يعرض 1 - 10 نتائج من 58 نتيجة بحث عن '"Martín‐Crespo, T."', وقت الاستعلام: 1.13s تنقيح النتائج
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    مؤتمر
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    المصدر: Recercat. Dipósit de la Recerca de Catalunya
    instname
    Dipòsit Digital de Documents de la UAB
    Universitat Autònoma de Barcelona
    Recercat: Dipósit de la Recerca de Catalunya
    Varias* (Consorci de Biblioteques Universitáries de Catalunya, Centre de Serveis Científics i Acadèmics de Catalunya)
    Geologica Acta; Vol. 10 No 4 (2012); 439-455
    Geologica Acta; Vol. 10 No. 4 (2012); 439-455
    Geologica Acta; Vol. 10 Núm. 4 (2012); 439-455
    Geologica Acta; 2012: Vol.: 10 Núm.: 4; p. 439-455
    RCUB. Revistas Científicas de la Universidad de Barcelona

    وصف الملف: application/pdf

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    المصدر: Estudios Geológicos; Vol. 66 No. 1 (2010); 75-82 ; Estudios Geológicos; Vol. 66 Núm. 1 (2010); 75-82 ; 1988-3250 ; 0367-0449 ; 10.3989/egeol.10661

    وصف الملف: application/pdf

    العلاقة: http://estudiosgeol.revistas.csic.es/index.php/estudiosgeol/article/view/799/827Test; Ballentine, C.J. & Burnard, P.G. (2002). Production, release and transport of noble gases in the continental crust. Reviews in Mineralogy and Geochemistry, 47: 481-538. doi:10.2138/rmg.2002.47.12; Bau, M.; Romer, R.L. & Lüders, V. (2003). Tracing element sources of hydrothermal mineral deposits: REE and Y distribution and S-Nd-Pb isotopes in fluorite from MVT deposits in the Pennine Orefield, England. Mineralium Deposita, 38: 992-1008. doi:10.1007/s00126-003-0376-x; Cann, J.R. & Banks, D.A. (2001). Constraints on the genesis of the mineralization of the Alston Block, Northern Pennine Orefield, northern England. Proceedings of the Yorkshire Geology Society, 53: 187-196. doi:10.1144/pygs.53.3.187; Cardellach, E.; Corbella, M.; Sánchez, V.; Vindel, E. & Boyce, A.J. (2007). Origins of fluids associated to gangue minerals in fluorite deposits of Asturias (N Spain). Proceedings of the Ninth Biennial SGA Meeting, Dublin 2007. In: Digging Deeper (Andrew et al., eds.), Irish Association for Economic Geology, Dublin, 2: 1311-1314.; García Iglesias, J. & Loredo, J. (1994). Geological, geochemical and mineralogical characteristics of the Asturias fluorspar district. Exploration and Mining Geology, 3: 31-37.; Farley, K.A. & Neroda, E. (1998). Noble gases in the Earth’s mantle. Annual Review of Earth and Planetary Science, 26: 189-218. doi:10.1146/annurev.earth.26.1.189; Kendrick, M.A.; Burgess, R.; Pattrick, R.A.D. & Turner, G. (2001). Noble gas and halogen evidence on the origin of Cu-porphyry mineralising fluids. Geochimica et Cosmochimica Acta, 65: 2651-2668. doi:10.1016/S0016-7037(01)00618-4; Kendrick, M.A.; Burgess, R.; Pattrick, R.A.D. & Turner, G. (2002a). Hydrothermal fluid origins in a fluoriterich Mississippi Valley-type District: Combined gases noble gas (He, Ar, Kr) and halogen (Cl, Br, I) analysis of fluid inclusions from the South Pennine ore field, United Kingdom. Economic Geology, 97: 435-451. doi:10.2113/97.3.435; Kendrick, M.A.; Burgess, R.; Leach, D. & Pattrick, R.A.D. (2002b). Hydrothermal fluid origins in Mississippi Velley-Type Ore Districts: Combined gases noble gas (He, Ar, Kr) and halogen (Cl, Br, I) analysis of fluid inclusions from the Illinois-Kentucky fluorspar district, Viburnum Trend and Tri-State districts, Midcontinent United States. Economic Geology, 97: 453-469. doi:10.2113/97.3.453; Mamyrin, B.A. & Tolstikhin, I. (1984). Helium isotopes in nature. Elsevier. Amsterdam, 267 pp.; Mamyrin, B.A.; Anufriyev, G.S.; Kamenskiy, I.L. & Tolstikhin, L.N. (1970). Determination of the composition of atmospheric helium. Geochemistry International, 7: 498-505.; Marty, B.; Jambon, A. & Sano, Y. (1989). Helium isotopes and CO2 in volcanic gases of Japan. Chemical Geology, 79: 25-40. doi:10.1016/0009-2541(89)90125-3; Muñoz, M.; Premo, W.R. & Courjault-Radé, P. (2005). Sm-Nd dating of fluorite from the worldclass Montroc fluorite deposit, southern Massif Central, France. Mineralium Deposita, 39: 970-975. doi:10.1007/s00126-004-0453-9; O’Nions, R.K. & Oxburgh, E.R. (1983). Heat and Helium in the Earth. Nature, 306: 429-431. doi:10.1038/306429a0; Pfaff, K.; Romer, R.L. & Markl, G. (2009). U-Pb ages of ferberite, chalcedony, agate, U-mica and pitchblende: constraints on the mineralization history of the Schwarzwald ore district. European Journal of Mineralogy, 21, 817-836. doi:10.1127/0935-1221/2009/0021-1944; Piqué, A.; Canals, A.; Grandia, F. & Banks, D.A. (2008). Mesozoic fluorite veins in NE Spain record regional base metal-rich circulation through basin and basement during extensional events. Chemical Geology, 257: 139-152. doi:10.1016/j.chemgeo.2008.08.028; Sánchez, V.; Corbella, M.; Fuenlabrada, J.M.; Vindel, E. & Martín-Crespo, T. (2006). Sr and Nd isotope data from the flourspar district of Asturias, Northern Spain. Journal of Geochemical Exploration, 89: 348-350. doi:10.1016/j.gexplo.2005.11.058; Sánchez, V.; Vindel V, Martín-Crespo, T.; Corbella, M.; Cardellach, E. & Banks, D.A. (2009). Sources and composition of fluids associated with fluorite deposits of Asturias (N Spain). Geofluids, 9: 338-355. doi:10.1111/j.1468-8123.2009.00259.x; Simmons, S.F.; Sawkins, F.J. & Schlutter, D.J. (1987). Mantle derived helium in two Peruvian hydrothermal ore deposits. Nature, 329: 429-432. doi:10.1038/329429a0 PMid:2886914; Sizaret, S.; Marcoux, E.; Jebrak, M. & Touray, J.C. (2004). The Rosignol fluorite vein, Chaillac, France: multiphase hydrothermal activity and intra-vein sedimentation. Economic Geology, 99: 1107-1122. doi:10.2113/99.6.1107; Stuart, F.M. & Turner, G. (1992). The abundance and isotopic composition of the noble gases in ancient fluids. Chemical Geology, 101: 97-109.; Stuart, F.M.; Turner, G.; Duckworth, R.C. & Fallick, A.E. (1994). Helium isotopes as tracers of trapped hydrothermal fluids in ocean-floor sulfides. Geology, 22: 823-826. doi:10.1130/0091-7613(1994)0222.3.CO;2; Stuart, F.M.; Ellam, R.M.; Harrop, P.J.; Godfrey, F. & Bell, B.R. (2000). Constraints on mantle plumes from the helium isotopic composition of basalts from the British Tertiary Igneous Province. Earth and Planetary Sciences Letters, 177: 273-285. doi:10.1016/S0012-821X(00)00050-9; Valverde, P. (1993). Permo-Carboniferous magmatic activity in the Cantabrian Zone (NE Iberian Massif, NW Spain). M.Sc Thesis, Boston College, 291 pp.; http://estudiosgeol.revistas.csic.es/index.php/estudiosgeol/article/view/799Test

