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February 12, 2026Frontiers in Environmental Science2 citationsOpen Access

Spatiotemporal dynamics and drivers of ecological quality in Shaanxi (Yellow River Basin, China) based on optimized RSEI and SHAP

CMChan MaCZChi ZhangHCHongqiang Chen

Key Points

  • This research aims to analyze the ecological quality dynamics and their drivers in the Yellow River Basin.
  • Utilized MODIS data from 2000-2023 to develop an enhanced RSEI
  • Applied the entropy weight method for RSEI calculation
  • Assessed spatiotemporal variations using Sen’s slope and Mann–Kendall test
  • Interpreted driving forces through SHAP analysis
  • Mean RSEI was 0.51, indicating above medium ecological quality
  • 45.05% of areas improved slightly, with 11.17% experiencing significant improvements
  • About 6.20% of areas showed significant degradation
  • 56.96% of the areas had significant increases, with 56.64% likely to improve further

Abstract

The Yellow River Basin serves as a crucial ecological barrier in China, necessitating an understanding of its ecological quality dynamics and drivers. Utilizing Moderate Resolution Imaging Spectroradiometer (MODIS) data (2000–2023), we developed an enhanced Remote Sensing Ecological Index (RSEI) for the Shaanxi section of the Yellow River Basin by applying the entropy weight method (EWM). Spatiotemporal variations were assessed using Sen’s slope and the Mann–Kendall (MK) test (Sen–MK) and the Hurst exponent (H), while driving forces were interpreted using SHapley Additive exPlanations (SHAP). The mean RSEI was 0.51, indicating ecological quality above medium with a slight upward trend. Improvement was predominant, following a “south-high, north-low” pattern; slightly and significantly improved areas comprised 45.05% and 11.17%, while significant degradation covered 6.20%. Hurst analysis showed 56.96% of areas had significant increases, with 56.64% likely to improve further. Land use changes and natural factors jointly influenced RSEI, with cropland/grassland conversion to forest enhancing ecological quality. Soil moisture emerged as the dominant climatic factor, while interactions among wind speed, precipitation, and SOIL moisture bolstered ecosystem stability. These findings offer a scientific basis for ecological management and sustainable development in the Shaanxi section of the Yellow River Basin.

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Cite This Study

Ma et al. (2026) studied this question.

synapsesocial.com/papers/698d6d695be6419ac0d5245dhttps://doi.org/10.3389/fenvs.2026.1721306
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