Global Biogeochemical Cycles · 2005 · 208 citations · 25 references
River Nutrient LoadsBiogeochemistryEutrophicationEngineeringWater ResourcesMarine PollutionBiogeochemical CycleNutrient CycleN FertilizerWater QualityRiver Nitrogen ExportNutrient StoichiometryCoastal SystemsWastewater TreatmentNutrient Management
Anthropogenic disturbance of river nutrient loads and export to coastal marine systems is a major global problem affecting water quality and biodiversity. Nitrogen is the major nutrient in rivers. On the basis of projections for food production and wastewater effluents, the global river N flux to coastal marine systems is shown to increase by 13% in the coming 3 decades. While the river N flux will grow by about 10% in North America and Oceania and will decrease in Europe, a 27% increase is projected for developing countries, which is a continuation of the trend observed in the past decades. This is a consequence of increasing nitrogen inputs to surface water associated with urbanization, sanitation, development of sewerage systems, and lagging wastewater treatment, as well as increasing food production and associated inputs of N fertilizer, animal manure, atmospheric N deposition, and biological N fixation in agricultural systems. Growing river N loads will lead to increased incidence of problems associated with eutrophication in coastal seas.
25
Nitrogen Cycles: Past, Present, and Future
James N. Galloway, Frank Dentener, Douglas G. Capone et al. · Biogeochemistry · 2004 · 5.4K citations
Organic Geochemistry, Biogeochemical Cycles, Biogeochemistry +6
Evolution of Phosphorus Limitation in Lakes
D. W. Schindler · Science · 1977 · 2.6K citations
A global high‐resolution emission inventory for ammonia
David S. Lee, W. A. H. Asman, Frank Dentener et al. · Global Biogeochemical Cycles · 1997 · 1.4K citations