Rational spatial arrangement of cropland fallow incorporating connectivity alleviates health-productivity conflict in China

Meeting rising food demand while addressing environmental pressures is a global challenge. Optimized cropland fallow (CF) is a critical strategy to balance human needs and land use, yet a standardized, quantitative framework for its national-scale spatial arrangement is lacking. We propose a spatial-coupling method integrating cropland health (CH), productivity (CP), and connectivity to design China’s 2020 CF arrangement. This framework designates 14.67% of the nation’s total cropland for fallow. Over 60% of these identified fallow areas, characterized by acute CH-CP conflicts and high spatial connectivity, are located in northern China (Northern Arid and Semi-Arid Zone: 32.17%; Loess Plateau: 20.38%; Huang-Huai-Hai Plain: 14.18%), clustering at their regional interfaces. Marked regional disparities indicate that fallow governance strategies should target productivity enhancement in the north and health restoration in the south. This study provides quantitative evidence for coordinating health and productivity in support of sustainable cropland use.

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Publication Details

Journal
npj Sustainable Agriculture
Published
2026-09-30
DOI
https://doi.org/10.1038/s44264-026-00194-1
Primary Topic
Land Use and Ecosystem Services
Type
article
Field-Weighted Citation Impact
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article

Rational spatial arrangement of cropland fallow incorporating connectivity alleviates health-productivity conflict in China

Bingbo GAO, Yahui Lv, Jiayue Wang, Cong Ou et al.
npj Sustainable Agriculture
Land Use and Ecosystem Services
article

Rational spatial arrangement of cropland fallow incorporating connectivity alleviates health-productivity conflict in China

Bingbo GAO, Yahui Lv, Jiayue Wang, Cong Ou, Shaoshuai Li, Yang Jianyu, Sijing YE, Shijin Jia, Kaiqi Ye, Qing Geng, Chao Zhang, Li Li, Xiaochuang Yao, Fan Xu, Jianxi Huang
article en

Abstract

Meeting rising food demand while addressing environmental pressures is a global challenge. Optimized cropland fallow (CF) is a critical strategy to balance human needs and land use, yet a standardized, quantitative framework for its national-scale spatial arrangement is lacking. We propose a spatial-coupling method integrating cropland health (CH), productivity (CP), and connectivity to design China’s 2020 CF arrangement. This framework designates 14.67% of the nation’s total cropland for fallow. Over 60% of these identified fallow areas, characterized by acute CH-CP conflicts and high spatial connectivity, are located in northern China (Northern Arid and Semi-Arid Zone: 32.17%; Loess Plateau: 20.38%; Huang-Huai-Hai Plain: 14.18%), clustering at their regional interfaces. Marked regional disparities indicate that fallow governance strategies should target productivity enhancement in the north and health restoration in the south. This study provides quantitative evidence for coordinating health and productivity in support of sustainable cropland use.

npj Sustainable AgricultureVol. 4(1)
Nanchang University (CN), Chinese Academy of Sciences (CN), Ministry of Natural Resources (CN), Beijing Normal University (CN), Land Consolidation and Rehabilitation Center (CN), Ministry of Agriculture and Rural Affairs (CN), Institute of Geographic Sciences and Natural Resources Research (CN), China Agricultural University (CN)
Zero hunger
Openalex Percentile: Top 15%
Land Use and Ecosystem Services
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