Satellite time-series mapping and driving mechanisms of cropland abandonment in mountainous regions of China.

Journal: Journal of environmental management
Published Date:

Abstract

Cropland abandonment (CA) has become increasingly prevalent in mountainous regions, posing significant challenges to agricultural sustainability, land management, and regional food security. Complex terrain and fragmented land-use patterns hinder long-term and fine-scale assessments of abandonment dynamics, limiting the effectiveness of land management and rural development strategies. This study developed a satellite time-series-based analytical framework to quantify the spatiotemporal patterns and driving mechanisms of CA in a representative mountainous region of Southwest China from 2001 to 2020. Cropland parcels were delineated using object-based image segmentation, and land-use types were classified through a machine-learning approach. Long-term and sustained CA was identified from vegetation trajectory characteristics derived from multi-year satellite observations. The relative contributions of natural and socioeconomic driving factors were further quantified using a spatial statistical model. The results show that: (1) land-use classification achieved consistently high accuracy throughout the study period, with overall accuracies exceeding 80%, and cropland extent declined modestly between 2001 and 2020, accompanied by increases in forest and grassland coverage, while water bodies remained stable and built-up land exhibited limited change; (2) CA affected 4.81%-12.92% of the total cropland area, corresponding to 6262-12,995 ha, and the identification of long-term abandonment achieved an overall accuracy of 81.0%; (3) spatial clustering analysis revealed that abandonment hotspots were primarily concentrated in northern and central mountainous zones and exhibited a gradual weakening trend over time; and (4) precipitation, agricultural population, and gross domestic product were identified as the dominant factors shaping the spatial heterogeneity of CA. Overall, this study provides a transferable framework for long-term monitoring of CA in mountainous environments and offers practical insights for land-use planning, agricultural management, and policy interventions aimed at promoting sustainable development in environmentally sensitive regions.

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