Stable isotope fractionation between mollusc shells and marine waters from Martinique Island
暂无分享,去创建一个
[1] C. Lécuyer,et al. Deciphering kinetic, metabolic and environmental controls on stable isotope fractionations between seawater and the shell of Terebratalia transversa (Brachiopoda) , 2003 .
[2] H. Kennedy,et al. Experimental investigation into partitioning of stable isotopes between scallop (Pecten maximus) shell calcite and sea water , 2002 .
[3] D. Dettman,et al. Controls on isotopic chemistry of the American oyster, Crassostrea virginica: implications for growth patterns , 2001 .
[4] P. Balson,et al. The shell of the Queen Scallop Aequipecten opercularis (L.) as a promising tool for palaeoenvironmental reconstruction: evidence and reasons for equilibrium stable-isotope incorporation , 1999 .
[5] Yong‐Fei Zheng. Oxygen isotope fractionation in carbonate and sulfate minerals , 1999 .
[6] O. Podlaha,et al. Preservation of delta 18 O and delta 13 C in belemnite rostra from the Jurassic/Early Cretaceous successions , 1998 .
[7] Jelle Bijma,et al. Effect of seawater carbonate concentration on foraminiferal carbon and oxygen isotopes , 1997, Nature.
[8] Sang-Tae Kim,et al. Equilibrium and nonequilibrium oxygen isotope effects in synthetic carbonates , 1997 .
[9] S. Campana,et al. Factors determining δ13C and δ18O fractionation in aragonitic otoliths of marine fish , 1997 .
[10] P. Ditchfield. High northern palaeolatitude Jurassic-Cretaceous palaeotemperature variation: new data from Kong Karls Land, Svalbard , 1997 .
[11] B. Sellwood,et al. “Warm” palaeotemperatures from high Late Jurassic palaeolatitudes (Falkland Plateau): Ecological, environmental or diagenetic controls? , 1997 .
[12] R. Kalin,et al. Are oxygen and carbon isotopes of mollusc shells reliable palaeosalinity indicators in marginal marine environments? A case study from the Middle Jurassic of England , 1997, Journal of the Geological Society.
[13] C. Paull,et al. CARBON ISOTOPES IN BIOLOGICAL CARBONATES : RESPIRATION AND PHOTOSYNTHESIS , 1997 .
[14] Mary L. Droser,et al. Evaluating the ecological architecture of major events in the Phanerozoic history of marine invertebrate life , 1997 .
[15] R. Klein,et al. and ratios in skeletal calcite of Mytilus trossulus: Covariation with metabolic rate, salinity, and carbon isotopic composition of seawater , 1996 .
[16] D. Lea,et al. Experimental determination of stable isotope variability in Globigerina bulloides: implications for paleoceanographic reconstructions , 1996 .
[17] R. Klein,et al. Bivalve skeletons record sea-surface temperature and δ18O via Mg/Ca and 18O/16O ratios , 1996 .
[18] J. D. Hudson,et al. JURASSIC PALEOSALINITIES AND BRACKISH-WATER COMMUNITIES : A CASE STUDY , 1995 .
[19] F. Fürsich,et al. Reconstruction of palaeosalinity using carbon isotopes and benthic associations: a comparison , 1995 .
[20] G. Vermeij. Economics, volcanoes, and Phanerozoic revolutions , 1995, Paleobiology.
[21] C. Weidman,et al. The long‐lived mollusc Arctica islandica: A new paleoceanographic tool for the reconstruction of bottom temperatures for the continental shelves of the northern North Atlantic Ocean , 1994 .
[22] J. G. Carter,et al. Oxygen and carbon isotopic composition and shell microstructure of the bivalve Laternula elliptica from Antarctica , 1994 .
[23] J. Zachos,et al. Evolution of Early Cenozoic marine temperatures , 1994 .
[24] T. Oba,et al. Early life history and habitat of Nautilus pompilius inferred from oxygen isotope examinations , 1992 .
[25] F. Mackenzie,et al. Characterization of some biogenic carbonates with Raman spectroscopy , 1991 .
[26] P. H. Roth. Ocean circulation and calcareous nannoplankton evolution during the Jurassic and Cretaceous , 1989 .
