Coupled biogeochemical cycles: eutrophication and hypoxia in temperate estuaries and coastal marine ecosystems
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Josette Garnier | Scott C. Doney | Francis Chan | Robert W. Howarth | Daniel J. Conley | Gilles Billen | S. Doney | R. Howarth | D. Conley | F. Chan | J. Garnier | G. Billen | Roxanne Marino | R. Marino
[1] Xiuxian Song,et al. Nitrogen and phosphorus budgets of the Changjiang River estuary , 2011 .
[2] Josette Garnier,et al. Nitrogen flows from European regional watersheds to coastal marine waters , 2011 .
[3] A. Beusen,et al. N:P:Si nutrient export ratios and ecological consequences in coastal seas evaluated by the ICEP approach , 2010 .
[4] Scarla J. Weeks,et al. Greenhouse gas, upwelling‐favorable winds, and the future of coastal ocean upwelling ecosystems , 2010 .
[5] Alberto V. Borgesa,et al. Carbonate chemistry in the coastal zone responds more strongly to eutrophication than ocean acidification , 2010 .
[6] Nicolas Gruber,et al. Ocean deoxygenation in a warming world. , 2010, Annual review of marine science.
[7] Denis Gilbert,et al. Temporal responses of coastal hypoxia to nutrient loading and physical controls , 2009 .
[8] Scott C. Doney,et al. Ocean Acidification: Present Conditions and Future Changes in a High-CO2 World , 2009 .
[9] L. Levin,et al. Coastal hypoxia and sediment biogeochemistry , 2009 .
[10] Mark A. Green,et al. Death by dissolution: Sediment saturation state as a mortality factor for juvenile bivalves , 2009 .
[11] H. Paerl. Controlling Eutrophication along the Freshwater–Marine Continuum: Dual Nutrient (N and P) Reductions are Essential , 2009 .
[12] Scott C. Doney,et al. Ocean acidification: the other CO2 problem. , 2009, Annual review of marine science.
[13] H. Paerl,et al. Controlling Eutrophication: Nitrogen and Phosphorus , 2009, Science.
[14] Mark L. Green,et al. Coastal Acidification by Rivers: A Threat to Shellfish? , 2008 .
[15] H. Paerl,et al. Coastal marine eutrophication: Control of both nitrogen and phosphorus is necessary , 2008, Proceedings of the National Academy of Sciences.
[16] R. Howarth. Coastal nitrogen pollution: A review of sources and trends globally and regionally , 2008 .
[17] Carlos M. Duarte,et al. Thresholds of hypoxia for marine biodiversity , 2008, Proceedings of the National Academy of Sciences.
[18] R. Rosenberg,et al. Spreading Dead Zones and Consequences for Marine Ecosystems , 2008, Science.
[19] David W. Schindler,et al. Eutrophication of lakes cannot be controlled by reducing nitrogen input: Results of a 37-year whole-ecosystem experiment , 2008, Proceedings of the National Academy of Sciences.
[20] Paul J. Harrison,et al. Comparison of hypoxia among four river-dominated ocean margins: The Changjiang (Yangtze), Mississippi, Pearl, and Rhone rivers , 2008 .
[21] F. Chavez,et al. Oxygen declines and the shoaling of the hypoxic boundary in the California Current , 2008 .
[22] J. Lubchenco,et al. Emergence of Anoxia in the California Current Large Marine Ecosystem , 2008, Science.
[23] R. Howarth,et al. Nitrogen Fluxes from Rivers to the Coastal Oceans , 2008 .
[24] K. Boicourt,et al. Effects of nutrient enrichment in the nation's estuaries: A decade of change , 2008 .
[25] Iris C. Anderson,et al. Eutrophication in shallow coastal bays and lagoons: the role of plants in the coastal filter , 2007 .
[26] J. Garnier,et al. Typical features of particulate phosphorus in the Seine estuary (France) , 2007, Hydrobiologia.
[27] Josette Garnier,et al. River basin nutrient delivery to the coastal sea : Assessing its potential to sustain new production of non-siliceous algae , 2007 .
[28] Jacob Carstensen,et al. LONG-TERM CHANGES AND IMPACTS OF HYPOXIA IN DANISH COASTAL WATERS , 2007 .
[29] D. Conley,et al. Internal Ecosystem Feedbacks Enhance Nitrogen-fixing Cyanobacteria Blooms and Complicate Management in the Baltic Sea , 2007, Ambio.
[30] J. Garnier,et al. A long-term view of nutrient transfers through the Seine river continuum. , 2007, The Science of the total environment.
[31] S. Hamilton,et al. Have we overemphasized the role of denitrification in aquatic ecosystems? A review of nitrate removal pathways , 2007 .
[32] D. M. Nelson,et al. Phosphorus limits phytoplankton growth on the Louisiana shelf during the period of hypoxia formation. , 2006, Environmental science & technology.
[33] Dale B. Haidvogel,et al. Nitrogen cycling in the Middle Atlantic Bight: Results from a three‐dimensional model and implications for the North Atlantic nitrogen budget , 2006 .
[34] M. Pace,et al. Ecological constraints on planktonic nitrogen fixation in saline estuaries. II. Grazing controls on cyanobacterial population dynamics , 2006 .
