Minor- and trace-element intra-shell variations in Santonian inoceramids (Basque-Cantabrian Basin, northern Spain): diagenetic and primary causes
暂无分享,去创建一个
[1] J. Elorza,et al. Strain determinations using inoceramid shells as strain markers: a comparison of the calcite strain gauge technique and the Fry method , 2003 .
[2] J. J. Gómez-Alday,et al. Diagenesis, regular growth and records of seasonality in inoceramid bivalve shells from mid-Maastrichtian hemipelagic beds of the Bay of Biscay , 2003, Netherlands Journal of Geosciences - Geologie en Mijnbouw.
[3] Ananda Pascual,et al. Datos paleoceanográficos aportados por los foraminíferos de la sección de Barríka (Santoniense del Arco Vasco) , 2003 .
[4] Mª Cruz Zuluaga,et al. Los pares caliza-marga de la Isla de Castro (Coniaciense final-Santoniense inferior, Cuenca Vasco-Cantábrica): variaciones isotópicas (á!80 y á13C) y mineralógicas , 2002 .
[5] W. Perkins,et al. Short-term environmental change in a Jurassic lagoon deduced from geochemical trends in aragonite bivalve shells , 2001 .
[6] José Javier Elorza Zandueta,et al. Señales geoquímicas y micropaleontológicas como marcadores de eventos paleoceanográficos en el Santoniense del Arco Vasco. , 2001 .
[7] J. Elorza,et al. Environmental stress and diagenetic modifications in inoceramids and belemnites from the Upper Cretaceous James Ross Basin, Antarctica , 2001 .
[8] W. Baeyens,et al. High resolution distribution of trace elements in the calcite shell layer of modern mytilus edulis: environmental and biological controls , 2000 .
[9] H. Machel. Application of Cathodoluminescence to Carbonate Diagenesis , 2000 .
[10] M. Leng,et al. Seasonal variation of trace element and isotopic composition in the shell of a coastal mollusk, Mactra isabelleana , 1999 .
[11] G. Grime,et al. Metabolism controls Sr/Cr ratios in tossil aragonitic mollusks , 1999 .
[12] T. Steuber. Isotopic and chemical intra-shell variations in low-Mg calcite of rudist bivalves (Mollusca-Hippuritacea): disequilibrium fractionations and late Cretaceous seasonality , 1999 .
[13] M. Wilmsen,et al. Sequence Stratigraphy in the Cenomanian to Campanian of the North Cantabrian Basin (Cantabria, N-Spain) , 1999 .
[14] G. Clark. Organic matrix taphonomy in some molluscan shell microstructures , 1999 .
[15] D. Habermann,et al. LOW LIMIT OF MN2+-ACTIVATED CATHODOLUMINESCENCE IN CALCITE : STATE OF THEART : DISCUSSION. AUTHORS' REPLY , 1999 .
[16] K. Macleod,et al. Warm Climates in Earth History: Paleontological and geochemical constraints on the deep ocean during the Cretaceous greenhouse interval , 1999 .
[17] J. Elorza,et al. Palaeoenvironmental implications and diagenesis of inoceramid shells (Bivalvia) in the mid-Maastrichtian beds of the Sopelana, Zumaya and Bidart sections (coast of the Bay of Biscay, Basque Country) , 1998 .
[18] D. Habermann,et al. Low limit of Mn2+-activated cathodoluminescence of calcite: state of the art , 1998 .
[19] J. Crame,et al. The last inoceramid bivalves in Antarctica , 1997 .
[20] R. Klein,et al. Elemental and isotopic proxies of paleotemperature and paleosalinity: Climate reconstruction of the marginal northeast Pacific ca. 80 ka , 1997 .
[21] R. Klein,et al. and ratios in skeletal calcite of Mytilus trossulus: Covariation with metabolic rate, salinity, and carbon isotopic composition of seawater , 1996 .
[22] Chuanlun Zhang,et al. Chemical Variation in Pennsylvanian Brachiopod Shells--Diagenetic, Taxonomic, Microstructural, and Seasonal Effects , 1996 .
[23] K. Bock,et al. Profiles of strontium and barium in Mercenaria mercenaria and Spisula solidissima shells , 1996 .
[24] Douglas S. Jones,et al. Marking time with bivalve shells; oxygen isotopes and season of annual increment formation , 1996 .
[25] J. Elorza,et al. Petrological and geochemical evidence for diagenesis of inoceramid bivalve shells in the Plentzia Formation (Upper Cretaceous, Basque–Cantabrian Region, northern Spain) , 1996 .
[26] R. Klein,et al. Bivalve skeletons record sea-surface temperature and δ18O via Mg/Ca and 18O/16O ratios , 1996 .
[27] K. Macleod,et al. Reorganization of deep ocean circulation accompanying a Late Cretaceous extinction event , 1996, Nature.
[28] J. Veizer,et al. Cathodoluminescene at low Fe and Mn concentrations; a SIMS study of zones in natural calcites , 1995 .
