In-situ measurements of magmatic volatile elements, F, S, and Cl, by electron microprobe, secondary ion mass spectrometry, and heavy ion elastic recoil detection analysis
-
Estelle F. Rose-Koga
, Kenneth T. Koga
, Jean-Luc Devidal
Abstract
Electron probe and ion probe are the two most used instruments for in situ analysis of halogens in geological materials. The comparison of these two methods on widely distributed glass standards (example: MPI-DING glasses, Jochum et al., G-cubed, 2006) provides a basis for establishing laboratory method, independent geochemical data sets for these elements. We report analyses of F, S, and Cl concentrations in three geological glass samples (EPMA) and 10 referenced standards (EPMA and SIMS). Furthermore, F and Cl absolute abundances have been determined independently for three of the standards (KL2-G, ATHO-G, and KE12), via heavy ion elastic recoil detection analysis (HIERDA), to certify the accuracy of the cross-calibration EPMA-SIMS. The detection limits for EPMA are a 150 μg·g-1 for F, 20 μg·g-1 for S and Cl, and for SIMS < 48 μg·g-1 for F, < 3 μg·g-1 for S, and <19 μg·g-1 for Cl. On SiO2-rich glass-standards, F and Cl measurements by HIERDA highlight a weak matrix effect during SIMS analysis of F and Cl. With the HIERDA independently measured value, we therefore propose an alternative calibration function to empirically correct this matrix effect on the SIMS measurements of F, S, and Cl.
Acknowledgments and funding
E.F.R-K. thanks O. Sigmarsson for the Sletta sample. E.F.R-K. and K.T.K. acknowledge support from Region Auvergne Rhone Alpes (SCUSI program). This is Laboratory of Excellence ClerVolc contribution number 386.
References cited
Aiuppa, A., Baker, D.R., and Webster, J.D. (2009) Halogens in volcanic systems. Chemical Geology, 263, 1–18.10.1016/j.chemgeo.2008.10.005Search in Google Scholar
Aubaud, C., Bureau, H., Raepsaet, C., Khodja, H., Withers, A.C., Hirschmann, M.M., and Bell, D.R. (2009) Calibration of the infrared molar absorption coefficients for H in olivine, clinopyroxene and rhyolitic glass by elastic recoil detection analysis. Chemical Geology, 262, 78–86.10.1016/j.chemgeo.2009.01.001Search in Google Scholar
Baker, D.R., Freda, C., Brooker, R.A., and Scarlato, P. (2005) Volatile diffusion in silicate melts and its effects on melt inclusions. Annals of Geophysics, 48, 699–717.Search in Google Scholar
Bartoli, O., Cesare, B., Remusat, L., Acosta-Vigil, A., and Poli, S. (2014) The H2O content of granite embryos. Earth and Planetary Science Letters, 395, 281–290.10.1016/j.epsl.2014.03.031Search in Google Scholar
Behrens, H., and Gaillard, F. (2006) Geochemical aspects of melts: volatiles and redox behavior. Elements, 2, 275–280.10.2113/gselements.2.5.275Search in Google Scholar
Borisova, A.Y., Freydier, R., Polvé, M., Jochum, K.P., and Candaudap, F. (2010) Multi-elemental analysis of ATHO-G rhyolitic glass (MPI-DING Reference Material) by femtosecond and nanosecond LA-ICP-MS: Evidence for significant heterogeneity of B, V, Zn, Mo, Sn, Sb, Cs, W, Pt and Pb at the millimetre scale. Geostandards and Geoanalytical Research, 34, 245–255.10.1111/j.1751-908X.2010.00077.xSearch in Google Scholar
Bouvier, A.S., Métrich, N., and Deloule, E. (2008) Slab-derived fluids in the magma sources of St. Vincent (Lesser Antilles Arc): Volatile and light element imprints. Journal of Petrology, 49, 1427–1448.10.1093/petrology/egn031Search in Google Scholar
Bouvier, A.-S., Deloule, E., and Métrich, N. (2010) Fluid inputs to magma sources of St. Vincent and Grenada (Lesser Antilles): New insights from trace elements in olivine-hosted melt inclusions. Journal of Petrology, 51, 1597–1615.10.1093/petrology/egq031Search in Google Scholar
Bowles, J., Gee, J.S., Kent, D.V., Perfit, M.R., Soule, S.A., and Fornari, D.J. (2006) Paleointensity applications to timing and extent of eruptive activity, 9°–10°N East Pacific Rise. Geochemistry Geophysics Geosystems, 7, Q06006.10.1029/2005GC001141Search in Google Scholar