[35] M. Pace,et al. Ecological constraints on planktonic nitrogen fixation in saline estuaries. I. Nutrient and trophic controls , 2006 .
[36] Robert W. Howarth,et al. Nitrogen as the limiting nutrient for eutrophication in coastal marine ecosystems: Evolving views over three decades , 2006 .
[37] D. Gilbert,et al. A seventy‐two‐year record of diminishing deep‐water oxygen in the St. Lawrence estuary: The northwest Atlantic connection , 2005 .
[38] C. Stow,et al. Declining threshold for hypoxia in the Gulf of Mexico. , 2005, Environmental science & technology.
[39] C. Pérez. A Long-Term View , 2005 .
[40] R. Elmgren,et al. Why the limiting nutrient differs between temperate coastal seas and freshwater lakes: A matter of salt , 2004 .
[41] G. Asner,et al. Nitrogen Cycles: Past, Present, and Future , 2004 .
[42] David S. Fox,et al. Upwelling-driven nearshore hypoxia signals ecosystem and oceanographic changes in the northeast Pacific , 2004, Nature.
[43] Bo Thamdrup,et al. Iron-bound phosphorus in marine sediments as measured by bicarbonate-dithionite extraction , 1993, Hydrobiologia.
[44] N. Silverberg,et al. The phosphorus cycle in coastal marine sediments , 1992, Hydrobiologia.
[45] M. Pace,et al. Ecological and Biogeochemical Interactions Constrain Planktonic Nitrogen Fixation in Estuaries , 2002, Ecosystems.
[46] J. Burkholder,et al. Harmful algal blooms and eutrophication: Nutrient sources, composition, and consequences , 2002 .
[47] Wayne S Gardner,et al. Dissimilatory nitrate reduction to ammonium (DNRA) as a nitrogen link, versus denitrification as a sink in a shallow estuary (Laguna Madre/Baffin Bay, Texas) , 2002 .
[48] N. Rabalais. Nitrogen in Aquatic Ecosystems , 2002, Ambio.
[49] B. Thamdrup,et al. Production of N2 through Anaerobic Ammonium Oxidation Coupled to Nitrate Reduction in Marine Sediments , 2002, Applied and Environmental Microbiology.
[50] J. Gili. Marine benthic faunal successional stages and related sedimentary activity * , 2001 .
[51] Christoph Humborg,et al. Silicon Retention in River Basins: Far-reaching Effects on Biogeochemistry and Aquatic Food Webs in Coastal Marine Environments , 2000 .
[52] Kathleen Segerson,et al. Clean Coastal Waters - Understanding and Reducing the Effects of Nutrient Pollution , 2000 .
[53] Stephen L. Johnson,et al. HYPOXIA IN THE NORTHERN GULF OF MEXICO , 2000 .
[54] J. Morell,et al. Nitrogen cycling and anthropogenic impact in the tropical interamerican seas , 1999 .
[55] J. Morell,et al. Nitrogen cycling and anthropogenic impact in the tropical interamerican seas , 1999 .
[56] D. Cairns. Phosphorus in the global environment: Transfers, cycles and management , 1997 .
[57] W. Boynton,et al. The fate of nitrogen and phosphorus at the land-sea margin of the North Atlantic Ocean , 1996 .
[58] Dennis P. Swaney,et al. Regional nitrogen budgets and riverine N & P fluxes for the drainages to the North Atlantic Ocean: Natural and human influences , 1996 .
[59] S. Joye,et al. Influence of Sulfide Inhibition of Nitrification on Nitrogen Regeneration in Sediments , 1995, Science.
[60] S. Nixon. Coastal marine eutrophication: A definition, social causes, and future concerns , 1995 .
[61] B. Boudreau,et al. A modelling study of discontinuous biological irrigation , 1994 .
[62] R. Howarth,et al. Variable rates of phosphate uptake by shallow marine carbonate sediments: Mechanisms and ecological significance , 1994 .
[63] R. Berner,et al. AUTHIGENIC APATITE FORMATION AND BURIAL IN SEDIMENTS FROM NON-UPWELLING, CONTINENTAL MARGIN ENVIRONMENTS , 1993 .
[64] E. Stoermer,et al. Modification of the biogeochemical cycle of silica with eutrophication , 1993 .
[65] G. Billen,et al. N, P and Si retention along the aquatic continuum from land to ocean , 1991 .
[66] R. Wollast,et al. Ocean margin processes in global change. , 1991 .
[67] G. Likens,et al. Evidence for sulphate-controlled phosphorus release from sediments of aquatic systems , 1989, Nature.
[68] S. Seitzinger. Denitrification in freshwater and coastal marine ecosystems: Ecological and geochemical significance , 1988 .
[69] P. Froelich. Kinetic control of dissolved phosphate in natural rivers and estuaries: A primer on the phosphate buffer mechanism1 , 1988 .
[70] W. Kemp,et al. Nutrient regeneration and oxygen consumption by sediments along an estuarine salinity gradient , 1985 .
[71] R. Howarth. The ecological significance of sulfur in the energy dynamics of salt marsh and coastal marine sediments , 1984 .
[72] F. R. Whatley. Dissimilatory Nitrate Reduction , 1981 .
[73] M. Krom,et al. Adsorption of phosphate in anoxic marine sediments1 , 1980 .
[74] HoadleyWalter E.Jr.. A Long-Term View , 1954 .