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Assessing the sustainability of small wastewater treatment systems: A composite indicator approach

机译:评估小型废水处理系统的可持续性:综合指标方法

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The assessment of the sustainability of wastewater treatment (WWT) systems has gained interest in recent years. However, most previous studies have focused on environmental and/or economic dimensions ignoring social aspects. Moreover, they tend to be based on sets of indicators rather than providing a holistic assessment. To overcome this limitation, this paper proposes an innovative methodology to assess the sustainability of WWT systems based on the development of a composite indicator embracing economic, environmental and social issues. Subsequently, the global sustainability of seven WWT technologies for secondary treatment in small communities is compared. The joint application of the analytical hierarchical process (AHP) to assign weights to each indicator allows the incorporation of the preferences of experts. Initially, the global sustainability of the WWT technologies evaluated is quite similar. However, a scenario analysis illustrates that constructed wetlands technology is the most sustainable in five out of the seven scenarios evaluated. Moreover, extended aeration and rotating biological contactors are identified as the technologies with the lowest variability in their sustainability. Hence, in an uncertain context they might be considered the preferred options. The proposed approach contributes to ease of interpretation of a complex problem such as the selection of the most sustainable WWT alternative.
机译:近年来,对废水处理(WWT)系统可持续性的评估引起了人们的兴趣。但是,大多数先前的研究都集中在忽略社会方面的环境和/或经济方面。而且,它们倾向于基于一组指标而不是提供整体评估。为了克服这一局限性,本文提出了一种创新的方法,可以基于包含经济,环境和社会问题的综合指标的发展来评估WWT系统的可持续性。随后,比较了在小社区中用于二次治疗的七种WWT技术的全球可持续性。联合应用层次分析法(AHP)为每个指标分配权重,可以纳入专家的偏好。最初,所评估的WWT技术的全球可持续性非常相似。但是,情景分析表明,在评估的七个情景中,有五个在人工湿地技术中最为可持续。此外,扩展曝气和旋转生物接触器被认为是其可持续性变化最小的技术。因此,在不确定的情况下,它们可能被视为首选方案。提议的方法有助于简化复杂问题的解释,例如选择最可持续的WWT替代方案。

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