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◆ Agriculture2026-05-27· Emergy

Assessment of Greenhouse Gas Emissions, Economic Benefits, and Emergy-Based Sustainability in Ratoon Rice–Duck Coculture in the Jianghan Plain

Yong Zhou, Changchun Li, Wenjian Wang, Zuolin Zhang, Qiao Luo, Jiangwen Nie, Bo Zhu, Zhangyong Liu, Zijuan Ding

原始摘要(英文原文)· Original abstract
Ratoon rice monoculture system (RR) is a labor-efficient and high-yielding cropping system in southern China. The rice–duck coculture system has been increasingly recognized as a mutually beneficial agricultural practice. However, the environmental impacts, economic performance, and sustainability of transitioning from a RR monoculture to a ratoon rice–duck system (RR-D) coculture remain unclear. A three-year (2022–2024) field experiment with three replications was therefore conducted in the Jianghan Plain, China (29°41′ N, 112°25′ E), to compare greenhouse gas (GHG) emissions, economic benefits, and emergy-based sustainability indicators between the RR and RR-D systems at a significant level of p < 0.05. The results showed that the RR-D significantly reduced CH4 emissions by 25.7–39.5% but increased N2O emissions by 18.7–122.2%. The average global warming potential (GWP) and GHG intensity decreased by 27.8% and 30.7%, respectively. Meanwhile, RR-D increased economic benefits by 131.0–167.1%, but lowered the unit emergy value per economic benefit (UEVBenefits), renewable emergy ratio (%R), emergy yield ratio (EYR), and emergy sustainability index (ESI), and increased the environmental loading ratio (ELR). Overall, RR-D may improve economic returns and GHG mitigation, but its emergy-based sustainability requires optimization of feed, labor, and duck stocking density.
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Assessment of Greenhouse Gas Emissions, Economic Benefits, and Emergy-Based Sustainability in Ratoon Rice–Duck Coculture in the Jianghan Plain — 科研速览 Science Skim