Abstract
The assessment of the possibility of using incinerated municipal waste, which is classified as non-hazardous, is a priority of the European zero waste strategy. The aim of this work was to identify the properties of slag and ash to develop a simple, targeted way of using post-process waste. The material was analyzed by microscopic methods in terms of composition and internal structure. Gas and water permeability tests were carried out. Slag and ash texture was obtained using densimetric methods. BCR sequential extraction was carried out to assess the impacts of the waste on the water and soil environment. It was shown that individual fractions were characterized by different compositions and pore contents. The increase in the waste layer density resulted in porosity reduction of the slag and post-process ash, which had a significant impact on permeability. The increase in density index from 0.92 to 0.98 resulted in reduction of the filtration coefficient by two orders of magnitude. The obtained results showed that the division into fractions is important for prospective applications of incinerated municipal waste. With very low permeability and negligible leachability of heavy metals, the characteristics of slag and ash predispose them to support the needs of specialized hydrotechnical construction.
Funder
Ministry of Science and Higher Education in Poland
Subject
Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction
Reference29 articles.
1. Problematyka wykorzystania odpadów typu żużle ze spalarni śmieci komunalnych do produkcji betonów;Kostrzewski;Przegląd. Bud.,2017
2. Synergizing environmental, social, and economic sustainability factors for refuse derived fuel use in cement industry: A case study in Espirito Santo, Brazil;Chang;J. Environ. Manag.,2021
3. Musiał, M., and Pękala, A. (2022). Functioning of Heat Accumulating Composites of Carbon Recyclate and Phase Change Material. Materials, 15.
4. Synthesis of geopolymers derived from fly ash with an addition of perlite;Baran;J. Clean. Prod.,2021
5. Fly ash-based geopolymers with refractoriness properties;Zabierowski;Clean Technol. Environ. Policy,2022
Cited by
3 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