High nitrogen (N) loading may contribute to recession of submerged macrophytes in shallow lakes; yet, its influences vary depending on environmental conditions. In August 2013, we conducted a 28-day factorial-designed field mesocosm experiment in Lake Taihu at the Taihu Laboratory for Lake Ecosystem Research (TLLER) to examine the effects of high N loading on the growth of Vallisneria natans in systems with contrasting sediment types. We ran the experiments with two levels of nutrient loading—present-day external nutrient loading (average P: 5 μg·L−1·day−1, N: 130 μg·L−1·day−1) and P: 5 μg·L−1·day−1, and with three times higher N loading (N: 390 μg·L−1·day−1) and used sediment with two contrasting nutrient levels. V. natans growth decreased...
Most aquatic vegetation restorations involve the transplantation of submerged macrophytes. Sediment ...
Submerged macrophytes play an important role in aquatic ecosystems, which has led to an increase in ...
Excess nitrogen (N) loading in summer often boosts phytoplankton growth and increase algal turbidity...
Loss of submersed macrophytes is a world-wide phenomenon occurring when shallow lakes become eutroph...
Loss of submersed macrophytes is a world-wide phenomenon occurring when shallow lakes become eutroph...
Eutrophication of lakes leading to loss of submersed macrophytes and higher turbidity is a worldwide...
Due to excess nutrient loading, loss of submersed macrophytes is a worldwide phenomenon in shallow l...
Due to excess nutrient loading, loss of submersed macrophytes is a worldwide phenomenon in shallow l...
Poyang Lake, the largest freshwater lake in China, has experienced a large decrease in wetland area ...
Increasing N concentration and the high density of epiphytic algae are both key factors leading to t...
Increasing N concentration and the high density of epiphytic algae are both key factors leading to t...
Increasing N concentration and the high density of epiphytic algae are both key factors leading to t...
Increasing N concentration and the high density of epiphytic algae are both key factors leading to t...
Background. The decline of submerged plant populations due to high heavy metal (e.g., Cu) levels in ...
Due to excess nutrient loading, loss of submersed macrophytes is a worldwide phenomenon in shallow l...
Most aquatic vegetation restorations involve the transplantation of submerged macrophytes. Sediment ...
Submerged macrophytes play an important role in aquatic ecosystems, which has led to an increase in ...
Excess nitrogen (N) loading in summer often boosts phytoplankton growth and increase algal turbidity...
Loss of submersed macrophytes is a world-wide phenomenon occurring when shallow lakes become eutroph...
Loss of submersed macrophytes is a world-wide phenomenon occurring when shallow lakes become eutroph...
Eutrophication of lakes leading to loss of submersed macrophytes and higher turbidity is a worldwide...
Due to excess nutrient loading, loss of submersed macrophytes is a worldwide phenomenon in shallow l...
Due to excess nutrient loading, loss of submersed macrophytes is a worldwide phenomenon in shallow l...
Poyang Lake, the largest freshwater lake in China, has experienced a large decrease in wetland area ...
Increasing N concentration and the high density of epiphytic algae are both key factors leading to t...
Increasing N concentration and the high density of epiphytic algae are both key factors leading to t...
Increasing N concentration and the high density of epiphytic algae are both key factors leading to t...
Increasing N concentration and the high density of epiphytic algae are both key factors leading to t...
Background. The decline of submerged plant populations due to high heavy metal (e.g., Cu) levels in ...
Due to excess nutrient loading, loss of submersed macrophytes is a worldwide phenomenon in shallow l...
Most aquatic vegetation restorations involve the transplantation of submerged macrophytes. Sediment ...
Submerged macrophytes play an important role in aquatic ecosystems, which has led to an increase in ...
Excess nitrogen (N) loading in summer often boosts phytoplankton growth and increase algal turbidity...