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Holistic analysis of urban water systems in the Greater Cincinnati region: (2) resource use profiles by emergy accounting approach

机译:大辛辛那提地区城市水系统的整体分析:(2)资源利用型材通过智能会计方法

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摘要

With increasing populations, mounting environmental pressures and aging infrastructure, urban water and wastewater utilities have to make investment decisions limited by both economic and environmental constraints. The challenges facing urban water systems can no longer be sustainably solved by traditional siloed water management approaches. A central premise of contemporary urban water management paradigms is that in order for urban water systems to be more sustainable and economical, an improvement in resource use efficiency at system level must be achieved. This study provides a quantification of the total resource use of a typical urban water system exemplified in Greater Cincinnati region from raw water extraction for drinking water to wastewater treatment and discharge, providing a better understanding of resource expenditure distributions within the system and a necessary benchmark to which future system improvements can be compared. The emergy methodology was used so that the total environmental work required to produce disparate system inputs could be expressed using a common unit. The results were compared to the concurring life cycle assessment (LCA) and life cycle costing (LCC) results of the same system. Emergy results highlight drinking water treatment and drinking water distribution as two resource-intensive stages, with energy for pumping and chemicals for conditioning representing the greatest inputs to the former and energy for pumping and metals for piping representing the greatest inputs to the latter. For wastewater collection and treatment stages, aeration and sludge handling were identified as the highest emergy unit processes, mostly due to energy use. Comparison with LCA results substantiate the environmental concerns associated with energy use in the drinking water treatment and distribution stages but indicate that environmental burdens associated with infrastructure are more dependent upon upstream resource use rather than downstream environmental impact. Results from emergy, LCA and LCC point towards aeration and sludge handling as two unit processes on the wastewater side that are particularly costly and environmentally impactful. Results in total are used to suggest alternative strategies that can alleviate identified environmental burdens and economic costs. Keywords: Emergy, Integrated urban water management, Sustainability, System analysis, Resource efficiency
机译:随着人群的增加,安装环境压力和老化基础设施,城市水和废水公用事业公司必须制定经济和环境限制的投资决策。城市水系统面临的挑战不再通过传统的淤泥水管理方法可持续解决。当代城市水管理范式的中央前提是,为了使城市水系统更加可持续和经济,必须实现系统级资源利用效率的提高。本研究规定了大辛辛那提区域中典型的城市水系统的总资源利用,从原水提取到饮用水以饮用水处理和放电,提供更好地了解系统内的资源支出分布和必要的基准可以比较未来的系统改进。使用可闻方法,以便使用公共单元表示产生不同系统输入所需的环境工作。将结果与同一系统的同次生命周期评估(LCA)和生命周期成本(LCC)结果进行比较。 Imergy结果突出了饮用水处理和饮用水分配作为两个资源密集型阶段,为泵送和化学品的能量,用于调节前者的最大输入和用于泵送和金属的能量,用于管道代表后者最大的输入。对于废水收集和处理阶段,曝气和污泥处理被识别为最高的可闻单位过程,主要是由于能源使用。与LCA的比较结果证实了与饮用水处理和分配阶段中的能源使用相关的环境问题,但表明与基础设施相关的环境负担更依赖上游资源使用而不是下游环境影响。作为曝气和污泥的结果,作为污水侧的两个单元工艺,融合和污泥的结果是特别昂贵和环境影响的影响。总共用于建议可以减轻确定的环境负担和经济成本的替代策略。关键词:闻名,综合城市水管理,可持续性,系统分析,资源效率

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