This paper presents the prospect of phosphorus (P) - rich poultry litter manure ash (PLA) used to recover P through microwave heating methods, aiming for residual slag recycling in constructions. The results show the complex composition of the ashes characterized by X-ray fluorescence (XRF), reflected light optical microscopy, X-ray microanalysis (SEM/EDS) and X-ray diffraction (XRD), which explains the differences between the ash types and the operation temperature in the combustion chamber. At the same time, the results present a novel approach of using microwave heating by reducing energy consumption to extract/enrich P from PLA and forming a by-product/residual slag used as a supplementary cementing material. Samples of fly ash (FA) and bottom ash (BA) were collected from two fluidized bed incinerators (Güres and Beypi in Türkiye) operating at 750 °C and 850 °C within the PHIGO project funded by the 3rd ERA-MIN Program of the European Union Commission.

Characterization of the ash samples before and after thermal processing aiming phosphorus extraction and residues valorization

Bontempi E.;Massa M.;
2025-01-01

Abstract

This paper presents the prospect of phosphorus (P) - rich poultry litter manure ash (PLA) used to recover P through microwave heating methods, aiming for residual slag recycling in constructions. The results show the complex composition of the ashes characterized by X-ray fluorescence (XRF), reflected light optical microscopy, X-ray microanalysis (SEM/EDS) and X-ray diffraction (XRD), which explains the differences between the ash types and the operation temperature in the combustion chamber. At the same time, the results present a novel approach of using microwave heating by reducing energy consumption to extract/enrich P from PLA and forming a by-product/residual slag used as a supplementary cementing material. Samples of fly ash (FA) and bottom ash (BA) were collected from two fluidized bed incinerators (Güres and Beypi in Türkiye) operating at 750 °C and 850 °C within the PHIGO project funded by the 3rd ERA-MIN Program of the European Union Commission.
2025
UE
PE10_10 Mineralogy, petrology, igneous petrology, metamorphic petrology
PE10_11 Geochemistry, crystal chemistry, isotope geochemistry, thermodynamics
PE10_4 Terrestrial ecology, land cover change
PE4_1 Physical chemistry
PE5_13 Chemistry of condensed matter
PE5_9 Environment chemistry
Inglese
307
Ash; Microwave heating; Petrography; Phosphorus; Poultry litter; Products recycling
Goal 6: Clean water and sanitation
Goal 11: Sustainable cities and communities
Goal 12: Responsible consumption and production
Goal 14: Life below water
Goal 15: Life on land
Goal 2: Zero hunger
Goal 6: Clean water and sanitation
Goal 9: Industry, Innovation, and Infrastructure
19
info:eu-repo/semantics/article
262
Predeanu, G.; Valentim, B.; Popescu, L. G.; Abagiu, A. T.; Anghelescu, L.; Balanescu, M. N.; Bialecka, B.; Bontempi, E.; Cempa, M.; Dragoescu, M. F.; ...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/638409
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