This study demonstrates the importance of the nitrogen-leaching lag effect, soil nitrogen release, and climate change on anthropogenic N inputs (NANI) and riverine total nitrogen (TN) export dynamics using a 30-yr record for the Yongan River watershed in eastern China. Cross-correlation analysis indicated a 7-yr, 5-yr, and 4-yr lag time in riverine TN export in response to changes in NANI, temperature, and drained agricultural land area, respectively. Enhanced by warmer temperature and improved agricultural drainage, the upper 20 cm of agricultural soils released 270 kg N ha(-1) between 1980 and 2009. Climate change also increased the fractional export of NANI to river. An empirical model (R(2) = 0.96) for annual riverine TN flux incorporat...
A quantitative understanding of riverine phosphorus (P) export in response to changes in anthropogen...
A quantitative understanding of riverine phosphorus (P) export in response to changes in anthropogen...
Source apportionment is critical for guiding development of efficient watershed nitrogen (N) polluti...
This study demonstrates the importance of the nitrogen-leaching lag effect, soil nitrogen release, a...
A quantitative understanding of riverine nitrogen (N) export in response to human activities and cli...
Legacy nitrogen (N) sources originating from anthropogenic N inputs (NANI) may be a major cause of i...
Legacy nitrogen (N) sources originating from anthropogenic N inputs (NANI) may be a major cause of i...
Legacy nitrogen (N) sources originating from anthropogenic N inputs (NANI) may be a major cause of i...
Abstract Nitrogen (N) transport from land to rivers, estuaries, and coastal marine systems has been ...
This study quantified the long-term response of riverine total nitrogen (TN) export to changes in ne...
This study quantified the long-term response of riverine total nitrogen (TN) export to changes in ne...
Rivers play a key role in linking between terrestrial and aquatic ecosystems, and are becoming impor...
Legacy anthropogenic nitrogen (N) has been suggested as a major cause for increasing riverine N expo...
Legacy anthropogenic nitrogen (N) has been suggested as a major cause for increasing riverine N expo...
A quantitative understanding of riverine phosphorus (P) export in response to changes in anthropogen...
A quantitative understanding of riverine phosphorus (P) export in response to changes in anthropogen...
A quantitative understanding of riverine phosphorus (P) export in response to changes in anthropogen...
Source apportionment is critical for guiding development of efficient watershed nitrogen (N) polluti...
This study demonstrates the importance of the nitrogen-leaching lag effect, soil nitrogen release, a...
A quantitative understanding of riverine nitrogen (N) export in response to human activities and cli...
Legacy nitrogen (N) sources originating from anthropogenic N inputs (NANI) may be a major cause of i...
Legacy nitrogen (N) sources originating from anthropogenic N inputs (NANI) may be a major cause of i...
Legacy nitrogen (N) sources originating from anthropogenic N inputs (NANI) may be a major cause of i...
Abstract Nitrogen (N) transport from land to rivers, estuaries, and coastal marine systems has been ...
This study quantified the long-term response of riverine total nitrogen (TN) export to changes in ne...
This study quantified the long-term response of riverine total nitrogen (TN) export to changes in ne...
Rivers play a key role in linking between terrestrial and aquatic ecosystems, and are becoming impor...
Legacy anthropogenic nitrogen (N) has been suggested as a major cause for increasing riverine N expo...
Legacy anthropogenic nitrogen (N) has been suggested as a major cause for increasing riverine N expo...
A quantitative understanding of riverine phosphorus (P) export in response to changes in anthropogen...
A quantitative understanding of riverine phosphorus (P) export in response to changes in anthropogen...
A quantitative understanding of riverine phosphorus (P) export in response to changes in anthropogen...
Source apportionment is critical for guiding development of efficient watershed nitrogen (N) polluti...