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Modeling biomass, nitrogen and water dynamics in rice-wheat rotations

机译:模拟稻麦轮作中的生物量,氮和水动力学

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摘要

Rice-wheat cropping systems occupy between 24 and 26 M ha in Asia. A main feature of RW rotations is the alternation of aerobic and anaerobic soil conditions. This alternation of flooded and non-flooded soil conditions is conducive to N emissions, especially with the current high N rates in RW systems. To design alternative management systems, better understanding of the processes underlying emissions is required. For that purpose, the Rice WhEat Rotation model (RIWER) was developed, on the basis of existing crop, water and soil organic matter models, describing the relevant soil processes under both anaerobic and aerobic conditions. RIWER is evaluated using data from RW experiments in China. Assessment of model performance, on the basis of graphical comparison and goodness-of-fit parameters, showed that RIWER performs well in simulating total aboveground biomass, N uptake of cops and soil inorganic N content. The RIWER modeling framework needs further testing, but offers a promising operational tool to support the design of sustainable RW systems, combining environmentally-friendly production methods and high yields
机译:在亚洲,稻麦种植系统占24至26百万公顷。 RW轮换的主要特征是需氧和厌氧土壤条件的交替。淹水和未淹水土壤条件的这种交替有利于氮的排放,尤其是在目前RW系统中氮含量较高的情况下。为了设计替代管理系统,需要更好地了解排放的基础过程。为此,在现有的作物,水和土壤有机质模型的基础上,开发了水稻乳清轮换模型(RIWER),描述了厌氧和好氧条件下的相关土壤过程。 RIWER使用来自中国RW实验的数据进行评估。在图形比较和拟合优度参数的基础上,对模型性能的评估表明,RIWER在模拟地上总生物量,警察对氮的吸收以及土壤无机氮含量方面表现良好。 RIWER建模框架需要进一步测试,但是提供了一种有前途的操作工具来支持可持续的RW系统的设计,并结合了环保的生产方法和高产量

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