Innovative Strategies for Bio-Waste Collection in Major Cities during the COVID-19 Pandemic: A Comprehensive Model for Sustainable Cities—The City of Athens Experience

Anastasios Sepetis, Konstantinos Georgantas, Ioannis Nikolaou
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Abstract

This paper introduces an innovative model for the organization and management of municipal bio-waste collection networks in major cities, particularly relevant in the context of the COVID-19 pandemic. Embracing circular economy principles and sustainable city practices, the proposed model addresses the urgent need for sustainable urban bio-waste management systems. Delving into the dynamic urban landscape, with a focus on the city of Athens, the study highlights the necessity of a robust decision-making methodology, the implementation of resilient processes, and the evaluation of their efficacy, especially during challenging times. The model centers on the effective collection, transportation, and monitoring of bio-waste, with a strategic aim to moderate environmental impacts, limit greenhouse gas emissions, and advance sustainable development goals. Utilizing the Technique for Order of Preference by Similarity to Ideal Solution (TOPSIS) method, this paper thoroughly examines critical components of an innovative bio-waste collection network, including infrastructure, technology, and human resources. By merging best practices from global urban centers and accounting for the unique characteristics of Athens, the model envisions a transition toward a circular economy. Notably, the proposed municipal bio-waste collection network at the source anticipates substantial contributions to achieving Sustainable Development Goals in major cities. The study concludes by showcasing the successful application of these methodologies in the Municipality of Athens, providing tangible evidence of their positive impact.
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COVID-19 大流行期间大城市生物垃圾收集的创新战略:可持续城市的综合模式--雅典市的经验
本文介绍了一种创新模式,用于组织和管理大城市的城市生物废物收集网络,尤其是在 COVID-19 大流行的背景下。该模式采用循环经济原则和可持续城市实践,满足了对可持续城市生物垃圾管理系统的迫切需求。该研究以雅典市为重点,深入探讨了动态的城市景观,强调了稳健的决策方法、弹性流程的实施及其有效性评估的必要性,尤其是在充满挑战的时期。该模型以生物垃圾的有效收集、运输和监测为中心,其战略目标是减缓环境影响、限制温室气体排放并推进可持续发展目标。本文利用 "与理想解决方案相似度排序技术"(TOPSIS)方法,深入研究了创新型生物垃圾收集网络的关键组成部分,包括基础设施、技术和人力资源。通过融合全球城市中心的最佳实践并考虑雅典的独特性,该模型设想了向循环经济的过渡。值得注意的是,拟议的城市生物废物源头收集网络预计将为大城市实现可持续发展目标做出重大贡献。研究最后展示了这些方法在雅典市政府的成功应用,为其积极影响提供了具体证据。
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