isotope evolution of deep water masses in the eastern Indian Ocean during the past 33 Myr, Chem. Geol. 226 (2006) 264-279
  104. Franz, G., Lucassen, F., Kramer, W., Trumbull, R., Romer, R., Wilke, H.-., Viramonte, J., Becchio, R., Siebel, W.
    Crustal evolution at the Central Andean continental margin: a geochemical record of crustal growth, recycling and destruction, Frontiers in Earth Sciences, The Andes Part I (2006), pp. 45-64
  105. Frey, F. A., Huang, S.; Blichert-Toft, J.: Regelous, M.; Boyet, M.
    Origin of depleted components in basalt related to the Hawaiian hot spot: Evidence from isotopic and incompatible element ratios, Geochem. Geophys. Geosyst. 6 (2005) doi:10.1029/2004GC000757
  106. Gaiero, D. M., Brunet, F., Probst, J.-L., Depetris, P. J.
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