首页> 外文期刊>Journal of Environmental Quality >Nitrogen- vs. Phosphorus-based Dairy Manure Applications to Field Crops: Nitrate and Phosphorus Leaching and Soil Phosphorus Accumulation
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Nitrogen- vs. Phosphorus-based Dairy Manure Applications to Field Crops: Nitrate and Phosphorus Leaching and Soil Phosphorus Accumulation

机译:基于氮与磷的奶牛粪肥在田间作物上的应用:硝酸盐和磷的淋溶与土壤磷的积累

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Management of animal manures to provide nutrients for crop growth has generally been based on crop N needs. However, because manures have a lower N/P ratio than most harvested crops, N-based manure management often oversupplies the crop-soil system with P, which can be lost into the environment and contribute to eutrophication of water bodies. We examined the effects of N- vs. P-based manure applications on N and P uptake by alfalfa (Medicago sativa L.), corn (Zea mays L.) for silage, and orchardgrass (Dactylis glomerata L.), leaching below the root zone, and accumulation of P in soil. Treatments included N- and P-based manure rates, with no nutrient input controls and inorganically fertilized plots for comparison. Nitrate concentrations in leachate from inorganic fertilizer or manure treatments averaged 14 mg NO(3)-N L(-1), and did not differ by nutrient treatment. Average annual total P losses in leachate did not exceed 1 kg ha(-1). In the top 5 cm of soil in plots receiving the N-based manure treatment, soil test P increased by 47%, from 85 to 125 mg kg(-1). Nitrogen- and P-based manure applications did not differ in ability to supply nutrients for crop growth, or in losses of nitrate and total P in leachate. However, the N-based manure led to significantly greater accumulation of soil test P in the surface 5 cm of soil. Surface soil P accumulation has implications for increased risk of off-field P movement.
机译:动物粪便的管理为作物的生长提供营养通常是基于作物的氮需求。但是,由于粪肥的N / P比值比大多数收获的农作物低,因此,基于氮的粪肥管理经常给作物-土壤系统供应过量的P,P可能会损失到环境中并导致水体富营养化。我们研究了氮肥和磷肥对苜蓿,玉米(Zea mays L.)青贮饲料和果园(Dactylis glomerata L.)浸出的紫花苜蓿和玉米的氮和磷吸收的影响。根区和土壤中磷的积累。处理方法包括基于N和P的肥料施用率,无营养输入控制,并进行无机施肥比较。来自无机肥料或粪肥处理的渗滤液中的硝酸盐浓度平均为14 mg NO(3)-N L(-1),并且根据养分处理没有差异。渗滤液中的年平均总磷损失不超过1 kg ha(-1)。在接受基于N的粪肥处理的地块中,土壤的前5 cm处,土壤测试P从85 mg kg-1增加到125 mg kg(-1),增加了47%。基于氮和磷的肥料施用在为作物生长提供营养的能力方面或在渗滤液中硝酸盐和总磷的损失方面没有差异。但是,基于N的肥料导致土壤测试P在5 cm的土壤表面上明显更多的积累。表层土壤P的积累对场外P运动的风险增加有影响。

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