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首页> 外文期刊>The Science of the Total Environment >Lateral spread affects nitrogen leaching from urine patches
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Lateral spread affects nitrogen leaching from urine patches

机译:横向扩散影响尿斑中氮的浸出

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Nitrate leaching from urine deposited by grazing animals is a critical constraint for sustainable dairy farming in New Zealand. While considerable progress has been made to understand the fate of nitrogen (N) under urine patches, little consideration has been given to the spread of urinary N beyond the wetted area. In this study, we modelled the lateral spread of nitrogen from the wetted area of a urine patch to the soil outside the patch using a combination of two process-based models (HYDRUS and APSIM). The simulations provided insights on the extent and temporal pattern for the redistribution of N in the soil following a urine deposition and enabled investigating the effect of lateral spread of urinary N on plant growth and N leaching. The APSIM simulation, using an implementation of a dispersion-diffusion function, was tested against experimental data from a field experiment conducted in spring on a well-drained soil. Depending on the geometry considered for the dispersion-diffusion function (plate or cylindrical) the area-averaged N leaching decreased by 8 and 37% compared with simulations without lateral N spread; this was due to additional N uptake from pasture on the edge area. A sensitivity analysis showed that area-averaged pasture growth was not greatly affected by the value of the dispersion factor used in the model, whereas N leaching was very sensitive. Thus, the need to account for the edge effect may depend on the objective of the simulations. The modelling results also showed that considering lateral spread of urinary N was sufficient to describe the experimental data, but plant root uptake across urine patch zones may still be relevant in other conditions. Although further work is needed for improving accuracy, the simulated and experimental results demonstrate that accounting for the edge effect is important for determining N leaching from urine-affected areas.
机译:从放牧动物沉积的尿液中渗出的硝酸盐是新西兰可持续奶牛养殖的关键限制。尽管在了解尿片下的氮(N)的命运方面已取得了很大进展,但很少考虑尿N在湿区以外的扩散。在这项研究中,我们使用两个基于过程的模型(HYDRUS和APSIM)的组合,模拟了氮从尿布的湿润区域向布尿液外部土壤的横向扩散。该模拟为尿液沉积后土壤中氮的重新分布的程度和时间模式提供了见识,并能够研究尿液氮横向扩散对植物生长和氮淋溶的影响。使用分散扩散函数的实现对APSIM模拟进行了测试,并与春季在排水良好的土壤上进行的野外试验的实验数据进行了对比。与没有横向N扩散的模拟相比,根据考虑用于扩散扩散函数(板或圆柱)的几何形状,面积平均N浸出减少了8%和37%。这是由于边缘区域的牧场额外吸收了氮。敏感性分析表明,该模型中使用的分散因子的值对牧场平均面积的增长影响不大,而氮淋溶非常敏感。因此,考虑边缘效应的需要可以取决于模拟的目的。模拟结果还表明,考虑尿N的横向扩散足以描述实验数据,但在其他条件下,跨尿斑区域吸收植物根系可能仍然有意义。尽管需要进一步的工作来提高准确性,但模拟和实验结果表明,考虑边缘效应对于确定从受尿液影响的区域中氮的浸出非常重要。

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