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首页> 外文期刊>Science in China. Series C, Life sciences >Cascading costs: An economic nitrogen cycle
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Cascading costs: An economic nitrogen cycle

机译:级联成本:经济的氮循环

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摘要

The chemical nitrogen cycle is becoming better characterized in terms of fluxes and reservoirs on a variety of scales. Galloway has demonstrated that reactive nitrogen can cascade through multiple ecosystems causing environmental damage at each stage before being denitrified to N_2. We propose to construct a parallel economic nitrogen cascade (ENC) in which economic impacts of nitrogen fluxes can be estimated by the costs associated with each stage of the chemical cascade. Using economic data for the benefits of damage avoided and costs of mitigation in the Chesapeake Bay basin, we have constructed an economic nitrogen cascade for the region. Since a single tonne of nitrogen can cascade through the system, the costs also cascade. Therefore evaluating the benefits of mitigating a tonne of reactive nitrogen released needs to consider the damage avoided in all of the ecosystems through which that tonne would cascade. The analysis reveals that it is most cost effective to remove a tonne of nitrogen coming from combustion since it has the greatest impact on human health and creates cascading damage through the atmospheric, terrestrial, aquatic and coastal ecosystems. We will discuss the implications of this analysis for determining the most cost effective policy option for achieving environmental quality goals.
机译:就各种规模的通量和储层而言,化学氮循环的特征正在变得越来越好。加洛韦证明,活性氮在反硝化为N_2之前,可以在多个生态系统中级联,从而在每个阶段造成环境破坏。我们建议构建一个并行的经济氮级联(ENC),其中可以通过与化学级联的每个阶段相关的成本来估算氮通量的经济影响。利用经济数据来避免切萨皮克湾盆地造成的损害和减轻损失的好处,我们为该地区构建了经济的氮肥梯级。由于一吨氮气可以通过系统级联,因此成本也级联。因此,评估减轻一吨活性氮释放量的益处需要考虑在该吨位将通过的所有生态系统中避免的损害。该分析表明,除去燃烧产生的一吨氮气最经济有效,因为它对人体健康影响最大,并通过大气,陆地,水生和沿海生态系统造成一系列的破坏。我们将讨论此分析对于确定实现环境质量目标的最具成本效益的政策选择的意义。

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