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Closing maize yield gaps in sub-Saharan Africa will boost soil N_2O emissions

机译:关闭玉米产量差距在撒哈拉以南非洲将促进土壤N_2O排放量

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In sub-Saharan Africa (SSA), the most important staple crop is maize; the production of which is dominated by smallholder farming systems using low external inputs (10 kg N ha(-1)) resulting in low crop yields and large yield gaps (difference between actual and potential yields). To assess increases in soil N2O emissions when closing maize yield gaps by increased fertilizer use, we reviewed the literature, developed a relationship between yield gaps and soil N2O emissions, and used it to scale across SSA. According to our analysis, N2O emissions from maize production will increase from currently 255 to 1755 1226 Gg N2O-N year(-1) (+589%) if existing maize yield gaps are closed by 75%, increasing total anthropogenic N2O emissions for SSA by c. 50%.
机译:在撒哈拉以南非洲(SSA)中,最重要的主食作物是玉米; 生产由使用低外部输入(&lt 19 kg n ha(-1))的小啤酒农业系统为主,导致低作物产量和大的屈服间隙(实际和潜在产量之间的差异)。 为了评估土壤N2O排放的增加,当肥料使用增加玉米收益率差距时,我们审查了文献,制定了产量差距和土壤N2O排放之间的关系,并用它跨越SSA缩放。 根据我们的分析,玉米生产的N2O排放将从目前的255〜1755增加1226 Gg N2O-N年( - 1)(+ 589%)如果现有的玉米产量差距缩短75%,则增加了SSA的人为N2O排放总量 由c。 50%。

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    Int Livestock Res Inst ILRI Mazingira Ctr POB 30709 Nairobi 00100 Kenya;

    Agr & Agri Food Canada Quebec Res & Dev Ctr 2560 Hochelaga Blvd Quebec City PQ G1V 2J3 Canada;

    Karlsruhe Inst Technol KIT Inst Meteorol & Climate Res Atmospher Environm Res IMK IFU Kreuzeckbahnstr 19 D-82467 Garmisch Partenkirchen Germany;

    Int Livestock Res Inst ILRI Mazingira Ctr POB 30709 Nairobi 00100 Kenya;

    Univ Edinburgh Global Acad Agr & Food Secur Royal Dick Sch Vet Studies Easter Bush Campus Roslin EH25 9RG Midlothian Scotland;

    Univ Zimbabwe POB MP167 Harare Zimbabwe;

    Int Livestock Res Inst ILRI Mazingira Ctr POB 30709 Nairobi 00100 Kenya|Karlsruhe Inst Technol KIT Inst Meteorol & Climate Res Atmospher Environm Res IMK IFU Kreuzeckbahnstr 19 D-82467 Garmisch Partenkirchen Germany;

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