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Loose One-Way Coupling of Land Use and Nutrient Emission Models to Assess Effects of Regional Development Scenarios on Catchment Water Quality

机译:土地利用和营养发射模型的宽松单向耦合,评估区域发展情景对集水质量的影响

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摘要

Nutrient enrichment and eutrophication can increase when urbanisation and intensification of agriculture production occurs without accompanying mitigation measures to offset impacts from land use transitions. The identification of measures to protect or restore water quality is a challenging exercise, particularly in the context of increasing population and urbanisation. Hence, decision-makers need adequate tools to better understand and evaluate the effects of policy interventions on water management and quality control in urban regions. A model integration method was developed to assess future scenarios of urban development on water quality using land use model Monitoring Land Use/Cover Dynamics and nutrient emission model Source Load Apportionment Model. A case study application investigated how projected changes in urban land use in the most populated region of Ireland, the Greater Dublin Region, impact on water quality. Results for all scenarios indicate increasing losses to water for both phosphorus (18-25%) and nitrogen (9-12%). However, as these scenarios assume that wastewater treatment efficiencies remain static into the future, this study highlights that the magnitude and distribution of investment in urban wastewater collection and treatment will have the greatest impact on changes in future nutrient emissions to water in this urban region. The differences between the development scenarios for diffuse nutrient losses were small in comparison, even though the location of specific land uses varied broadly across scenarios. It was found that the decline of agricultural land cover and replacement with urban development in Dublin region by 2026 as represented by four modelled scenarios resulted in substantial increases in diffuse phosphorus emissions, but only slight changes in diffuse nitrogen emissions. It was shown that the scales of impact from sources of nutrients vary from scenario to scenario and that these should be considered alongside planned mitigation of point sources of nutrient emissions to water. Such information can support physical planners, catchment managers and policy makers to plan accordingly to get the best possible environmental outcomes. The case study application demonstrated that the loose one-way coupling of a land use model and a nutrient emission model can be an effective and inexpensive approach to improve understanding of the effects of urbanisation on water quality and assist in the strategic planning of catchment management and infrastructure investment.
机译:营养富集和富营养化可以增加,当农业生产的城市化和强化时,在不随行减缓措施抵消土地利用过渡的影响。鉴定保护或恢复水质的措施是一个具有挑战性的运动,特别是在增加人口和城市化的背景下。因此,决策者需要足够的工具来更好地了解并评估政策干预对城市地区水管理和质量控制的影响。开发了一种模型集成方法,以利用土地利用模型监测土地使用/覆盖动态和营养发射模型源负荷分配模型来评估城市发展的未来城市发展情景。案例研究申请调查了对爱尔兰最具人口稠密地区的城市土地利用,更大的都柏林地区,对水质的影响。所有情景的结果表明,对磷(18-25%)和氮气(9-12%)的水损失增加。然而,由于这些情景假设废水处理效率仍然存在静态,这项研究突出了城市废水收集和治疗投资的规模和分配将对这座城市地区未来营养排放的变化影响最大。相比之下,漫反射营养损失的发展场景之间的差异较小,尽管特定土地的位置在广泛的情况下广泛变化。有人发现,由于四种建模情景所代表的二聚石地区的农业土地覆盖和替代城市发展的下降导致弥漫性磷排放的大幅增加,但弥漫性氮排放仅为略有变化。结果表明,营养素来源的影响范围因情景而异,而这些影响应该被认为是计划减轻营养排放点的营养排放量。此类信息可以支持物理规划师,集水管理人员和决策者,相应地计划以获得最佳的环境结果。案例研究申请表明,土地使用模型和营养发射模型的松散单向耦合可以是一种有效且廉价的方法,可以提高对城市化对水质影响的理解,协助集水区管理的战略规划基础设施投资。

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