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A high-resolution assessment on global nitrogen flows in cropland

机译:全球农田氮流量的高分辨率评估

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摘要

Crop production is the single largest cause of human alteration of the global nitrogen cycle. We present a comprehensive assessment of global nitrogen flows in cropland for the year 2000 with a spatial resolution of 5 arc-minutes. We calculated a total nitrogen input (IN) of 136.60 trillion grams (Tg) of N per year, of which almost half is contributed by mineral nitrogen fertilizers, and a total nitrogen output (OUT) of 148.14 Tg of N per year, of which 55% is uptake by harvested crops and crop residues. We present high-resolution maps quantifying the spatial distribution of nitrogen IN and OUT flows, soil nitrogen balance, and surface nitrogen balance. The high-resolution data are aggregated at the national level on a per capita basis to assess nitrogen stress levels. The results show that almost 80% of African countries are confronted with nitrogen scarcity or nitrogen stress problems, which, along, with poverty, cause food insecurity and malnutrition. The assessment also shows a global average nitrogen recovery rate of 59%, indicating that nearly two-fifths of nitrogen inputs are lost in ecosystems. More effective management of nitrogen is essential to reduce the deleterious environmental consequences.
机译:作物生产是人类改变全球氮循环的最大原因。我们提出了2000年全球农田氮流量的综合评估,其空间分辨率为5弧分钟。我们计算出每年的总氮输入(IN)为136.60万亿克(Tg),其中几乎一半是由矿物氮肥贡献的,而总氮输出(OUT)为每年148.14 Tg氮。 55%被已收割的作物和作物残渣吸收。我们提供了高分辨率的地图,量化了氮流入和流出的空间分布,土壤氮平衡和表面氮平衡。高分辨率数据在人均基础上在国家一级汇总,以评估氮胁迫水平。结果表明,几乎80%的非洲国家面临着氮荒或氮胁迫问题,这些问题与贫困一起导致粮食不安全和营养不良。评估还显示,全球平均氮回收率为59%,这表明生态系统中损失了近五分之二的氮输入。氮的更有效管理对于减少有害的环境后果至关重要。

著录项

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  • 作者单位

    School of Nature Conservation, Beijing Forestry University, Beijing, 100083, China Forestry Program, International Institute for Applied Systems Analysis, A-2361 Laxenburg, Austria;

    rnInternational Food Policy Research Institute, Washington, DC 20006;

    rnEawag, Swiss Federal Institute of Aquatic Science and Technology, Duebendorf, CH8600, Switzerland;

    rnForestry Program, International Institute for Applied Systems Analysis, A-2361 Laxenburg, Austria;

    rnInternational Livestock Research Institute, P.O. Box 30709, Nairobi, Kenya;

    rnAlberta Water Research Institute, Edmonton, AL, T5J 3S4, Canada;

    rnEawag, Swiss Federal Institute of Aquatic Science and Technology, Duebendorf, CH8600, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    global nitrogen cycle; malnutrition; nitrogen scarcity; soil fertility;

    机译:全球氮循环;营养不良氮缺乏土壤肥力;
  • 入库时间 2022-08-18 00:41:22

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