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Discussion on Sustainable Water Technologies for Peri-Urban Areas of Mexico City: Balancing Urbanization and Environmental Conservation

机译:墨西哥城周边地区可持续水技术的讨论:平衡城市化与环境保护

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Often centralized water supply, sanitation and solid waste services struggle to keep up with the rapid expansion of urban areas. The peri-urban areas are at the forefront of this expansion and it is here where decentralized technologies are increasingly being implemented. The introduction of decentralized technologies allows for the development of new opportunities that enable the recovery and reuse of resources in the form of water, nutrients and energy. This resource-oriented management of water, nutrients and energy requires a sustainable system aimed at low resource use and high recovery and reuse rates. Instead of investigating each sector separately, as has been traditionally done, this article proposes and discusses a concept that seeks to combine the in- and outflows of the different sectors, reusing water and other liberated resources where possible. This paper shows and demonstrates examples of different types of sustainable technologies that can be implemented in the peri-urban areas of Mexico City [rainwater harvesting, EcoSan and biofiltros (small constructed wetlands), and (vermi-)composting]. An innovative participatory planning method, combining scenario development with a participatory planning workshop with key stakeholders, was applied and resulted in three concept scenarios. Specific technologies were then selected for each concept scenario that the technical feasibility and applicability was assessed. Following this, the resulting resource flows (nutrients, water and energy) were determined and analyzed. The results show that decentralized technologies not only have the potential to deliver adequate water supply, sanitation and solid waste services in peri-urban areas and lessen environmental pollution, but also can recover significant amounts of resources thereby saving costs and providing valuable inputs in, for instance, the agricultural sector. Social acceptance of the technologies and institutional cooperation, however, is key for successful implementation.
机译:集中式供水,卫生和固体废物服务常常难以跟上城市面积的迅速增长。城郊地区处于这种扩张的最前沿,并且在这里越来越多地采用分散技术。分散技术的引入允许开发新的机会,从而能够以水,养分和能源的形式回收和再利用资源。这种以资源为导向的水,养分和能源管理需要一个可持续的系统,以减少资源使用,提高回收率和再利用率为目标。本文不是像传统上那样分别调查每个部门,而是提出并讨论了一个概念,该概念旨在将不同部门的流入和流出结合起来,并在可能的情况下重新利用水和其他释放的资源。本文展示并演示了可在墨西哥城近郊地区实施的不同类型的可持续技术的示例[雨水收集,EcoSan和生物过滤(小型人工湿地)以及(垃圾)堆肥]。应用了一种创新的参与式计划方法,该方法将情景开发与主要利益相关者的参与式计划研讨会相结合,得出了三个概念情景。然后为每个概念方案选择特定技术,以评估技术可行性和适用性。此后,确定并分析了由此产生的资源流(营养,水和能源)。结果表明,权力下放的技术不仅有潜力在城郊地区提供充足的水供应,卫生和固体废物服务,并减轻环境污染,而且还可以回收大量资源,从而节省成本并为例如,农业部门。但是,技术的社会认可和机构合作对于成功实施至关重要。

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