Navigating the synergy between environmental efficiency and productivity in China's land operation scale expansion

Balancing productivity growth with emissions reduction is a central challenge for sustainable agriculture. Using over 390,000 household-year observations from 1993 to 2020, this study examines how land operation scale affects greenhouse gas emission intensity (GEI) and unit production value in China, with lower GEI indicating higher environmental efficiency and unit production value capturing economic productivity per unit planting area. We find U-shaped relationships between land operation scale and both outcomes. The turning point of unit production value occurs earlier than that of GEI, creating a “synergy window” in which moderate scale expansion can reduce emission intensity while improving unit production value. This window is not universal across the nine agricultural zones, reflecting regional differences in production systems and scale-response patterns. Mechanism decomposition identifies fertilization intensity as the dominant pathway, with additional contributions from mechanical input intensity and planting structure. Multi-scenario simulations to 2035 suggest that moving toward the estimated turning-point scale can substantially reduce GEI, while the recovery of unit production value depends on addressing land-transfer and fragmentation constraints. These findings provide new evidence for land policies that coordinate productivity growth and low-carbon agricultural transition.

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Publication Details

Journal
Environmental Impact Assessment Review
Published
2026-09-22
DOI
https://doi.org/10.1016/j.eiar.2026.108752
Primary Topic
Land Use and Ecosystem Services
Type
article
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Navigating the synergy between environmental efficiency and productivity in China's land operation scale expansion

Xiangbo Xu, Linxiu Zhang, Qiran Zhao, Yue Xu et al.
Environmental Impact Assessment Review
Land Use and Ecosystem Services
article

Navigating the synergy between environmental efficiency and productivity in China's land operation scale expansion

Xiangbo Xu, Linxiu Zhang, Qiran Zhao, Yue Xu, Jianbing Guo, Rong Xu, Ziyi Shen
article en

Abstract

Balancing productivity growth with emissions reduction is a central challenge for sustainable agriculture. Using over 390,000 household-year observations from 1993 to 2020, this study examines how land operation scale affects greenhouse gas emission intensity (GEI) and unit production value in China, with lower GEI indicating higher environmental efficiency and unit production value capturing economic productivity per unit planting area. We find U-shaped relationships between land operation scale and both outcomes. The turning point of unit production value occurs earlier than that of GEI, creating a “synergy window” in which moderate scale expansion can reduce emission intensity while improving unit production value. This window is not universal across the nine agricultural zones, reflecting regional differences in production systems and scale-response patterns. Mechanism decomposition identifies fertilization intensity as the dominant pathway, with additional contributions from mechanical input intensity and planting structure. Multi-scenario simulations to 2035 suggest that moving toward the estimated turning-point scale can substantially reduce GEI, while the recovery of unit production value depends on addressing land-transfer and fragmentation constraints. These findings provide new evidence for land policies that coordinate productivity growth and low-carbon agricultural transition.

Environmental Impact Assessment ReviewVol. 123
Development Research Center of the State Council (CN), Chinese Academy of Sciences (CN), United Nations Environment Programme (KE), China University of Geosciences (CN), Institute of Geographic Sciences and Natural Resources Research (CN), China Agricultural University (CN)
Zero hunger
Openalex Percentile: Top 14%
Land Use and Ecosystem Services
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