Abstract
Population growth, consumerism and linear (take-make-dispose) economy models have been piling up waste for decades. The construction industry is also based primarily on linear economy models, but the good news is that most of the waste can be re-used or recycled. So far, numerous models for managing construction and demolition waste in a sustainable way have been developed, but only a few models have included circular economy approaches. The main objective of this study is to propose an integrated framework for the sustainability assessment of CDW management. Apart from the economic, environmental and social aspects of sustainability, this model also includes circular economy principles. The proposed framework is based on the integration of existing methods: bottom-up materials stock approximation; cost–benefit analysis for criteria calculation; and scenario and multi-criteria decision-making analysis for sustainability. It is suggested that the European average recovery rates should be used for future scenario development. With higher re-use and recycling rates, the potential for the circularity of the recovered waste grows. In an effort to increase circularity in the region, particular attention was devoted to customize the framework and examine its potential for use in the Western Balkan countries. The framework may also be useful in countries with immature construction and demolition waste management.
Subject
Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development
Reference69 articles.
1. A diagnosis of construction and demolition waste generation and recovery practice in the European Union
2. Construction and demolition waste generation and properties of recycled aggregate concrete: A global perspective
3. Generation of Waste by Waste Category, Hazardousness and NACE Rev.2 Activityhttps://ec.europa.eu/eurostat/databrowser/view/ENV_WASGEN$DEFAULTVIEW/default/table
4. Construction Waste: Quantification and Source Evaluation
5. Manual on Waste Statistics. A Handbook for Data Collection on Waste Generation and Treatment,2013
Cited by
25 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献