Bucholz, C.E., Gaetani, G.A., and Behn, M.D. (2013) Post-entrapment modification of volatiles and oxygen fugacity in olivine-hosted melt inclusions: Earth and Planetary Science Letters, 374, 145–155.10.1016/j.epsl.2013.05.033Search in Google Scholar
Bureau, H., Raepsaet, C., Khodja, H., Carraro, A., and Aubaud, C. (2009) Determination of hydrogen content in geological samples using elastic recoil detection analysis (ERDA). Geochimica et Cosmochimica Acta, 73, 3311–3322.10.1016/j.gca.2009.03.009Search in Google Scholar
Cabral, R.A., Jackson, M.G., Koga, K.T., Rose-Koga, E.F., Hauri, E.H., White-house, M.J., Price, A.A., Day, J.M.D., Shimizu, N., and Kelley, K.A. (2014) Volatile cycling of H2O, CO2, F, and Cl in the HIMU mantle: A new window provided by melt inclusions from oceanic hot spot lavas at Mangaia, Cook Islands. Geochemistry, Geophysics, Geosystems, 15, 4445–4467.10.1002/2014GC005473Search in Google Scholar
Cadoux, A., Iacono-Marziano, G., Paonita, A., Deloule, E., Aiuppa, A., Nelson Eby, G., Costa, M., Brusca, L., Berlo, K., Geraki, K., and others. (2017) A new set of standards for in-situ measurement of bromine abundances in natural silicate glasses: Application to SR-XRF, LA-ICP-MS, and SIMS techniques. Chemical Geology, 452, 60–70.10.1016/j.chemgeo.2017.01.012Search in Google Scholar
Carroll, M.K., and Rutherford, M.J. (1988) Sulfur speciation in hydrous experimental glasses of varying oxidation state–results from measured wavelength shifts of sulfur X‑rays. American Mineralogist, 73, 845–849.Search in Google Scholar
Carroll, M.K., and Webster, J.D. (1994) Solubilities of sulfur, noble gases, nitrogen, chlorine, and fluorine in magmas. In M. Carroll and J. Holloway, Eds., Volatiles in Magmas, 30, p. 231–279. Reviews in Mineralogy and Geochemistry, Mineralogical Society of America, Chantilly, Virginia.10.1515/9781501509674-013Search in Google Scholar
Carvalho, B., Bartoli, O., Ferri, F., Cesare, B., Ferrero, S., Remusat, L., Capizzi, L.S., and Poli, S. (2019) Anatexis and fluid regime of the deep continental crust: New clues from melt and fluid inclusions in metapelitic migmatites from Ivrea Zone (NW Italy). Journal of Metamorphic Geology, 37, 951–975.10.1111/jmg.12463Search in Google Scholar
Cioni, R., Marianelli, P., and Santacroce, R. (1998) Thermal and compositional evolution of the shallow magma chambers of Vesuvius: Evidence from pyroxene phenocrysts and melt inclusions. Journal of Geophysical Research, 103, 18,277–18,294.10.1029/98JB01124Search in Google Scholar
Coombs, M.L., Sisson, T.W., and Lipman, P.W. (2004) Growth history of Kilauea inferred from volatile concentrations in submarine-collected basalts. Journal of Volcanology and Geothermal Research, 151, 19–49.10.1016/j.jvolgeores.2005.07.037Search in Google Scholar
Créon, L., Levresse, G., Remusat, L., Bureau, H., and Carrasco-Núñez, G. (2018) New method for initial composition determination of crystallized silicate melt inclusions. Chemical Geology, 483, 162–173.10.1016/j.chemgeo.2018.02.038Search in Google Scholar
Créon, L., Rouchon, V., Youssef, S., Rosenberg, E., Delpech, G., Szabó, C., Remusat, L., Mostefaoui, S., Asimow, P.D., Antoshechkina, P.M., and others. (2017) Highly CO2-supersaturated melts in the Pannonian lithospheric mantle—A transient carbon reservoir? Lithos, 286-287, 519–533.10.1016/j.lithos.2016.12.009Search in Google Scholar
Dalou, C., Koga, K.T., Le Voyer, M., and Shimizu, N. (2014) Contrasting partition behavior of F and Cl during hydrous mantle melting: implications for Cl/F signature in arc magmas. Progress in Earth and Planetary Science, 1, 309.10.1186/s40645-014-0026-1Search in Google Scholar
De Hoog, J.C.M., Mason, P.R.D., and Van Bergen, M.J. (2001) Sulfur and chalcophile elements in subduction zones: Constraints from a laser ablation ICP-MS study of melt inclusions from Galunggung Volcano, Indonesia. Geochimica et Cosmochimica Acta, 65, 3147–3164.10.1016/S0016-7037(01)00634-2Search in Google Scholar
