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March 6, 2026Earth0 citationsOpen Access

Tracking Mountain Degradation for the United Nations (UN) Sustainable Development Goals (SDGs) Using the State of Colorado (USA) as an Example

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ABArati BudhathokiCPChristopher J. PostEMElena A. Mikhailova

Key Points

  • The research aims to enhance monitoring of mountain land degradation by incorporating soil data, focusing on Colorado as a case study.
  • Analyzed mountain degradation using SEPAL and LULC methods in Colorado from 2001 to 2024.
  • Incorporated soil data into land use land cover (LULC) analysis for improved accuracy.
  • Measured changes in mountain green cover index and overall land degradation over the study period.
  • Anthropogenic land degradation affects approximately 19% of Colorado, primarily from agricultural activities.
  • Overall mountain degradation decreased by 0.4%, yet development-related degradation increased by 23.3%.
  • Incorporating soil data revealed total mountain degradation could be as high as 38.9% when both inherent and anthropogenic factors are considered.

Abstract

Mountain ecosystems, strongly affected by climate-related variability and human impact, are degrading faster than other terrestrial ecosystems. Currently, the United Nations (UN) utilizes Sustainable Development Goal (SDG) 15: Life on Land (Target 15.4 and Sub-indicators 15.4.2a and 15.4.2b), along with the System for Earth Observation Data Access, Processing and Analysis for Land Monitoring, commonly referred to as SEPAL, to track mountain degradation. This SEPAL analysis does not include soil data, which is critical to understanding mountain degradation. The present research focuses on improving the tracking and evaluation of mountain land degradation (LD) utilizing soil data in the state of Colorado (CO) in the United States of America (USA) as an example. Total anthropogenic LD affects an estimated 19% of Colorado’s territory as of 2024, driven mainly by agricultural activities (80%). Between 2001 and 2024, overall LD in CO decreased (−0.4%), but LD from development increased by 23.3%. For mountain areas in CO, the mountain green cover index (MGCI) was 96% for 2024, and it decreased (−0.4%) between 2001 and 2024. The mountain LD proportion was 2.5% as determined by the SEPAL method compared to 4.4% by LULC analysis. Incorporation of soil data into LULC analysis found that between 2001 and 2024 LD increased to 6.6%. All soil types in the mountains exhibited anthropogenic LD due to development with a total developed area of 1385.1 km2. Current total mountain LD (inherent + anthropogenic) in CO may be as high as 38.9%. Future estimates of total mountain LD should include both inherent and anthropogenic LD.

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Cite This Study

Budhathoki et al. (2026) studied this question.

synapsesocial.com/papers/69aa7037531e4c4a9ff59c38https://doi.org/10.3390/earth7020038
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