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Case study of developing an integrated water and nitrogen scheme for agricultural systems on the North China Plain

机译:开发华北平原农业系统水氮综合计划的案例研究

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摘要

Appropriate irrigation and nitrogen fertilization, along with suitable crop management strategies, are essential prerequisites for optimum yields in agricultural systems. This research attempts to provide a scientific basis for sustainable agricultural production management for the North China Plain and other semi-arid regions. Based on a series of 72 treatments over 2003-2008, an optimized water and nitrogen scheme for winter wheat/summer maize cropping system was developed. Integrated systems incorporating 120 mm of water with 80 kg N ha(-1) N fertilizer were used to simulate winter wheat yields in Hebei and 120 mm of water with 120 kg N ha(-1) were used to simulate winter wheat yields in Shandong and Henan provinces in 2000-2007. Similarly, integrated treatments of 40 kg N ha(-1) N fertilizer were used to simulate summer maize yields in Hebei, and 80 kg N ha(-1) was used to simulate summer maize yields in Shandong and Henan provinces in 2000-2007. Under the optimized scheme, 341.74 10(7) mm ha(-1) of water and 575.79 10(4) Mg of urea fertilizer could be saved per year under the wheat/ maize rotation system. Despite slight drops in the yields of wheat and maize in some areas, water and fertilizer saving has tremendous long-term eco-environmental benefits.
机译:适当的灌溉和氮肥,以及适当的作物管理策略,是实现农业系统最佳产量的必要先决条件。该研究试图为华北平原和其他半干旱地区的可持续农业生产管理提供科学依据。基于2003-2008年的72种处理方案,开发了冬小麦/夏玉米种植系统的优化水和氮方案。使用120 mm水和80 kg N ha(-1)氮肥的集成系统模拟河北的冬小麦单产,使用120 mm水和120 kg N ha(-1)的水模拟山东的小麦单产。和2000-2007年的河南省。同样,在2000-2007年,采用40 kg N ha(-1)N肥料的综合处理来模拟河北的夏季玉米产量,并使用80 kg N ha(-1)来模拟山东和河南省的夏季玉米产量。 。在优化方案下,小麦/玉米轮作系统每年可节水341.74 10(7)mm ha(-1)和575.79 10(4)Mg尿素肥料。尽管某些地区小麦和玉米的产量略有下降,但节水和施肥可带来巨大的长期生态环境效益。

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