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  2. ROMANIAN JOURNAL OF ECOLOGY & ENVIRONMENTAL CHEMISTRY
  3. RJEEC, Volume 2, no. 2, 2020
  4. Municipal solid waste (MSW) - competitive raw materials for combustible materials obtaining
 
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Municipal solid waste (MSW) - competitive raw materials for combustible materials obtaining

ISSN
2668-8530
Date issued
2020-10
Author(s)
Serbanescu, Agnes  
National Research and Development Institute for Industrial Ecology, ECOIND  
Barbu, Mona  
National Research and Development Institute for Industrial Ecology, ECOIND  
Cristea, Ionut Nicolae  
National Research and Development Institute for Industrial Ecology, ECOIND  
Kim, Lidia  
National Research and Development Institute for Industrial Ecology, ECOIND  
Catrina, Gina Alina  
National Research and Development Institute for Industrial Ecology, ECOIND  
Cernica, Georgiana  
National Research and Development Institute for Industrial Ecology, ECOIND  
Nicolescu, Ileana  
National Research and Development Institute for Industrial Ecology, ECOIND  
DOI
10.21698/rjeec.2020.221
Abstract
Waste-to-energy projects can be classified as a complementary technology for energy recovery from nonrecyclable municipal waste fractions and should therefore not compete with measures to reduce, reuse and recycle materials. The article presents the characterization of some treated municipal solid wastes as competitive raw materials for combustible materials obtaining. Samples with lignocellulosic and polymeric composition were analyzed, namely 3 samples of SRFs (solid recovered fuels) used as secondary raw material in cement plants, SRF1, SRF2, SRF3; a sample of RDF, consisting of household waste; a sample of fluff (homogeneous mixture of non-hazardous waste - selected, mechanically treated and dried) used as a secondary raw material in cement plants; 4 samples of municipal solid waste, fractions smaller than 100 mm, after a bio-drying process, with composition: paper and cardboard (70-80%), wood (6-15%), plastic (6-10%), glass and metal (3-14%), MBU1, MBU2, MBU3, MBU4. The waste samples were characterized in terms of technical and elementary characteristics and the ash (obtained by the sample incineration) behavior in the combustion process. The mineral matter was investigated by the X-ray fluorescence analytical technique using the Rigaku CG X-ray Spectrofluorimeter. The analysis of the indices used for the slagging and deposit formation risks evaluation shows that the analysed samples present an obvious risk of melt formation and deposits, due to a high content of base oxides and silicon oxide.
Subjects

Ash

Energy

Fouling index

MSW

Slagging index

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Proceedings paper, Article
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