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Life cycle assessment of point source emissions and infrastructure impacts of four types of urban stormwater systems

机译:四种城市雨水系统点源排放和基础设施影响的生命周期评估

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The implementation, operation and decommissioning of stormwater management systems causes environmental damage, while at the same time reducing pollutant loads in receiving waters by treating stormwater. The focus in research has been either on assessing impacts caused by stormwater infrastructure, or risks associated with stormwater discharges, but rarely have these two sources of environmental impacts been combined to allow a comprehensive environmental evaluation of stormwater management. We assess the environmental sustainability of four different generic stormwater management systems for a catchment of 260ha by a) modelling the flow of pollutants in stormwater, and resulting point source emissions to freshwater, and b) quantifying emissions and resources for all relevant processes associated with the life cycle of the infrastructure. Using life cycle impact assessment, we quantify the resulting environmental impacts and consequent damage to two areas of protection ecosystems (expressed in time-integrated species loss) and natural resource availability (expressed in extra costs for future resource extraction). Our assessment shows that combined stormwater management causes the highest damage to both ecosystems (1.4E-03 species.yr/yr) and resource availability (8.8E+03 USD/yr). Separate systems using only green infrastructure were found to avoid damage to resource availability (-3.7 to -5.2 USD/yr) and cause lower ecosystem damage (1.1-1.3E-03 species.yr/yr). Stormwater discharges contribute significantly to the total ecosystem damage of the different systems (36-88%), and the sustainability of separate systems can be further improved by optimizing the removal efficiency of low-tech elements like surface basins and filter soil. The systems are designed according to engineering standards. Choosing different criteria, e.g. identical flood safety levels, would result in substantial changes of the relative performance of the systems. The findings highlight the importance of including point source emissions into the assessment to allow comparative conclusions and minimisation of environmental damage of stormwater management. (C) 2019 Elsevier Ltd. All rights reserved.
机译:雨水管理系统的实施,运作和退役导致环境损害,同时通过治疗雨水来减少接收水域的污染物荷载。研究的重点是评估雨水基础设施造成的影响,或与雨水排放相关的风险,但很少有这两个环境影响措施已被组合,以允许全面对雨水管理的环境评估。我们评估了四个不同通用雨水管理系统的环境可持续性,为260HA的集水区采用A)模拟雨水中的污染物流动,并导致淡水的点源排放和B)对与之相关的所有相关进程的排放和资源进行量化基础设施的生命周期。使用生命周期的影响评估,我们量化产生的环境影响和随后对两个保护生态系统(以时间综合物种损失表示)和自然资源可用性的影响(以额外的资源提取表达)的影响损害。我们的评估表明,组合的雨水管理导致生态系统(1.4E-03物种。)和资源可用性的最高损害(1.4E-03种。8.8e + 03美元/ yr)。发现仅使用绿色基础设施的单独系统来避免损坏资源可用性(-3.7至-5.2美元/毫秒),并导致生态系统损坏(1.1-1.3e-03种。/ yr)。雨水排放对不同系统的总生态系统损坏有显着贡献(36-88%),通过优化表面盆和过滤土壤的低技术元素的去除效率,可以进一步提高单独系统的可持续性。该系统根据工程标准设计。选择不同的标准,例如相同的洪水安全水平,将导致系统相对性能的重大变化。调查结果突出了包括点源排放的重要性,进入评估,以允许对比较的结论和最小化雨水管理环境损害。 (c)2019 Elsevier Ltd.保留所有权利。

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