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A review of phosphorus and sediment release from Irish tillage soils, the methods used to quantify losses and the current state of mitigation practice

机译:爱尔兰耕作土壤磷和沉积物释放的综述,用于量化损失的方法和减缓实践的现状

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摘要

Throughout the European Union (EU), agricultural soils with high phosphorus (P) status due to surplus fertiliser input have been identifi ed as a landscape pressure impacting on water quality. In Republic of Ireland, approximately 80% of agricultural land is devoted to grass, 11% to roughgrazing, and 9% to arable cereal and crop production. Consequently, the majority of erosion research has focused on quantifying nutrient and sediment losses from grassland. Tillage soils are, however, more susceptible to erosion than grassland soils and, in general, have higher levels of soilP. This paper reviews the current state of research and the regulatory regime relating to diffuse P and sediment loss for tillage soils. It identifi es the key threats to soil quality associated with cultivated soils, and proposes the targeting and remediation of critical source areas for effective mitigation of P losses from tillage soils. A multiscaled approach is recommended, in which catchment and field-scale monitoring is complemented with controlled laboratory and small plot-scalerainfall simulation experiments to identify areas where P loss and soil erosion are at critical levels and may pose a threat to water quality. Catchment scale research will help to link critical source areas of sediment and P loss with hydrological pathways to surface waters in the catchment area. These areas can then be targeted for remediation in the river basin management plans.
机译:在整个欧盟(EU)中,由于肥料过量投入而导致的高磷(P)状态的农业土壤已经被确定为影响水质的景观压力。在爱尔兰共和国,大约80%的农业土地专用于草,11%的用于粗草,而9%的用于耕种谷物和农作物。因此,大多数侵蚀研究都集中在量化草地的养分和沉积物流失上。但是,耕作土壤比草原土壤更容易受到侵蚀,并且土壤P含量通常较高。本文综述了耕作土壤中与扩散磷和泥沙流失有关的研究现状和监管制度。它确定了与耕作土壤有关的土壤质量的主要威胁,并提出了针对和补救关键源区的措施,以有效减轻耕作土壤中磷的损失。建议采用多尺度方法,在该方法中,对流域和田间规模的监测应与受控实验室和小地块规模的降雨模拟实验相辅相成,以识别出磷流失和土壤侵蚀处于临界水平并可能对水质构成威胁的区域。集水规模研究将有助于将沉积物和磷流失的关键源区域与通往集水区域地表水的水文路径联系起来。然后可以在流域管理计划中将这些区域作为修复目标。

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