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Pressurized pyrolysis of mattress residue: An alternative to landfill management.

Authors :
Serrano, Daniel
Horvat, Alen
Mata, Ricardo M.
Costa, Paula
Paraleda, Filipe
Source :
Waste Management. May2024, Vol. 181, p11-19. 9p.
Publication Year :
2024

Abstract

• Pressurised pyrolysis is performed on real mattress waste. • Consistent char yields with high energy content. • Yields of C 3 species similar to those of H 2 and C 2 compounds. • High-pressure conditions yield low heating value gas due to N 2 dilution. • Main compounds identified in the liquid fraction are benzonitrile and BTEX. Mattresses are a difficult waste to manage in landfills due to their large volume and low density. Pyrolysis treatment could reduce its volume while producing fuel or products valuable for the chemical industry. Pressurized pyrolysis at 400, 450, and 500 °C is carried out in a lab-scale autoclave at initial pressures 4.2, 8.4, and 16.8 bar. Product gas yield increases slightly along with elevated pressure as well as temperature. However, beyond 8.4 bar the initial pressure makes no discernible differences. CO and CO 2 are the major gas species followed by CH 4. CO contributes the most to the product gas energy content followed by C 3 species, C 2 H 6 , and H 2. Calculated energy content (heating value) is between 2 and 15 MJ·Nm−3. In terms of product gas energy content, low pressure pyrolysis is favorable over high pressure pyrolysis. According to integration areas of chromatographic measurements the liquid phase contains up to 25 % of N-compounds, with benzonitrile being the most abundant, followed by toluene, o-xylene, and ethylbenzene. The solid char maintains constant properties across operating conditions, with carbon and energy contents of approximately 75 wt% and 30 MJ·kg−1, respectively. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0956053X
Volume :
181
Database :
Academic Search Index
Journal :
Waste Management
Publication Type :
Academic Journal
Accession number :
176900697
Full Text :
https://doi.org/10.1016/j.wasman.2024.03.028