Exploring the theoretical upper temperature limit of alkenone unsaturation indices: Implications for paleotemperature reconstructions
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[1] Y. Huang,et al. Group 2i Isochrysidales flourishes at exceedingly low growth temperatures (0 to 6 °C) , 2022, Organic Geochemistry.
[2] Y. Huang,et al. Extended chain length alkenoates differentiate three Isochrysidales groups , 2021, Organic Geochemistry.
[3] L. Giosan,et al. Black Sea paleosalinity evolution since the last deglaciation reconstructed from alkenone-inferred Isochrysidales diversity , 2021 .
[4] Cancan Huang,et al. Silver (I)-dimercaptotriazine functionalized silica: A highly selective liquid chromatography stationary phase targeting unsaturated molecules. , 2021, Journal of chromatography. A.
[5] L. Amaral-Zettler,et al. C41 methyl and C42 ethyl alkenones are biomarkers for Group II Isochrysidales , 2020 .
[6] Jiaju Zhao,et al. An efficient approach to eliminate steryl ethers and miscellaneous esters/ketones for gas chromatographic analysis of alkenones and alkenoates. , 2019, Journal of chromatography. A.
[7] Yinsui Zheng,et al. Systematic chemotaxonomic profiling and novel paleotemperature indices based on alkenones and alkenoates: Potential for disentangling mixed species input , 2019, Organic Geochemistry.
[8] L. Amaral-Zettler,et al. Changes in long chain alkenone distributions and Isochrysidales groups along the Baltic Sea salinity gradient , 2019, Organic Geochemistry.
[9] Yi Ge Zhang,et al. Export Depth of the TEX86 Signal , 2018, Paleoceanography and Paleoclimatology.
[10] K. Schulz,et al. A three-dimensional niche comparison of Emiliania huxleyi and Gephyrocapsa oceanica: reconciling observations with projections , 2018, Biogeosciences.
[11] J. Tierney,et al. BAYSPLINE: A New Calibration for the Alkenone Paleothermometer , 2018 .
[12] I. Suzuki,et al. Changes in the accumulation of alkenones and lipids under nitrogen limitation and its relation to other energy storage metabolites in the haptophyte alga Emiliania huxleyi CCMP 2090 , 2018, Journal of Applied Phycology.
[13] R. Tarozo,et al. Optimizing chromatographic resolution for simultaneous quantification of long chain alkenones, alkenoates and their double bond positional isomers , 2017 .
[14] J. Zachos,et al. Eocene temperature gradients , 2017 .
[15] I. Suzuki,et al. Composition of long chain alkenones and alkenoates as a function of growth temperature in marine haptophyte Tisochrysis lutea , 2016 .
[16] L. Amaral-Zettler,et al. Excluding the di-unsaturated alkenone in the U K 37 index strengthens temperature correlation for the common lacustrine and brackish-water haptophytes , 2016 .
[17] K. Lawrence,et al. Comment on “A 12-million-year temperature history of the tropical Pacific Ocean” , 2014, Science.
[18] Zhonghui Liu,et al. Response to Comment on “A 12-million-year temperature history of the tropical Pacific Ocean” , 2014, Science.
[19] Zhonghui Liu,et al. A 12-Million-Year Temperature History of the Tropical Pacific Ocean , 2014, Science.
[20] Y. Huang,et al. Unprecedented separation of long chain alkenones from gas chromatography with a poly(trifluoropropylmethylsiloxane) stationary phase , 2013 .
[21] Y. Huang,et al. Separation of unsaturated organic compounds using silver-thiolate chromatographic material. , 2012, Journal of chromatography. A.
[22] Y. Huang,et al. Efficient liquid chromatographic analysis of mono-, di-, and triglycerols using silver thiolate stationary phase. , 2012, Journal of chromatography. A.
[23] L. Amaral-Zettler,et al. Phylogenetic diversity and evolutionary relatedness of alkenone-producing haptophyte algae in lakes: Implications for continental paleotemperature reconstructions , 2010 .
[24] T. Herbert,et al. Eastern equatorial Pacific cold tongue during the Last Glacial Maximum as seen from alkenone paleothermometry , 2009 .
[25] M. Conte,et al. Global temperature calibration of the alkenone unsaturation index (UK′37) in surface waters and comparison with surface sediments , 2006 .
[26] M. Wara,et al. Permanent El Niño-Like Conditions During the Pliocene Warm Period , 2005, Science.
[27] S. Brassell,et al. Recognition of alkenones in a lower Aptian porcellanite from the west-central Pacific , 2004 .
[28] J. D. Leeuw,et al. U37K′ values for Isochrysis galbana as a function of culture temperature, light intensity and nutrient concentrations , 2001 .
[29] A. Rosell‐Melé,et al. Calibration of the alkenone paleotemperature index U37K′ based on core-tops from the eastern South Atlantic and the global ocean (60°N-60°S) , 1998 .
[30] R. Harris,et al. Genetic and physiological influences on the alkenone/alkenoate versus growth temperature relationship in Emiliania huxleyi and Gephyrocapsa oceanica , 1998 .
[31] J. Volkman,et al. Alkenones and alkenes in surface waters and sediments of the Southern Ocean: Implications for paleotemperature estimation in polar regions , 1997 .
[32] S. Blackburn,et al. Alkenones in Gephyrocapsa oceanica: Implications for studies of paleoclimate , 1995 .
[33] G. Eglinton,et al. Alkenone and alkenoate distributions within the euphotic zone of the eastern North Atlantic: correlation with production temperature , 1993 .
[34] J. Volkman,et al. Calibration of alkenone unsaturation ratios (Uk'37) for paleotemperature estimation in cold polar waters , 1993 .
[35] J. Farrington,et al. Use of the alkenone unsaturation ratio U37k to determine past sea surface temperatures: core-top SST calibrations and methodology considerations , 1991 .
[36] Laurel A Muehlhausen,et al. Further evaluation of long-chain alkenones as indicators of paleoceanographic conditions , 1988 .
[37] F. Prahl,et al. Calibration of unsaturation patterns in long-chain ketone compositions for palaeotemperature assessment , 1987, Nature.
[38] G. Eglinton,et al. Molecular stratigraphy: a new tool for climatic assessment , 1986, Nature.
[39] W. Rijpstra,et al. On the occurrence and structural identification of long chain unsaturated ketones and hydrocarbons in sediments , 1980 .