Devine, J.D., Sigurdsson, H., and Davis, A.N. (1984) Estimates of sulfur and chlorine yield to the atmosphere from volcanic eruptions and potential climatic effects. Journal of Geophysical Research, 89, 6309–6325.10.1029/JB089iB07p06309Search in Google Scholar
Devine, J.D., Gardner, J.E., Brack, H.P., Layne, G.D., and Rutherford, M.J. (1995) Comparison of microanalytical methods for estimating H2O contents of silicic volcanic glasses. American Mineralogist, 80, 319–328.10.2138/am-1995-3-413Search in Google Scholar
Dixon, J.E., Clague, D.A., and Stolper, E.M. (1991) Degassing history of water, sulfur, and carbon in submarine lavas from Kilauea volcano, Hawaii. Journal of Geology, 99, 371–394.10.1086/629501Search in Google Scholar
Döbeli, M., Kottler, C., Glaus, F., and Suter, M. (2005) ERDA at the low energy limit. Nuclear Instruments and Methods in Physics Research, B, 241, 428–435.10.1016/j.nimb.2005.07.090Search in Google Scholar
Embley, R.W., Jonasson, I.R., Perfit, M.R., Franklin, J.M., Tivey, M.A., Malahoff, A., Smith, M.F., and Francis, T.J.G. (1988) Submersible investigation of an extinct hydrothermal system on the Galapagos Ridge: Sulfide mound, stock-work zone, and differentiated lavas. Canadian Mineralogist, 26, 517–539.Search in Google Scholar
Fialin, M., Wagner, C., Métrich, N., Humler, E., Galoisy, L., and Bézos, A. (2001) Fe3+/SFe versus FeLα peak energy for minerals and glasses: recent advances with the electron microprobe. American Mineralogist, 86, 456–465.10.2138/am-2001-0409Search in Google Scholar
Fialin, M., Bézos, A., Wagner, C., Magnien, V., and Humler, E. (2004) Quantitative electron microprobe analysis of Fe3+/SFe: basic concepts and experimental protocol for glasses. American Mineralogist, 89, 654–662.10.2138/am-2004-0421Search in Google Scholar
Fischer, T.P. (2008) Fluxes of volatiles (H2O, CO2, N2, Cl, F) from arc volcanoes. Geochemical Journal, 42, 21–38.10.2343/geochemj.42.21Search in Google Scholar
Fisk, M., and Kelley, K.A. (2002) Probing the Pacific’s oldest MORB glass: mantle chemistry and melting conditions during the birth of the Pacific Plate. Earth and Planetary Science Letters, 202, 741–752.10.1016/S0012-821X(02)00760-4Search in Google Scholar
Guggino, S.N., and Hervig, R.L. (2010) Determination of fluorine in fourteen microanalytical geologic reference materials using SIMS, EPMA and proton induced gamma ray emission (PIGE) analysis. American Geophysical Union, Fall Meeting, V51C-2209.Search in Google Scholar
Hall, L.S., Mahoney, J.J., Sinton, J.M., and Duncan, R.A. (2006) Spatial and temporal distribution of a C-like asthenospheric component in the Rano Rahi Seamount Field, East Pacific Rise, 15°-19°S. Geochemistry, Geophysics, Geosystems, 7 (3).10.1029/2005GC000994Search in Google Scholar
Hanley, J.J., and Koga, K.T. (2018) Halogens in terrestrial and cosmic geochemical systems: abundances, geochemical behaviors, and analytical methods. In D.E. Harlov and L. Aranovich, Eds., The Role of Halogens in Terrestrial and Extraterrestrial Geochemical Processes, p. 21–121. Springer Geochemistry.10.1007/978-3-319-61667-4_2Search in Google Scholar
Harlov, D.E., and Aranovich, L. (2018) The Role of Halogens in Terrestrial and Extraterrestrial Geochemical Processes, 1030 p. Springer.10.1007/978-3-319-61667-4Search in Google Scholar
Hauri, E., Wang, J., Dixon, J.E., King, P.L., Mandeville, C., and Newman, S. (2002) SIMS analysis of volatiles in silicate glasses 1. Calibration, matrix effects and comparisons with FTIR. Chemical Geology, 183, 99–114.10.1016/S0009-2541(01)00375-8Search in Google Scholar
Helo, C., Longpré, M.-A., Shimizu, N., Clague, D.A., and Stix, J. (2011) Explosive eruptions at mid-ocean ridges driven by CO2-rich magmas. Nature Geoscience, 4, 260–263.10.1038/ngeo1104Search in Google Scholar
Ihinger, P.D., Hervig, R.L. and McMillan, P.F. (1994) Analytical methods for volatiles in glasses. In M. Carroll and J. Holloway, Eds., Volatiles in Magmas, 30, p. 67–121. Reviews in Mineralogy and Geochemistry, Mineralogical Society of America, Chantilly, Virginia.10.1515/9781501509674-008Search in Google Scholar
