Sustainability· 2026Q1
From Competitiveness to Sustainable Security Capability: Spatial Patterns and Institutional Logic of China’s Rice Food Security Governance
- 0citations
- Q1SCImago
- 2026year
Short summary
China's rice food security capability is best understood through a new "Rice Food Security Capability (RFSC)" framework, not traditional competitiveness metrics, with high-capability regions in the Middle-Lower Yangtze River and Northeast China, and significant spatial clustering of security capabilities.
AI-generated from the title and abstract; the full text is not read.
Key points
- A new "Rice Food Security Capability (RFSC)" framework is proposed to evaluate staple-food system sustainability.
- High RFSC agglomerations are identified in the Middle-Lower Yangtze River (0.52) and Northeast China (0.47), with lower capability in Southwest (0.22) and Northern China (0.13).
- Significant spatial clustering of RFSC was confirmed (Global Moran’s I: 0.241–0.310, p < 0.01).
- Government strategic security capability shows negative spatial autocorrelation, indicating inter-regional policy compensation.
- Whole-industry-chain security capability is the primary pillar, explaining 57.33% of variance.
AI-generated from the title and abstract; the full text is not read.
Abstract
Background: Global food supply chains face intensifying geopolitical and climate disruptions, posing significant threats to environmental sustainability and resource equity. Conventional competitiveness frameworks, which prioritize market share and export performance, inadequately capture the sustainable development logic of populous developing countries. China produces approximately 27% of global rice output but accounts for less than 1.5% of global exports, while maintaining a self-sufficiency rate exceeding 95%—a paradox that existing market-centric theories cannot coherently explain. Objective: This study proposes “Rice Food Security Capability (RFSC)” as an alternative conceptual framework to quantify and monitor the sustainability of staple-food systems, empirically examines its spatial distribution across China’s 31 provinces (2015–2023), and distills transferable lessons for developing countries. Methods: A five-dimensional evaluation system was constructed covering production, processing, industry integration, market, and policy dimensions. principal component analysis (PCA), exploratory spatial data analysis (ESDA), and Getis-Ord Gi hot spot analysis were applied to provincial-level data. Qualitative indicators were assessed via a six-expert panel with intraclass correlation coefficients (ICCs) of 0.87 and 0.82, exceeding the 0.75 good threshold. Results: Five principal components explained 91.51% of total variance in 2023. The Middle-Lower Yangtze River region (comprehensive score 0.52) and Northeast China (0.47) constitute high-capability agglomeration areas, highlighting regional disparities crucial for sustainable resource allocation, while Southwest China (0.22) and Northern China (0.13) exhibit lower capability. Global Moran’s I ranged from 0.241 to 0.310 (p < 0.01), confirming significant spatial clustering. Government strategic security capability (F4) exhibited negative spatial autocorrelation (I = −0.217, p < 0.05), revealing inter-regional policy compensation dynamics. Whole-industry-chain security capability (F1), explaining 57.33% of variance, is the primary pillar. Conclusion: China’s rice security capability rests on three mechanisms: government-led policy coordination, technology-driven innovation, and multi-agent whole-chain resilience. Four replicable lessons for achieving Sustainable Development Goal 2 (zero hunger) and promoting sustainable agriculture emerge: whole-chain thinking, institutional coordination priority, technology localization, and reliance on domestic supply. These findings provide a quantifiable tool for policymakers to assess and monitor the sustainability of food governance.
The authors' abstract, as published at the source. Sustainability, 2026 · DOI ↗
Continue with a free account
Ask the paper: 3 free questions a day about this paper; save it, get its citation, new summaries every day for your field. Takeaways are Premium.
Continue free on the webSign in with Google or Apple; no card needed. You come back to this paper.
On your phone:
Field: General Agricultural and Biological Sciences
General Agricultural and Biological SciencesAgricultural and Biological Sciences