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Gasification of Solid Recovered Fuels with Variable Fractions of Polymeric Materials

Title
Gasification of Solid Recovered Fuels with Variable Fractions of Polymeric Materials
Type
Article in International Scientific Journal
Year
2022-11-01
Authors
Eliseu Monteiro
(Author)
FEUP
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Paulo Brito
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Octávio Alves
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Luís Calado
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Roberta Panizio
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Catarina Nobre
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Margarida Gonçalves
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Journal
Title: EnergiesImported from Authenticus Search for Journal Publications
Vol. 15
Pages: 8139-8139
ISSN: 1996-1073
Publisher: MDPI
Indexing
Other information
Authenticus ID: P-00X-GKN
Abstract (EN): Gasification is a promising thermochemical technology used to convert waste materials into energy with the introduction of low amounts of an oxidant agent, therefore producing an environmental impact that is lower when compared to incineration and landfilling. Moreover, gasification allows a sustainable management of wastes and reduces the use of fossil fuels responsible for the increment of greenhouse gases. This work aimed to perform gasification tests with solid recovered fuels (SRF) containing organic fractions mainly retrieved from construction and demolition wastes to assess the potential for energy conversion. Tests were conducted in a pilot-scale downdraft gasifier (maximum feedstock input of 22 kg/h) at c.a. 800 degrees C, using SRF samples containing different proportions of polymeric wastes ranging between 0 and 20 wt %. Gas and chars obtained as by-products were analysed to evaluate their properties and to establish valid pathways for their valorisation. The addition of polymeric wastes reduced char production but rose both tar and HCl concentrations in the gas. The SRF with 10 wt % of polymeric wastes generated the best results, producing the highest calorific value for the gas (3.5 MJ/Nm(3)) and the highest cold-gas efficiency (45%). Possible char applications include their use as catalysts for tar decomposition, or as an additive in construction materials. Gasification can therefore be considered a valid solution for the energetic valorisation of these SRFs.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 19
Documents
File name Description Size
energies-15-08139 1669.25 KB
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