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Balancing nitrogen retention ecosystem services and greenhouse gas disservices at the landscape scale

机译:在景观尺度上平衡氮保留生态系统服务和温室气体排放

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摘要

The "water quality maintenance function" of landscape features such as riparian zones has long been recognized as an important ecosystem service. More recently, concerns have emerged about side effects of ecosystem "disservices," especially greenhouse gas production, associated with landscape approaches to agricultural nutrient management. Here we suggest that several decades of landscape scale research provide a strong platform for comprehensive assessment of ecosystem services and disservices associated with this management. Using N2O production disservices associated with nitrogen removal services as an example, we first describe some key concepts and challenges to our ability to connect sources and sinks of nitrogen in the landscape and to comprehensively assess the greenhouse gas implications of landscape nitrogen management. We then present a case study of how information on nitrogen sources and sinks (ponds, riparian zones, low order stream channels) in a landscape can be used as a platform for assessing N2O production and other ecosystem disservices at the landscape scale. While these disservices are highly variable and difficult to quantify, results suggest that factors such as soil and sediment texture, oxygen, and nitrate levels influence fluxes in a systematic way that should allow for the development of assessment and accounting protocols to account for ecosystem services and disservices associated with nitrogen flows in complex landscapes.
机译:沿河带等景观特征的“水质维持功能”长期以来被认为是重要的生态系统服务。最近,人们开始关注与农业营养管理的景观方法相关的生态系统“损害”,尤其是温室气体生产的副作用。在这里,我们建议数十年的景观尺度研究为综合评估与该管理相关的生态系统服务和损害提供一个强大的平台。以与脱氮服务相关的N2O生产障碍为例,我们首先描述一些关键概念和挑战,这些能力和我们连接景观中氮源和汇以及全面评估景观氮管理的温室气体影响的能力。然后,我们提出了一个案例研究,该案例研究如何将景观中氮源和汇(池塘,河岸带,低阶河道)的信息用作评估景观规模上N2O产生和其他生态系统损害的平台。尽管这些损害变化很大且难以量化,但结果表明,土壤和沉积物质地,氧气和硝酸盐水平等因素以系统的方式影响通量,应允许制定评估和核算协议以说明生态系统服务和与复杂景观中氮流相关的危害。

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