Soil erosion and terrestrial deposition of soil organic carbon (SOC) can potentially play a significant role in global carbon cycling. Assessing the redistribution of SOC during erosion and subsequent transport and burial is of critical importance. Using hydrological records of soil erosion and sediment load, and compiled organic carbon (OC) data, estimates of the eroded soils and OC induced by water in the Yellow River basin during the period 1950–2010 were assembled. The Yellow River basin has experienced intense soil erosion due to combined impact of natural process and human activity. Over the period, 134.2 ± 24.7 Gt of soils and 1.07 ± 0.15 Gt of OC have been eroded from hillslopes based on a soil erosion rate of 1.7–2.5 Gt yr−1. Appro...
Soil erosion by water impacts soil organic carbon stocks and alters CO2 fluxes exchanged with the at...
Large river systems accumulate, process, and transport huge quantities of organic matter (OM) from t...
Soil erosion, transport and deposition by water drastically affect the distribution of soil organic ...
This is the author’s version of a work that was accepted for publication in Earth and Planetary Scie...
Soil erosion by water impacts soil organic carbon stocks and alters CO2 fluxes exchanged with the at...
Soil erosion by water impacts soil organic carbon stocks and alters CO2 fluxes exchanged with the at...
Soil erosion affects the redistribution of soil and associated soil organic carbon (SOC) from differ...
Using data from four field investigations between 2003 and 2009 along the Yellow River mainstream, w...
Globally, deltaic wetlands sequester large volumes of terrestrial and marine-derived organic carbon....
The Yellow River transports a large amount of sediment and particulate organic carbon (POC), which i...
Soil erosion is the most widespread form of soil degradation. Land area globally affected by erosion...
We have developed a mass balance analysis of organic carbon (OC) across the five major river subsyst...
A better process understanding of how water erosion influences the redistribution of soil organic ca...
A better process understanding of how water erosion influences the redistribution of soil organic ca...
A better process understanding of how water erosion influences the redistribution of soil organic ca...
Soil erosion by water impacts soil organic carbon stocks and alters CO2 fluxes exchanged with the at...
Large river systems accumulate, process, and transport huge quantities of organic matter (OM) from t...
Soil erosion, transport and deposition by water drastically affect the distribution of soil organic ...
This is the author’s version of a work that was accepted for publication in Earth and Planetary Scie...
Soil erosion by water impacts soil organic carbon stocks and alters CO2 fluxes exchanged with the at...
Soil erosion by water impacts soil organic carbon stocks and alters CO2 fluxes exchanged with the at...
Soil erosion affects the redistribution of soil and associated soil organic carbon (SOC) from differ...
Using data from four field investigations between 2003 and 2009 along the Yellow River mainstream, w...
Globally, deltaic wetlands sequester large volumes of terrestrial and marine-derived organic carbon....
The Yellow River transports a large amount of sediment and particulate organic carbon (POC), which i...
Soil erosion is the most widespread form of soil degradation. Land area globally affected by erosion...
We have developed a mass balance analysis of organic carbon (OC) across the five major river subsyst...
A better process understanding of how water erosion influences the redistribution of soil organic ca...
A better process understanding of how water erosion influences the redistribution of soil organic ca...
A better process understanding of how water erosion influences the redistribution of soil organic ca...
Soil erosion by water impacts soil organic carbon stocks and alters CO2 fluxes exchanged with the at...
Large river systems accumulate, process, and transport huge quantities of organic matter (OM) from t...
Soil erosion, transport and deposition by water drastically affect the distribution of soil organic ...