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Integrating principles of nitrogen dynamics in a method to estimate leachable nitrogen under agricultural systems

机译:结合氮动力学原理估算农业系统下可浸出氮的方法

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Surplus nitrogen (N) in ground and surface water is of concern in intensive agricultural regions. Surplus N leaches during lengthy periods where annual crop systems are used in temperate regions. This paper presents a model to estimate the surplus N available for leaching to ground water beneath agricultural systems and applies the model to watersheds in an intensive maize and soybean production system. The model utilizes commonly available georeferenced data on soils, crops, and livestock, making it applicable to watersheds in many regions. The model links stocks of N in soil, crops, livestock, fertilizer and the atmosphere. Nitrogen flow centers on exchange between the soil N stocks. Nitrogen mineralization rates are defined for three soil organic matter pools, crop residue, and manure based on carbon:N ratios. Nitrogen exports from the system are harvested crops, livestock and losses to the atmosphere. Application of the model in 26 Iowa watersheds finds surpluses of 18 to 43 kg-N/ha. Surpluses exceeded measured annual nitrate-N loads in regional streams by amounts equivalent to denitrification rates in groundwater. Deficits in soil N were sufficiently small to suggest that the system is in equilibrium with soils of the region.
机译:在集约化农业地区,地下水和地表水中的过剩氮(N)是令人关注的问题。在温带地区使用一年生作物系统的漫长时期内,氮的淋溶程度更高。本文提出了一个模型,用于估算可用于向农业系统下方的地下水淋溶的剩余氮,并将该模型应用于集约型玉米和大豆生产系统中的分水岭。该模型利用了有关土壤,农作物和牲畜的通用地理参考数据,使其适用于许多地区的分水岭。该模型将土壤,农作物,牲畜,肥料和大气中的氮素库存联系起来。氮流集中在土壤氮素库之间的交换上。根据碳氮比确定了三个土壤有机质库,作物残渣和肥料的氮矿化率。该系统的氮出口是收获的农作物,牲畜和对大气的损失。该模型在爱荷华州的26个流域中的应用发现,剩余量为18至43 kg-N / ha。盈余超过了区域溪流中测得的年度硝酸盐氮负荷,其量等于地下水中的反硝化率。土壤氮的亏缺足够小,表明该系统与该地区的土壤处于平衡状态。

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