Jackson, M.G., Cabral, R.A., Rose-Koga, E.F., Koga, K.T., Price, A., Hauri, E.H., and Michael, P. (2015) Ultra-depleted melts in olivine-hosted melt inclusions from the Ontong Java Plateau. Chemical Geology, 414, 124–137.10.1016/j.chemgeo.2015.08.014Search in Google Scholar
Jarosewich, E. (2002) Smithsonian microbeam standards. Journal of Research of the National Institute of Standards and Technology, 107, 681–685.10.6028/jres.107.054Search in Google Scholar
Jarosewich, E., Nelen, J.A., and Norberg, J.A. (1979) Electron microprobe reference samples for mineral analysis. In R.F. Fudali, Ed., Smithsonian Contributions to the Earth Sciences, 22, p. 68–72.Search in Google Scholar
Jochum, K.P., Dingwell, D.B., Rocholl, A., Stoll, B., Hofmann, A.W., Becker, J.S., Besmehn, A., Bessette, D., Dietze, H.-J., Dulski, P., and others. (2000) The preparation and preliminary characterization of eight geological MPI-DING reference glasses for in-situ microanalysis. Geostandards Newsletter: The Journal of Geostandards and Geoanalysis, 24, 87–133.10.1111/j.1751-908X.2000.tb00590.xSearch in Google Scholar
Jochum, K.P., Stoll, B., Herwig, K., Willbold, M., Hofmann, A.W., Amini, M., Aarburg, S., Abouchami, W., Hellebrand, E., Mocek, B., and others. (2006) MPI-DING reference glasses for in situ microanalysis: New reference values for element concentrations and isotope ratios. Geochemistry, Geophysics Geosystems, 7, Q02008.10.1029/2005GC001060Search in Google Scholar
King, P.L., and Holloway, J.R. (2002) CO2 solubility and speciation in intermediate (andesitic) melts: the role of H2O and composition. Geochimica et Cosmochimica Acta, 66, 1627–1640.10.1016/S0016-7037(01)00872-9Search in Google Scholar
Koga, K.T., and Rose-Koga, E.F. (2016) Fluorine. In W.M. White, Ed., Encyclopedia of Geochemistry, p. 495–498. Springer.10.1007/978-3-319-39312-4_102Search in Google Scholar
Koga, K.T., and Rose-Koga, E.F. (2018) Fluorine in the Earth and the solar system, where does it come from and can it be found? Comptes Rendus Chimie, 21, 749–756.10.1016/j.crci.2018.02.002Search in Google Scholar
Koga, K.T., Hauri, E.H., Hirschmann, M.M., and Bell, D.R. (2003) Hydrogen concentration analyses using SIMS and FTIR: Comparison and calibration for nominally anhydrous minerals. Geochemistry, Geophysics, Geosystems, 4, Q1019.10.1029/2002GC000378Search in Google Scholar
Kottler, C., Döbeli, M., Glaus, F., and Suter, M. (2006) A spectrometer for low energy heavy ion ERDA. Nuclear Instruments and Methods in Physics Research B, 248, 155–162.10.1016/j.nimb.2006.02.013Search in Google Scholar
Le Voyer, M., Rose-Koga, E.F., Laubier, M., and Schiano, P. (2008) Petrogenesis of arc lavas from the Rucu Pichincha and Pan de Azucar volcanoes (Ecuadorian arc): Major, trace element, and boron isotope evidences from olivine-hosted melt inclusions. Geochemistry, Geophysics, Geosystems, 9, Q12027.10.1029/2008GC002173Search in Google Scholar
Le Voyer, M., Rose-Koga, E.F., Shimizu, N., Grove, T.L., and Schiano, P. (2010) Two contrasting H2O-rich components in primary melt inclusions from Mount Shasta, Journal of Petrology, 51, 1571–1595. doi:10.1093/petrology/egq030.10.1093/petrology/egq030Search in Google Scholar
Le Voyer, M., Asimow, P.D., Mosenfelder, J.L., Guan, Y., Wallace, P.J., Schiano, P., Stolper, E.M., and Eiler, J.M. (2014) Zonation of H2O and F concentrations around melt inclusions in olivines. Journal of Petrology, 55, 685–707.10.1093/petrology/egu003Search in Google Scholar
Le Voyer, M., Kelley, K.A., Cottrell, E., and Hauri, E.H. (2017) Heterogeneity in mantle carbon content from CO2-undersaturated basalts. Nature Communications, 8, 14062.10.1038/ncomms14062Search in Google Scholar PubMed PubMed Central
Le Voyer, M., Hauri, E.H., Cottrell, E., Kelley, K.A., Salters, V.J.M., Langmuir, C.H., Hilton, D.R., Barry, P.H., and Füri, E. (2019) Carbon fluxes and primary magma CO2 contents along the global mid-ocean ridge system. Geochemistry, Geophysics, Geosystems, 20, 1387–1424.10.1029/2018GC007630Search in Google Scholar
