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首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Meta-analysis of strategies to control nitrate leaching in irrigated agricultural systems and their effects on crop yield.
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Meta-analysis of strategies to control nitrate leaching in irrigated agricultural systems and their effects on crop yield.

机译:对灌溉农业系统中控制硝酸盐淋失的策略进行荟萃分析,及其对作物产量的影响。

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摘要

Nitrate leaching (NL) is an important N loss process in irrigated agriculture that imposes a cost on the farmer and the environment. A meta-analysis of published experimental results from agricultural irrigated systems was conducted to identify those strategies that have proven effective at reducing NL and to quantify the scale of reduction that can be achieved. Forty-four scientific articles were identified which investigated four main strategies (water and fertilizer management, use of cover crops and fertilizer technology) creating a database with 279 observations on NL and 166 on crop yield. Management practices that adjust water application to crop needs reduced NL by a mean of 80% without a reduction in crop yield. Improved fertilizer management reduced NL by 40%, and the best relationship between yield and NL was obtained when applying the recommended fertilizer rate. Replacing a fallow with a non-legume cover crop reduced NL by 50% while using a legume did not have any effect on NL. Improved fertilizer technology also decreased NL but was the least effective of the selected strategies. The risk of nitrate leaching from irrigated systems is high, but optimum management practices may mitigate this risk and maintain crop yields while enhancing environmental sustainability.
机译:硝态氮淋失(NL)是灌溉农业中重要的氮素流失过程,给农民和环境带来了损失。对来自农业灌溉系统的已发表实验结果进行了荟萃分析,以鉴定那些已证明可有效减少NL的策略并量化可实现的减少规模。确定了四十四篇科学文章,对四项主要策略(水和肥料管理,覆盖作物的使用和肥料技术)进行了调查,从而创建了一个数据库,其中包含279个关于NL的观测值和166个关于作物产量的观测值。调整水量以适应农作物需求的管理实践可将NL平均降低80%,而不会降低农作物的产量。改良的肥料管理可以将NL降低40%,而当使用推荐的肥料用量时,产量与NL之间具有最佳关系。用非豆科植物覆盖的农作物代替休闲草可将NL降低50%,而使用豆科植物对NL则没有任何影响。改良的肥料技术也降低了NL,但在所选策略中效果最低。灌溉系统中硝酸盐浸出的风险很高,但是最佳管理方法可以减轻这种风险并保持作物单产,同时提高环境的可持续性。

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