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Within and between-field spatial variation in soil phosphorus in permanent grassland

机译:永久草地土壤磷素的场内和场间空间变化

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Soil phosphorus (P) concentrations above certain critical thresholds are a problem in many areas leading to its transport into surface and ground waters. Site-specific nutrient applications and the development of nutrient management plans for farms would help to optimize nutrient applications, meet crop requirements and take into consideration current soil nutrient status. In Northern Ireland, high concentrations of soil P are common, whereas low concentrations of soil potassium (K) and sulphur (S) have been reported in many silage fields. This study used grid and transect soil sampling to measure within- and between-field spatial variation in soil Olsen-P status across a 50-ha permanent grassland site used for silage production. Soil phosphorus indices ranged from Index 1 to Index 4 within single fields. The spatial patterns of soil P across fields suggested that there was scope for site-specific P fertilizer applications, with variable quantities of P being applied to different fields and within individual fields. Site-specific nutrient management has the potential to reduce excess P applications in some areas and avoid deficiencies in others, thereby minimizing environmental problems and optimizing yield.
机译:在许多地区,土壤磷(P)的浓度超过某些临界阈值是一个问题,导致其向地表水和地下水的迁移。特定地点的养分施用和农场养分管理计划的制定将有助于优化养分施用,满足作物需求并考虑当前土壤养分状况。在北爱尔兰,土壤P的浓度很高,而在许多青贮田中,土壤钾(K)和硫(S)的浓度很低。这项研究使用网格和样带土壤取样来测量跨过50公顷永久性青贮草地用于青贮饲料生产的土壤Olsen-P状况的田间和田间空间变化。在单个田地中,土壤磷指数从指数1到指数4不等。田间土壤磷的空间格局表明,针对特定地点施肥存在一定的空间,不同田地和单个田间施用的磷量不一。特定地点的养分管理有潜力减少某些地区过量的磷肥施用,避免其他地区的磷肥缺乏,从而最大程度地减少环境问题并优化产量。

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