Lloyd, A.S., Ruprecht, P., Hauri, E.H., Rose, W., Gonnermann, H.M., and Plank, T. (2014) NanoSIMS results from olivine-hosted melt embayments: Magma ascent rate during explosive basaltic eruptions. Journal of Volcanology and Geothermal Research, 283, 1–18.10.1016/j.jvolgeores.2014.06.002Search in Google Scholar
Marianelli, P., Métrich, N., Santacroce, R., and Sbrana, A. (1995) Mafic magma batches at Vesuvius: a glass inclusion approach to the modalities of feeding stratovolcanoes. Contribution to Mineralogy and Petrology, 120, 159–169.10.1007/BF00287113Search in Google Scholar
Métrich, N., and Rutherford, M.J. (1991) Experimental study of chlorine behavior in hydrous silicic melts. Geochimica et Cosmochimica Acta, 56, 607–616.10.1016/0016-7037(92)90085-WSearch in Google Scholar
Métrich, N., and Wallace, P.J. (2008) Volatile abundances in basaltic magmas and their degassing paths tracked by melt inclusions. Reviews in Mineralogy and Geochemistry, 69, 363–402.10.1515/9781501508486-011Search in Google Scholar
Métrich, N., Schiano, P., Clocchiatti, R., and Maury, R.C. (1999) Transfer of sulfur in subduction settings: an example from Batan Island (Luzon volcanic arc, Philippines). Earth and Planetary Science Letters, 167, 1–14.10.1016/S0012-821X(99)00009-6Search in Google Scholar
Michael, P.J., and Cornell, W.C. (1998) Influence of spreading rate and magma supply on crystallization and assimilation beneath mid-ocean ridges: Evidence from chlorine and major element chemistry of mid-ocean ridge basalts. Journal of Geophysical Research-Solid Earth, 103, 18325–18356.10.1029/98JB00791Search in Google Scholar
Mosbah, M., Métrich, N., and Massiot, P. (1991) PIGME fluorine determination using a nuclear microprobe with application to glass inclusions. Nuclear Instruments and Methods in Physics Research B, 58, 227–231.10.1016/0168-583X(91)95592-2Search in Google Scholar
Narvaez, D.F., Rose-Koga, E.F., Samaniego, P., Koga, K.T., and Hidalgo, S. (2018) Constraining magma sources using primitive olivine-hosted melt inclusions from Pun[tilde]nalica and Sangay volcanoes (Ecuador). Contributions to Mineralogy and Petrology, 173, 79–104.10.1007/s00410-018-1508-8Search in Google Scholar
Oladottir, B., Sigmarsson, O., Larsen, G., and Devidal, J-L. (2011) Provenance of basaltic tephra from Vatnajökull subglacial volcanoes, Iceland, as determined by major- and trace-element analyses. Holocene, 21, 1037–1048.10.1177/0959683611400456Search in Google Scholar
Oskarsson, N., Sigvaldason, G., and Steinthorsson, S. (1982) A dynamic model of rift zone petrogenesis and the regional petrology of Iceland. Journal of Petrology, 23, 28–74.10.1093/petrology/23.1.28Search in Google Scholar
Palais, J.M., and Sigurdsson, H. (1989) Petrologic evidence of volatile emissions from major historic and pre-historic volcanic eruptions. In A. Berger, R.E. Dickinson, and J.W. Kidson, Eds., Understanding Climate Change, p. 31–53. Geophysical Monograph. American Geophysical Union, Washington, D.C.10.1029/GM052p0031Search in Google Scholar
Perfit, M.R., Ridley, W.I., and Jonasson, I.R. (1998) Geologic, petrologic, and geochemical relationships between magmatism and massive sulfide mineralization along the Eastern Galapagos Spreading Center. In T. Barry and M. Hannington, Eds., Reviews in Economic Geology-Volcanic-Associated Massive Sulfide Deposits, p. 75–100. Society of Economic Geology, New Haven, Connecticut.10.5382/Rev.08.04Search in Google Scholar
Robinson, B.W., and Graham, J. (1992) Advances in electron microprobe trace-element analysis. Journal of Computer-Assisted Microscopy, 4, 263–265.Search in Google Scholar
Rose-Koga, E.F., Koga, K., Schiano, P., and Le Voyer, M. (2012) Mantle source heterogeneity for South Tyrrhenian magmas revealed by Pb isotopes and halogen contents of olivine-hosted melt inclusions. Chemical Geology, 334, 266–279.10.1016/j.chemgeo.2012.10.033Search in Google Scholar
