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Analysis of effects of an objective function on environmental and economic performance of a water network system using life cycle assessment and life cycle costing methods

机译:使用生命周期评估和生命周期成本法分析目标函数对水网络系统的环境和经济绩效的影响

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Water network synthesis has been used to conserve water resources and reduce economic costs. In this study, all contributors to environmental burdens and economic costs of water network systems were estimated to analyze the effects of objective functions on their environmental and economic performances. A total freshwater flowrate-minimized water network system (FWNS) and a total freshwater cost-minimized water network system (CWNS) were independently synthesized. Life cycle assessment and life cycle costing were performed to evaluate and compare the environmental and economic performances of the two water network systems. The CWNS was more environmentally and economically friendly than the FWNS because the CWNS was synthesized by minimizing the consumption of deionized water, which has higher unit cost and unit environmental effect scores than industrial water. Also this study demonstrated that the consumption rates of freshwater and electricity, as well as their unit environmental effect scores, should be used as principal contributors and weighting factors for the formulation of an objective function to generate the most environmentally friendly water network system, while the costs of piping and freshwater, as well as their unit costs, should be included to generate the most economically friendly system.
机译:水网综合已用于节约水资源并降低经济成本。在这项研究中,估计了水网系统的环境负担和经济成本的所有贡献者,以分析目标函数对其环境和经济绩效的影响。独立地合成了总淡水流量最小化水网络系统(FWNS)和总淡水成本最小化水网络系统(CWNS)。进行了生命周期评估和生命周期成本估算,以评估和比较两个供水网络系统的环境和经济绩效。 CWNS比FWNS在环境和经济上更加友好,因为CWNS是通过使去离子水的消耗最小化来合成的,与工业用水相比,去离子水的单位成本和单位环境效益得分更高。这项研究还表明,淡水和电力的消耗率及其单位环境影响得分,应作为主要目标和权重因子,用于制定目标函数以生成最环保的水网络系统,而为了产生最经济的系统,应包括管道和淡水的成本及其单位成本。

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