Acceleration of Soil Erosion by Different Land Uses in Arid Lands above Be-10 Natural Background Rates: Case Study in the Sonoran Desert, USA

Authors
Jeong, AraDorn, Ronald, ISeong, Yeong-BaeYu, Byung-Yong
Issue Date
2021-08
Publisher
MDPI
Citation
LAND, v.10, no.8
Abstract
Land use changes often lead to soil erosion, land degradation, and environmental deterioration. However, little is known about just how much humans accelerate erosion compared to natural background rates in non-agricultural settings, despite its importance to knowing the magnitude of soil degradation. The lack of understanding of anthropogenic acceleration is especially true for arid regions. Thus, we used Be-10 catchment averaged denudation rates (CADRs) to obtain natural rates of soil erosion in and around the Phoenix metropolitan region, Arizona, United States. We then measured the acceleration of soil erosion by grazing, wildfire, and urban construction by comparing CADRs to erosion rates for the same watersheds, finding that: (i) grazing sometimes can increase sediment yields by up to 2.3-2.6x, (ii) human-set wildfires increased sediment yields by up to 9.7-10.4x, (iii) after some post-fire vegetation recovered, sediment yield was then up to 4.2-4.5x the background yield, (iv) construction increased sediment yields by up to 5.0-5.6x, and (v) the sealing of urban surfaces led to one-tenth to one-half of the background sediment yields. The acceleration of erosion at the urban-rural interface in arid lands highlights the need for sustainable management of arid-region soils.
Keywords
SEDIMENT YIELD; COSMOGENIC NUCLIDES; EXPOSURE AGES; RUNOFF; ERODIBILITY; HIGHLANDS; VINEYARDS; IMPACT; BASIN; URBAN; Be-10 denudation rates; arid lands; grazing; land use changes; land degradation; natural background rate; soil erosion; wildfire; urban construction
ISSN
2073-445X
URI
https://pubs.kist.re.kr/handle/201004/116609
DOI
10.3390/land10080834
Appears in Collections:
KIST Article > 2021
Files in This Item:
There are no files associated with this item.
Export
RIS (EndNote)
XLS (Excel)
XML

qrcode

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

BROWSE