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5035862 
Book/Book Chapter 
Legacy nutrient dynamics at the watershed scale: Principles, modeling, and implications 
Chen, D; Shen, H; Hu, M; Wang, J; Zhang, Y; Dahlgren, RA 
2018 
Yes 
Advances in Agronomy
ISSN: 0065-2113
EISSN: 2213-6789 
Academic Press 
Cambridge, MA 
Advances in agronomy (Vol. 149) 
237-313 
English 
Legacy nutrient accumulation from excess anthropogenic inputs has become a serious environmental issue in many watersheds worldwide. In this review, we provide a systematic overview of sources, legacy nutrient pools, watershed-scale water quality models, and agronomic and environmental implications of legacy nitrogen and phosphorus pools. Hydrological, biogeochemical, and anthropogenic factors exert interacting controls on legacy nutrient dynamics in soils, sediments, and vadose zone/groundwater. Most current watershed models do not effectively incorporate legacy nutrient dynamics, while models that consider legacy effect often have high uncertainty in their treatment of legacy nutrient dynamics. In many intensively managed watersheds, legacy nutrients are a dominant and long-term (> 10 years) source of nutrients to receiving waters, as well as a potentially important nutrient source for crop production. Many existing beneficial management measures have limitations for reducing legacy nutrient losses to surface waters due to appreciable differences in legacy nutrient forms, watershed storage locations, and temporal dynamics compared to those of contemporary nutrient inputs. Recognizing the importance of legacy nutrients is necessary for developing sustainable watershed nutrient management plans for future food, bioenergy, and water security. These plans require strategies to maximize use of legacy nutrient resources to minimize their loss to the atmosphere (e.g., N2O emissions) and surface waters. Finally, this synthesis identified future research needs for improving the understanding, utilization, and mitigation of watershed legacy nutrient pools. 
Legacy nutrients; Nitrogen; Phosphorus; Lag time; Model; Watershed; Eutrophication; Soil; Sediment; Groundwater 
Sparks, DL 
Advances in Agronomy, Vol. 149 
9780128151778 
IRIS
• Nitrate/Nitrite
     Literature Search Update, 1/1/2018 – 8/17/2022
          WoS
Other
• Hypoxia Task Force literature reviews
     Legacy nutrients
          Study Type
               Review
          Nutrient
               Nitrogen
               Phosphorus
          Legacy Source/Pool
               Terrestrial Soils
                    General agriculture
               Aquatic sediments
                    Not specified/other
          Aquatic Habitat
               Not specified/other
          Water Quality Variables
               Sediment
               Total N
               Total P
          Location
               Not specified/other
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     Included in External Review Draft
          Chapter 13: Aquatic Ecosystem Health and Biodiversity
     Included in Final Report
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          40% to 50%
          40% to 50%