Lithium and boron isotopic composition of sedimentary rocks — The role of source history and depositional environment: A 250Ma record from the Cadomian orogeny to the Variscan orogeny
暂无分享,去创建一个
[1] Karl K. Turekian,et al. Treatise on geochemistry , 2014 .
[2] R. Rudnick,et al. Composition of the Continental Crust , 2014 .
[3] Uwe Kroner,et al. Two plates — Many subduction zones: The Variscan orogeny reconsidered , 2013 .
[4] K. Haase,et al. Lithium Isotope Variations in Ocean Island Basalts—Implications for the Development of Mantle Heterogeneity , 2012 .
[5] S. Hoernes,et al. Petrogenesis of Tertiary Alkaline Magmas in the Siebengebirge, Germany , 2012 .
[6] R. Romer,et al. Strontium isotopes — A persistent tracer for the recycling of Gondwana crust in the Variscan orogen , 2012 .
[7] P. Froelich,et al. Lithium Isotope History of Cenozoic Seawater: Changes in Silicate Weathering and Reverse Weathering , 2012, Science.
[8] R. Dorsey,et al. Stratigraphic record of basin development within the San Andreas fault system: Late Cenozoic Fish Creek–Vallecito basin, southern California , 2011 .
[9] Z. Řanda,et al. Lithium in tektites and impact glasses: Implications for sources, histories and large impacts , 2011 .
[10] C. Guerrot,et al. Multi-isotopic composition (δ7Li–δ11B–δD–δ18O) of rainwaters in France: Origin and spatio-temporal characterization , 2010 .
[11] R. Millot,et al. Behaviour of lithium and its isotopes during weathering in the Mackenzie Basin, Canada , 2010 .
[12] M. Haeckel,et al. Lithium isotope geochemistry of marine pore waters – Insights from cold seep fluids , 2010 .
[13] M. Kohút,et al. Fingerprinting sources of orogenic plutonic rocks from Variscan belt with lithium isotopes and possible link to subduction-related origin of some A-type granites , 2010 .
[14] R. Dorsey. Sedimentation and crustal recycling along an active oblique-rift margin: Salton Trough and northern Gulf of California , 2010 .
[15] R. Romer,et al. Life of the Rheic Ocean: Scrolling through the shale record , 2010 .
[16] M. Haeckel,et al. Isotopic evidence (87Sr/86Sr, δ7Li) for alteration of the oceanic crust at deep-rooted mud volcanoes in the Gulf of Cadiz, NE Atlantic Ocean , 2009 .
[17] D. Ionov,et al. Links between mantle metasomatism and lithium isotopes: Evidence from glass-bearing and cryptically metasomatized xenoliths from Mongolia , 2008 .
[18] S. Petit,et al. Quantifying Li isotope fractionation during smectite formation and implications for the Li cycle , 2008 .
[19] R. Millot,et al. Multi-isotopic tracing (δ7Li, δ11B, 87Sr/86Sr) and chemical geothermometry: evidence from hydro-geothermal systems in France , 2007 .
[20] R. L. King,et al. Boron and lead isotope signatures of subduction-zone mélange formation: Hybridization and fractionation along the slab-mantle interface beneath volcanic arcs , 2007 .
[21] R. Romer,et al. The Variscan orogeny in the Saxo-Thuringian zone—Heterogenous overprint of Cadomian/Paleozoic Peri-Gondwana crust , 2007 .
[22] J. Schneider,et al. Permian climate development in the northern peri-Tethys area — The Lodève basin, French Massif Central, compared in a European and global context , 2006 .
[23] T. Plank,et al. Lithium isotopic composition of marine sediments , 2006 .
[24] Z. Chang,et al. U‐Pb dating of zircon by LA‐ICP‐MS , 2006 .
[25] N. Coltice,et al. Modelling the geochemical cycle of boron: Implications for the long-term δ11B evolution of seawater and oceanic crust , 2006 .
[26] A. Meixner,et al. Temperature-dependent isotopic fractionation of lithium between clinopyroxene and high-pressure hydrous fluids , 2006 .
[27] R. Hervig,et al. Lithium and boron isotopes in illite-smectite : The importance of crystal size , 2005 .