Rose-Koga, E.F., Koga, K.T., Hamada, M., Hélouis, T., Whitehouse, M.J., and Shimizu, N. (2014) Volatile (F and Cl) concentrations in Iwate olivine-hosted melt inclusions indicating low-temperature subduction. Earth, Planets and Space, 66, 81–93.10.1186/1880-5981-66-81Search in Google Scholar
Rose-Koga, E.F., Koga, K.T., Moreira, M., Vlastélic, I., Jackson, M.G., White-house, M.J., Shimizu, N., and Habib, N. (2017) Geochemical systematics of Pb isotopes, fluorine, and sulfur in melt inclusions from Săo Miguel, Azores. Chemical Geology, 458, 22–37.10.1016/j.chemgeo.2017.03.024Search in Google Scholar
Shimizu, N. (1998) The geochemistry of olivine hosted melt inclusions in a famous basalt ALV519-4-1. Physics of the Earth and Planetary Interior, 107, 183–201.10.1016/S0031-9201(97)00133-7Search in Google Scholar
Shimizu, N., and Hart, S.R. (1982) Application of the ion microprobe to Geochemistry and Cosmochemistry. Annual Reviews in Earth and Planetary Science, 10, 483–526.10.1146/annurev.ea.10.050182.002411Search in Google Scholar
Shimizu, N., Semet, M., and Allègre, C.J. (1978) Geochemical applications of quantitative ion-microprobe analysis. Geochimica et Cosmochimica Acta, 42, 1321–1334.10.1016/0016-7037(78)90037-6Search in Google Scholar
Shimizu, K., Suzuki, K., Saitoh, M., Konno, U., Kawagucci, S., and Ueno, Y. (2015) Simultaneous determinations of fluorine, chlorine, and sulfur in rock samples by ion chromatography combined with pyrohydrolysis. Geochemical Journal, 49, 113–124.10.2343/geochemj.2.0338Search in Google Scholar
Shimizu, K., Ushikubo, T., Hamada, M., Itoh, S., Higashi, Y., Takahashi, E., and Ito, M. (2017) H2O, CO2, F, S, Cl, and P2O5 analyses of silicate glasses using SIMS: Report of volatile standard glasses. Geochemical Journal, 51, 299–313.10.2343/geochemj.2.0470Search in Google Scholar
Simons, K., Dixon, J.E., Schilling, J.G., Kingsley, R.H., and Poreda, R.J. (2002) Volatiles in basaltic glasses from the Easter-Salas y Gomez Seamount chain and Easter microplate: implications for geochemical cycling of volatile elements. Geochemistry, Geophysics, Geosystems, 3, 1–29.10.1029/2001GC000173Search in Google Scholar
Sims, K.W.W., Goldstein, S.J., Blichert-Toft, J., Perfit, M.R., Kelemen, P., Fornari, D.J., Michael, P., Murrell, M.T., Hart, S.R., DePaolo, D.J., Layne, G., Ball, L., Jull, M., and Bender, J. (2002) Chemical and isotopic constraints on the generation and transport of magma beneath the East Pacific Rise. Geochimica et Cosmochimica Acta, 66, 3481–3504.10.1016/S0016-7037(02)00909-2Search in Google Scholar
Sisson, T.W., and Layne, G.D. (1993) H2O in basalt and basaltic andesite glass inclusions from four subduction-related volcanoes H2O in basalt and basaltic andesite glass inclusions from four subduction-related volcanoes. Earth and Planetary Science Letters, 117, 619–635.10.1016/0012-821X(93)90107-KSearch in Google Scholar
Straub, S.M., and Layne, G.D. (2003) The systematics of chlorine, fluorine, and water in Izu arc front volcanic rocks: Implications for volatile recycling in subduction zones. Geochimica et Cosmochimica Acta, 67, 4179–4203.10.1016/S0016-7037(03)00307-7Search in Google Scholar
Streck, M., and Wacaster, S. (2006) Plagioclase and pyroxene hosted melt inclusions in basaltic andesites of the current eruption of Arenal volcano, Costa Rica. Journal of Volcanology and Geothermal Research, 157, 236–253.10.1016/j.jvolgeores.2006.03.040Search in Google Scholar
Stormer, J.C., Pierson, M.L., and Tacker, R.C. (1993) Variation of F and Cl X‑ray intensity due to anisotropic diffusion in apatite during electron microprobe analysis. American Mineralogist, 78, 641–648.Search in Google Scholar
Thordarsson, T., Self, S., Oskarsson, N., and Hulsebosch, T. (1996) Sulfur, chlorine, fluorine degassing and atmospheric loading by the 1783–1784 AD Laki (Skaftar Fires) eruption in Iceland. Bulletin of Volcanology, 58, 205–225.10.1007/s004450050136Search in Google Scholar
Thornber, C.R., Sherrod, D.R., Siems, D.F., Heliker, C.C., Meeker, G.P., Oscarson, R.L., and Kauahikaua, J.P. (2002) Whole-rock and glass major-element chemistry of Kilauea Volcano, Hawaii, near-vent eruptive products: September 1994 through September 2001. U.S. Geological Survey Open File Report 02-17.10.3133/ofr0217Search in Google Scholar
