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The role of constructed wetlands in a new circular economy, resource oriented, and ecosystem services paradigm

机译:人工湿地在新的循环经济,资源导向型和生态系统服务范式中的作用

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Wastewater management is included in one of the 17 Sustainable Development Goals (SDGs): SDG 6 is dedicated to water and sanitation and sets out to “ensure availability and sustainable management of water and sanitation for all”. SDG 6 expands the Millennium Development Goals (MDGs) focus on drinking water and basic sanitation to now cover the entire water cycle, including the management of water, wastewater and ecosystem resources. A UN report in 2017 states that likely over 80% of the wastewater worldwide is still discharged without adequate treatment. In several countries the wastewater management is nowadays a norm, but still there are open discussions about the kind of approach to be adopted, i.e. centralisation vs. decentralisation. The choice of the adopted technologies is strictly linked to environmental performances and economical aspects; one of the possible causes for the still enormous amount of untreated wastewater discharged into the environment can be the low “willingness to pay” for this kind of service and therefore a great focus should be given to all the technologies that are able to lower the treatment costs still maintaining reliable and robust performances in the long term. When considering wastewater as a carrier of valuable primary chemicals that can be easily converted to marketable products (fertilisers, bio-plastics, soil conditioners, biofuels, etc.), and as well as a relevant source of “new water” to be used for specific purposes, wastewater and runoff management can be highlighted as one of the most exciting challenges and occasions for a sustainable development in the near future.The paper aims to clarify the future role of CWs in circular economy, resource-oriented, and ecosystem services approaches, which want to respond to sanitation worldwide and the future research needs. We give an overview on how the conventional wastewater treatment scheme (what we call “waste paradigm”) should move towards more sustainable water and biogeochemical cycles following the new resource-oriented, circular economy and ecosystem service views. On this basis, we review the potential application of CWs within this new, and needed, paradigm. Finally, a meta-analysis shows that the scientific community involved in CWs should put more effort in making CWs more suitable for these new tasks.
机译:废水管理包含在17个可持续发展目标之一中:SDG 6致力于水和环境卫生,并着手“确保所有人的水和环境卫生的可用性和可持续管理”。可持续发展目标6扩展了以饮用水和基本卫生为重点的千年发展目标,现已涵盖整个水循环,包括对水,废水和生态系统资源的管理。联合国在2017年的一份报告中指出,全球可能仍有超过80%的废水未经适当处理就被排出。在当今一些国家,废水管理已成为一种规范,但仍在就采用的方法(即集中式与分散式)进行公开讨论。所采用技术的选择与环境绩效和经济方面紧密相关;大量未经处理的废水排放到环境中的可能原因之一是这种服务的“支付意愿”低,因此,应将重点放在所有能够降低处理水平的技术上从长远来看,成本仍然保持可靠且稳定的性能。在考虑废水作为有价值的主要化学物质的载体时,可以很容易地将其转化为可出售的产品(肥料,生物塑料,土壤改良剂,生物燃料等),以及用于生产的相关“新水”来源针对特定目的,废水和径流管理可以作为近期内可持续发展的最令人振奋的挑战和机遇之一加以强调。本文旨在阐明化工厂在循环经济,资源导向型和生态系统服务方法中的未来作用。 ,希望对全世界的卫生设施和未来的研究需求做出回应。我们概述了传统的废水处理方案(我们称为“废物范式”)应如何遵循新的资源导向,循环经济和生态系统服务的观点,朝着更具可持续性的水和生物地球化学循环发展。在此基础上,我们回顾了在这种新的和所需的范式中CW的潜在应用。最后,荟萃分析表明,参与CW的科学界应加大努力,使CW更适合这些新任务。

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