[28] M. Beyth,et al. Mass-production of Cambro-Ordovician quartz-rich sandstone as a consequence of chemical weathering of Pan-African terranes: Environmental implications , 2005 .
[29] A. Meixner,et al. Elemental dispersion and stable isotope fractionation during reactive fluid-flow and fluid immiscibility in the Bufa del Diente aureole, NE-Mexico: evidence from radiographies and Li, B, Sr, Nd, and Pb isotope systematics , 2005 .
[30] A. Halliday,et al. Low-blank isotope ratio measurement of small samples of lithium using multiple-collector ICPMS , 2004 .
[31] T. Elliott,et al. Lithium inputs to subduction zones , 2004 .
[32] L. Gardner,et al. Extreme lithium isotopic fractionation during continental weathering revealed in saprolites from South Carolina , 2004 .
[33] T. Elliott,et al. Precise/ Small Sample Size Determinations of Lithium Isotopic Compositions of Geological Reference Materials and Modern Seawater by MC‐ICP‐MS , 2004 .
[34] G. Bohrmann,et al. Evidence for the submarine weathering of silicate minerals in Black Sea sediments: Possible implications for the marine Li and B cycles , 2004 .
[35] M. Rehkämper,et al. The mass balance of dissolved thallium in the oceans , 2004 .
[36] James G. Ogg,et al. A Geologic Time Scale 2004: CONCEPTS AND METHODS , 2004 .
[37] P. Tomascak. Developments in the Understanding and Application of Lithium Isotopes in the Earth and Planetary Sciences , 2004 .
[38] Jennifer M. Robinson,et al. PHANEROZOIC ATMOSPHERIC OXYGEN , 2003 .
[39] R. Barnes,et al. Intercomparison of boron isotope and concentration measurements : Part II: Evaluation of results , 2003 .
[40] A. Kopf,et al. Boron and boron isotopes as tracers for diagenetic reactions and depth of mobilization, using muds and authigenic carbonates from eastern Mediterranean mud volcanoes , 2003, Geological Society, London, Special Publications.
[41] R. Romer,et al. The Cadomian Orogeny in Saxo-Thuringia, Germany: geochemical and Nd–Sr–Pb isotopic characterization of marginal basins with constraints to geotectonic setting and provenance , 2002 .
[42] J. Keppie,et al. A Cordilleran model for the evolution of Avalonia , 2002 .
[43] D. Teagle,et al. Lithium and lithium isotope profiles through the upper oceanic crust: a study of seawater–basalt exchange at ODP Sites 504B and 896A , 2002 .
[44] J. Edmond,et al. Lithium isotopes as a probe of weathering processes , 2001 .
[45] A. Meixner,et al. Boron and Oxygen Isotope Composition of Certified Reference Materials NIST SRM 610/612 and Reference Materials JB-2 and JR-2 , 2001 .
[46] F. Falk,et al. Beginning of siliciclastic sedimentation in the Lower Paleozoic of the Saxothuringian: sedimentology and geochemistry of the type section Goldisthal , 2001 .
[47] R. Romer,et al. Intracontinental extensional magmatism with a subduction fingerprint: the late Carboniferous Halle Volcanic Complex (Germany) , 2001 .
[48] J. Erzinger,et al. Boron recycling in the continental crust of the central Andes from the Palaeozoic to Mesozoic, NW Argentina , 2000 .
[49] M. Kastner,et al. Lithium isotopic compositions of pore fluids and sediments in the Costa Rica subduction zone: implications for fluid processes and sediment contribution to the arc volcanoes , 2000 .
[50] F. Nieto,et al. Chemical composition of smectites formed in clastic sediments. Implications for the smectite–illite transformation , 2000, Clay Minerals.
[51] C. France‐Lanord,et al. Fractionation of Boron isotopes during erosion processes: The example of Himalayan rivers , 2000 .
[52] H. Lützner,et al. From Cadomian subduction to Early Palaeozoic rifting: the evolution of Saxo-Thuringia at the margin of Gondwana in the light of single zircon geochronology and basin development (Central European Variscides, Germany) , 2000, Geological Society, London, Special Publications.