Todd, C.S. (1996) Fluorine analysis by electron microprobe: correction for iron interference. Abstract, GSA Annual Meeting, p. A-212. Geological Society of America, Boulder, Colorado.Search in Google Scholar
Tonarini, S., Pennisi, M.M., Adorni-Braccesi, A., Dini, A., Ferrara, G., Gonfiantini, R., Wiedenbeck, M., and Gröning, M. (2003) Intercomparison of boron isotope and concentration measurements. Part I: Selection, preparation and homogeneity tests of the intercomparison materials. Geostandards Newsletter, 27, 21–39.10.1111/j.1751-908X.2003.tb00710.xSearch in Google Scholar
Van den Bleeken, G., and Koga, K.T. (2015) Experimentally determined distribution of fluorine and chlorine upon hydrous slab melting, and implications for F–Cl cycling through subduction zones. Geochimica et Cosmochimica Acta, 171, 353–373.10.1016/j.gca.2015.09.030Search in Google Scholar
Wade, J.A., Plank, T., Melson, W.G., Soto, G.J., and Hauri, E.H. (2006) The volatile content of magmas from Arenal volcano, Costa Rica. Journal of Volcanology and Geothermal Research, 157, 94–120.10.1016/j.jvolgeores.2006.03.045Search in Google Scholar
Wallace, P.J. (2005) Volatiles in subduction zone magmas: concentrations and fluxes based on melt inclusion and volcanic gas data. Journal of Volcanology and Geothermal Research, 140, 217–240.10.1016/j.jvolgeores.2004.07.023Search in Google Scholar
Wayne, D.M., Diaz, T.A., Fairhurst, R.J., Orndorff, R.L., and Pete, D.V. (2006) Direct major- and trace-element analyses of rock varnish by high resolution laser ablation inductively-coupled plasma mass spectrometry (LA-ICPMS). Applied Geochemistry, 21, 1410–1431. doi: 10.1016/j.apgeochem.2006.04.005.10.1016/j.apgeochem.2006.04.005Search in Google Scholar
Withers, A.C., Bureau, H., Raepsaet, C., and Hirschmann, M.M. (2012) Calibration of infrared spectroscopy by elastic recoil detection analysis of H in synthetic olivine. Chemical Geology, 334, 92–98.10.1016/j.chemgeo.2012.10.002Search in Google Scholar
Witter, J.B., and Kuehner, S.M. (2004) A simple empirical method for high-quality electron microprobe analysis of fluorine at trace levels in Fe-bearing minerals and glasses. American Mineralogist, 89, 57–63.10.2138/am-2004-0108Search in Google Scholar
Zhang, C., Koepke, J., Wang, L.-X., Wolff, P.E., Wilke, S., Stechern, A., Almeev, R., and Holtz, F. (2016) A practical method for accurate measurement of trace level fluorine in mg- and fe-bearing minerals and glasses using electron probe microanalysis. Geostandards and Geoanalytical Research, 40, 351–363.10.1111/j.1751-908X.2015.00390.xSearch in Google Scholar
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Articles in the same Issue
- Texture constraints on crystal size distribution methodology: An application to the Laki fissure eruption
- Hydrogenation reactions of carbon on Earth: Linking methane, margarine, and life
- Abiotic and biotic processes that drive carboxylation and decarboxylation reactions
- In-situ measurements of magmatic volatile elements, F, S, and Cl, by electron microprobe, secondary ion mass spectrometry, and heavy ion elastic recoil detection analysis
- MSA Centennial Symposium
- An evolutionary system of mineralogy. Part I: Stellar mineralogy (>13 to 4.6 Ga)
- A structural study of size-dependent lattice variation: In situ X-ray diffraction of the growth of goethite nanoparticles from 2-line ferrihydrite
- Cassiterite crystallization experiments in alkali carbonate aqueous solutions using a hydrothermal diamond-anvil cell
- New insights into the nature of glauconite
- Kaolinization of 2:1 type clay minerals with different swelling properties
- The quintet completed: The partitioning of sulfur between nominally volatile-free minerals and silicate melts
- 222Rn and 220Rn emanations from powdered samples of samarskite as a function of annealing temperature
