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Soil erosion rates, driving factors and climate change impacts across different land uses in the Himalayas: Insights from Caesium-137 (137Cs) tracing and the revised universal soil loss equation (RUSLE) model

delete2026-07-31
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PRE
AI
A
Anu David Raj *
S
Suresh Kumar
M
M. Sankar
K
K.R. Sooryamol
DOI:10.1016/j.scitotenv.2026.182034delete
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Abstract

Abstract

En 中文
• First integration of FRN-137Cs tracer and RUSLE at the large-catchment scale. • Mean soil erosion rate of 21.4 t ha−1 yr−1 across diverse land-use types. • Topography dominates soil erosion across Himalayan landscapes. • Climate change emerges as the most dynamic driver influencing future erosion. • Forests show highest resistance to erosion, while barren lands are most vulnerable.

Journal

Science of The Total Environment cover
Science of The Total Environment
IF:
8
Papers:
7.1W
Citations:
46.4W

Organization

I
indian council of agricultural research
Scholars:
181
Papers: 53
Citations: 0
Indian Space Research Organisation cover
Indian Space Research Organisation
Scholars:
60
Papers: 28
Citations: 718
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