[53] W. Franke. The mid-European segment of the Variscides: tectonostratigraphic units, terrane boundaries and plate tectonic evolution , 2000, Geological Society, London, Special Publications.
[54] S. Peacock,et al. Boron isotopic composition of subduction-zone metamorphic rocks , 1999 .
[55] R. Carlson,et al. Accurate and precise determination of Li isotopic compositions by multi-collector sector ICP-MS , 1999 .
[56] Departments Gfz Publication Database Deutsches GeoForschungsZe Material Cycles,et al. Geochemische, petrologische und geochronologische Untersuchungen im Erzgebirgskristallin - Rekonstruktion eines Krustenstapels , 1999 .
[57] B. Mingram. The Erzgebirge, Germany, a subducted part of northern Gondwana: geochemical evidence for repetition of early Palaeozoic metasedimentary sequences in metamorphic thrust units , 1998, Geological Magazine.
[58] J. Edmond,et al. Lithium and its isotopes in major world rivers: Implications for weathering and the oceanic budget , 1998 .
[59] T. Nakano,et al. Static multicollection of Cs2BO2+ ions for precise boron isotope analysis with positive thermal ionization mass spectrometry , 1998 .
[60] W. Leeman,et al. Precise boron isotopic analysis of complex silicate (rock) samples using alkali carbonate fusion and ion-exchange separation , 1997 .
[61] C. You,et al. Trace element behavior in hydrothermal experiments: Implications for fluid processes at shallow depths in subduction zones , 1996 .
[62] C. You,et al. Lithium, boron, and their isotopes in sediments and pore waters of Ocean Drilling Program Site 808, Nankai Trough: Implications for fluid expulsion in accretionary prisms , 1995 .
[63] K. H. Wedepohl,et al. The Composition of the Continental Crust , 1995 .
[64] C. You,et al. Lithium isotope geochemistry of sediments and hydrothermal fluids of the Guaymas Basin , 1994 .
[65] K. Govindaraju,et al. 1994 compilation of working values and sample description for 383 geostandards , 1994 .
[66] S. Barth. Boron isotope variations in nature: a synthesis , 1993 .
[67] E. Nakamura,et al. Boron isotope systematics of marine sediments , 1993 .
[68] Palmer,et al. Experimental determination of factionation of 11B/10B between tournmaline and aqueous vapor , 1992 .
[69] M. Palmer. Boron isotope systematics of hydrothermal fluids and tourmalines: A synthesis , 1991 .
[70] R. Comans,et al. Sorption of cesium on illite: Non-equilibrium behaviour and reversibility , 1991 .
[71] J. Schott,et al. Behavior of Li, Rb and Cs during basalt glass and olivine dissolution and chlorite, smectite and zeolite precipitation from seawater: Experimental investigations and modelization between 50° and 300°C , 1988 .
[72] A. Hofmann,et al. Precambrian crustal components, plutonic associations, plate environment of the Hercynian Fold Belt of central Europe: Indications from a Nd and Sr isotopic study , 1988 .
[73] J. Edmond,et al. Temperature and pH controls over isotopic fractionation during adsorption of boron on marine clay , 1987 .
[74] J. Edmond,et al. The sedimentary cycle of the boron isotopes , 1987 .
[75] M. R. Karlinger,et al. Chemistry of Illite/Smectite and End-Member Illite , 1986 .
[76] D. C. Bain,et al. Composition of Some Smectites and Diagenetic Illitic Clays and Implications for their Origin , 1986 .
[77] K. Hahne,et al. Isotopen- und elementgeochemische Untersuchungen an schwach metamorphen Sedimenten als Hilfsmittel zur faziellen und stratigraphischen Einordnung , 1986 .
[78] J. Edmond,et al. Determination of boron isotope ratios by thermal ionization mass spectrometry of the dicesium metaborate cation , 1986 .
[79] R. Keays,et al. Thallium: a sensitive indicator of rock/seawater interaction and of sulfur saturation of silicate melts , 1979 .
[80] P. Browne. Hydrothermal Alteration in Active Geothermal Fields , 1978 .
[81] H. Schwarcz,et al. Boron isotopic fractionation during clay adsorption from sea-water , 1969 .