Modeling Cumulative Effects of Nutrient Surpluses in Agriculture: A Dynamic Approach to Material Balance Accounting

Timo Kuosmanen
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引用次数: 24

Abstract

Nutrients such as nitrogen and phosphorus have a dual role as inputs to crop production and as pollutants to water, air, and soil. The nutrient surplus measures are frequently used as indicators of environmental performance or eco-efficiency at micro level of individual farms and at macro levels of regions and countries. However, the static material balance accounting ignores an important dimension of the nutrient cycle: the time. Nutrients accumulate in soil, causing delayed effects and persistent harm to the environment. In this paper we propose a dynamic model of material balance, following the standard model of capital accumulation used in production economics. Using data of agricultural production in Finland in the years 1961–2009, we show that it is possible to estimate the stocks of nitrogen and phosphorus accumulated in the soil using information and data that are readily available. The dynamic model allows us to estimate not only the stocks of nutrients, but also the outflow of nutrients to water and air. Better understanding of flows and stocks of nutrients can provide insights to support managerial and policy decisions.
模拟农业养分过剩的累积效应:物质平衡会计的动态方法
氮和磷等营养物质具有双重作用,既是作物生产的投入,也是水、空气和土壤的污染物。在个别农场的微观层面和区域和国家的宏观层面上,经常使用营养过剩措施作为环境绩效或生态效率的指标。然而,静态物质平衡会计忽略了养分循环的一个重要维度:时间。养分在土壤中积累,造成延迟效应和对环境的持续危害。在本文中,我们根据生产经济学中使用的标准资本积累模型,提出了一个物质平衡的动态模型。利用芬兰1961-2009年的农业生产数据,我们表明可以利用现成的信息和数据来估计土壤中积累的氮和磷的储量。动态模型使我们不仅可以估计营养物质的储量,还可以估计营养物质向水和空气的流出量。更好地了解营养物质的流动和存量可以为支持管理和政策决策提供见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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