[29] E. Grossman,et al. Late Pennsylvanian seasonality reflected in the 18O and elemental composition of a brachiopod shell , 1994 .
[30] T. Anderson,et al. Diagenesis of Skeletal and Nonskeletal Components of Mid-cretaceous Limestones , 1993 .
[31] K. O. Mann. Physiological, environmental, and mineralogical controls on Mg and Sr concentrations in Nautilus , 1992, Journal of Paleontology.
[32] K. C. Lohmann,et al. Sr/Mg ratios of modern marine calcite: Empirical indicators of ocean chemistry and precipitation rate , 1992 .
[33] G. López,et al. Biogeographic relationships of the Coniacian and Santonian inoceramid bivalves of northern Spain , 1992 .
[34] G. López. Paleontología y Bioestratigrafía de los Inocerámidos (Bivalvia) del Cretácico Superior de la Cuenca Navarro-Cántabra y de la Plataforma Norcastellana. Parte IV: Estudio sistemático del subgénero Cordiceramus Seitz y Biostratigrafía , 1992 .
[35] L. M. Walter,et al. The effects of PCO2 and temperature on magnesium incorporation in calcite in seawater and MgCl2-CaCl2 solutions , 1991 .
[36] D. Pirrie,et al. Diagenesis of Inoceramus and late Cretaceous paleoenvironmental geochemistry: a case study from James Ross Island, Antarctica , 1990 .
[37] D. Pirrie,et al. High-paleolatitude late cretaceous paleotemperatures: New data from James Ross Island, Antarctica , 1990 .
[38] M. Floquet. La plate-forme nord-castillane au Crétacé supérieur (Espagne) : arrière-pays ibérique de la marge passive basco-cantabrique : sédimentation et vie , 1990 .
[39] J. Morse,et al. Partition coefficients in calcite: Examination of factors influencing the validity of experimental results and their application to natural systems , 1990 .
[40] J. O. Morrison,et al. An evaluation of diagenesis and chemostratigraphy of upper cretaceous molluscs from the Canadian Interior Seaway , 1988 .
[41] R. Mason. Ion microprobe analysis of trace elements in calcite with an application to the cathodoluminescence zonation of limestone cements from the Lower Carboniferous of South Wales, U.K. , 1987 .
[42] J. O. Morrison,et al. PALEOSCENE #6.Biogeochemistry of Fossil Marine Invertebrates , 1987 .
[43] S. Whittaker,et al. Paleoenvironmental geochemistry of the Claggett marine cyclothem in south-central Saskatchewan , 1987 .
[44] E. K. Wright. Stratification and paleocirculation of the Late Cretaceous Western Interior Seaway of North America , 1987 .
[45] J. Veizer,et al. Diagenetic Stabilization of Aragonite and Low-mg Calcite, I. Trace Elements in Rudists , 1986 .
[46] H. Machel. Cathodoluminescence in Calcite and Dolomite and Its Chemical Interpretation , 1985 .
[47] L. N. Plummer,et al. Kinetic and thermodynamic factors controlling the distribution of SO32− and Na+ in calcites and selected aragonites , 1985 .
[48] M. Ishikawa,et al. Uptake of sodium and potassium by calcite , 1984 .
[49] I. Fairchild. Chemical controls of cathodoluminescence of natural dolomites and calcites: new data and review , 1983 .
[50] T. Anderson,et al. Stable Isotopes of Oxygen and Carbon and their Application to Sedimentologic and Paleoenvironmental Problems , 1983 .
[51] J. Veizer,et al. Chemical Stabilization of Low-Mg Calcite: An Example of Brachiopods , 1982 .
[52] A. B. Carpenter,et al. Cathodoluminescence and Composition of Calcite Cement in the Taum Sauk Limestone (Upper Cambrian), Southeast Missouri , 1982 .
[53] J. Dodd,et al. Non-linear variation with salinity of Sr/Ca and Mg/Ca ratios in water and aragonitic bivalve shells and implications for paleosalinity studies , 1982 .
[54] N. Pingitore. The Role of Diffusion During Carbonate Diagenesis , 1982 .
[55] Robert B. Lorens,et al. Sr, Cd, Mn and Co distribution coefficients in calcite as a function of calcite precipitation rate , 1981 .
[56] J. Veizer,et al. Chemical Diagenesis of a Multicomponent Carbonate System--1: Trace Elements , 1980 .
[57] M. Bender,et al. The impact of solution chemistry on Mytilus edulis calcite and aragonite , 1980 .
[58] M. Kennish. Shell microgrowth analysis Mercenaria mercenaria as a type example for research in population dynamics. , 1980 .
[59] H. A. Das,et al. Shell characteristics, isotopic composition and trace-element contents of some euryhaline molluscs as indicators of salinity , 1976 .
[60] J. Dickson,et al. A Modified Staining Technique for Carbonates in Thin Section , 1965, Nature.
[61] H. Lowenstam. Mineralogy, O18/O16 Ratios, and Strontium and Magnesium Contents of Recent and Fossil Brachiopods and Their Bearing on the History of the Oceans , 1961, The Journal of Geology.