Modeling the combined effects of changing land cover, climate, and atmospheric deposition on nitrogen transport in the Neuse River Basin

Modeling the combined effects of changing land cover, climate, and atmospheric deposition on nitrogen transport in the Neuse River Basin is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1016/J.EJRH.2018.05.004
P932PMC publication ID6145828
P698PubMed publication ID30245973

P2093author name stringEllen Cooter
Robin Dennis
Mark Gabriel
Christopher Knightes
P2860cites workEutrophication: impacts of excess nutrient inputs on freshwater, marine, and terrestrial ecosystemsQ33977643
Simulating the impacts of future land use and climate changes on surface water quality in the Des Plaines River watershed, Chicago Metropolitan Statistical Area, IllinoisQ33991139
Macronutrient cycles and climate change: key science areas and an international perspective.Q34027019
Complex response of the forest nitrogen cycle to climate change.Q34158209
Predicting impacts of increased CO₂ and climate change on the water cycle and water quality in the semiarid James River Basin of the Midwestern USA.Q34284795
Assessing the combined effects of urbanisation and climate change on the river water quality in an integrated urban wastewater system in the UK.Q34362158
Assessing the effects of nutrient management in an estuary experiencing climatic change: the Neuse River Estuary, North CarolinaQ39132690
Sources and processes contributing to nitrogen deposition: an adjoint model analysis applied to biodiversity hotspots worldwideQ39457884
Influence of climate and human activities on the relationship between watershed nitrogen input and river exportQ39987399
Interactions between nitrogen deposition, land cover conversion, and climate change determine the contemporary carbon balance of EuropeQ57161018
Ecological engineering practices for the reduction of excess nitrogen in human-influenced landscapes: a guide for watershed managers.Q30578486
Implementation of BMP strategies for adaptation to climate change and land use change in a pasture-dominated watershedQ30579676
Quantifying hydrological responses of small Mediterranean catchments under climate change projectionsQ30980091
Projected increase in continental runoff due to plant responses to increasing carbon dioxideQ31122946
Sensitivity of agricultural runoff loads to rising levels of CO2 and climate change in the San Joaquin Valley watershed of CaliforniaQ33491375
Potential effects of climate change and variability on watershed biogeochemical processes and water quality in Northeast AsiaQ33516285
National housing and impervious surface scenarios for integrated climate impact assessmentsQ33747336
Ecosystem services altered by human changes in the nitrogen cycle: a new perspective for US decision makingQ33915580
P407language of work or nameEnglishQ1860
P921main subjectland coverQ3001793
drainage basinQ166620
P304page(s)68-79
P577publication date2018-08-01
P1433published inJournal of Hydrology: Regional StudiesQ50816210
P1476titleModeling the combined effects of changing land cover, climate, and atmospheric deposition on nitrogen transport in the Neuse River Basin
P478volume18