Intensive agriculture and rapid urbanization have increased nutrient inputs to Lake Taihu in recent decades. This resulted in eutrophication. We aim to better understand the sources of river export of total dissolved nitrogen (TDN) and phosphorus (TDP) to Lake Taihu in relation to critical nutrient loads. We implemented the MARINA-Lake (Model to Assess River Inputs of Nutrients to seAs) model for Lake Taihu. The MARINA-Lake model quantifies river export of dissolved inorganic and organic N and P to the lake by source from sub-basins. Results from the PCLake model are used to identify to what extent river export of nutrients exceeds critical loads. We calculate that rivers exported 61 kton of TDN and 2 kton of TDP to Lake Taihu in 2012. More...
N and P found naturally in soils, however agricultural activities increased the concentration of the...
<p>Chinese agriculture has been developing fast towards industrial food production systems that disc...
<p>Ongoing eutrophication frequently causes toxic phytoplankton blooms. This induces huge worldwide ...
Intensive agriculture and rapid urbanization have increased nutrient inputs to Lake Taihu in recent ...
Intensive agriculture and rapid urbanization have increased nutrient inputs to Lake Taihu in recent ...
Lake Dianchi suffered from severe eutrophication for decades. Past efforts to reduce the eutrophicat...
Lake Dianchi is severely polluted with nitrogen (N) and phosphorus (P). The effects of implementing ...
Nutrient inputs from rivers play an important role in lake eutrophication. To compare the forms char...
The Pearl River (Zhujiang in Chinese) has been exporting excess of nitrogen (N) and phosphorus (P), ...
The Pearl River (Zhujiang in Chinese) has been exporting excess of nitrogen (N) and phosphorus (P), ...
<p>Last century, Lake Taihu (China) became serious eutrophic due to excessive nutrient input. During...
Harmful cyanobacterial blooms (CyanoHABs) are linked to increasing anthropogenic nitrogen (N) and ph...
Ongoing eutrophication frequently causes toxic phytoplankton blooms. This induces huge worldwide cha...
N and P found naturally in soils, however agricultural activities increased the concentration of the...
Ongoing eutrophication frequently causes toxic phytoplankton blooms. This induces huge worldwide cha...
N and P found naturally in soils, however agricultural activities increased the concentration of the...
<p>Chinese agriculture has been developing fast towards industrial food production systems that disc...
<p>Ongoing eutrophication frequently causes toxic phytoplankton blooms. This induces huge worldwide ...
Intensive agriculture and rapid urbanization have increased nutrient inputs to Lake Taihu in recent ...
Intensive agriculture and rapid urbanization have increased nutrient inputs to Lake Taihu in recent ...
Lake Dianchi suffered from severe eutrophication for decades. Past efforts to reduce the eutrophicat...
Lake Dianchi is severely polluted with nitrogen (N) and phosphorus (P). The effects of implementing ...
Nutrient inputs from rivers play an important role in lake eutrophication. To compare the forms char...
The Pearl River (Zhujiang in Chinese) has been exporting excess of nitrogen (N) and phosphorus (P), ...
The Pearl River (Zhujiang in Chinese) has been exporting excess of nitrogen (N) and phosphorus (P), ...
<p>Last century, Lake Taihu (China) became serious eutrophic due to excessive nutrient input. During...
Harmful cyanobacterial blooms (CyanoHABs) are linked to increasing anthropogenic nitrogen (N) and ph...
Ongoing eutrophication frequently causes toxic phytoplankton blooms. This induces huge worldwide cha...
N and P found naturally in soils, however agricultural activities increased the concentration of the...
Ongoing eutrophication frequently causes toxic phytoplankton blooms. This induces huge worldwide cha...
N and P found naturally in soils, however agricultural activities increased the concentration of the...
<p>Chinese agriculture has been developing fast towards industrial food production systems that disc...
<p>Ongoing eutrophication frequently causes toxic phytoplankton blooms. This induces huge worldwide ...