Soil loss estimation and severity mapping using the RUSLE model and GIS in Megech watershed, Ethiopia

https://doi.org/10.1016/j.envc.2022.100560Get rights and content
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Highlights

  • Rainfall-driven soil erosion is a serious problem in the Megech watershed.

  • Soil loss was estimated at the watershed level and erosion hotspots were identified.

  • More than 80% of the Megech watershed is affected by serious soil erosion.

  • The RUSLE model is applicable to predict soil loss for planning soil management strategies.

Abstract

Soil erosion is the most serious problem that affects economic development, food security, and ecosystem services, which is the main concern in Ethiopia. This study focused on quantifying soil erosion rate and severity mapping of the Megech watershed for effective planning and decision-making processes to implement protection measures. The RUSLE model integrated with ArcGIS software was used to accomplish the objectives. The six RUSLE model parameters: erosivity, erodibility, slope length and steepness, cover management, and erosion control practices were used as input parameters to compute the average annual soil loss and identify erosion hotspots in the watershed. The RUSLE estimated a total soil loss of 1,399,210 t yr−1 from the watershed with a mean annual soil loss of 32.84 t ha−1yr−1. The soil erosion rate varied from 0.08 to greater than 500 t ha−1yr−1. A severity map with seven severity classes was created for 27 sub-watersheds: low (below 10), moderate (10–20), high (20–30), very high (30–35), severe (35–40), very severe (40–45) and extremely severe (above 45) in which the values are in ton ha−1yr−1. The area coverage was 6.5%, 11.1%, 8.7%, 22%, 30.9%, 13.4%, and 7.4% for low, moderate, high, very high, severe, very severe, and extremely severe erosion classes, respectively. About 82% of the watershed was found in more than the high-risk category which reflects the need for immediate land management action. This paper could be important for decision-makers to prioritize critical erosion hotspots for comprehensive and sustainable management of the watershed.

Keywords

Soil erosion
Severity mapping
The RUSLE model
Megech watershed
Ethiopia

Abbreviations

BNRB
blue nile river basin
DEM
digital elevation model
GIS
geographic information system
HWSD
harmonized world soil database
LULC
land use land cover
RUSLE
revised universal soil loss equation
SRTM
shuttle radar topographic mission
SW
sub-watershed
SWAT
soil and water assessment tool
USGS
United States geologic survey
USLE
universal soil loss equation

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