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The effect of P fertiliser application strategy and soil P sorption properties on 'incidental' P fertiliser characteristics using laboratory techniques and long term Bayesian risk modelling

机译:P肥料应用策略及土壤P吸收性能对实验室技术和长期贝叶斯风险建模的“偶然”P肥料特性的影响

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The occurrence of rainfall and runoff soon after phosphorus (P) fertiliser application (fertiliser 'incidental' effect) can increase P exports. In this paper we firstly use a laboratory study to examine the effect of soil properties on the duration ofthe incidental fertiliser effect. Secondly we examine the effect of P fertiliser strategy - single v split applications - on long-term runoff P risk using laboratory and catchment runoff data in a Bayesian risk model. We found that soil P buffering characteristics have a large effect on the duration of incidental fertiliser effect. Despite the disproportionately large effect of a single application on runoff P concentration compared to split applications, the increased likelihood of runoff and fertiliser application coinciding when fertiliser applications were split, mean that the overall risk of runoff P loss is increased with split fertiliser applications. Farmers should therefore apply P fertiliser in a single annual application and apply this whenrisk of runoff is low, the importance of this strategy being greatest for farmers on soils with moderate to low P buffering.
机译:磷(P)肥料施用(肥料偶然的“效应”后不久发生降雨和径流)可以增加P出口。在本文中,我们首先使用实验室研究来检查土壤性质对偶然肥效应持续时间的影响。其次,我们研究了P肥料策略 - 单v分流应用的效果 - 在贝叶斯风险模型中使用实验室和集水径流数据的长期径流P风险。我们发现土壤P缓冲特性对偶然肥料效应的持续时间具有很大的影响。尽管单一应用对径流P浓度的效果不成比例地进行了较大的效果,但与分裂应用相比,径流和肥料应用程序的增加时,当施肥应用程序分裂时重合,意味着径流P损失的总体风险增加了分裂肥料应用。因此,农民应在一次年度应用中应用P肥料,并应用这种径流的时间较低,这一战略对土壤中的农民最大的重视,具有中度至低于低的P缓解。

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