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Shifting Rice Cropping Systems Mitigates Ecological Footprints and Enhances Grain Yield in Central China

环境科学 灌溉 生态足迹 农业 碳足迹 种植 经济短缺 水田 用水 农学 肥料 种植制度 粮食产量 生态系统 产量(工程) 温室气体 生态学 生物 持续性 语言学 哲学 材料科学 政府(语言学) 冶金
作者
Yong Zhou,Ke Liu,Matthew Tom Harrison,Shah Fahad,Song-ling GONG,Beiwei Zhu,Zhangyong Liu
出处
期刊:Frontiers in Plant Science [Frontiers Media SA]
卷期号:13 被引量:8
标识
DOI:10.3389/fpls.2022.895402
摘要

Intensive cereal production has brought about increasingly serious environmental threats, including global warming, environmental acidification, and water shortage. As an important grain producer in the world, the rice cultivation system in central China has undergone excessive changes in the past few decades. However, few articles focused on the environmental impacts of these shifts from the perspective of ecological footprints. In this study, a 2-year field trial was carried out in Hubei province, China, to gain insight into carbon footprint (CF), nitrogen footprint (NF), and water footprint (WF) performance. The three treatments were, namely, double-rice system (DR), ratoon rice system (RR), and rice-wheat system (RW). Results demonstrated that RR significantly increased the grain yield by 10.22–15.09% compared with DR, while there was no significant difference in the grain yield between RW and DR in 2018–2019. All of the calculation results by three footprint approaches followed the order: RR < RW < DR; meanwhile, RR was always significantly lower than DR. Methane and NH 3 field emissions were the hotspots of CF and NF, respectively. Blue WF accounts for 40.90–42.71% of DR, which was significantly higher than that of RR and RW, primarily because DR needs a lot of irrigation water in both seasons. The gray WF of RW was higher than those of DR and RR, mainly due to the higher application rate of N fertilizer. In conclusion, RR possesses the characteristics of low agricultural inputs and high grain yield and can reduce CF, NF, and WF, considering the future conditions of rural societal developments and rapid demographic changes; we highlighted that the RR could be a cleaner and sustainable approach to grain production.
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