Phytoplankton and Cloudiness in the Southern Ocean
暂无分享,去创建一个
[1] Armin Sorooshian,et al. Chemical composition of secondary organic aerosol formed from the photooxidation of isoprene. , 2006, The journal of physical chemistry. A.
[2] John H. Seinfeld,et al. Global secondary organic aerosol from isoprene oxidation , 2006 .
[3] J. Seinfeld,et al. Contribution of first- versus second-generation products to secondary organic aerosols formed in the oxidation of biogenic hydrocarbons. , 2006, Environmental science & technology.
[4] H. Bouman,et al. Satellite observation of chlorophyll and nutrients increase induced by Typhoon Megi in the Japan/East Sea , 2006 .
[5] D. Toohey,et al. Isoprene oxidation products are a significant atmospheric aerosol component , 2005 .
[6] Barry J. Huebert,et al. A large organic aerosol source in the free troposphere missing from current models , 2005 .
[7] Sarah T. Gille,et al. Statistical Characterization of Zonal and Meridional Ocean Wind Stress , 2005 .
[8] Ilan Koren,et al. The effect of smoke, dust, and pollution aerosol on shallow cloud development over the Atlantic Ocean. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[9] Maria Cristina Facchini,et al. Characterization of the organic composition of aerosols from Rondonia, Brazil, during the LBA-SMOCC 2002 experiment and its representation through model compounds , 2005 .
[10] Ivan Kourtchev,et al. Characterization of oxygenated derivatives of isoprene related to 2-methyltetrols in Amazonian aerosols using trimethylsilylation and gas chromatography/ion trap mass spectrometry. , 2005, Rapid communications in mass spectrometry : RCM.
[11] Annmarie G Carlton,et al. Isoprene forms secondary organic aerosol through cloud processing: model simulations. , 2005, Environmental science & technology.
[12] P. Palmer,et al. Quantifying global marine isoprene fluxes using MODIS chlorophyll observations , 2005 .
[13] M. Meredith,et al. Phyto- and zooplankton community structure and production around South Georgia (Southern Ocean) during Summer 2001/02 , 2005 .
[14] D. Ceburnis,et al. Biogenically driven organic contribution to marine aerosol , 2004, Nature.
[15] D. Blake,et al. Changing concentrations of CO, CH(4), C(5)H(8), CH(3)Br, CH(3)I, and dimethyl sulfide during the Southern Ocean Iron Enrichment Experiments. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[16] M. Whitehouse,et al. Contrasting primary production regimes around South Georgia, Southern Ocean: large blooms versus high nutrient, low chlorophyll waters , 2004 .
[17] Taro Takahashi,et al. Southern Ocean Iron Enrichment Experiment: Carbon Cycling in High- and Low-Si Waters , 2004, Science.
[18] M. Andreae,et al. Formation of Secondary Organic Aerosols Through Photooxidation of Isoprene , 2004, Science.
[19] John Beardall,et al. The potential effects of global climate change on microalgal photosynthesis, growth and ecology , 2004 .
[20] A. Nenes,et al. Iron mobilization in mineral dust: Can anthropogenic SO2 emissions affect ocean productivity? , 2003 .
[21] E. Murphy,et al. An anticyclonic circulation above the Northwest Georgia Rise, Southern Ocean , 2003 .
[22] W. Timothy Liu,et al. New evidence for enhanced ocean primary production triggered by tropical cyclone , 2003 .
[23] R. Prinn,et al. Isoprene production by Prochlorococcus, a marine cyanobacterium, and other phytoplankton , 2003 .
[24] D. Kamykowski,et al. Dynamic global patterns of nitrate, phosphate, silicate, and iron availability and phytoplankton community composition from remote sensing data , 2002 .
[25] Andrew J. Watson,et al. A mesoscale phytoplankton bloom in the polar Southern Ocean stimulated by iron fertilization , 2000, Nature.
[26] P. Liss,et al. Seasonal emissions of isoprene and other reactive hydrocarbon gases from the ocean , 1997 .
[27] R. Zika,et al. Measurement of vertical distribution of isoprene in surface seawater, its chemical fate, and its emission from several phytoplankton monocultures , 1995 .
[28] D. Oram,et al. Production of isoprene by marine phytoplankton cultures , 1994 .
[29] D. L. Roberts,et al. A climate model study of indirect radiative forcing by anthropogenic sulphate aerosols , 1994, Nature.
[30] G. Lambert,et al. Evidence for marine production of isoprene , 1992 .
[31] J. Coakley,et al. Climate Forcing by Anthropogenic Aerosols , 1992, Science.
[32] S. Fitzwater,et al. Iron deficiency limits phytoplankton growth in the north-east Pacific subarctic , 1988, Nature.
[33] S. Warren,et al. Oceanic phytoplankton, atmospheric sulphur, cloud albedo and climate , 1987, Nature.
[34] K. T. Whitby. THE PHYSICAL CHARACTERISTICS OF SULFUR AEROSOLS , 1978 .