- Polymerization during melting of ortho- and meta-silicates: Effects on Q species stability, heats of fusion, and redox state of mid-ocean range basalts (MORBs)
- Formation of native arsenic in hydrothermal base metal deposits and related supergene U6+ enrichment: The Michael vein near Lahr, SW Germany
- Lingbaoite, AgTe3, a new silver telluride from the Xiaoqinling gold district, central China
- Oxygen isotope fractionation between gypsum and its formation waters: Implications for past chemistry of the Kawah Ijen volcanic lake, Indonesia
- Presentation of the 2018 MSA Award of the Mineralogical Society of America to Laura Nielsen Lammers
- Acceptance of the 2018 MSA Award of the Mineralogical Society of America
- Presentation of the Dana Medal of the Mineralogical Society of America for 2019 to Matthew J. Kohn
- Acceptance of the Dana Medal of the Mineralogical Society of America for 2019
- Presentation of the Mineralogical Society of America Award for 2019 to Olivier Namur
- Acceptance of the Mineralogical Society of America Award for 2019
- Presentation of the 2019 MSA Distinguished Public Service Medal to Rodney C. Ewing
- Acceptance of Distinguished Public Service Award of the Mineralogical Society of America for 2019
- Presentation of the 2019 Roebling Medal of the Mineralogical Society of America to Peter R. Buseck
- Acceptance of the 2019 Roebling Medal of the Mineralogical Society of America
- Erratum
- Erratum
Articles in the same Issue
- Texture constraints on crystal size distribution methodology: An application to the Laki fissure eruption
- Hydrogenation reactions of carbon on Earth: Linking methane, margarine, and life
- Abiotic and biotic processes that drive carboxylation and decarboxylation reactions
- In-situ measurements of magmatic volatile elements, F, S, and Cl, by electron microprobe, secondary ion mass spectrometry, and heavy ion elastic recoil detection analysis
- MSA Centennial Symposium
- An evolutionary system of mineralogy. Part I: Stellar mineralogy (>13 to 4.6 Ga)
- A structural study of size-dependent lattice variation: In situ X-ray diffraction of the growth of goethite nanoparticles from 2-line ferrihydrite
- Cassiterite crystallization experiments in alkali carbonate aqueous solutions using a hydrothermal diamond-anvil cell
- New insights into the nature of glauconite
- Kaolinization of 2:1 type clay minerals with different swelling properties
- The quintet completed: The partitioning of sulfur between nominally volatile-free minerals and silicate melts
- 222Rn and 220Rn emanations from powdered samples of samarskite as a function of annealing temperature
- Polymerization during melting of ortho- and meta-silicates: Effects on Q species stability, heats of fusion, and redox state of mid-ocean range basalts (MORBs)
- Formation of native arsenic in hydrothermal base metal deposits and related supergene U6+ enrichment: The Michael vein near Lahr, SW Germany
- Lingbaoite, AgTe3, a new silver telluride from the Xiaoqinling gold district, central China
- Oxygen isotope fractionation between gypsum and its formation waters: Implications for past chemistry of the Kawah Ijen volcanic lake, Indonesia
- Presentation of the 2018 MSA Award of the Mineralogical Society of America to Laura Nielsen Lammers
- Acceptance of the 2018 MSA Award of the Mineralogical Society of America
- Presentation of the Dana Medal of the Mineralogical Society of America for 2019 to Matthew J. Kohn
- Acceptance of the Dana Medal of the Mineralogical Society of America for 2019
- Presentation of the Mineralogical Society of America Award for 2019 to Olivier Namur
- Acceptance of the Mineralogical Society of America Award for 2019
- Presentation of the 2019 MSA Distinguished Public Service Medal to Rodney C. Ewing
- Acceptance of Distinguished Public Service Award of the Mineralogical Society of America for 2019
- Presentation of the 2019 Roebling Medal of the Mineralogical Society of America to Peter R. Buseck
- Acceptance of the 2019 Roebling Medal of the Mineralogical Society of America
- Erratum
- Erratum