首页> 外文期刊>Agricultural and Food Science >Finnish trends in phosphorus balances and soil test phosphorus. (Special Issue: The Agri-Environmental Program in Finland: Effects on nutrient loading from agriculture into surface waters in 2000-2006.)
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Finnish trends in phosphorus balances and soil test phosphorus. (Special Issue: The Agri-Environmental Program in Finland: Effects on nutrient loading from agriculture into surface waters in 2000-2006.)

机译:芬兰磷平衡和土壤测磷趋势。 (特刊:芬兰农业环境计划:2000-2006年对农业向地表水的营养负荷的影响。)

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摘要

Soil test phosphorus (P) concentration has a major influence on the dissolved P concentration in runoff from agricultural soils. Thus, trends in soil test P partly determine the development of pollution potential of agricultural activities. We reviewed the changes of soil test P and P balances in Finnish agriculture, and assessed the current setting of P loss potential after two Agri-Environmental Programs. Phosphorus balance of the Finnish agriculture has decreased from +35 kg ha-1 of the 1980's to about +8 kg P ha-1 today. As a consequence, the 50-year upward trend in soil test P concentrations has probably levelled out in the late 1990's, as suggested by sampling of about 1600 fields and by a modelling exercise. For the majority of our agricultural soils, soil test P concentrations are currently at a level at which annual P fertilizer application is unlikely to give measurable yield responses. Soils that benefit from annual P applications are more often found in farms specialized in cereal production, whereas farms specialized in non-cereal plant production and animal production have higher soil test P concentrations. An imbalance in P cycling between plant (feed) and animal production is obvious, and regional imbalances are a result of concentration of animal farms in some parts of the country. A major concern in future will be the fate of manure P in those regions where animal production intensity is further increasing.
机译:土壤测试磷(P)的浓度对农业土壤径流中溶解态P的浓度有重大影响。因此,土壤测试P的趋势部分决定了农业活动污染潜力的发展。我们回顾了芬兰农业中土壤测试磷和磷平衡的变化,并评估了两个农业环境计划后当前磷素损失潜力的状况。芬兰农业的磷平衡已从1980年代的+35千克ha-1降至如今的+8千克P ha-1。结果,通过对大约1600个田地进行采样并通过模拟实验表明,土壤测试P浓度的50年上升趋势可能已在1990年代后期趋于平稳。对于我们大多数的农业土壤,目前土壤测试中的P浓度处于每年施用P肥料不太可能产生可测量的产量响应的水平。从每年施用磷的作物中受益的土壤更多见于专门从事谷物生产的农场,而专门用于非谷物植物生产和动物生产的农场的土壤试验磷含量更高。植物(饲料)和动物生产之间磷循环的失衡是很明显的,区域失衡是该国某些地区动物农场集中的结果。未来的主要关注点将是动物生产强度进一步提高的那些地区的粪便P的命运。

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