Skip to main content
U.S. flag

An official website of the United States government

Multi-year tracing of spatial and temporal dynamics of post-fire aeolian sediment transport using rare earth elements provide insights into grassland management

November 3, 2023

Aeolian sediment transport occurs as a function of, and with feedback to ecosystem changes and disturbances. Many desert grasslands are undergoing rapid changes in vegetation, including the encroachment of woody plants, which alters fire regimes and in turn can change the spatial and temporal patterns of aeolian sediment transport. We investigated aeolian sediment transport and spatial distribution of sediment in the surface soil for 7 years following a prescribed fire using a multiple rare earth element (REE) tracer-based approach in a shrub-encroached desert grassland in the northern Chihuahuan desert. Results indicate that even though the aeolian horizontal sediment mass flux increased approximately three-fold in the first windy season in the burned areas compared to control areas, there were no significant differences after three windy seasons. The soil surface of bare microsites was the major contributor of aeolian sediments in unburned areas (87%), while the shrub microsites contributed the least (

Publication Year 2023
Title Multi-year tracing of spatial and temporal dynamics of post-fire aeolian sediment transport using rare earth elements provide insights into grassland management
DOI 10.1029/2023JF007274
Authors William Burger, Robert Van Pelt, David Grandstaff, Guan Wang, Temuulen Sankey, Junran Li, Joel B. Sankey, Sujith Ravi
Publication Type Article
Publication Subtype Journal Article
Series Title JGR Earth Surface
Index ID 70253016
Record Source USGS Publications Warehouse
USGS Organization Southwest Biological Science Center
Was this page helpful?