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    المساهمون: Department of Earth Sciences Uppsala, Uppsala University, AGR Petroleum, Departamento de Petrología y Geoquímica, Facultad de Geologia, Universidad Complutense de Madrid = Complutense University of Madrid Madrid (UCM), Department of Petroleum Geosciences, The Petroleum Institute, Departament de Geologia, Universitat Autònoma de Barcelona = Autonomous University of Barcelona = Universidad Autónoma de Barcelona (UAB), Département Géochimie, environnement, écoulement, réacteurs industriels et cristallisation (GENERIC-ENSMSE), École des Mines de Saint-Étienne (Mines Saint-Étienne MSE), Institut Mines-Télécom Paris (IMT)-Institut Mines-Télécom Paris (IMT)-SPIN, Centre Sciences des Processus Industriels et Naturels (SPIN-ENSMSE), Institut Mines-Télécom Paris (IMT)-Institut Mines-Télécom Paris (IMT), ESCET, Universidad Rey Juan Carlos Madrid (URJC), Universiti Brunei Darussalam, Department of Geosciences Oslo, Faculty of Mathematics and Natural Sciences Oslo, University of Oslo (UiO)-University of Oslo (UiO), Universidad Complutense de Madrid, Universitat Autònoma de Barcelona, Universidad Rey Juan Carlos, University Brunei Darussalam, University of Oslo

    المصدر: ISSN: 1527-1404 ; Journal of Sedimentary Research ; https://hal.science/hal-00495021Test ; Journal of Sedimentary Research, 2009, 79 (9), pp.711-735. ⟨10.2110/jsr.2009.060⟩.

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