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Phosphorus and Nitrogen in Runoff after Phosphorus- or Nitrogen-based Manure Applications

机译:施用基于磷或氮的肥料后径流中的磷和氮

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Application of beef cattle (Bos taurus) manure based on nitrogen (N) requirements of crops has resulted in elevated concentrations of soil test phosphorus (P) in surface soils, and runoff from this cropland can contribute to eutrophication of surface waters. We conducted a 3-yr field study (2005-2007) on a Lethbridge loam soil cropped to dryland barley (Hordeum vulgare) in southern Alberta, Canada to evaluate the effect of annual and triennial P-based and annual N-based feedlot manure on P and N in runoff. The manure was spring applied and incorporated. There was one unamended control plot. A portable rainfall simulator was used to generate runoff in the spring of each year after recent manure incorporation, and the runoff was analyzed for total P, total dissolved P, total particulate P, dissolved reactive P, total N, total dissolved N, total particulate N, NO3-N, and NH4-N. Annual or triennial P-based application resulted in significantly (p <= 0.05) lower (by 50 to 94%) concentrations or loads of mainly dissolved P fractions in runoff for some years compared with annual N-based application, and this was related to lower rates of annual manure P applied. For example, mean dissolved reactive P concentrations in 2006 and 2007 were significantly lower for the annual P-based (0.12-0.20 mg L-1) than for the annual N-based application (0.24-0.48 mg L-1), and mean values were significantly lower for the triennial P-based (0.06-0.13 mg L-1) than for the annual N-based application. In contrast, other P fractions in runoff were unaffected by annual P-based application. Our findings suggested no environmental benefit of annual P-based application over triennial P-based application with respect to P and N in runoff. Similar concentrations and loads of N fractions in runoff for the P- and N-based applications indicated that shifting to a P-based application would not significantly influence N in runoff.
机译:基于农作物对氮(N)的需求而施用肉牛(Bos taurus)肥料会导致表层土壤中土壤测试磷(P)的浓度升高,而该农田的径流会导致表层水的富营养化。我们对种植在加拿大艾伯塔省南部旱地大麦(Hordeum vulgare)上的莱斯布里奇(Lothbridge)壤土进行了为期3年的田间研究(2005-2007年),以评估年度和三年期基于P和N的肥育肥对土壤的影响。径流中的P和N。肥料是春季施肥并合并的。有一个未经修改的控制图。近期合并粪肥后,每年春季使用便携式降雨模拟器产生径流,并分析径流中的总P,总溶解P,总颗粒P,溶解反应性P,总N,总溶解N,总颗粒N,NO3-N和NH4-N。每年或三年一次基于P的施用与基于N的年度施用相比,导致径流中主要溶解的P组分的浓度或负荷显着降低(p <= 0.05)(降低50%至94%),这与降低了年度施肥率。例如,2006年和2007年的平均溶解态反应性P浓度,每年基于P的施用量(0.12-0.20 mg L-1)明显低于基于N的年度施用量(0.24-0.48 mg L-1),三年一度的基于P的施用量(0.06-0.13 mg L-1)显着低于每年基于N的施用量。相反,径流中的其他P组分不受年度基于P的施用的影响。我们的研究结果表明,就径流中的P和N而言,每年一次的基于P的施用不会比三年期的基于P的施用对环境有益。对于基于P和N的应用,径流中N分数的相似浓度和负荷表明,转移至基于P的应用不会显着影响径流中的N。

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