[27] F. C. Tan,et al. Oxygen Isotope Studies on Sea Scallops, Placopecten magellanicus, from Browns Bank, Nova Scotia , 1988 .
[28] K. Mann,et al. Seawater temperature records from stable isotopic profiles in the shell of , 1987 .
[29] Douglas S. Jones,et al. Ecological and paleoenvironmental information using stable isotope profiles from living and fossil molluscs , 1987 .
[30] R. Fairbanks,et al. Tertiary oxygen isotope synthesis, sea level history, and continental margin erosion , 1987 .
[31] N. Shackleton. Paleogene stable isotope events , 1986 .
[32] F. Mackenzie,et al. Carbonate ion disorder in synthetic and biogenic magnesian calcites; a Raman spectral study , 1985 .
[33] Douglas S. Jones,et al. GROWTH RATES OF THE SEA SCALLOP, PLACOPECTEN MAGELLANICUS, DETERMINED FROM THE 18O/16O RECORD IN SHELL CALCITE , 1984 .
[34] J. Erez,et al. Experimental paleotemperature equation for planktonic foraminifera , 1983 .
[35] S. Savin,et al. Miocene stable isotope record: a detailed deep pacific ocean study and its paleoclimatic implications. , 1981, Science.
[36] H. Sakai,et al. Oxygen-18 and deuterium determination on a single water sample of a few milligrams , 1980 .
[37] N. Chasteen,et al. A chemical and spectral characterization of the extrapallial fluid of Mytilus edulis. , 1979, Analytical biochemistry.
[38] Tsunemasa Saitō,et al. Oxygen and Carbon Isotope Measurements of Late Cretaceous and Early Tertiary Foraminifera , 1974 .
[39] N. Shackleton,et al. Non-equilibrium Isotopic Fractionation between Seawater and Planktonic Foraminiferal Tests , 1973, Nature.
[40] J. Duplessy,et al. Differential Isotopic Fractionation in Benthic Foraminifera and Paleotemperatures Reassessed , 1970, Science.
[41] R. Clayton,et al. Oxygen isotope fractionation in divalent metal carbonates , 1969 .
[42] R. Clayton,et al. The effect of polymorphism and magnesium substitution on oxygen isotope fractionation between calcium carbonate and water. , 1969 .
[43] R. Clayton,et al. Measurement of O18O16 ratios of total oxygen of carbonates , 1965 .
[44] S. Epstein,et al. Paleotemperatures of the Post-Aptian Cretaceous as Determined by the Oxygen Isotope Method , 1954, The Journal of Geology.
[45] Samuel Epstein,et al. REVISED CARBONATE-WATER ISOTOPIC TEMPERATURE SCALE , 1953 .
[46] A. Fallick,et al. Stable isotope composition of Littoridina australis from the coast of Buenos Aires province, Argentina, during Holocene climatic fluctuations , 2002 .
[47] Gen-Tao Zhou,et al. Kinetic mechanism of oxygen isotope disequilibrium in precipitated witherite and aragonite at low temperatures: An experimental study , 2002 .
[48] B. Reynard,et al. Raman spectroscopic studies of carbonates part I: High-pressure and high-temperature behaviour of calcite, magnesite, dolomite and aragonite , 1993 .
[49] T. McConnaughey. 13C and 18O isotopic disequilibrium in biological carbonates: II. In vitro simulation of kinetic isotope effects , 1989 .
[50] T. Ku,et al. OXYGEN AND CARBON ISOTOPE FRACTIONATION IN BIOGENIC ARAGONITE: TEMPERATURE EFFECTS , 1986 .
[51] J. Duplessy,et al. Isotopic composition of a laboratory cultured planktonic foraminifer o-universa - implications for paleoclimatic reconstructions , 1986 .
[52] T. Anderson,et al. Stable Isotopes of Oxygen and Carbon and their Application to Sedimentologic and Paleoenvironmental Problems , 1983 .
[53] T. Anderson,et al. Stable isotopes in sedimentary Geology , 1983 .
[54] D. Rye,et al. Reconstructing paleotemperature and paleosalinity regimes with oxygen isotopes , 1980 .
[55] D. Rhoads,et al. Skeletal Growth of Aquatic Organisms , 1980 .