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Nutrient flows following changes in source strengths, land use and climate in an urban catchment, Racksta Trask in Stockholm, Sweden

机译:瑞典斯德哥尔摩Racksta Trask某城市流域的源强,土地利用和气候变化后的养分流

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Managing nutrient flows to urban lakes is one of the main challenges to environmental sustainability in cities. Considering that future urban and climate changes may increase the challenge of handling future eutrophication, prediction of future nutrient loadings to aquatic environments in urban catchments has become increasingly important. Based on a new, innovative, structured Substance Flow Analysis (SFA) approach, where a source model was coupled to a Generalised Watershed Loading Functions (GWLF) model, this study investigated nutrient (nitrogen and phosphorus) delivery from sources to a water recipient for an urban catchment, using the case of Racksta Trask in Stockholm, Sweden, as an example. Potential effects from future changes in atmospheric deposition, vehicle volume and land use and from climate change (temperature and precipitation) were examined by comparing model scenarios in two periods (2000-2009 and 2050-2059). Model results suggested that climate change may have a greater impact on nitrogen loading to Racksta Trask lake than increasing vehicle volume and land use change. In addition, the results suggested that nitrogen loading to the lake may increase taking into account all changes examined, despite the expected decrease in background atmospheric deposition of nitrogen. In contrast, a marginal impact was found for phosphorus loading to the lake under all scenarios examined, resulting in only a slight increase in the combined scenario. From a nutrient pathways perspective, the results suggested that major pathways of nutrient loadings to the lake may not be much affected under most future scenarios examined, although groundwater was found to be a potentially sensitive pathway of nitrogen transport in the climate scenario. The model results provided important information for managers who need to plan for future nutrient handling in urban catchments, and the coupled SFA-GWLF model was suggested to be worthy of further testing at other sites and conditions. (C) 2016 Elsevier B.V. All rights reserved.
机译:管理流入城市湖泊的养分流是城市环境可持续性的主要挑战之一。考虑到未来的城市和气候变化可能会增加应对未来富营养化的挑战,因此预测城市集水区水生环境中未来养分含量变得越来越重要。在一种新的,创新的,结构化的物质流分析(SFA)方法的基础上,将源模型与广义分水岭负荷函数(GWLF)模型相结合,本研究调查了营养物(氮和磷)从源头向受水者的传递。以瑞典斯德哥尔摩的Racksta Trask案例为例。通过比较两个时期(2000-2009年和2050-2059年)中的模型情景,研究了未来大气沉积,车辆数量和土地使用变化以及气候变化(温度和降水)的潜在影响。模型结果表明,与增加车辆数量和土地利用变化相比,气候变化可能对Racksta Trask湖的氮负荷影响更大。此外,研究结果表明,尽管预期的本底大气中氮的沉积量会减少,但考虑到所有已检查的变化,湖泊中的氮含量可能会增加。相反,在所考察的所有情况下,对湖中磷的装载量均产生了边际影响,导致综合情况仅略有增加。从营养物途径的角度来看,结果表明,在大多数未来情况下,尽管湖泊中的氮是潜在的敏感氮传输途径,但在大多数未来情况下,养分流向湖泊的主要途径可能不会受到太大影响。该模型结果为需要计划未来城市集水区养分处理的管理人员提供了重要信息,并且建议将SFA-GWLF耦合模型在其他场所和条件下进行进一步测试。 (C)2016 Elsevier B.V.保留所有权利。

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