Linked from
The 207 pages that link to Eutrophication, each with the reason it gives.
Soil erosionRelated: Eroded, nutrient-rich soil can carry phosphorus into lakes and streams.
EstuaryRelated: Nutrient runoff can trigger algal blooms and oxygen depletion in estuarine waters.
Food webRelated: Nutrient loading can reshape aquatic food webs from producers through consumers.
Black SeaRelated: Nutrient runoff caused severe ecosystem disruption in parts of the Black Sea.
AgricultureRelated: Runoff of agricultural fertilizers and manure can accelerate nutrient pollution.
NitrogenRelated: Runoff of reactive nitrogen can accelerate this damaging process.
Dissolved oxygenRelated: Nutrient-driven blooms and decay can consume oxygen and cause depletion.
UreaRelated: Urea runoff can add nitrogen that contributes to eutrophication.
Harmful algal bloomRelated: Excess nutrients can fuel bloom growth and subsequent oxygen depletion.
Phosphorus cycleRelated: Runoff carrying phosphorus can trigger algal blooms and oxygen loss.
ReservoirRelated: Nutrient inputs and slow water turnover can trigger algal blooms in reservoirs.
NitrateRelated: Runoff carrying nitrate can contribute to nutrient enrichment and algal blooms.
PhosphorusRelated: Runoff carrying phosphorus from fields can accelerate freshwater eutrophication.
Freshwater fishRelated: Nutrient loading can deplete oxygen and trigger fish kills.
Tidal flatRelated: Nutrient runoff can alter algal films and oxygen conditions in flat sediments.
Bohai SeaRelated: Nutrient inputs from rivers and coastal development can cause harmful blooms.