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Assessing the sustainability of urban eco-systems through Emergy-based circular economy indicators

机译:通过基于能值的循环经济指标评估城市生态系统的可持续性

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摘要

Circular Economy (CE) concepts and tools are getting increasing attention with regard to their implementation in agricultural, urban and industrial sectors towards innovative business models to optimize resource use, process performances and development policies. However, conventional biophysical and economic indicators hardly fit CE characteristics. Life cycle assessment, footprint and economic cost-benefit indicators, do not fully capture the specificity of a closed loop CE framework, characterized by feedbacks and resource use minimization and quality assessment Commonly used mono-dimensional indicators seem unable to successfully relate the process performance and the use of ecosystem services and natural capital, in that they do not assess the environmental quality and sustainability (renewability, fit to use, recycle potential) of resources and the complexity of interaction between agro/industrial/urban environments and socioeconomic systems, and translate into an incomplete and inadequate picture, far from an effective CE perspective.In this study, Emergy Accounting method (EMA) is used to design an improved approach to CE systemic aspects, focusing on the importance of new indicators capable of capturing both resource generation (upstream), product (downstream) and systems dimensions.This conceptual scheme is built around the case study of the City of Napoli's economy (Campania region, Southern Italy) considering the surrounding agro-industrial area with its smaller urban settlements. In order to design a reasonable and reliable CE framework, a number of already existing and innovative processes is analyzed and discussed, through a bottom-up procedure capable to account for CE development options based on the recovery of locally available and still usable resources (i.e., conversion of waste cooking oil into biodiesel, conversion of slaughterhouse residues to power and chemicals, recovery and conversion of agro-waste residues, amongst others). The result highlighted that EMA was capable to keep track of the improvement generated by the implemented circularity patterns in terms of reduced total emergy of the system. Moreover, EMA indicators suggested that, in any case, the CE business framework should be intended as a transitional strategy towards more feasible paradigms.
机译:循环经济(CE)的概念和工具在农业,城市和工业部门中的实施越来越受到人们的关注,他们朝着创新的业务模型优化资源利用,过程绩效和发展政策的方向发展。但是,常规的生物物理和经济指标几乎不符合CE特性。生命周期评估,足迹和经济成本效益指标并未完全体现出闭环CE框架的特殊性,其特点是反馈和资源使用最小化以及质量评估。常用的一维指标似乎无法成功地关联过程性能和生态系统服务和自然资本的使用,因为它们不评估资源的环境质量和可持续性(可再生性,适合使用,可循环利用潜力)以及农业/工业/城市环境与社会经济系统之间相互作用的复杂性,从有效的CE角度来看,它是一个不完整和不足的图景。在本研究中,使用能效核算方法(EMA)来设计一种针对CE系统方面的改进方法,重点是能够同时捕获两种资源产生的新指​​标的重要性(上游),产品(下游)和系统尺寸。此概念方案围绕t他以那不勒斯市(意大利南部坎帕尼亚地区)的经济为例,研究了周边农业工业区及其较小的城市居民区。为了设计合理和可靠的CE框架,通过自下而上的过程对许多现有的创新过程进行了分析和讨论,该过程能够根据本地可用和仍可用资源的回收来说明CE开发方案。 ,将厨用废油转化为生物柴油,将屠宰场残留物转化为电力和化学药品,回收和转化农业废料残留物等)。结果突出表明,EMA能够就减少的系统总能值来跟踪实施的圆度模式所产生的改进。此外,EMA指标建议,无论如何,CE业务框架都应作为朝着更可行的范式过渡的策略。

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